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1.
Sci Rep ; 13(1): 10203, 2023 06 23.
Article in English | MEDLINE | ID: mdl-37353536

ABSTRACT

Assessing the in vitro toxicity of compounds on cell cultures is an important step during the screening of candidate molecules for diverse applications. Among the strategies employed to determine cytotoxicity, MTT, neutral red, and resazurin are commonly used. Methylene blue (MB), a phenothiazinium salt, has several uses, such as dye, redox indicator, and even as treatment for human disease and health conditions, such as malaria and methemoglobinemia. However, MB has only been sparsely used as a cellular toxicity indicator. As a viability indicator, MB is mostly applied to fixed cultures at high concentrations, especially when compared to MTT or neutral red. Here we show that MB and its related compounds new methylene blue (NMB), toluidine blue O (TBO), and dimethylmethylene blue (DMMB) can be used as cytotoxicity indicators in live (non-fixed) cells treated for 72 h with DMSO and cisplatin. We compared dye uptake between phenothiazinium dyes and neutral red by analyzing supernatant and cell content via visible spectra scanning and microscopy. All dyes showed a similar ability to assess cell toxicity compared to either MTT or neutral red. Our method represents a cost-effective alternative to in vitro cytotoxicity assays using cisplatin or DMSO, indicating the potential of phenothiazinium dyes for the screening of candidate drugs and other applications.


Subject(s)
Coloring Agents , Phenothiazines , Humans , Phenothiazines/pharmacology , Cisplatin/pharmacology , Neutral Red , Dimethyl Sulfoxide , Methylene Blue
2.
Sci Rep ; 10(1): 7483, 2020 05 04.
Article in English | MEDLINE | ID: mdl-32366934

ABSTRACT

Neospora caninum is an Apicomplexan parasite related to important losses in livestock, causing abortions and decreased fertility in affected cows. Several chemotherapeutic strategies have been developed for disease control; however, no commercial treatment is available. Among the candidate drugs against neosporosis, phenothiazinium dyes, offer a low cost-efficient approach to parasite control. We report the anti-parasitic effects of the phenothiaziums Methylene Blue (MB), New Methylene Blue (NMB), 1,9-Dimethyl Methylene Blue (DMMB) and Toluidine Blue O (TBO) on N. caninum, using in vitro and in vivo models. The dyes inhibited parasite proliferation at nanomolar concentrations (0.019-1.83 µM) and a synergistic effect was achieved when Methylene Blue was combined with New Methylene Blue (Combination Index = 0.84). Moreover, the phenothiazinium dyes improved parasite clearance when combined with Pyrimethamine (Pyr). Combination of Methylene Blue + 1,9-Dimethyl Methylene Blue demonstrated superior efficacy compared to Pyrimethamine based counterparts in an in vivo model of infection. We also observed that Methylene Blue, New Methylene Blue and 1,9-Dimethyl Methylene Blue increased by 5000% the reactive oxygen species (ROS) levels in N. caninum tachyzoites. Phenothiazinium dyes represent an accessible group of candidates with the potential to compound future formulations for neosporosis control.


Subject(s)
Coccidiosis , Methylene Blue/analogs & derivatives , Neospora/growth & development , Animals , Chlorocebus aethiops , Coccidiosis/drug therapy , Coccidiosis/metabolism , Male , Methylene Blue/pharmacology , Mice , Vero Cells
3.
Acta Parasitol ; 65(3): 599-609, 2020 Sep.
Article in English | MEDLINE | ID: mdl-32141022

ABSTRACT

BACKGROUND: Chagas disease or American trypanosomiasis is caused by the protozoan Trypanosoma cruzi and is endemic of the Americas. The control of the disease is restricted to toxic and potentially teratogenic drugs, which limit the use during pregnancy. The use of food supplementation offers a safe and low-cost form to alleviate Chagas disease symptoms, mostly in areas with alimentary risk. For example, zinc demonstrates positive effects in immune response, including in Chagas disease during pregnancy. PURPOSE: This study describes the innate response in pregnant rats chronically infected with T. cruzi and supplemented with zinc. METHODS: Pregnant female Wistar rats, infected with T. cruzi, were treated with 20 mg/kg/day zinc sulfate and euthanized on the 18th day. Samples (plasma, splenocytes, and peritoneal exudate) were collected and several immune parameters (nitric oxide, RT1B, CD80/CD86, MCP-1, CD11b/c, NK/NKT, IL-2, IL-10, INF-cc, and apoptosis) evaluated. RESULTS: Under Zinc supplementation and/or T. cruzi infection, the gestation developed normally. Several innate immune parameters such as RT1B, CD80/CD86, MCP-1 expressing lymphocytes, IL-2, and IL-17 were positively altered, whereas nitric oxide, CD11b/c, NK/NKT, apoptosis, INF-γ, and corticosterone demonstrated a pro-pregnancy pattern. CONCLUSION: Our results indicated that zinc has diverse effects on immune response during pregnancy. An anti-T. cruzi immunity, as well as a pro-gestation response, were observed after zinc supplementation. The complete comprehension of zinc supplementation in pregnancy will base an adequate strategy to alleviate Chagas disease symptoms and propagation, especially for populations from endemic areas.


