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1.
Int J Mol Sci ; 24(15)2023 Jul 28.
Article in English | MEDLINE | ID: mdl-37569487

ABSTRACT

This study aimed to evaluate Attalea funifera seed oil with or without resveratrol entrapped in organogel nanoparticles in vitro against A375 human melanoma tumor cells. Organogel nanoparticles with seed oil (SON) or with resveratrol entrapped in the seed oil (RSON) formed functional organogel nanoparticles that showed a particle size <100 nm, polydispersity index <0.3, negative zeta potential, and maintenance of electrical conductivity. The resveratrol entrapment efficiency in RSON was 99 ± 1%. The seed oil and SON showed no cytotoxicity against human non-tumor cells or tumor cells. Resveratrol at 50 µg/mL was cytotoxic for non-tumor cells, and was cytotoxic for tumor cells at 25 µg/mL. Resveratrol entrapped in RSON showed a decrease in cytotoxicity against non-tumor cells and cytotoxic against tumor cells at 50 µg/mL. Thus, SON is a potential new platform for the delivery of resveratrol with selective cytotoxic activity in the treatment of melanoma.


Subject(s)
Antineoplastic Agents , Arecaceae , Melanoma , Nanogels , Nanoparticle Drug Delivery System , Palm Oil , Resveratrol , Resveratrol/administration & dosage , Melanoma/therapy , Humans , Cell Line, Tumor , Nanogels/administration & dosage , Nanogels/chemistry , Arecaceae/chemistry , Palm Oil/chemistry , Seeds/chemistry , Particle Size , Antineoplastic Agents/administration & dosage , Antineoplastic Agents/chemistry
2.
J Inorg Biochem ; 237: 112005, 2022 12.
Article in English | MEDLINE | ID: mdl-36155170

ABSTRACT

For the first time, we herein report on the syntheses of two new Ru(II)/bipyridine/phenanthroline complexes containing lapachol as ligand: complex (1), [Ru (bipy)2(Lap)]PF6 and complex (2), [Ru(Lap)(phen)2]PF6, where bipy = 2,2'-bipyridine and ph en = 1,10-phenanthroline; Lap = lapachol (2-hydroxy-3-(3-methylbut-2-en-1- yl)naphthalene-1,4-dione). The complexes were synthesized and characterized by elemental analyses, molar conductivity, mass spectrometry, ultraviolet-visible and infrared spectroscopies, nuclear magnetic resonance (1H, 13C), and single crystal X-ray diffraction, for complex (2). In addition, in vitro cytotoxicity was tested against six cancer cells: A549 (lung carcinoma); DU-145 (human prostate carcinoma); HepG2 (human hepatocellular carcinoma), PC-3 (human prostate adenocarcinoma); MDA-MB-231 (human breast adenocarcinoma); Caco-2 (human colorectal adenocarcinoma), and against two non-cancer cells, FGH (human gingival normal fibroblasts) and PNT-2 (prostate epithelial cells). Complex (1) was slightly more toxic and selective than complex (2) for all cell lines, except against the A549 cells, where (2) was more potent than complex (1). The complexes induced an increase in the reactive oxygen species, and the co-treatment with N-acetyl-L-cysteine remarkably suppressed the ROS generation and prevented the reduction of cell viability, suggesting that the cytotoxicity of the complexes is related to the ROS-mediated pathway. Further studies indicated that the complexes may bind to DNA via minor groove interaction. Our studies also revealed that free Lap induces gene mutations in Salmonella Typhimurium, nevertheless, the complexes demonstrated the absence of genotoxicity by the Ames test. The present study provides a relevant contribution to understanding the anti-cancer potential and genetic toxicological events of new ruthenium complexes containing the lapachol molecule as a ligand.


