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The current drug discovery landscape for trypanosomiasis and leishmaniasis: Challenges and strategies to identify drug targets. | LitMetric

AI Article Synopsis

  • Human trypanosomiasis and leishmaniasis, caused by the parasites Trypanosoma spp. and Leishmania spp., have become global health threats due to migration, climate change, and environmental factors.
  • The current treatments are ineffective and face rising drug resistance, highlighting an urgent need for new drug development.
  • Advances in genomic sequencing, CRISPR technology, and imaging techniques are paving the way for improved target-based drug discovery, although significant biological and pharmacological challenges remain.

Article Abstract

Human trypanosomiasis and leishmaniasis are vector-borne neglected tropical diseases caused by infection with the protozoan parasites Trypanosoma spp. and Leishmania spp., respectively. Once restricted to endemic areas, these diseases are now distributed worldwide due to human migration, climate change, and anthropogenic disturbance, causing significant health and economic burden globally. The current chemotherapy used to treat these diseases has limited efficacy, and drug resistance is spreading. Hence, new drugs are urgently needed. Phenotypic compound screenings have prevailed as the leading method to discover new drug candidates against these diseases. However, the publication of the complete genome sequences of multiple strains, advances in the application of CRISPR/Cas9 technology, and in vivo bioluminescence-based imaging have set the stage for advancing target-based drug discovery. This review analyses the limitations of the narrow pool of available drugs presently used for treating these diseases. It describes the current drug-based clinical trials highlighting the most promising leads. Furthermore, the review presents a focused discussion on the most important biological and pharmacological challenges that target-based drug discovery programs must overcome to advance drug candidates. Finally, it examines the advantages and limitations of modern research tools designed to identify and validate essential genes as drug targets, including genomic editing applications and in vivo imaging.

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Source
http://dx.doi.org/10.1002/ddr.21664DOI Listing

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