首页> 外文期刊>Frontiers in Pharmacology >Deciphering the Mechanism of Bushen Huoxue Decotion on Decidualization by Intervening Autophagy via AMPK/mTOR/ULK1: A Novel Discovery for URSA Treatment
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Deciphering the Mechanism of Bushen Huoxue Decotion on Decidualization by Intervening Autophagy via AMPK/mTOR/ULK1: A Novel Discovery for URSA Treatment

机译:通过 AMPK / MTOR / ULK1来解读丛林Huoxue脱离对蜕皮病的机制:AMPK / MTOR / ULK1:URSA治疗的新发现

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Impaired decidualization was recognized as one of the crucial pathomechanisms accounting for unexplained recurrent spontaneous abortion (URSA). Currently, the exact molecular mechanism and targeted clinical decision are still in exploration. Bushen Huoxue decoction (BSHXD) has previously been proved effective in treating URSA, but its mechanism remains to be elucidated. This study aimed to explore the regulation mechanism of BSHXD in decidualization from its intervention in autophagy so as to rationalize its potential as a novel therapeutic regime for URSA. Decidua tissues were collected from patients with URSA and healthy pregnant women who underwent legal terminations for non-medical reasons at the first trimester. Besides, cell line T-hESCs was utilized to establish induced decidualization model, and were randomly divided into ESC group, DSC group, 3-MA group, AMPK siRNA group, scrambled siRNA group and AMPK siRNA + BSHXD group. Transmission electron microscopy, Monodansylcadaverine (MDC) assay, qRT-PCR, immunohistochemistry, immunofluorescence and Western blotting were used to evaluate the level of decidualization, autophagy and activation of AMPK signaling pathway in decidua tissues and cell experiments. Experiments on decidua tissues showed that decidualization was impaired in URSA with inhibited autophagy. Besides, pAMPK T172 and pULK1 S556 were decreased, and pmTOR S2448 and pULK1 S757 were increased. Cell experiments showed that the level of autophagy increased during induced decidualization, but when autophagy was inhibited, decidualization was impaired. In addition, AMPK/mTOR/ULK1 affected decidualization by mediating autophagy, and BSHXD improved decidualization through this mechanism. In conclusion, this study clarified that the inhibition of autophagy mediated by AMPK/mTOR/ULK1 was associated with impaired decidualization, and the intervention of BSHXD on this pathological process may be a vital mechanism for its treatment of URSA. This study laid the foundation for further research and application of BSHXD.
机译:被损害的蜕皮病被认为是关键的土地机制之一,核算不明显的经常性自发性流产(URSA)。目前,确切的分子机制和有针对性的临床决策仍在勘探中。之前已被证明有效地治疗URSA,但其机制仍有待阐明的是有效的。该研究旨在探讨BSHXD在自噬中的干预中丧生化的调控机制,以合理化其作为URSA新型治疗制度的潜力。从Ursa和健康孕妇的患者中收集DeCidua组织,他们在第一个三个月的非医疗原因接受了法律终止。此外,利用细胞系T-HESC来建立诱导的Drocualization模型,并随机分为ESC组,DSC组,3-MA组,AMPK siRNA组,加扰SiRNA组和AMPK siRNA + BSHXD组。透射电子显微镜,单曲囊碳酰胺(MDC)测定,QRT-PCR,免疫组化,免疫荧光和蛋白质印迹用于评估DeCidua组织和细胞实验中AMPK信号传导途径的丧失化,自噬和活化水平。对DeCidua组织的实验表明,在荨麻疹中抑制的自噬障碍受到丧生。此外,PAMPK T172和PULK1 S556降低,并且PMTOR S2448和PULK1 S757增加。细胞实验表明,诱导蜕皮病期间自噬水平增加,但当抑制自噬时,削减蜕皮病。此外,AMPK / MTOR / ULK1通过调解自噬影响,BSHXD通过这种机制改善了DeCanualization。总之,本研究澄清说,随着AMPK / MTOR / ULK1介导的自噬抑制与减少的携带障碍有关,BSHXD对该病理过程的干预可能是其治疗URSA的重要机制。本研究为BSHXD的进一步研究和应用奠定了基础。

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