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复制性内皮细胞衰老可能通过增加氧化应激诱导的 BH2/BH4 比值、减少 BH4 可用性以及降低 eNOS 的表达导致内皮功能障碍。

Replicative Endothelial Cell Senescence May Lead to Endothelial Dysfunction by Increasing the BH2/BH4 Ratio Induced by Oxidative Stress, Reducing BH4 Availability, and Decreasing the Expression of eNOS.

机构信息

Unidad Mixta de Investigación Cardiovascular Universidad Francisco de Vitoria, Hospital Universitario Ramón y Cajal (IRYCIS), 28034 Madrid, Spain.

Centro de Investigación Biomédica en Red de Enfermedades Cardiovasculares (CIBERCV), Instituto de Salud Carlos III (ISCIII), 28029 Madrid, Spain.

出版信息

Int J Mol Sci. 2024 Sep 13;25(18):9890. doi: 10.3390/ijms25189890.

Abstract

Vascular aging is associated with the development of cardiovascular complications, in which endothelial cell senescence (ES) may play a critical role. Nitric oxide (NO) prevents human ES through inhibition of oxidative stress, and inflammatory signaling by mechanisms yet to be elucidated. Endothelial cells undergo an irreversible growth arrest and alter their functional state after a finite number of divisions, a phenomenon called replicative senescence. We assessed the contribution of NO during replicative senescence of human aortic (HAEC) and coronary (CAEC) endothelial cells, in which accumulation of the senescence marker SA-β-Gal was quantified by β-galactosidase staining on cultured cells. We found a negative correlation in passaged cell cultures from P0 to P12, between a reduction in NO production with increased ES and the formation of reactive oxygen (ROS) and nitrogen (ONOO) species, indicative of oxidative and nitrosative stress. The effect of ES was evidenced by reduced expression of endothelial Nitric Oxide Synthase (eNOS), Interleukin Linked Kinase (ILK), and Heat shock protein 90 (Hsp90), alongside a significant increase in the BH2/BH4 ratio, inducing the uncoupling of eNOS, favoring the production of superoxide and peroxynitrite species, and fostering an inflammatory environment, as confirmed by the levels of Cyclophilin A (CypA) and its receptor Extracellular Matrix Metalloprotease Inducer (EMMPRIN). NO prevents ES by preventing the uncoupling of eNOS, in which oxidation of BH4, which plays a key role in eNOS producing NO, may play a critical role in launching the release of free radical species, triggering an aging-related inflammatory response.

摘要

血管老化与心血管并发症的发展有关,其中内皮细胞衰老(ES)可能起着关键作用。一氧化氮(NO)通过抑制氧化应激和炎症信号转导来防止人类 ES,但其具体机制尚不清楚。内皮细胞在经历有限次数的分裂后会发生不可逆的生长停滞,并改变其功能状态,这一现象称为复制性衰老。我们评估了 NO 在人主动脉(HAEC)和冠状动脉(CAEC)内皮细胞复制性衰老过程中的作用,通过β-半乳糖苷酶染色对培养细胞中的衰老标志物 SA-β-Gal 进行定量。我们发现,在从 P0 到 P12 的传代细胞培养物中,NO 产生减少与 ES 增加之间存在负相关,同时活性氧(ROS)和活性氮(ONOO)的形成也增加,这表明存在氧化和硝化应激。ES 的作用表现为内皮型一氧化氮合酶(eNOS)、白细胞介素连接激酶(ILK)和热休克蛋白 90(Hsp90)的表达减少,同时 BH2/BH4 比值显著增加,导致 eNOS 解偶联,有利于超氧化物和过氧亚硝酸盐的产生,并促进炎症环境的形成,这一点得到环孢素 A(CypA)及其受体细胞外基质金属蛋白酶诱导物(EMMPRIN)水平的证实。NO 通过防止 eNOS 解偶联来预防 ES,其中 BH4 的氧化可能在引发自由基释放、触发与衰老相关的炎症反应中发挥关键作用,BH4 在 eNOS 产生 NO 中起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5afc/11432946/e98bbc1096c5/ijms-25-09890-g001.jpg

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