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1.
Malar J ; 23(1): 145, 2024 May 13.
Article in English | MEDLINE | ID: mdl-38741094

ABSTRACT

A single 300 mg dose of tafenoquine (an 8-aminoquinoline), in combination with a standard 3-day course of chloroquine, is approved in several countries for the radical cure (prevention of relapse) of Plasmodium vivax malaria in patients aged ≥ 16 years. Despite this, questions have arisen on the optimal dose of tafenoquine. Before the availability of tafenoquine, a 3-day course of chloroquine in combination with the 8-aminoquinoline primaquine was the only effective radical cure for vivax malaria. The World Health Organization (WHO)-recommended standard regimen is 14 days of primaquine 0.25 mg/kg/day or 7 days of primaquine 0.5 mg/kg/day in most regions, or 14 days of primaquine 0.5 mg/kg/day in East Asia and Oceania, however the long treatment courses of 7 or 14 days may result in poor adherence and, therefore, low treatment efficacy. A single dose of tafenoquine 300 mg in combination with a 3-day course of chloroquine is an important advancement for the radical cure of vivax malaria in patients without glucose-6-phosphate dehydrogenase (G6PD) deficiency, as the use of a single-dose treatment will improve adherence. Selection of a single 300 mg dose of tafenoquine for the radical cure of P. vivax malaria was based on collective efficacy and safety data from 33 studies involving more than 4000 trial participants who received tafenoquine, including over 800 subjects who received the 300 mg single dose. The safety profile of single-dose tafenoquine 300 mg is similar to that of standard-dosage primaquine 0.25 mg/kg/day for 14 days. Both primaquine and tafenoquine can cause acute haemolytic anaemia in individuals with G6PD deficiency; severe haemolysis can lead to anaemia, kidney damage, and, in some cases, death. Therefore, relapse prevention using an 8-aminoquinoline must be balanced with the need to avoid clinical haemolysis associated with G6PD deficiency. To minimize this risk, the WHO recommends G6PD testing for all individuals before the administration of curative doses of 8-aminoquinolines. In this article, the authors review key efficacy and safety data from the pivotal trials of tafenoquine and argue that the currently approved dose represents a favourable benefit-risk profile.


Subject(s)
Aminoquinolines , Antimalarials , Malaria, Vivax , Malaria, Vivax/drug therapy , Aminoquinolines/administration & dosage , Aminoquinolines/adverse effects , Aminoquinolines/therapeutic use , Humans , Antimalarials/therapeutic use , Antimalarials/administration & dosage , Antimalarials/adverse effects , Primaquine/administration & dosage , Primaquine/therapeutic use , Primaquine/adverse effects , Risk Assessment , Treatment Outcome , Drug Therapy, Combination , Plasmodium vivax/drug effects , Chloroquine/therapeutic use , Chloroquine/adverse effects , Chloroquine/administration & dosage
2.
Lancet Infect Dis ; 24(6): 629-638, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38452779

ABSTRACT

BACKGROUND: Prevention of Plasmodium vivax malaria recurrence is essential for malaria elimination in Brazil. We evaluated the real-world effectiveness of an updated treatment algorithm for P vivax radical cure in the Brazilian Amazon. METHODS: In this non-interventional observational study, we used retrospective data from the implementation of a P vivax treatment algorithm at 43 health facilities in Manaus and Porto Velho, Brazil. The treatment algorithm consisted of chloroquine (25 mg/kg over 3 days) and point-of-care quantitative glucose-6-phosphate dehydrogenase (G6PD) testing followed by single-dose tafenoquine 300 mg (G6PD normal, aged ≥16 years, not pregnant and not breastfeeding), 7-day primaquine 0·5 mg/kg per day (G6PD intermediate or normal, aged ≥6 months, not pregnant, and not breastfeeding or breastfeeding for >1 month), or primaquine 0·75 mg/kg per week for 8 weeks (G6PD deficient, aged ≥6 months, not pregnant, and not breastfeeding or breastfeeding for >1 month). P vivax recurrences were identified from probabilistic linkage of routine patient records from the Brazilian malaria epidemiological surveillance system. Recurrence-free effectiveness at day 90 and day 180 was estimated using Kaplan-Meier analysis and hazard ratios (HRs) by multivariate analysis. This clinical trial is registered with ClinicalTrials.gov, NCT05096702, and is completed. FINDINGS: Records from Sept 9, 2021, to Aug 31, 2022, included 5554 patients with P vivax malaria. In all treated patients of any age and any G6PD status, recurrence-free effectiveness at day 180 was 75·8% (95% CI 74·0-77·6) with tafenoquine, 73·4% (71·9-75·0) with 7-day primaquine, and 82·1% (77·7-86·8) with weekly primaquine. In patients aged at least 16 years who were G6PD normal, recurrence-free effectiveness until day 90 was 88·6% (95% CI 87·2-89·9) in those who were treated with tafenoquine (n=2134) and 83·5% (79·8-87·4) in those treated with 7-day primaquine (n=370); after adjustment for confounding factors, the HR for recurrence following tafenoquine versus 7-day primaquine was 0·65 (95% CI 0·49-0·86; p=0·0031), with similar outcomes between the two treatments at day 180 (log-rank p=0·82). Over 180 days, median time to recurrence in patients aged at least 16 years who were G6PD normal was 92 days (IQR 76-120) in those treated with tafenoquine and 68 days (52-94) in those treated with 7-day primaquine. INTERPRETATION: In this real-world setting, single-dose tafenoquine was more effective at preventing P vivax recurrence in patients aged at least 16 years who were G6PD normal compared with 7-day primaquine at day 90, while overall efficacy at 180 days was similar. The public health benefits of the P vivax radical cure treatment algorithm incorporating G6PD quantitative testing and tafenoquine support its implementation in Brazil and potentially across South America. FUNDING: Brazilian Ministry of Health, Municipal and State Health Secretariats; Fiocruz; Medicines for Malaria Venture; Bill & Melinda Gates Foundation; Newcrest Mining; and the UK Government. TRANSLATION: For the Portuguese translation of the abstract see Supplementary Materials section.


