血管紧张素(1-7)通过抑制中电导钙激活钾离子通道蛋白表达参与肾脏纤维化

许石 刘耀浩 王丽萍

解剖学报 ›› 2019, Vol. 50 ›› Issue (4) : 512-516.

PDF(5460 KB)
欢迎访问《解剖学报》官方网站!今天是 English
PDF(5460 KB)
解剖学报 ›› 2019, Vol. 50 ›› Issue (4) : 512-516. DOI: 10.16098/j.issn.0529-1356.2019.04.018
组织学胚胎学发育生物学

血管紧张素(1-7)通过抑制中电导钙激活钾离子通道蛋白表达参与肾脏纤维化

  • 许石 刘耀浩 王丽萍*
作者信息 +

Angiotensin (1-7) participating in renal fibrosis by inhibiting intermediate conductance Ca2+ -activated K+ channels protein expression

  •  XU Shi LIU Yao-hao WANG Li-ping*
Author information +
文章历史 +

摘要

目的 探讨血管紧张素(Ang)(1-7)在肾纤维化过程中的保护作用与中电导钙激活钾离子通道(KCa3.1)的关系。 方法 60只雄性小鼠随机分为5组:对照组 (WT);血管紧张素Ⅱ(Ang Ⅱ)组:皮下注射 Ang Ⅱ [1.4 mg/(kg.d)];注射Ang Ⅱ 的同时给予以下药物干预: Ang Ⅱ阻断剂 洛沙坦(Losartan)组:皮下注射 Losartan[40 mg/(kg.d)]; Ang(1-7)组:皮下注射 Ang(1-7)[0.14 mg/(kg.d)];血管紧张素转化酶2(ACE2)激动剂重氮氨苯脒乙酰甘氨酸盐(DIZE)组:皮下注射DIZE[10 mg/(kg.d)]。连续给药4周后对相关指标进行检测。Masson染色法检测肾组织胶原沉积变化;Western blotting法检测肾组织 Ⅰ 型胶原、Ⅲ 型胶原和 KCa3.1通道蛋白表达的变化。 结果 与对照组相比,Ang Ⅱ组小鼠肾组织内胶原沉积量明显增加(n=12,P<0.01),表明肾纤维化模型复制成功。Ang Ⅱ使肾组织Ⅰ、Ⅲ型胶原合成显著增多(n=6,P<0.01),同时促进了肾组织KCa3.1通道蛋白的表达(P<0.01),而Ang (1-7)及ACE2激活剂 DIZE 的应用抑制了肾组织内胶原沉积量、Ⅰ/Ⅲ型胶原合成及KCa3.1通道蛋白的表达(n=12或6,P<0.01)。结论 Ang (1-7)在肾纤维化过程中发挥保护作用,这一作用可能与其下调肾组织中KCa3.1通道蛋白表达有关。

Abstract

Objective To investigate the relationship between the protective effect of angiotensin (Ang) (1-7) and the protein expression of intermediate conductance Ca2+ -activated K+ channels (KCa3.1) in renal fibrosis. Methods Totally 60 male mice were randomly divided into 5 groups: control group (WT); Ang Ⅱ group: mice received Ang Ⅱ [1.4 mg/(kg.d)]by hypodermic injection; Ang Ⅱ blocker group (Losartan): mice received Ang Ⅱ [1.4 mg/(kg.d)]and Losartan [40 mg/(kg.d)]by hypodermic injection; Ang (1-7) group: mice received Ang Ⅱ [1.4 mg/(kg.d)]and Ang (1-7) [0.14 mg/(kg.d)]by hypodermic injection; diminazene aceturate(DIZE) group: mice received Ang Ⅱ [1.4 mg/(kg.d)]and DIZE [10 mg/(kg.d)]by hypodermic injection. After 4 weeks of continuous administration, the related indicators were detected. Masson staining was used to detect the collagen content, and Western blotting was used to detect the protein expression of collagen type Ⅰ, collagen type Ⅲ and KCa3.1 channel. Results Collagen deposition in renal tissue increased significantly after 4 weeks of hypodermic injection of Ang Ⅱ (n=12,P<0.01) compared with the WT group, which suggested that the model of renal fibrosis was successfully reproduced. Ang Ⅱ significantly increased the synthesis of collagen type Ⅰ and Ⅲ (n=6,P<0.01) and increased the expression of KCa3.1 channel protein (n=6,P<0.01) in renal tissues, while Ang (1-7) and ACE2 activator DIZE significantly inhibited those exchanges (n=12 or 6,P<0.01). Conclusion Ang (1-7) plays a protective role in the process of renal fibrosis, which may be related to the downregulation of KCa3.1 channel protein expression in renal tissue.

