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◆ ACS infectious diseases2026-09-11

Second Generation of 2,2'-Di(indol-3-yl)ethanamines as Antileishmanial Agents: Phenotypic Hit Identification and Pharmacophore Studies.

Gian Marco Elisi, Antonio Gkoutzamanis, Sara Maestrini, Cécile Exertier, Michela Eleuteri, Marina Naldi, Alessia Peluso, Miriam Gómez-Benmansour, Aurora Diotallevi, Michele Verboni, Laura Goracci, Manuela Bartolini, Giovanni Bottegoni, Paula Kiuru, Andrea Ilari, Luca Galluzzi, Simone Lucarini

原始摘要(英文原文)· Original abstract
The urgent need for new antileishmanial drugs persists due to resistance and toxicity associated with current treatments. Although bisindoles represent a promising chemotype, our first-generation 2,2'-di(indol-3-yl)ethanamines, inspired by a natural marine alkaloid, displayed significant cytotoxicity despite potent activity against L. infantum. To address this limitation, we designed and synthesized a second-generation series in which the indole bromine substituents were removed, and N-methylation was prioritized as a strategy to mitigate cytotoxicity. Compounds 1e, 2b, 2f, 3d, and 3e emerged as promising hits, exhibiting potent activity against L. infantum promastigotes (IC50 = 0.6-3 μM) and markedly improved selectivity indices (SI = 11-66) in THP-1 cells. These compounds retained efficacy in an in vitro infection model, with 1e, 2b, and 2f displaying IC50 values below 10 μM against intracellular amastigotes. A pharmacophore model derived from URB1483 and 2f was generated to explore plausible mechanisms of action underlying the antileishmanial activity, with trypanothione reductase (TR) selected as a possible biological target. While compound 2f showed only weak inhibition (IC50 = 71 μM), this could provide a starting point for the structure-based design of future antileishmanial agents. Preliminary ADME-related evaluations of 1e and 2f revealed improved aqueous solubility, alongside favorable chemical and metabolic stability specifically for 1e. Consequently, while 2f could be a new hit for a still underexploited target, compound 1e emerges as the most balanced lead candidate for future development of antileishmanial derivatives.
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Second Generation of 2,2'-Di(indol-3-yl)ethanamines as Antileishmanial Agents: Phenotypic Hit Identification and Pharmacophore Studies. — 科研速览 Science Skim