Subject(s)
Aminoquinolines , Antimalarials , Malaria, Vivax , Plasmodium vivax , Primaquine , Humans , Malaria, Vivax/drug therapy , Malaria, Vivax/prevention & control , Primaquine/therapeutic use , Primaquine/administration & dosage , Retrospective Studies , Antimalarials/therapeutic use , Antimalarials/administration & dosage , Female , Male , Adult , Brazil/epidemiology , Aminoquinolines/therapeutic use , Aminoquinolines/administration & dosage , Adolescent , Child , Young Adult , Middle Aged , Plasmodium vivax/drug effects , Child, Preschool , Infant , Secondary Prevention/methods , Chloroquine/therapeutic use , Chloroquine/administration & dosage , Recurrence , Treatment Outcome , Aged
3.
Curr Eye Res ; 48(6): 557-563, 2023 06.
Article in English | MEDLINE | ID: mdl-36800492

ABSTRACT

PURPOSE: To compare effect of topical cyclosporine-A 0.05% (CsA) and chloroquine phosphate 0.03% (CHQ) as an adjunct to standard therapy in maintaining post-laser assisted in situ keratomileusis (LASIK) ocular surface stability. METHODS: Randomized controlled trial on 100 eyes undergoing femtosecond-LASIK randomized into three groups: 33 eyes in Group I (Standard Treatment group), 34 eyes in Group II (CsA group) and 33 eyes in Group III (CHQ group). Standard treatment included topical moxifloxacin, topical prednisolone and carboxymethyl cellulose. Group II received topical CsA 0.05% twice daily for three months and group III received topical CHQ 0.03% twice daily for three months in addition to standard treatment. Primary outcome measure was change in ocular surface disease index (OSDI) at 6 months. Secondary outcome measures were tear break up time (TBUT), Schirmer-I score, tear film osmolarity, tear film MMP-9 and visual acuity. Follow-up was performed at postoperative 1, 3 and 6 months. RESULTS: At 6 months, OSDI score, MMP-9, tear osmolarity, TBUT and Schirmer score were significantly better in both CsA and CHQ groups as compared with controls (p < 0.001). OSDI, Tear osmolarity, TBUT, MMP-9 levels were comparable in CsA and CHQ group (p > 0.05). In CsA group, tear film MMP-9 levels at 6 months were comparable to preoperative baseline (p = 0.09). There was no significant change in the Schirmer score from baseline in the CsA group; in addition, the Schirmer score was significantly better than the CHQ group at 6 months (p = 0.02). Visual acuity was comparable in all three groups. Adverse effects including burning sensation, stinging, pain and redness were reported by ten patients (CsA group- 3, CHQ group-7; p = 0.28). CONCLUSION: Both CsA and CHQ are useful adjuncts to standard therapy in maintaining ocular surface stability after refractive surgery. Cyclosporine A has more potent and sustained anti-inflammatory effect with less ocular irritative effects.


Subject(s)
Astigmatism , Chloroquine , Cyclosporine , Dry Eye Syndromes , Keratomileusis, Laser In Situ , Myopia , Humans , Cyclosporine/administration & dosage , Chloroquine/administration & dosage , Administration, Topical , Keratomileusis, Laser In Situ/adverse effects , Dry Eye Syndromes/drug therapy , Dry Eye Syndromes/etiology , Postoperative Complications , Anti-Inflammatory Agents/administration & dosage , Prospective Studies , Astigmatism/surgery , Myopia/surgery , Treatment Outcome , Male , Female , Adult
4.
Braz. J. Pharm. Sci. (Online) ; 59: e201085, 2023. graf
Article in English | LILACS | ID: biblio-1429968

ABSTRACT

Abstract Nitric oxide (NO) is an abundant mediator which is demonstrated to be involved in pruritus. Assuming that the increased NO also mediates chloroquine-induced pruritus, which is a frequent complication seen in the chronic chloroquine treatment, the current study aimed to investigate the effect of quercetin and the role of NO in chloroquine-induced pruritus in C57BL/6 mice. Model was created with subcutaneous chloroquine (400µg/site) injection to the nape of the mice. Effect of quercetin and role of NO were investigated with administration of quercetin, and co-administration with L-NAME, 7-NI and L-arginine before chloroquine injection. Locomotor activity was assessed by activity cage and number of the scratching bouts after chloroquine injection was recorded for 30 minutes. Our results show that quercetin significantly reduced scratching bouts at the doses of 10, 20, 40 and 80 mg/kg. Locomotor activity was decreased at the 40 and 80 mg/kg doses of quercetin. Additionally, decrease of the number of scratching bouts by quercetin prevented by L-arginine treatment, while L-NAME and 7-NI enhanced the anti-pruritic effect of sub-effective doses of quercetin. Therefore, our study demonstrated that acute injection of quercetin significantly diminished chloroquine-induced scratching behavior, and this effect is partly mediated by inhibition of neuronal nitric oxide synthase enzyme.


Subject(s)
Animals , Male , Mice , Pruritus/chemically induced , Quercetin/adverse effects , Chloroquine/administration & dosage , Nitric Oxide/agonists , Motor Activity
5.
N Engl J Med ; 386(13): 1244-1253, 2022 03 31.
Article in English | MEDLINE | ID: mdl-35353962

ABSTRACT

BACKGROUND: In most of the Americas, the recommended treatment to prevent relapse of Plasmodium vivax malaria is primaquine at a total dose of 3.5 mg per kilogram of body weight, despite evidence of only moderate efficacy. METHODS: In this trial conducted in Brazil, we evaluated three primaquine regimens to prevent relapse of P. vivax malaria in children at least 5 years of age and in adults with microscopy-confirmed P. vivax monoinfection. All the patients received directly observed chloroquine for 3 days (total dose, 25 mg per kilogram). Group 1 received a total primaquine dose of 3.5 mg per kilogram (0.5 mg per kilogram per day) over 7 days with unobserved administration; group 2 received the same regimen as group 1 but with observed administration; and group 3 received a total primaquine dose of 7.0 mg per kilogram over 14 days (also 0.5 mg per kilogram per day) with observed administration. We monitored the patients for 168 days. RESULTS: We enrolled 63 patients in group 1, 96 in group 2, and 95 in group 3. The median age of the patients was 22.4 years (range, 5.4 to 79.8). By day 28, three P. vivax recurrences were observed: 2 in group 1 and 1 in group 2. By day 168, a total of 70 recurrences had occurred: 24 in group 1, 34 in group 2, and 12 in group 3. No serious adverse events were noted. On day 168, the percentage of patients without recurrence was 58% (95% confidence interval [CI], 44 to 70) in group 1, 59% (95% CI, 47 to 69) in group 2, and 86% (95% CI, 76 to 92) in group 3. Survival analysis showed a difference in the day 168 recurrence-free percentage of 27 percentage points (97.5% CI, 10 to 44; P<0.001) between group 1 and group 3 and a difference of 27 percentage points (97.5% CI, 12 to 42; P<0.001) between group 2 and group 3. CONCLUSIONS: The administration of primaquine at a total dose of 7.0 mg per kilogram had higher efficacy in preventing relapse of P. vivax malaria than a total dose of 3.5 mg per kilogram through day 168. (Supported by the U.S. Agency for International Development; ClinicalTrials.gov number, NCT03610399.).


