高血压通过 RGS16/RhoA/ROCK 通路与增强的淋巴收缩反应相关。
Hypertension is linked to enhanced lymphatic contractile response via RGS16/RhoA/ROCK pathway.
机构信息
Laboratory of Veterinary Pharmacology, Faculty of Veterinary Medicine, Okayama University of Science, Imabari, Japan.
Department of Toxicology, Faculty of Veterinary Medicine, Okayama University of Science, Imabari, Japan.
出版信息
Am J Physiol Heart Circ Physiol. 2022 Dec 1;323(6):H1118-H1129. doi: 10.1152/ajpheart.00496.2022. Epub 2022 Oct 28.
Lymph capillary network can be expected to alter blood pressure via regulating interstitial electrolyte and volume balance. However, the pathophysiology of lymphatic vessel in hypertension is poorly understood. In this study, we examined lymph vessel function focusing on contractile response in hypertensive rats. It was found that thoracic ducts isolated from adult (10-14 wk old) spontaneously hypertensive rats (SHRs) exhibited increased agonist-mediated contraction compared with age-matched Wistar-Kyoto (WKY) rats, whereas lymphatic contractions in younger (4 wk old) SHRs, exhibiting normal blood pressure, were no different compared with age-matched control rats. Tight regulation of blood pressure with antihypertensive drugs (hydrochlorothiazide/hydralazine) did not prevent the augmented lymphatic contraction in adult SHRs; however, treatment of SHRs with angiotensin II (ANG II) type 1 receptor blocker (losartan) for 6 wk abolished the augmentation of lymphatic contractions. In addition, ANG II infusion in Wistar rat caused augmented lymphatic contractile responses in the thoracic duct. The augmented contractions in adult SHRs were diminished by a ROCK inhibitor (Y-27632). Consistently, the thoracic ducts in SHRs showed significantly higher phosphorylation of myosin phosphatase targeting protein-1 than WKY rats. Furthermore, gene expression profiling of adult SHR lymphatics showed marked loss of regulator of G-protein signaling 16 (RGS16) mRNA, which was confirmed by the real-time PCR. Treatment with the RGS inhibitor CCG-63808 enhanced contractions in thoracic ducts from Wistar rats, which were abolished by the ROCK inhibitor. It is concluded that lymphatic contractile function was enhanced in hypertensive model rats, which could be mediated by dysregulation of the ROCK pathway possibly through RGS16. Lymph capillary controls interstitial electrolyte and volume balance, which may blunt increased blood pressure. However, the function of lymphatic vessel in hypertension is poorly understood. Our study showed that the lymphatic smooth muscle contractility is hyperreactive in two different hypertensive models. The lymphatic dysfunction could be mediated by dysregulation of ROCK pathway possibly through RGS16. The present finding supports a new concept showing the functional relationship between lymphatic contractile activity and hypertension.
淋巴毛细管网络有望通过调节细胞外电解质和容量平衡来改变血压。然而,高血压中淋巴管的病理生理学尚不清楚。在这项研究中,我们检查了高血压大鼠的淋巴管功能,重点研究了收缩反应。结果发现,与年龄匹配的 Wistar-Kyoto (WKY) 大鼠相比,从成年(10-14 周龄)自发性高血压大鼠(SHR)分离的胸导管表现出增强的激动剂介导的收缩,而血压正常的年轻(4 周龄)SHR 的淋巴收缩与年龄匹配的对照大鼠没有不同。使用抗高血压药物(氢氯噻嗪/肼屈嗪)严格控制血压并不能预防成年 SHR 中增强的淋巴收缩;然而,用血管紧张素 II (ANG II) 1 型受体阻滞剂(洛沙坦)治疗 SHR 6 周可消除淋巴收缩的增强。此外,在 Wistar 大鼠中输注 ANG II 可引起胸导管中淋巴收缩的增强。在成年 SHR 中,ROCK 抑制剂(Y-27632)可减弱增强的收缩反应。一致地,SHR 的胸导管显示肌球蛋白磷酸酶靶向蛋白-1 的磷酸化明显高于 WKY 大鼠。此外,成年 SHR 淋巴管的基因表达谱显示调节 G 蛋白信号转导 16(RGS16)mRNA 的显著丢失,这通过实时 PCR 得到证实。用 RGS 抑制剂 CCG-63808 处理可增强 Wistar 大鼠胸导管的收缩,而 ROCK 抑制剂可消除这种收缩。结论是,高血压模型大鼠的淋巴收缩功能增强,这可能是通过 ROCK 途径的失调介导的,可能是通过 RGS16。淋巴毛细管控制细胞外电解质和容量平衡,这可能会减轻血压升高。然而,高血压中淋巴管的功能尚不清楚。我们的研究表明,两种不同的高血压模型中,淋巴平滑肌的收缩反应性增强。淋巴功能障碍可能是通过 ROCK 途径的失调介导的,可能是通过 RGS16。目前的发现支持了一个新的概念,即表明了淋巴收缩活性与高血压之间的功能关系。