Subject(s)
Adenocarcinoma , Antineoplastic Agents , Carcinoma , Coordination Complexes , Ruthenium , Male , Humans , Phenanthrolines , Coordination Complexes/pharmacology , Coordination Complexes/chemistry , Reactive Oxygen Species/metabolism , Ligands , Caco-2 Cells , Ruthenium/chemistry , Antineoplastic Agents/chemistry , Cell Line, Tumor
3.
Planta Med ; 88(5): 405-415, 2022 Apr.
Article in English | MEDLINE | ID: mdl-33511621

ABSTRACT

Myrcia bella is a medicinal plant used for the treatment of diabetes, hemorrhages, and hypertension in Brazilian folk medicine. Considering that plant extracts are attractive sources of new drugs, the aim of the present study was to verify the influence of incorporating 70% hydroalcoholic of M. bella leaves in nanostructured lipid systems on the mutagenic and antifungal activities of the extract. In this work, we evaluated the antifungal potential of M. bella loaded on the microemulsion against Candida sp for minimum inhibitory concentration, using the microdilution technique. The system was composed of polyoxyethylene 20 cetyl ether and soybean phosphatidylcholine (10%), grape seed oil, cholesterol (10%: proportion 5/1), and purified water (80%). To investigate the mutagenic activity, the Ames test was used with the Salmonella Typhimurium tester strains. M. bella, either incorporated or free, showed an important antifungal effect against all tested strains. Moreover, the incorporation surprisingly inhibited the mutagenicity presented by the extract. The present study attests the antimicrobial properties of M. bella extract, contributing to the search for new natural products with biological activities and suggesting caution in its use for medicinal purposes. In addition, the results emphasize the importance of the use of nanotechnology associated with natural products as a strategy for the control of infections caused mainly by the genus Candida sp.


Subject(s)
Myrtaceae , Plants, Medicinal , Antifungal Agents/pharmacology , Mutagens , Plant Extracts/pharmacology
4.
Regul Toxicol Pharmacol ; 113: 104653, 2020 Jun.
Article in English | MEDLINE | ID: mdl-32268159

ABSTRACT

Considering the promising previous results of Cu (II) complexes with isoniazid active ligand against Mycobacterium tuberculosis, the main causative agent of tuberculosis, novel biological assays evaluating its toxicogenic potential were performed to ensure the safe use. The genotoxicity/mutagenicity of the complexes CuCl2(INH)2.H2O (I1), Cu(NCS)2(INH)2.5H2O (I2) and Cu(NCO)2(INH)2.4H2O (I3) was evaluated by the Comet, Micronucleus-cytome and Salmonella microsome (Ames test) assays. The cell viability using resazurin assay indicated that I1, I2 e I3 had moderate to low capacity to reduce the viability of colorectal cells (Caco-2), liver cells (HepG2), lung cells (GM 07492-A and A549) and endothelial cells (HU-VE-C). On genotoxicity/mutagenicity, I1 complex did not induce sizable levels of DNA damage in HepG2 cells (Comet assay), and gene (Ames test) and chromosomal (Micronucleus-cytome assay) mutations. Already, I2 and I3 complexes were considered mutagenic in the highest concentrations used. In light of the above, these results contribute to valuable data on the safe use of Cu(II) complexes. Considering the absence of mutagenicity and cytotoxicity of I1, this complex is a potential candidate for the development of a new drug to the treatment tuberculosis, while I2 and I3 require caution in its use.


Subject(s)
Antitubercular Agents/pharmacology , Coordination Complexes/pharmacology , Copper/pharmacology , Isoniazid/pharmacology , Mycobacterium tuberculosis/drug effects , A549 Cells , Antitubercular Agents/chemistry , Caco-2 Cells , Cell Survival/drug effects , Cells, Cultured , Coordination Complexes/chemistry , Copper/chemistry , Hep G2 Cells , Humans , Isoniazid/chemistry , Ligands , Microbial Sensitivity Tests , Molecular Conformation , Mutagenicity Tests , Mycobacterium tuberculosis/cytology
5.
Nat Prod Res ; 34(17): 2528-2532, 2020 Sep.
Article in English | MEDLINE | ID: mdl-30623721