Subject(s)
Antimalarials , Chloroquine , Malaria, Vivax , Primaquine , Adolescent , Adult , Aged , Antimalarials/administration & dosage , Antimalarials/adverse effects , Antimalarials/therapeutic use , Brazil , Child , Child, Preschool , Chloroquine/administration & dosage , Chloroquine/adverse effects , Chloroquine/therapeutic use , Directly Observed Therapy , Dose-Response Relationship, Drug , Drug Administration Schedule , Humans , Malaria, Vivax/drug therapy , Malaria, Vivax/prevention & control , Middle Aged , Primaquine/administration & dosage , Primaquine/adverse effects , Primaquine/therapeutic use , Recurrence , Secondary Prevention , Young Adult
6.
AAPS J ; 24(1): 33, 2022 02 07.
Article in English | MEDLINE | ID: mdl-35132508

ABSTRACT

In vitro screening for pharmacological activity of existing drugs showed chloroquine and hydroxychloroquine to be effective against severe acute respiratory syndrome coronavirus 2. Oral administration of these compounds to obtain desired pulmonary exposures resulted in dose-limiting systemic toxicity in humans. However, pulmonary drug delivery enables direct and rapid administration to obtain higher local tissue concentrations in target tissue. In this work, inhalable formulations for thermal aerosolization of chloroquine and hydroxychloroquine were developed, and their physicochemical properties were characterized. Thermal aerosolization of 40 mg/mL chloroquine and 100 mg/mL hydroxychloroquine formulations delivered respirable aerosol particle sizes with 0.15 and 0.33 mg per 55 mL puff, respectively. In vitro toxicity was evaluated by exposing primary human bronchial epithelial cells to aerosol generated from Vitrocell. An in vitro exposure to 7.24 µg of chloroquine or 7.99 µg hydroxychloroquine showed no significant changes in cilia beating, transepithelial electrical resistance, and cell viability. The pharmacokinetics of inhaled aerosols was predicted by developing a physiologically based pharmacokinetic model that included a detailed species-specific respiratory tract physiology and lysosomal trapping. Based on the model predictions, inhaling emitted doses comprising 1.5 mg of chloroquine or 3.3 mg hydroxychloroquine three times a day may yield therapeutically effective concentrations in the lung. Inhalation of higher doses further increased effective concentrations in the lung while maintaining lower systemic concentrations. Given the theoretically favorable risk/benefit ratio, the clinical significance for pulmonary delivery of aerosolized chloroquine and hydroxychloroquine to treat COVID-19 needs to be established in rigorous safety and efficacy studies. Graphical abstract.


Subject(s)
Antimalarials/administration & dosage , COVID-19 Drug Treatment , Chloroquine/administration & dosage , Hydroxychloroquine/administration & dosage , Models, Chemical , Administration, Inhalation , Animals , Antimalarials/pharmacokinetics , Antimalarials/toxicity , Cells, Cultured , Drug Evaluation, Preclinical , Humans , Hydroxychloroquine/pharmacokinetics , Hydroxychloroquine/toxicity , Male , Mice , Middle Aged , Rats
7.
Pharm Res ; 39(1): 57-73, 2022 Jan.
Article in English | MEDLINE | ID: mdl-35000036

ABSTRACT

PURPOSE: Chloroquine and hydroxychloroquine are effective against respiratory viruses in vitro. However, they lack antiviral efficacy upon oral administration. Translation of in vitro to in vivo exposure is necessary for understanding the disconnect between the two to develop effective therapeutic strategies. METHODS: We employed an in vitro ion-trapping kinetic model to predict the changes in the cytosolic and lysosomal concentrations of chloroquine and hydroxychloroquine in cell lines and primary human airway cultures. A physiologically based pharmacokinetic model with detailed respiratory physiology was used to predict regional airway exposure and optimize dosing regimens. RESULTS: At their reported in vitro effective concentrations in cell lines, chloroquine and hydroxychloroquine cause a significant increase in their cytosolic and lysosomal concentrations by altering the lysosomal pH. Higher concentrations of the compounds are required to achieve similar levels of cytosolic and lysosomal changes in primary human airway cells in vitro. The predicted cellular and lysosomal concentrations in the respiratory tract for in vivo oral doses are lower than the in vitro effective levels. Pulmonary administration of aerosolized chloroquine or hydroxychloroquine is predicted to achieve high bound in vitro-effective concentrations in the respiratory tract, with low systemic exposure. Achieving effective cytosolic concentrations for activating immunomodulatory effects and adequate lysosomal levels for inhibiting viral replication could be key drivers for treating viral respiratory infections. CONCLUSION: Our analysis provides a framework for extrapolating in vitro effective concentrations of chloroquine and hydroxychloroquine to in vivo dosing regimens for treating viral respiratory infections.


Subject(s)
Chloroquine/administration & dosage , Chloroquine/pharmacokinetics , Hydroxychloroquine/administration & dosage , Hydroxychloroquine/pharmacokinetics , Respiratory Tract Infections/drug therapy , Virus Diseases/drug therapy , Administration, Inhalation , Aerosols , Algorithms , COVID-19 , Cell Line , Cytosol/metabolism , Humans , Hydrogen-Ion Concentration , Lysosomes/metabolism , Primary Cell Culture
8.
Lancet Child Adolesc Health ; 6(2): 86-95, 2022 02.
Article in English | MEDLINE | ID: mdl-34871570