Subject(s)
Chagas Disease/drug therapy , Chagas Disease/immunology , Dietary Supplements , Pregnancy Complications, Infectious/drug therapy , Trypanosoma cruzi/drug effects , Zinc/therapeutic use , Animals , Chronic Disease , Female , Pregnancy , Pregnancy Complications, Infectious/parasitology , Rats , Rats, Wistar
4.
Biomed Res Int ; 2019: 8301569, 2019.
Article in English | MEDLINE | ID: mdl-31355283

ABSTRACT

Chagas disease is a tropical illness caused by the protozoan Trypanosoma cruzi. The disease affects populations of the Americas and has been spread to other continents due to the migration process. The disease is partially controlled by two drugs, Benznidazole and Nifurtimox. These molecules are active in the acute phase of the infection but are usually ineffective during the symptomatic chronic phase. Several research groups have developed novel candidates to control Chagas disease; however, no novel commercial formulation is available. In this article, we described the anti-T. cruzi effects of phenothiazinium dyes in amastigote and trypomastigote forms of the parasite. Methylene Blue, New Methylene Blue, Toluidine Blue O, and 1,9-Dimethyl Methylene Blue inhibited the parasite proliferation at nanomolar concentrations and also demonstrated low toxicity in host cells. Moreover, combinations of phenothiazinium dyes indicated a synergic pattern against amastigotes compared to the Benznidazole counterparts. Phenothiazinium dyes levels of reactive oxygen species (ROS) and decreased the mitochondrial potential in trypomastigotes, indicating the mechanism of action of the dyes in T. cruzi. Our article offers a basis for future strategies for the control of Chagas disease using low-cost formulations, an important point for endemic underdeveloped regions.


Subject(s)
Cell Proliferation/drug effects , Chagas Disease/drug therapy , Phenothiazines/pharmacology , Trypanosoma cruzi/drug effects , Animals , Cell Line , Chagas Disease/parasitology , Coloring Agents/pharmacology , Humans , Methylene Blue/analogs & derivatives , Methylene Blue/pharmacology , Nifurtimox/pharmacology , Nitroimidazoles/pharmacology , Tolonium Chloride/pharmacology , Trypanocidal Agents/pharmacology , Trypanosoma cruzi/pathogenicity
5.
Vet Parasitol ; 249: 92-97, 2018 Jan 15.
Article in English | MEDLINE | ID: mdl-29279093

ABSTRACT

Neospora caninum is a member of Apicomplexa phylum, the causative agent of neosporosis. The neosporosis combat is not well established and several strategies related to vaccine, chemotherapy and immune modulation are under development. In this work, we evaluated the effects of artemisinin (Art), methylene blue (MB) and pyrimethamine (Pyr) alone or associated, on N. caninum proliferation and elimination using LacZ tagged tachyzoites. The reactive oxygen species (ROS) production after incubation with Art were also performed. Our results indicate that combinations of classical antimalarial drugs improve the parasite control, allowing the use of three drugs in a single dose. Additionally, artemisinin demonstrated distinct ROS production patterns in intra and extracellular N. caninum forms. The drug repurposing appears as a suitable approach, allowing a fast and safe method to evaluate old drugs but novel candidates against neosporosis.


Subject(s)
Antimalarials/pharmacology , Neospora/drug effects , Animals , Antimalarials/therapeutic use , Artemisinins/pharmacology , Artemisinins/therapeutic use , Chlorocebus aethiops , Coccidiosis/drug therapy , Drug Synergism , Drug Therapy, Combination/veterinary , In Vitro Techniques , Methylene Blue/pharmacology , Methylene Blue/therapeutic use , Pyrimethamine/pharmacology , Pyrimethamine/therapeutic use , Vero Cells
6.
Parasitology ; 144(6): 827-833, 2017 05.
Article in English | MEDLINE | ID: mdl-28073383

ABSTRACT

Neospora caninum is an apicomplexan parasite strongly related to reproductive problems in cattle. The neosporosis control is not well established and several fronts are under development, predominantly based on immune protection, immunomodulation and chemotherapy. The use of anti-malarial drugs as therapeutic sources has, in theory, considerable potential for any apicomplexan. Drugs such as methylene blue (MB) and pyrimethamine (Pyr) represent therapeutic options for malaria; thus, their use for neosporosis should be assessed. In this work, we tested the effects of MB and Pyr on N. caninum proliferation and clearance, using LacZ-tagged tachyzoites. The drugs inhibited at nanomolar dosages and its combination demonstrated an antagonistic interaction in proliferation assays, according to the Chou and Talalay method for drug combination index. However, the drug combination significantly improved the parasite in vitro clearance. The repositioning of well-established drugs opens a short-term strategy to obtain low-cost therapeutics approaches against neosporosis.


Subject(s)
Antimalarials/pharmacology , Coccidiosis/drug therapy , Enzyme Inhibitors/pharmacology , Methylene Blue/pharmacology , Neospora/drug effects , Pyrimethamine/pharmacology , Animals , Antimalarials/therapeutic use , Antimalarials/toxicity , Chlorocebus aethiops , Enzyme Inhibitors/therapeutic use , Enzyme Inhibitors/toxicity , Inhibitory Concentration 50 , Methylene Blue/therapeutic use , Methylene Blue/toxicity , Pyrimethamine/therapeutic use , Pyrimethamine/toxicity , Vero Cells/drug effects
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