ABSTRACT

Copaifera langsdorffii L. is one of the most known medicinal species in Brazil. Its leaves are rich in phenolic compounds with potential biological activities as an antioxidant and chelating agent. This paper reports the isolation of four compounds from the hydroalcoholic extract of the leaves of C. langsdorffii and the investigation of their possible cytoprotective effects against heavy metal poisoning. Quercitrin (1), afzelin (2), 3,5-di-O-(3-O-methyl galloyl) quinic acid (3) and 4,5-di-O-(3-O-methyl galloyl) quinic acid (4), were associated with toxic doses of methylmercury and lead and evaluated by Alamar blue cell viability assays in HepG2 and PC12. The compounds displayed significant cytoprotective effect for the HepG2 cell line against both metals. Compounds 1-4 did not protect PC12 cells against methylmercury induced-cytotoxicity, but at lower concentrations, they protected against lead induced-cytotoxicity. The evaluated compounds showed a promising cytoprotection effect against exposure to heavy metals and should be further investigated as protective agents.


Subject(s)
Fabaceae/chemistry , Heavy Metal Poisoning/drug therapy , Methylmercury Compounds/antagonists & inhibitors , Plant Extracts/pharmacology , Protective Agents/isolation & purification , Animals , Antioxidants , Brazil , Cell Line , Heavy Metal Poisoning/prevention & control , Humans , Lead/toxicity , Lead Poisoning/drug therapy , Lead Poisoning/prevention & control , Mannosides , Mercury Poisoning/drug therapy , Mercury Poisoning/prevention & control , Methylmercury Compounds/toxicity , Phenols , Plant Leaves/chemistry , Proanthocyanidins , Protective Agents/pharmacology , Quercetin/analogs & derivatives , Quinic Acid , Rats
6.
Food Chem Toxicol ; 136: 111047, 2020 Feb.
Article in English | MEDLINE | ID: mdl-31838189

ABSTRACT

Abnormal epigenetic alterations are one of the keystones of cancer development. Epigenetic targeting drugs have become a promising and effective cancer therapy strategy. However, due to the high toxicity and unclear mechanisms of action of these drugs, natural compounds that cause epigenetic modulation have also been studied. Sulforaphane (SFN) is a promising bioactive compound for epigenetic targeting therapy. In this study, we investigate the effects of SFN on gene expression and DNA methylation in human hepatocellular carcinoma cells (HepG2). Using high throughput technologies in combination with cell-based assays, we find SFN is a potent anticancer agent, as it induces DNA damage, mitotic spindle abnormalities followed by apoptosis and proliferation inhibition in HepG2 cells. Our results show the upregulation of DNA damage response and cell cycle checkpoint genes. Also, we find the downregulation of cellular pathways frequently overexpressed in human cancer. As expected, SFN exerts epigenetic modulation effects by inhibiting histone deacetylases (HDACs). SFN might affect the activity of oncogenic transcription factors through methylation of its binding sites motifs. Our findings offer insights into SFN chemopreventive molecular effects in HepG2 cells and highlight SFN as a valuable natural approach to cancer therapy for future investigation.


Subject(s)
DNA Damage/drug effects , DNA Methylation/drug effects , DNA/drug effects , Gene Expression Regulation, Neoplastic/drug effects , Gene Expression/drug effects , Isothiocyanates/pharmacology , Apoptosis/drug effects , Cell Proliferation/drug effects , Down-Regulation , G2 Phase Cell Cycle Checkpoints/drug effects , Hep G2 Cells , Humans , Signal Transduction/drug effects , Sulfoxides , Transcriptome/drug effects , Up-Regulation
7.
Bioorg Chem ; 85: 455-468, 2019 04.
Article in English | MEDLINE | ID: mdl-30776556