ABSTRACT

BACKGROUND: Single-dose tafenoquine 300 mg is approved for Plasmodium vivax malaria relapse prevention in patients at least 16 years old. We aimed to determine appropriate oral tafenoquine paediatric dosing regimens, including a dispersible formulation, and evaluated tafenoquine efficacy and safety in children infected with P vivax. METHODS: This open-label, single-arm, non-comparative, multicentre, pharmacokinetic bridging, phase 2 study enrolled children (2-15 years) who weighed 5 kg or more, with glucose-6-phosphate dehydrogenase activity more than 70% of the local population median, and P vivax malaria infection, from three community health centres in Vietnam and one in Colombia. Patients received 3-day chloroquine plus oral single-dose tafenoquine as dispersible tablets (50 mg) or film-coated tablets (150 mg). Dosing groups were assigned by body weight, predicted to achieve similar median exposures as the approved 300 mg dose for adults: patients who weighed 5 kg or more to 10 kg received 50 mg, those who weighed more than 10 to 20 kg received 100 or 150 mg, those who weighed more than 20 to 35 kg received 200 mg, and patients who weighed more than 35 kg received 300 mg. Population pharmacokinetic analysis was done to develop a paediatric population pharmacokinetic model. The primary outcome was the tafenoquine area under the concentration-time curve extrapolated to infinity (AUC[0-∞]) by patient body weight in the pharmacokinetic population (all patients who received tafenoquine with at least one valid pharmacokinetic sample) estimated from a paediatric population pharmacokinetic model. A key prespecified secondary outcome was 4-month recurrence-free efficacy. This trial is registered with ClinicalTrials.gov, NCT02563496. FINDINGS: Between Feb 6, 2017, and Feb 17, 2020, 60 patients were enrolled into the study: 14 (23%) received tafenoquine 100 mg, five (8%) 150 mg, 22 (36%) 200 mg, and 19 (32%) 300 mg. The paediatric population pharmacokinetic model predicted adequate tafenoquine exposure at all doses. The predicted median AUC(0-∞) was 73·8 (90% prediction interval [PI] 46·9-117·0) µg × h/mL with the 50 mg dose for patients who weighed 5 kg or more to 10 kg, 87·5 (55·4-139·0) µg × h/mL with the 100 mg dose for body weight more than 10 to 20 kg, 110·7 (70·9-174·0) µg × h/mL with the 200 mg dose for body weight more than 20 to 35 kg, and 85·7 (50·6-151·0) µg × h/mL with the 300 mg dose for body weight more than 35 kg. 4-month recurrence-free efficacy was 94·7% (95% CI 84·6-98·3). Adverse events were consistent with previous studies, except for the seven (12%) of 60 patients who had post-dose vomiting or spitting with the 50 mg dispersed tablet. Following mitigation strategies, there were no additional occurrences of this adverse event. There were no deaths during the study. INTERPRETATION: For the prevention of P vivax relapse in children, single-dose tafenoquine, including a dispersible formulation, had exposure, safety, and efficacy consistent with observations in adolescents and adults, notwithstanding post-dose vomiting. FUNDING: GlaxoSmithKline and Medicines for Malaria Venture. TRANSLATIONS: For the Vietnamese and Spanish translations of the abstract see Supplementary Materials section.


Subject(s)
Aminoquinolines/administration & dosage , Aminoquinolines/pharmacokinetics , Aminoquinolines/therapeutic use , Antimalarials/administration & dosage , Antimalarials/pharmacokinetics , Antimalarials/therapeutic use , Malaria, Vivax/drug therapy , Adolescent , Area Under Curve , Child , Child, Preschool , Chloroquine/administration & dosage , Female , Humans , Male , Recurrence , Secondary Prevention , Tablets
9.
Biomolecules ; 11(12)2021 12 01.
Article in English | MEDLINE | ID: mdl-34944451

ABSTRACT

Chemotherapy is an essential strategy for cancer treatment. On the other hand, consistent exposure to chemotherapeutic drugs induces chemo-resistance in cancer cells through a variety of mechanisms. Therefore, it is important to develop a new drug inhibiting chemo-resistance. Although hemistepsin A (HsA) is known to have anti-tumor effects, the molecular mechanisms of HsA-mediated cell death are unclear. Accordingly, this study examined whether HsA could induce apoptosis in aggressive prostate cancer cells, along with its underlying mechanism. Using HsA on two prostate cancer cell lines, PC-3 and LNCaP cells, the cell analysis and in vivo xenograft model were assayed. In this study, HsA induced apoptosis and autophagy in PC-3 cells. HsA-mediated ROS production attenuated HsA-induced apoptosis and autophagy after treatment with N-acetyl-L-cysteine (NAC), a ROS scavenger. Moreover, autophagy inhibition by 3-MA or CQ is involved in accelerating the apoptosis induced by HsA. Furthermore, we showed the anti-tumor effects of HsA in mice, as assessed by the reduced growth of the xenografted tumors. In conclusion, HsA induced apoptosis and ROS generation, which were blocked by protective autophagy signaling.


Subject(s)
AMP-Activated Protein Kinases/metabolism , Autophagy/drug effects , Chloroquine/administration & dosage , Lactones/administration & dosage , Prostatic Neoplasms/drug therapy , Reactive Oxygen Species/metabolism , Sesquiterpenes/administration & dosage , Animals , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Survival/drug effects , Chloroquine/pharmacology , Drug Synergism , Gene Expression Regulation, Neoplastic/drug effects , Humans , Lactones/pharmacology , Male , Mice , PC-3 Cells , Prostatic Neoplasms/metabolism , Sesquiterpenes/pharmacology , Signal Transduction/drug effects , Xenograft Model Antitumor Assays
10.
Macromol Biosci ; 21(11): e2100233, 2021 11.
Article in English | MEDLINE | ID: mdl-34411417

ABSTRACT

2D MoS2 has shown a great potential in biomedical applications, due to its superior loading capacity, photothermal property, and biodegradation. In this work, polyglycerol functionalized MoS2 nanosheets with photothermal and pH dual-stimuli responsive properties are used for the co-delivery of doxorubicin and chloroquine and treatment of multidrug-resistant HeLa (HeLa-R) cells. The polyglycerol functionalized MoS2 nanosheets with 80 nm average size show a high biocompatibility and loading efficiency (≈90%) for both drugs. The release of drugs from the nanosheets at pH 5.5 is significantly promoted by laser irradiation leading to efficient destruction of incubated HeLa-R cells. In vitro evaluation shows that the designed nanoplatform has a high ability to kill HeLa-R cells. Confocal experiments demonstrate that the synthesized drug delivery system enhances the cellular uptake of DOX via folic acid targeting ligand. Taking advantage of the combined properties including biocompatibility and targeting ability as well as high loading capacity and photothermal release, this multifunctional nanosystem is a promising candidate for anticancer therapy.


