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Imidazothiazole Derivatives Exhibited Potent Effects against Brain-Eating Amoebae
Ruqaiyyah Siddiqui1,2, Mohammed I El-Gamal3,4,5, Anania Boghossian1
1College of Arts and Sciences, American University of Sharjah, Sharjah 26666, United Arab Emirates.
Abstract:
Naegleria fowleri (N. fowleri) is a free-living, unicellular, opportunistic protist responsible for the fatal central nervous system infection, primary amoebic meningoencephalitis (PAM). Given the increase in temperatures due to global warming and climate change, it is estimated that the cases of PAM are on the rise. However, there is a current lack of awareness and effective drugs, meaning there is an urgent need to develop new therapeutic drugs. In this study, the target compounds were synthesized and tested for their anti-amoebic properties against N. fowleri. Most compounds exhibited significant amoebicidal effects against N. fowleri; for example, 1h, 1j, and 1q reduced N. fowleri's viability to 15.14%, 17.45% and 28.78%, respectively. Furthermore, the majority of the compounds showed reductions in amoeba-mediated host death. Of interest are the compounds 1f, 1k, and 1v, as they were capable of reducing the amoeba-mediated host cell death to 52.3%, 51%, and 56.9% from 100%, respectively. Additionally, these compounds exhibit amoebicidal properties as well; they were found to decrease N. fowleri's viability to 26.41%, 27.39%, and 24.13% from 100%, respectively. Moreover, the MIC50 values for 1e, 1f, and 1h were determined to be 48.45 µM, 60.87 µM, and 50.96 µM, respectively. Additionally, the majority of compounds were found to exhibit limited cytotoxicity, except for 1l, 1o, 1p, 1m, 1c, 1b, 1zb, 1z, 1y, and 1x, which exhibited negligible toxicity. It is anticipated that these compounds may be developed further as effective treatments against these devastating infections due to brain-eating amoebae.
Insights
New drug compounds show promise in combating the brain-eating amoeba, Naegleria fowleri (N. fowleri). These compounds effectively reduce amoeba viability and host cell death, offering hope for treating primary amoebic meningoencephalitis (PAM).
Area of Science:
- Parasitology
- Medicinal Chemistry
- Neuroscience
Background:
- Naegleria fowleri (N. fowleri) causes fatal primary amoebic meningoencephalitis (PAM).
- Climate change is increasing the risk of N. fowleri infections.
- There is an urgent need for new therapeutic drugs due to limited treatment options.
Purpose of the Study:
- To synthesize novel compounds and evaluate their anti-amoebic properties against N. fowleri.
- To identify compounds effective in reducing N. fowleri viability and host cell death.
Main Methods:
- Synthesis of target chemical compounds.
- In vitro testing of compounds against N. fowleri.
- Assessment of amoebicidal activity and host cell death reduction.
- Determination of minimum inhibitory concentration (MIC50) and cytotoxicity.
Main Results:
- Several compounds demonstrated significant amoebicidal effects, reducing N. fowleri viability.
- Compounds 1f, 1k, and 1v notably reduced amoeba-mediated host cell death.
- MIC50 values were determined for promising compounds, indicating potency.
- Most synthesized compounds exhibited limited cytotoxicity.
Conclusions:
- The synthesized compounds show significant potential as therapeutic agents against N. fowleri.
- Further development of these compounds could lead to effective treatments for PAM.
- The study addresses the critical need for new drugs against brain-eating amoeba infections.
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