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内皮型一氧化氮合酶基因敲除小鼠的基础血管平滑肌细胞张力可通过周期性拉伸逆转且与年龄无关。

Basal Vascular Smooth Muscle Cell Tone in eNOS Knockout Mice Can Be Reversed by Cyclic Stretch and Is Independent of Age.

作者信息

De Moudt Sofie, Hendrickx Jhana O, De Meyer Guido R Y, Martinet Wim, Fransen Paul

机构信息

Laboratory of Physiopharmacology, University of Antwerp, Antwerp, Belgium.

出版信息

Front Physiol. 2022 Apr 28;13:882527. doi: 10.3389/fphys.2022.882527. eCollection 2022.

Abstract

Endothelial nitric oxide synthase (eNOS) knockout mice develop pronounced cardiovascular disease. In the present study, we describe the alterations in aortic physiology and biomechanics of eNOS knockout and C57Bl/6 control mice at 2-12 months of age, including a thorough physiological investigation of age and cyclic stretch-dependent VSMC contractility and aortic stiffness. Peripheral blood pressure and aortic pulse wave velocity were measured , and aortic biomechanical studies and isometric contractions were investigated . Age-dependent progression of aortic stiffness, peripheral hypertension, and aortic contractility in eNOS knockout mice was absent, attenuated, or similar to C57Bl/6 control mice. Voltage-gated calcium channel (VGCC)-dependent calcium influx inversely affected isometric contraction and aortic stiffening by α-adrenergic stimulation in eNOS knockout mice. Baseline aortic stiffness was selectively reduced in eNOS knockout mice after cyclic stretch exposure in an amplitude-dependent manner, which prompted us to investigate cyclic stretch dependent regulation of aortic contractility and stiffness. Aortic stiffness, both in baseline conditions and after activation of vascular smooth muscle cell (VSMC) contraction, was reduced with increasing cyclic stretch amplitude. This cyclic stretch dependency was attenuated with age, although aged eNOS knockout mice displayed better preservation of cyclic stretch-dependency compared to C57Bl/6 control mice. Store operated calcium entry-medicated aortic stiffening as induced by inhibiting sarcoplasmic reticulum calcium ATPase pumps with 10 µM CPA was most pronounced in the aorta of aged mice and at low cyclic stretch amplitude, but independent of eNOS. Basal aortic tonus and VSMC depolarization were highly dependent on eNOS, and were most pronounced at low cyclic stretch, with attenuation at increasing cyclic stretch amplitude. eNOS knockout mice display attenuated progression of arterial disease as compared to C57Bl/6 control mice. Basal VSMC tone in eNOS knockout mice could be reduced by exposure to cyclic stretch through stretch-dependent regulation of cytosolic calcium. Both baseline and active aortic stiffness were highly dependent on cyclic stretch regulation, which was more pronounced in young versus aged mice. Other mediators of VSMC contraction and calcium handling were dependent on cyclic stretch mechanotransduction, but independent of eNOS.

摘要

内皮型一氧化氮合酶(eNOS)基因敲除小鼠会发展出明显的心血管疾病。在本研究中,我们描述了2至12月龄的eNOS基因敲除小鼠和C57Bl/6对照小鼠主动脉生理和生物力学的改变,包括对年龄以及循环拉伸依赖性血管平滑肌细胞(VSMC)收缩性和主动脉僵硬度的全面生理研究。测量了外周血压和主动脉脉搏波速度,并进行了主动脉生物力学研究和等长收缩研究。eNOS基因敲除小鼠中主动脉僵硬度、外周高血压和主动脉收缩性的年龄依赖性进展不存在、减弱或与C57Bl/6对照小鼠相似。在eNOS基因敲除小鼠中,电压门控钙通道(VGCC)依赖性钙内流通过α-肾上腺素能刺激反向影响等长收缩和主动脉硬化。在循环拉伸暴露后,eNOS基因敲除小鼠的基线主动脉僵硬度以振幅依赖性方式选择性降低,这促使我们研究循环拉伸对主动脉收缩性和僵硬度的依赖性调节。随着循环拉伸幅度增加,无论是在基线条件下还是在血管平滑肌细胞(VSMC)收缩激活后,主动脉僵硬度均降低。这种循环拉伸依赖性随年龄减弱,尽管与C57Bl/6对照小鼠相比,老年eNOS基因敲除小鼠对循环拉伸依赖性的保留更好。用10µM环磷酰胺(CPA)抑制肌浆网钙ATP酶泵诱导的储存性钙内流介导的主动脉硬化在老年小鼠的主动脉中最为明显,且在低循环拉伸幅度时出现,但与eNOS无关。基础主动脉张力和VSMC去极化高度依赖于eNOS,且在低循环拉伸时最为明显,随着循环拉伸幅度增加而减弱。与C57Bl/6对照小鼠相比,eNOS基因敲除小鼠的动脉疾病进展减弱。通过对细胞溶质钙的拉伸依赖性调节,暴露于循环拉伸可降低eNOS基因敲除小鼠的基础VSMC张力。基线和主动主动脉僵硬度均高度依赖于循环拉伸调节,这在年轻小鼠与老年小鼠中更为明显。VSMC收缩和钙处理的其他介质依赖于循环拉伸机械转导,但与eNOS无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16f5/9096105/c6ccb93e765a/fphys-13-882527-g001.jpg

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