Subject(s)
Chloroquine/administration & dosage , Disulfides/administration & dosage , Doxorubicin/administration & dosage , Drug Resistance, Neoplasm/drug effects , Glycerol/administration & dosage , Molybdenum/administration & dosage , Nanostructures/administration & dosage , Neoplasms/drug therapy , Polymers/administration & dosage , HeLa Cells , Humans , Microscopy, Electron, Scanning , Microscopy, Electron, Transmission , Spectrophotometry, Ultraviolet
11.
J Clin Lab Anal ; 35(9): e23923, 2021 Sep.
Article in English | MEDLINE | ID: mdl-34390043

ABSTRACT

BACKGROUND: The dynamic alteration and comparative study of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) RNA shedding pattern during treatment are limited. This study explores the potential risk factors influencing prolonged viral shedding in COVID-19. METHODS: A total of 126 COVID-19 patients were enrolled in this retrospective longitudinal study. A multivariate logistic regression analysis was carried out to estimate the potential risk factors. RESULTS: 38.1% (48/126) cases presented prolonged respiratory tract viral shedding, and 30 (23.8%) cases presented prolonged rectal swab viral shedding. Obesity (OR, 3.31; 95% CI, 1.08-10.09), positive rectal swab (OR, 3.43; 95% CI, 1.53-7.7), treatment by lopinavir/ritonavir with chloroquine phosphate (OR, 2.5; 95% CI, 1.04-6.03), the interval from onset to antiviral treatment more than 7 days (OR, 2.26; 95% CI, 1.04-4.93), lower CD4+ T cell (OR, 0.92; 95% CI, 0.86-0.99) and higher NK cells (OR, 1.11; 95% CI, 1.02-1.20) were significantly associated with prolonged respiratory tract viral shedding. CD3-CD56+ NK cells (OR, 0.87; 95% CI, 0.76-0.99) were related with prolonged fecal shedding. CONCLUSIONS: Obesity, delayed antiviral treatment, and positive SARS-CoV-2 for stool were independent risk factors for prolonged SARS-CoV-2 RNA shedding of the respiratory tract. A combination of LPV/r and abidol as the initial antiviral regimen was effective in shortening the duration of viral shedding compared with LPV/r combined with chloroquine phosphate. CD4+ T cell and NK cells were significantly associated with prolonged viral shedding, and further studies are to be warranted to determine the mechanism of immunomodulatory response in virus clearance.


Subject(s)
COVID-19/virology , Feces/virology , SARS-CoV-2/physiology , Virus Shedding/physiology , Adult , Animals , Antiviral Agents/administration & dosage , CD4 Lymphocyte Count , COVID-19/epidemiology , Chloroquine/administration & dosage , Chloroquine/adverse effects , Chloroquine/analogs & derivatives , Female , Humans , Killer Cells, Natural , Longitudinal Studies , Lopinavir/administration & dosage , Lynx , Male , Obesity/epidemiology , Respiratory System/virology , Retrospective Studies , Risk Factors , Ritonavir/administration & dosage , Time Factors , Virus Shedding/drug effects
12.
Int J Biol Macromol ; 189: 577-589, 2021 Oct 31.
Article in English | MEDLINE | ID: mdl-34450149

ABSTRACT

Here, we fabricated amphiphilic polysaccharide micelles for synergistic cancer immunotherapy targeting tumor-associated macrophages (TAMs). Lepidium meyenii Walp. (maca) polysaccharide (MP), a naturally derived macromolecule with a strong TAM-remodeling effect, was grafted on a hydrophobic poly(lactic-co-glycolic acid) (PLGA) segment, with a disulfide bond for redox-sensitive linkage. The amphiphilic polysaccharide derivatives could self-assemble into core (PLGA)-shell (MP)-structured micelles and encapsulate chloroquine (CQ) into the hydrophobic core. By using a 4T1-M2 macrophage co-culture model and a 4T1 tumor xenograft mouse model, we showed that the prepared micelles could co-deliver MP and CQ to the tumor sites and selectively accumulate at TAMs because of the specific properties of MP. Furthermore, the nanoparticles exerted synergistic tumor immunotherapeutic and antimetastatic effects, which might be attributable to the enhanced cell internalization of the micelles and the multiple regulatory mechanisms of MP and CQ. Thus, immunomodulatory MP may be a promising biomaterial for cancer immunotherapy.


Subject(s)
Chloroquine/pharmacology , Immunotherapy , Lepidium/chemistry , Micelles , Nanoparticles/chemistry , Neoplasms/therapy , Polysaccharides/pharmacology , Tumor-Associated Macrophages/pathology , Animals , Antineoplastic Agents/pharmacology , Cell Line, Tumor , Cell Polarity/drug effects , Chloroquine/administration & dosage , Female , Mice , Mice, Inbred BALB C , Nanoparticles/ultrastructure , Neoplasms/immunology , Neoplasms/pathology , Polylactic Acid-Polyglycolic Acid Copolymer/chemical synthesis , Polylactic Acid-Polyglycolic Acid Copolymer/chemistry , Polysaccharides/administration & dosage , RAW 264.7 Cells , Spectroscopy, Fourier Transform Infrared , Tumor Microenvironment/drug effects , Tumor-Associated Macrophages/drug effects
13.
Int. j. morphol ; 39(4): 1123-1131, ago. 2021. ilus, tab
Article in English | LILACS | ID: biblio-1385439

ABSTRACT

SUMMARY: Adriamycin (ADR) is an anthracycline antibiotic used for treatment of many types of cancer. However, its applications may damage to healthy tissues. Chloroquine (CLQ) is an anti-inflammatory agent used in treatment of many inflammation associated diseases such as malaria and rheumatoid arthritis. Moreover, it is used in the treatment of pneumonia caused by COVID-19. The aim of this study is to determine possible therapeutic effects of Chloroquine on Adriamycin-induced testicular toxicity in rats. We investigated the effect of CLQ on testicular injury caused by ADR. Rats were divided into four groups: Control, ADR, CLQ, ADR+CLQ. After administrations, animals were sacrificed, and testis tissues were extracted from the animals for the further examinations. Histopathological changes in testis tissues were evaluated and TNF-α and IL-6 immunostaining were performed to determine the expression levels of these cytokines. TUNEL method were used for evaluation of apoptotic index. Moreover, serum testosterone levels were measured by ELISA assay. We observed that ADR group showed histopathological deterioration when compared to the Control group and CLQ treatment ameliorated this damage induced by Adriamycin.An increase in TNF-α and IL-6 immunoreactivities and in the number of apoptotic cells and a decrease in serum testosterone levels were determined in the ADR group compared to the Control and CLQ group. Furthermore, our examinations showed an improvement in testicular tissue in ADR+CLQ group in terms of these parameters when compared to the ADR group. We suggest that CLQ can be used as a protective agent to reduce the toxic effects of Adriamycin as a result of its anti-inflammatory and anti-apoptotic properties.