ABSTRACT

This study describes a series of newly synthesized phosphine/diimine ruthenium complexes containing the lawsone as bioligand with enhanced cytotoxicity against different cancer cells, and apoptosis induction in prostatic cancer cells DU-145. The complexes [Ru(law)(N-N)2]PF6 where N-N is 2,2'-bipyridine (1) or 1,10-phenanthroline (2) and [Ru(law)(dppm)(N-N)]PF6, where dppm means bis(diphenylphosphino)methane, N-N is 2,2'-bipyridine (3) or 1,10-phenanthroline (4), and law is lawsone, were synthesized and fully characterized by elemental analysis, molar conductivity, NMR, UV-vis, IR spectroscopies and cyclic voltammetry. The interaction of the complexes (1-4) with DNA was evaluated by circular dichroism, gel electrophoresis, and fluorescence, and the complexes presented interactions by the minor grooves DNA. The phosphinic series of complexes exhibited a remarkably broad spectrum of anticancer activity with approximately 34-fold higher than cisplatin and 5-fold higher than doxorubicin, inhibiting the growth of 3D tumor spheroids and the ability to retain the colony survival of DU-145 cells. Also, the complex (4) inhibits DU-145 cell adhesion and migration potential indicating antimetastatic properties. The mechanism of its anticancer activity was found to be related to increased reactive oxygen species (ROS) generation, increased the BAX/BCL-2 ratio and subsequent apoptosis induction. Overall, these findings suggested that the complex (4) could be a promising candidate for further evaluation as a chemotherapeutic agent in the prostate cancer treatment.


Subject(s)
Antineoplastic Agents/pharmacology , Coordination Complexes/pharmacology , Naphthoquinones/pharmacology , Spheroids, Cellular/drug effects , Animals , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/metabolism , Apoptosis/drug effects , Cattle , Cell Line, Tumor , Cell Movement/drug effects , Coordination Complexes/chemical synthesis , Coordination Complexes/metabolism , DNA/metabolism , Humans , Intercalating Agents/chemical synthesis , Intercalating Agents/metabolism , Intercalating Agents/pharmacology , Male , Naphthoquinones/chemical synthesis , Naphthoquinones/metabolism , Prostatic Neoplasms/drug therapy , Reactive Oxygen Species/metabolism , Ruthenium/chemistry
8.
J Med Microbiol ; 65(9): 937-950, 2016 Sep.
Article in English | MEDLINE | ID: mdl-27452156

ABSTRACT

Copaifera trapezifolia Hayne occurs in the Atlantic Rainforest, which is considered one of the most important and endangered tropical forests on the planet. Although literature works have described many Copaifera spp., their biological activities remain little known. In the present study, we aimed to evaluate (1) the potential of the hydroalcoholic extract from C. trapezifolia leaves (CTE) to act against the causative agents of tooth decay and apical periodontitis and (2) the cytotoxicity and mutagenicity of CTE to ensure that it is safe for subsequent application. Concerning the tested bacteria, the MIC and the minimum bactericidal concentration of CTE varied between 100 and 400 µg ml-1. The time-kill assay conducted at a CTE concentration of 100 µg ml-1 evidenced bactericidal activity against Porphyromonas gingivalis (ATCC 33277) and Peptostreptococcus micros (clinical isolate) within 72 h. CTE at 200 µg ml-1 inhibited Porphyromonas gingivalis and Peptostreptococcus micros biofilm formation by at least 50 %. A combination of CTE with chlorhexidine dichlorohydrate did not prompt any synergistic effects. The colony-forming assay conducted on V79 cells showed that CTE was cytotoxic at concentrations above 156 µg ml-1. CTE exerted mutagenic effect on V79 cells, but the micronucleus test conducted on Swiss mice and the Ames test did not reveal any mutagenicity. Therefore, the use of standardized and safe extracts could be an important strategy to develop novel oral care products with antibacterial action. These extracts could also serve as a source of compounds for the discovery of new promising biomolecules.


