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AMPK 在肺动脉高压中的作用及其机制。

The role and mechanism of AMPK in pulmonary hypertension.

机构信息

Department of Pulmonary and Critical Care Medicine, The First Affiliated Hospital of Kunming Medical University, Kunming, China.

Class Three & Class Eight, 2021Clinical Medicine, Kunming Medical University, Kunming, China.

出版信息

Ther Adv Respir Dis. 2024 Jan-Dec;18:17534666241271990. doi: 10.1177/17534666241271990.

Abstract

Pulmonary hypertension (PH) is a chronic progressive disease with high mortality. There has been more and more research focusing on the role of AMPK in PH. AMPK consists of three subunits-α, β, and γ. The crosstalk among these subunits ultimately leads to a delicate balance to affect PH, which results in conflicting conclusions about the role of AMPK in PH. It is still unclear how these subunits interfere with each other and achieve balance to improve or deteriorate PH. Several signaling pathways are related to AMPK in the treatment of PH, including AMPK/eNOS/NO pathway, Nox4/mTORC2/AMPK pathway, AMPK/BMP/Smad pathway, and SIRT3-AMPK pathway. Among these pathways, the role and mechanism of AMPK/eNOS/NO and Nox4/mTORC2/AMPK pathways are clearer than others, while the SIRT3-AMPK pathway remains still unclear in the treatment of PH. There are drugs targeting AMPK to improve PH, such as metformin (MET), MET combination, and rhodiola extract. In addition, several novel factors target AMPK for improving PH, such as ADAMTS8, TUFM, and Salt-inducible kinases. However, more researches are needed to explore the specific AMPK signaling pathways involved in these novel factors in the future. In conclusion, AMPK plays an important role in PH.

摘要

肺动脉高压(PH)是一种慢性进行性疾病,死亡率很高。越来越多的研究聚焦于 AMPK 在 PH 中的作用。AMPK 由三个亚基-α、β和γ组成。这些亚基之间的串扰最终导致微妙的平衡,影响 PH,这导致了关于 AMPK 在 PH 中作用的相互矛盾的结论。这些亚基如何相互干扰并达到平衡以改善或恶化 PH 仍不清楚。在 PH 的治疗中,有几种信号通路与 AMPK 有关,包括 AMPK/eNOS/NO 通路、Nox4/mTORC2/AMPK 通路、AMPK/BMP/Smad 通路和 SIRT3-AMPK 通路。在这些通路中,AMPK/eNOS/NO 和 Nox4/mTORC2/AMPK 通路的作用和机制比其他通路更为清晰,而 SIRT3-AMPK 通路在 PH 的治疗中仍然不清楚。有一些针对 AMPK 的药物可以改善 PH,如二甲双胍(MET)、MET 联合用药和红景天提取物。此外,还有一些针对 AMPK 的新型因子可以改善 PH,如 ADAMTS8、TUFM 和 Salt-inducible kinases。然而,未来还需要更多的研究来探索这些新型因子中涉及的特定 AMPK 信号通路。总之,AMPK 在 PH 中发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92a8/11322949/c86027e0677f/10.1177_17534666241271990-fig1.jpg

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