RESUMEN: La adriamicina (ADR) es un antibiótico de antraciclina que se usa para el tratamiento de muchos tipos de cáncer. Sin embargo, sus aplicaciones pueden dañar los tejidos sanos. La cloroquina (CLQ) es un agente antiinflamatorio que se utiliza en el tratamiento de enfermedades asociadas a la inflamación, tal como la malaria y la artritis reumatoide. También se utiliza en el tratamiento de la neumonía causada por COVID-19. El objetivo de este estudio fue determinar los posibles efectos terapéuticos de la cloroquina sobre la toxicidad testicular inducida por adriamicina en ratas. Investigamos el efecto de CLQ sobre la lesión testicular causada por ADR. Las ratas se dividieron en cuatro grupos: Control, ADR, CLQ, ADR + CLQ. Después de las administraciones, se sacrificaron los animales y se extrajeron los testículos de los animales para los exámenes adicionales. Se evaluaron los cambios histopatológicos en los tejidos testiculares y se realizó la inmunotinción de TNF-α e IL-6 para determinar los niveles de expresión de estas citocinas. Se utilizó el método TUNEL para la evaluación del índice apoptótico. Además, los niveles de testosterona en suero se midieron mediante un ensayo ELISA. El grupo ADR mostró un deterioro histopatológico en comparación con el grupo Control y observamos que el tratamiento con CLQ mejoró el daño inducido por Adriamicina. Un aumento en las inmunorreactividades de TNF-α e IL-6 y en el número de células apoptóticas además de una disminución en los niveles séricos de testosterona se determinaron en el grupo de ADR en comparación con el grupo de control y CLQ. Además, nuestros exámenes mostraron una mejora en el tejido testicular en el grupo ADR + CLQ en términos de estos parámetros en comparación con el grupo ADR. Sugerimos que CLQ se puede utilizar como agente protector para reducir los efectos tóxicos de la Adriamicina, gracias a sus propiedades antiinflamatorias y antiapoptóticas.


Subject(s)
Animals , Male , Rats , Testicular Diseases/chemically induced , Testicular Diseases/drug therapy , Doxorubicin/adverse effects , Chloroquine/administration & dosage , Enzyme-Linked Immunosorbent Assay , Immunohistochemistry , Interleukin-6 , Tumor Necrosis Factor-alpha , Rats, Wistar , Apoptosis/drug effects , In Situ Nick-End Labeling , Inflammation , Antibiotics, Antineoplastic/adverse effects
14.
Int J Mol Sci ; 22(11)2021 Jun 03.
Article in English | MEDLINE | ID: mdl-34205228

ABSTRACT

BACKGROUND: Artemether-lumefantrine is a highly effective artemisinin-based combination therapy that was adopted in Mali as first-line treatment for uncomplicated Plasmodium falciparum malaria. This study was designed to measure the efficacy of artemether-lumefantrine and to assess the selection of the P. falciparum chloroquine resistance transporter (pfcrt) and P. falciparum multi-drug resistance 1 (pfmdr1) genotypes that have been associated with drug resistance. METHODS: A 28-day follow-up efficacy trial of artemether-lumefantrine was conducted in patients aged 6 months and older suffering from uncomplicated falciparum malaria in four different Malian areas during the 2009 malaria transmission season. The polymorphic genetic markers MSP2, MSP1, and Ca1 were used to distinguish between recrudescence and reinfection. Reinfection and recrudescence were then grouped as recurrent infections and analyzed together by PCR-restriction fragment length polymorphism (RFLP) to identify candidate markers for artemether-lumefantrine tolerance in the P. falciparum chloroquine resistance transporter (pfcrt) gene and the P. falciparum multi-drug resistance 1 (pfmdr1) gene. RESULTS: Clinical outcomes in 326 patients (96.7%) were analyzed and the 28-day uncorrected adequate clinical and parasitological response (ACPR) rate was 73.9%. The total PCR-corrected 28-day ACPR was 97.2%. The pfcrt 76T and pfmdr1 86Y population prevalence decreased from 49.3% and 11.0% at baseline (n = 337) to 38.8% and 0% in patients with recurrent infection (n = 85); p = 0.001), respectively. CONCLUSION: Parasite populations exposed to artemether-lumefantrine in this study were selected toward chloroquine-sensitivity and showed a promising trend that may warrant future targeted reintroduction of chloroquine or/and amodiaquine.


Subject(s)
Artemether, Lumefantrine Drug Combination/administration & dosage , Malaria, Falciparum/drug therapy , Membrane Transport Proteins/genetics , Multidrug Resistance-Associated Proteins/genetics , Protozoan Proteins/genetics , Alleles , Artemether, Lumefantrine Drug Combination/adverse effects , Artemisinins/administration & dosage , Artemisinins/adverse effects , Child , Child, Preschool , Chloroquine/administration & dosage , Chloroquine/adverse effects , Drug Resistance/genetics , Female , Humans , Malaria, Falciparum/genetics , Malaria, Falciparum/parasitology , Malaria, Falciparum/pathology , Male , Plasmodium falciparum/drug effects , Plasmodium falciparum/pathogenicity
15.
Sci Rep ; 11(1): 12420, 2021 06 14.
Article in English | MEDLINE | ID: mdl-34127730

ABSTRACT

This study aimed to analyze the interaction of primaquine (PQ), chloroquine (CQ), and liposomes to support the design of optimal liposomal delivery for hepatic stage malaria infectious disease. The liposomes were composed of hydrogenated soybean phosphatidylcholine, cholesterol, and distearoyl-sn-glycero-3-phosphoethanolamine-N-(methoxy[polyethyleneglycol]-2000), prepared by thin film method, then evaluated for physicochemical and spectrospic characteristics. The calcein release was further evaluated to determine the effect of drug co-loading on liposomal membrane integrity. The results showed that loading PQ and CQ into liposomes produced changes in the infrared spectra of the diester phosphate and carbonyl ester located in the polar part of the phospholipid, in addition to the alkyl group (CH2) in the nonpolar portion. Moreover, the thermogram revealed the loss of the endothermic peak of liposomes dually loaded with PQ and CQ at 186.6 °C, which is identical to that of the phospholipid. However, no crystallinity changes were detected through powder X-ray diffraction analysis. Moreover, PQ, with either single or dual loading, produced the higher calcein release profiles from the liposomes than that of CQ. The dual loading of PQ and CQ tends to interact with the polar head group of the phosphatidylcholine bilayer membrane resulted in an increase in water permeability of the liposomes.