Subject(s)
Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/toxicity , Biological Products/pharmacology , Biological Products/toxicity , Fabaceae/chemistry , Plant Extracts/pharmacology , Plant Extracts/toxicity , Animals , Anti-Bacterial Agents/isolation & purification , Biofilms/drug effects , Cell Line , Cell Survival/drug effects , Cricetinae , Humans , Male , Mice , Microbial Sensitivity Tests , Microbial Viability/drug effects , Mutagenicity Tests , Peptostreptococcus/drug effects , Peptostreptococcus/physiology , Plant Extracts/isolation & purification , Plant Leaves/chemistry , Porphyromonas gingivalis/drug effects , Porphyromonas gingivalis/physiology
9.
Article in English | MEDLINE | ID: mdl-26994489

ABSTRACT

Tuberculosis is a top infectious disease killer worldwide, caused by the bacteria Mycobacterium tuberculosis. Increasing incidences of multiple drug-resistance (MDR) strains are emerging as one of the major public health threats. However, the drugs in use are still incapable of controlling the appalling upsurge of MDR. In recent years a marked number of research groups have devoted their attention toward the development of specific and cost-effective antimicrobial agents against targeted MDR-Tuberculosis. In previous studies, ruthenium(II) complexes (SCAR) have shown a promising activity against MDR-Tuberculosis although few studies have indeed considered ruthenium toxicity. Therefore, within the preclinical requirements, we have sought to determine the cyto-genotoxicity of three SCAR complexes in this present study. The treatment with the SCARs induced a concentration-dependent decrease in cell viability in CHO-K1 and HepG2 cells. Based on the clonogenic survival, SCAR 5 was found to be more cytotoxic while SCAR 6 exhibited selectivity action on tumor cells. Although SCAR 4 and 5 did not indicate any mutagenic activity as evidenced by the Ames and Cytokinesis block micronucleus cytome assays, the complex SCAR 6 was found to engender a frameshift mutation detected by Salmonella typhimurium in the presence of S9. Similarly, we observed a chromosomal damage in HepG2 cells with significant increases of micronuclei and nucleoplasmic bridges. These data indicate that SCAR 4 and 5 complexes did not show genotoxicity in our models while SCAR 6 was considered mutagenic. This study presented a comprehensive genotoxic evaluation of SCAR complexes were shown to be genotoxic in vitro. All in all, further studies are required to fully elucidate how the properties can affect human health.


Subject(s)
Antitubercular Agents/toxicity , Coordination Complexes/toxicity , Mutagens/toxicity , Ruthenium/toxicity , Animals , CHO Cells , Cricetulus , Cytokinesis/drug effects , Hep G2 Cells , Humans , Micronucleus Tests , Ruthenium/chemistry , Salmonella typhimurium/drug effects
10.
Regul Toxicol Pharmacol ; 72(3): 506-13, 2015 Aug.
Article in English | MEDLINE | ID: mdl-26002624

ABSTRACT

In the neotropical savannah, Astronium species are used in popular medicine to treat allergies, inflammation, diarrhea and ulcers. Given that natural products are promising starting points for the discovery of novel potentially therapeutic agents, the aim of the present study was to investigate the mutagenic and antimutagenic activities of hydroalcoholic extracts of Astronium spp. The mutagenicity was determined by the Ames test on Salmonella typhimurium strains TA98, TA97a, TA100 and TA102. The antimutagenicity was tested against the direct-acting and indirect-acting mutagens. The results showed that none of the extracts induce any increase in the number of revertants, demonstrating the absence of mutagenic activity. On the other hand, the results on the antimutagenic potential showed a moderate inhibitory effect against NPD and a strong protective effect against B[a]P and AFB1. This study highlights the importance of screening species of Astronium for new medicinal compounds. The promising results obtained open up new avenues for further study and provide a better understanding the mechanisms by which these species act in protecting DNA from damage. However, further pharmacological and toxicological investigations of crude extracts of Astronium spp., as well as of its secondary metabolites, are necessary to determine the mechanism(s) of action to guarantee their safer and more effective application to human health.


