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Oleanolic Acid-amino Acids Derivatives: Design Synthesis and Hepatoprotective Evaluation In Vitro and In Vivo

机译:齐墩果酸-氨基酸衍生物:体内和体外的设计合成和保肝评价

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摘要

Activated hepatic stellate cells (HSCs) are the main extracellular matrix (ECM)-producing cells in the injured liver and the key mediators of liver fibrosis; they also promote the progression of hepatocellular carcinoma (HCC). In the acidic extracellular microenvironment of HCC, HSCs are activated to promote the migration of HCC cells. It is worth attempting to alter the weak acidic microenvironment to promote activated HSC apoptosis to treat liver fibrosis and liver cancer. In the present study, a series of novel OA-amino acids analogues were designed and synthesized to introduce different amino acids in the 3-hydroxyl of OA using the ester condensation reaction to enhance hydrophilicity, alkalinity, and biological activity. We found that OA-lysine derivative (>3g) could improve the hydrophilic of OA and induce HSCs apoptosis via inducing MMP depolarization and increasing intracellular Ca2+ levels. Additionally, >3g displayed a better hepatoprotective effect than OA (20 mg/kg, intragastric administration) against the acute liver injury induced by carbon tetrachloride (CCl4) in mice. The results suggested that basic amino acids (lysine) could effectively enhance OA’s hydrophilicity, alkalinity, and hepatoprotective activity in vitro and in vivo, which might be likely associated with increasing bioavailability and altering an extracellular weak acidic microenvironment with further verification. Therefore, the OA-lysine derivative (>3g) has the potential to be developed as an agent with hepatoprotective activity.
机译:活化的肝星状细胞(HSC)是受伤肝脏中主要的细胞外基质(ECM)产生细胞,也是肝纤维化的关键介质。它们还促进肝细胞癌(HCC)的进展。在HCC的酸性细胞外微环境中,HSC被激活以促进HCC细胞的迁移。值得尝试改变弱酸性微环境以促进活化的HSC凋亡以治疗肝纤维化和肝癌。在本研究中,设计并合成了一系列新颖的OA-氨基酸类似物,以利用酯缩合反应增强亲水性,碱度和生物活性,在OA的3-羟基中引入不同的氨基酸。我们发现,OA-赖氨酸衍生物(> 3g )可以通过诱导MMP去极化和增加细胞内Ca 2 + 水平来改善OA的亲水性并诱导HSCs凋亡。此外,> 3g 对四氯化碳(CCl4)诱导的小鼠急性肝损伤显示出比OA(20 mg / kg,胃内给药)更好的肝保护作用。结果表明,碱性氨基酸(赖氨酸)可以有效增强OA在体内外的亲水性,碱度和保肝活性,这可能与增加生物利用度和改变细胞外弱酸性微环境有关,需要进一步验证。因此,OA-赖氨酸衍生物(> 3g )有可能被开发为具有保肝活性的药物。

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