Subject(s)
Antimalarials/chemistry , Chloroquine/chemistry , Pharmaceutical Vehicles/chemistry , Phosphatidylcholines/chemistry , Primaquine/chemistry , Antimalarials/administration & dosage , Antimalarials/pharmacokinetics , Chemistry, Pharmaceutical , Chloroquine/administration & dosage , Chloroquine/pharmacokinetics , Cholesterol/chemistry , Drug Compounding/methods , Drug Liberation , Fluoresceins/pharmacokinetics , Humans , Liposomes , Malaria/drug therapy , Nanoparticles/chemistry , Phosphatidylethanolamines/chemistry , Polyethylene Glycols/chemistry , Primaquine/administration & dosage , Primaquine/pharmacokinetics , X-Ray Diffraction
16.
Malar J ; 20(1): 266, 2021 Jun 13.
Article in English | MEDLINE | ID: mdl-34120622

ABSTRACT

BACKGROUND: Relapses in vivax malaria have posed great challenges for malaria control, and they also account for a great proportion of reported cases. Knowing the real effectiveness of a 7-day primaquine (PQ) scheme is crucial in order to evaluate not only the cost-effectiveness of implementing new anti-hypnozoite drugs, but also how health education strategies can guarantee better compliance and be reinforced. This study aimed to evaluate the effect of daily treatment with chloroquine and PQ supervised by health workers versus prescription without supervision. METHODS: The outcome was the passive detection of new positive thick blood smears up to 180 days, based on the official data records from the National Malaria Control Programme. The recurrences seen in the real life were, therefore, used as a surrogate for true relapses. RESULTS: Patients under supervised treatment had a lower risk of recurrence up to day 180 when compared to the unsupervised treatment (17.9% vs. 36.1%; p = 0.027). CONCLUSIONS: The lack of supervision in the non-supervised group (which followed standard of care in the real life) enabled proper comparison, as consent itself would have lead to greater compliance in this group. Future studies should scale such an analysis to different settings in the Brazilian Amazon.


Subject(s)
Antimalarials/therapeutic use , Chloroquine/administration & dosage , Malaria, Vivax/prevention & control , Primaquine/administration & dosage , Adult , Drug Combinations , Female , Humans , Malaria, Vivax/parasitology , Male , Middle Aged , Recurrence , Young Adult
17.
Int J Mol Sci ; 22(10)2021 May 14.
Article in English | MEDLINE | ID: mdl-34069278

ABSTRACT

Clinical outcomes of conventional drug combinations are not ideal due to high toxicity to healthy tissues. Cisplatin (CDDP) is the standard component for many cancer treatments, yet its principal dose-limiting side effect is nephrotoxicity. Thus, CDDP is commonly used in combination with other drugs, such as the autophagy inhibitor chloroquine (CQ), to enhance tumor cell killing efficacy and prevent the development of chemoresistance. In addition, nanocarrier-based drug delivery systems can overcome chemotherapy limitations, decreasing side effects and increasing tumor accumulation. The aim of this study was to evaluate the toxicity of CQ and CDDP against tumor and non-tumor cells when used in a combined treatment. For this purpose, two types of micelles based on Pluronic® F127 hybrid dendritic-linear-dendritic block copolymers (HDLDBCs) modified with polyester or poly(esteramide) dendrons derived from 2,2'-bis(hydroxymethyl)propionic acid (HDLDBC-bMPA) or 2,2'-bis(glycyloxymethyl)propionic acid (HDLDBC-bGMPA) were explored as delivery nanocarriers. Our results indicated that the combined treatment with HDLDBC-bMPA(CQ) or HDLDBC-bGMPA(CQ) and CDDP increased cytotoxicity in tumor cells compared to the single treatment with CDDP. Encapsulations demonstrated less short-term cytotoxicity individually or when used in combination compared to the free drugs. However, and more importantly, a low degree of cytotoxicity against non-tumor cells was maintained, even when drugs were given simultaneously.


Subject(s)
Antineoplastic Combined Chemotherapy Protocols/pharmacology , Drug Carriers/chemistry , Micelles , Polymers/chemistry , A549 Cells , Antineoplastic Combined Chemotherapy Protocols/pharmacokinetics , Apoptosis/drug effects , Cell Cycle/drug effects , Cell Proliferation/drug effects , Chloroquine/administration & dosage , Chloroquine/pharmacokinetics , Cisplatin/administration & dosage , Cisplatin/pharmacokinetics , Drug Carriers/pharmacokinetics , Drug Delivery Systems/methods , Drug Liberation , Fibroblasts/drug effects , HeLa Cells , Humans , Poloxamer/chemistry , Polymers/chemical synthesis
18.
Rev. chil. enferm. respir ; 37(2): 139-148, jun. 2021.
Article in Spanish | LILACS | ID: biblio-1388143

ABSTRACT

Resumen Desde la notificación de la pandemia por SARS-CoV-2, agente patógeno responsable del COVID-19, muchos de los tratamientos dirigidos a su manejo han estado sometidos a estudios de manera constante, con el fin de comprobar su eficacia y seguridad. El conocimiento de su virología y etiopatogenia posibilitaría objetivar los pasos moleculares específicos que puedan ser blancos terapéuticos de variados fármacos actualmente disponibles. Esta experiencia proviene principalmente de las infecciones por SARS-CoV y MERS-CoV, con resultados variados 'in vitro' en el SARS-CoV-2, sin evidencia clínica que demuestre efectividad y seguridad de dichos tratamientos. A la fecha, no se ha podido concretar con claridad un esquema de tratamiento específico, debido a que la evidencia surgida ha puesto en jaque cada uno de los fármacos propuestos. Esto ha motivado a continuar en la búsqueda de una estrategia efectiva que permita manejar esta pandemia con la seguridad y eficacia necesaria para que el beneficio terapéutico esté por sobre los posibles efectos adversos que estos esquemas farmacológicos pudiesen presentar. La siguiente revisión pretende mostrar la evidencia disponible a la fecha, definiendo la actividad de cada fármaco en función de su mecanismo de acción.


