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February 12, 2026Journal of Medicinal Chemistry0 citations

Design, Synthesis, and Mechanistic Evaluation of l -Theanine Derivatives Targeting Cathepsin D for Anti-Hepatic Fibrosis

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MLMiao LvSGSimin GuoCHCongying Huang

Key Points

  • The aim was to evaluate the antifibrotic potential of L-theanine derivatives, particularly compound 9a, against hepatic fibrosis.
  • Synthesize 40 derivatives of L-theanine through structural modification.
  • Perform in vitro experiments to assess the effect of compound 9a on TGFβ1-induced hepatic stellate cell activation.
  • Utilize rat bile duct ligation and mouse methionine-choline-deficient high-fat diet models to study hepatic fibrosis.
  • Conduct mechanistic investigations to analyze interactions between compound 9a and Cathepsin D.
  • Conduct pharmacokinetic studies to examine the metabolic conversion of compound 9a.
  • Compound 9a was identified as a potent antifibrotic agent.
  • It dose-dependently inhibited TGFβ1-induced activation of hepatic stellate cells.
  • In animal models, compound 9a significantly reduced liver injury, fibrosis, and inflammation.
  • Mechanistic studies revealed that 9a interacts with Cathepsin D, promoting its degradation and reducing fibrogenic gene expression.

Abstract

Hepatic fibrosis represents a major global public health challenge, yet effective therapeutic interventions remain limited. In this study, we synthesized 40 derivatives through systematic structural modification of l-theanine and identified compound 9a was a potent antifibrotic agent. In vitro experiments revealed that compound 9a dose-dependently inhibited TGFβ1-induced activation of hepatic stellate cells (LX-2 and mHSC). Moreover, in both rat bile duct ligation (BDL) and mouse methionine-choline-deficient high-fat diet (CDAHFD) induced liver fibrosis models, compound 9a significantly attenuated hepatic injury, fibrosis, and inflammation, demonstrating robust hepatoprotective effects. Mechanistic investigations showed that compound 9a directly interacts with Cathepsin D and promotes its degradation, thereby suppressing the expression of fibrogenic and inflammatory genes. Pharmacokinetic studies demonstrated that compound 9a undergoes metabolic conversion to yield pharmacologically active metabolites 10 and 11c. Collectively, these results highlight compound 9a as a promising l-theanine-based candidate for the treatment of hepatic fibrosis.

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Cite This Study

Lv et al. (2026) studied this question.

synapsesocial.com/papers/698d6d445be6419ac0d52312https://doi.org/10.1021/acs.jmedchem.5c03096
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