Structure–Activity Relationship Studies of Antimalarial Plasmodium Proteasome InhibitorsPart II
收藏Figshare2023-01-11 更新2026-04-28 收录
下载链接:
https://figshare.com/articles/dataset/Structure_Activity_Relationship_Studies_of_Antimalarial_i_Plasmodium_i_Proteasome_Inhibitors_Part_II/21866152
下载链接
链接失效反馈官方服务:
资源简介:
With increasing reports of resistance to artemisinins and artemisinin-combination therapies, targeting the Plasmodium proteasome is a promising strategy for antimalarial development. We recently reported a highly selective Plasmodium falciparum proteasome inhibitor with anti-malarial activity in the humanized mouse model. To balance the permeability of the series of macrocycles with other drug-like properties, we conducted further structure–activity relationship studies on a biphenyl ether-tethered macrocyclic scaffold. Extensive SAR studies around the P1, P3, and P5 groups and peptide backbone identified compound TDI-8414. TDI-8414 showed nanomolar antiparasitic activity, no toxicity to HepG2 cells, high selectivity against the Plasmodium proteasome over the human constitutive proteasome and immunoproteasome, improved solubility and PAMPA permeability, and enhanced metabolic stability in microsomes and plasma of both humans and mice.
创建时间:
2023-01-11