Since the beginning of the pandemic by SARS-CoV-2, the pathogen responsible for COVID-19, many of the therapeutic options for its management have been under constant revision, in order to verify their safety and efficiency. Knowledge of the viral structure and pathogenesis make it possible to determine the molecular pathways that may be targeted with current available drugs. The experience with these drugs comes mainly from infections caused by SARS-CoV and MERS-CoV, in vitro studies with SARS-CoV-2 that yield variable results, and clinical experience that does not ensure effectiveness and safety of such drugs. To date, it has not been possible to elucidate a specific treatment scheme, because of the constant release of evidence that challenges the usefulness of the proposed drugs. This has motived us to continue seeking for an effective strategy that allows to manage this pandemic in a safe and efficient manner, so that therapeutic benefit surpasses the related adverse drug reactions that can occur. The following review aims to showcase the evidence available to date by defining the activity of each drug based on its mechanism of action.


Subject(s)
Humans , Antiviral Agents/administration & dosage , SARS-CoV-2/drug effects , COVID-19/drug therapy , Plasma , Ivermectin/administration & dosage , Adenosine Monophosphate/analogs & derivatives , Chloroquine/administration & dosage , Interleukin-6/antagonists & inhibitors , Interleukin-1/antagonists & inhibitors , Interferon-beta/administration & dosage , Adrenal Cortex Hormones/administration & dosage , Ritonavir/administration & dosage , Alanine/analogs & derivatives , Lopinavir/administration & dosage , Anticoagulants/administration & dosage
19.
Eur J Clin Pharmacol ; 77(10): 1513-1521, 2021 Oct.
Article in English | MEDLINE | ID: mdl-33938974

ABSTRACT

PURPOSE: To analyze the cases of torsade de pointes (TdP) and related symptoms reported in association with chloroquine (CQ), hydroxychloroquine (HCQ), and azithromycin (AZT) to the World Health Organization (WHO) global database of individual case safety reports (ICSRs) for drug monitoring (VigiBase) using qualitative and quantitative pharmacovigilance approaches. METHODS: The main characteristics of the ICSRs reporting TdP with CQ, HCQ, and AZT have been summarized. Co-reported drugs with risk to cause QT prolongation have been described. Reporting odds ratios (RORs) as a measure of disproportionality for reported TdP and individual drugs have been calculated. RESULTS: One hundred seventy ICSRs reporting TdP in association with the drugs of interest were identified (CQ: 11, HCQ: 31, CQ + HCQ: 1, HCQ + AZT: 27, AZT: 100). From these, 41 (24.3%) were received during the pandemic period (December 2019 to February 2021). The median age of the patients was 63, 53, and 63 years old for CQ, HCQ, and AZT, respectively. Reports included concomitant use of other QT-prolonging drugs (CQ 25.0%, HCQ 71.2%, AZT 64.6%). A proportion of the cases were fatal (CQ 25.0%, HCQ 8.6%, AZT 16.1%). Increased disproportionality has been found for the individual drugs and TdP: CQ (ROR: 7.41, 95% confidence interval (CI): 3.82, 12.96), HCQ (ROR: 8.49, 95% CI: 6.57, 10.98), azithromycin (ROR: 8.06, 95% CI: 6.76, 9.61). Disproportionality was also found for other related symptoms, Standardized MedDRA Query for torsade de pointes/QT prolongation (narrow): CQ (ROR: 11.95, 95% CI: 10.04-14.22); HCQ (ROR: 20.43, 95% CI: 19.13, 21.83), AZT (ROR: 7.78, 95% CI: 7.26, 8.34). CONCLUSIONS: The prescription of CQ, HCQ, and AZT should be restricted to therapeutic indications with established positive benefit/risk profile. Doctors and patients should be aware of this potential adverse reaction especially when several risk factors are present.


Subject(s)
Azithromycin/adverse effects , Chloroquine/adverse effects , Hydroxychloroquine/adverse effects , Torsades de Pointes/chemically induced , Adult , Aged , Azithromycin/administration & dosage , Chloroquine/administration & dosage , Drug Therapy, Combination , Female , Humans , Hydroxychloroquine/administration & dosage , Male , Middle Aged , Pharmacovigilance , Retrospective Studies
20.
J Pharm Pharmacol ; 73(2): 206-211, 2021 Mar 04.
Article in English | MEDLINE | ID: mdl-33793809

ABSTRACT

OBJECTIVES: The purpose of this study was to estimate the ability of antimalarial medications to induce local infiltration analgesia. METHODS: Using a rat model of skin infiltration anaesthesia, the effects of antimalarial medications (primaquine, chloroquine, hydroxychloroquine and amodiaquine) were compared with the application of lidocaine. KEY FINDINGS: At a dose of 3 µmol, primaquine and chloroquine displayed better potency (all P < 0.05) and greater duration (all P < 0.01) of cutaneous analgesia than lidocaine, whereas the other antimalarial medications showed a similar potency and duration of cutaneous analgesia when compared with lidocaine. When a dose of 3 µmol antimalarial medication was used, primaquine was the most potent and had the longest duration of action among four antimalarial medications. The relative potency ranking (ED50, 50% effective dose) has been found to be primaquine [2.10 (1.87 - 2.37) µmol] > lidocaine [6.27 (5.32 -7.39) µmol] (P < 0.01). Infiltration analgesia of skin with primaquine had a greater duration of action than did lidocaine on the equipotent (ED25, ED50, ED75) basis (P < 0.01). CONCLUSIONS: Primaquine and chloroquine have greater potency and longer lasting skin analgesia when compared with lidocaine, while the other antimalarials display a similar potency in comparison with lidocaine.


Subject(s)
Anesthetics, Local/pharmacology , Chloroquine/pharmacology , Primaquine/pharmacology , Skin/drug effects , Administration, Cutaneous , Analgesia/methods , Anesthetics, Local/administration & dosage , Animals , Antimalarials/administration & dosage , Antimalarials/pharmacology , Chloroquine/administration & dosage , Dose-Response Relationship, Drug , Lidocaine/administration & dosage , Lidocaine/pharmacology , Male , Primaquine/administration & dosage , Rats , Rats, Sprague-Dawley , Skin/metabolism , Time Factors
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