Subject(s)
Anacardiaceae , Antimutagenic Agents/pharmacology , Plant Extracts/pharmacology , Mutagenicity Tests , Mutagens/toxicity , Salmonella typhimurium/drug effects , Salmonella typhimurium/genetics
11.
Molecules ; 19(10): 16039-57, 2014 Oct 08.
Article in English | MEDLINE | ID: mdl-25299821

ABSTRACT

Caesalpinia ferrea Martius has traditionally been used in Brazil for many medicinal purposes, such as the treatment of bronchitis, diabetes and wounds. Despite its use as a medicinal plant, there is still no data regarding the genotoxic effect of the stem bark. This present work aims to assess the qualitative and quantitative profiles of the ethanolic extract from the stem bark of C. ferrea and to evaluate its mutagenic activity, using a Salmonella/microsome assay for this species. As a result, a total of twenty compounds were identified by Flow Injection Analysis Electrospray Ionization Ion Trap Mass Spectrometry (FIA-ESI-IT-MS/MSn) in the ethanolic extract from the stem bark of C. ferrea. Hydrolyzable tannins predominated, principally gallic acid derivatives. The HPLC-DAD method was developed for rapid quantification of six gallic acid compounds and ellagic acid derivatives. C. ferrea is widely used in Brazil, and the absence of any mutagenic effect in the Salmonella/microsome assay is important for pharmacological purposes and the safe use of this plant.


Subject(s)
Caesalpinia/chemistry , Mutagens/chemistry , Mutagens/pharmacology , Plant Bark/chemistry , Plant Extracts/chemistry , Plant Extracts/pharmacology , Plant Stems/chemistry , Molecular Structure
12.
BMC Complement Altern Med ; 14: 182, 2014 Jun 05.
Article in English | MEDLINE | ID: mdl-24898326

ABSTRACT

BACKGROUND: In various regions of Brazil, several species of the genus Byrsonima (Malpighiaceae) are widely used to treat gastrointestinal complications. This genus has about 150 species of shrubs and trees distributed over the entire Neotropical region. Various biological activities have been identified in these plants, especially antioxidant, antimicrobial and topical and systemic anti-inflammatory activities. The aim of this study was to investigate the mutagenicity and antimutagenicity of hydroalcoholic leaf extracts of six species of Byrsonima: B. verbascifolia, B. correifolia, B. coccolobifolia, B. ligustrifolia, B. fagifolia and B. intermedia by the Salmonella microsome assay (Ames test). METHODS: Mutagenic and antimutagenic activity was assessed by the Ames test, with the Salmonella typhimurium tester strains TA100, TA98, TA97a and TA102, with (+S9) and without (-S9) metabolization, by the preincubation method. RESULTS: Only B. coccolobifolia and B. ligustrifolia showed mutagenic activity. However, the extracts of B. verbascifolia, B. correifolia, B. fagifolia and B. intermedia were found to be strongly antimutagenic against at least one of the mutagens tested. CONCLUSIONS: These results contribute to valuable data on the safe use of medicinal plants and their potential chemopreventive effects. Considering the excellent antimutagenic activities extracted from B. verbascifolia, B. correifolia, B. fagifolia and B. intermedia, these extracts are good candidate sources of chemopreventive agents. However, B. coccolobifolia and B. ligustrifolia showed mutagenic activity, suggesting caution in their use.


Subject(s)
Antimutagenic Agents/analysis , Malpighiaceae/chemistry , Mutagens/analysis , Brazil , Plant Extracts/chemistry , Plant Leaves/chemistry , Plants , Plants, Medicinal/chemistry , Salmonella , Salmonella typhimurium
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