关键词

纤维化 / 肾脏 / 血管紧张素(1-7) / 中电导钙激活钾离子通道蛋白 / 免疫印迹法 / 小鼠

Key words

Fibrosis / Renal / Angiotensin (1-7) / Intermediate conductance Ca2+ activated K+ channel / Western blotting / Mouse

引用本文

导出引用
许石 刘耀浩 王丽萍. 血管紧张素(1-7)通过抑制中电导钙激活钾离子通道蛋白表达参与肾脏纤维化[J]. 解剖学报. 2019, 50(4): 512-516 https://doi.org/10.16098/j.issn.0529-1356.2019.04.018
XU Shi LIU Yao-hao WANG Li-ping. Angiotensin (1-7) participating in renal fibrosis by inhibiting intermediate conductance Ca2+ -activated K+ channels protein expression[J]. Acta Anatomica Sinica. 2019, 50(4): 512-516 https://doi.org/10.16098/j.issn.0529-1356.2019.04.018

参考文献

 [1] Feng Y, Hans C,Mcllwain E, et al. Over-expression in the central nervous system reduces angiotensin-Ⅱ-mediated cardiac hypertrophy[J]. PLoS One, 2012, 7(11):e48910.
 [2] Wang, Fan SJ, Li SM, et al. Protective role of ACE2-Ang-(1-7)-Mas in myocardial fibrosis by downregulating KCa 3.1 channel via ERK1/2 pathway[J]. Pflugers Arch, 2016, 468(11-12):2041-2051.
 [3] Eddy AA. Overview of the cellular and molecular basis of kidney fibrosis[J]. Kidney Int Suppl, 2014, 4(1): 2-8.
 [4] Mack M, Yanagita M. Origin of myofibroblasts and cellular events triggering fibrosis[J]. Kidney Int, 2015, 87(2):297-307. 
 [5] Boor, Floege J. The renal (myo-)fibroblast: A heterogeneous group of cells[J]. Nephrol Dial Transplant, 2012, 27(8):3027-3036.
 [6] Thieme, Sivritas SH, Mergia E, et al. Phosphodiesterase 5 inhibition ameliorates angiotensin Ⅱ-dependenthypertension and renal vascular dysfunction[J].Am J Physiol Renal Physiol, 2017,312(3): F474-F478.
 [7] Wen, Liu Y, Tang T, et al. NLRP3 inflammasome activation is involved in Ang Ⅱ-induced kidney damage via mitochondrial dysfunction[J].Oncotarget,  2016, 7(34):54290-54302.
 [8] Norlander, Saleh MA, Kamat NV, et al. Interleukin 17A regulates renal sodium transporters and renal injury in angiotensin Ⅱ-induced hypertension[J]. Hypertension, 2016, 68(1):167-174. 
 [9] Casare, Thieme K, Costa-Pessoa JM, et al. Renovascular remodeling and renal injury after extended angiotensin Ⅱ infusion[J].Am J Physiol Renal Physiol, 2016, 310(11): F1295-F1307.
 [10]Liu Y, Sun XJ, Li Ch, et al. Advances in the roles of microRNA-29 in renal fibrosis[J].Acta Anatomica Sinica,2017,48(5): 622-627.  (in Chinese)
刘祎,孙雪娇,李城, 等.MicroRNA-29在肾纤维化进程中的研究进展[J].解剖学报,2017,48(5): 622-627.
 [11] Liu Z, Huang XR, Lan HY. Smad3 mediates ANG Ⅱ-induced hypertensive kidney disease in mice[J]. Am J Physiol Renal Physiol, 2012, 302(8):F986-997.
 [12] Rüster R, Wolf G. Angiotensin Ⅱ as a morphogenic cytokine stimulating renal fibrogenesis[J]. J Am Soc Nephrol, 2011, 22(7):1189-1199. 
 [13] Yan FN, Liu SX, Cui L, et al. Effect of TRPV4 on angiotensin Ⅱ-induced renal injury in mice[J]. Chinese Journal of Comparative Medicine, 2018, 28(2):1-6. (in Chinese)
闫凤娜,刘素晓,崔琳, 等.TRPV4受体对血管紧张素Ⅱ诱导的小鼠肾损害的影响[J].中国比较医学杂志, 2018, 28(2):1-6. 
 [14] Mu?oz MC, Burghi Ⅴ, Miquet JG, et al. Downregulation of the ACE2/Ang-(1-7)/Mas axis in transgenic mice overexpressing GH [J]. J Endocrinol, 2014, 221(2):215-227.
 [15] Fu, Zhang T, Wang L,et al. Inhibition of the K(+)channel KCa3.1 reduces TGF-β1-induced premature senescence, myofibroblast phenotype transition and proliferation of mesangial cells[J]. PLoS One, 2014, 9(1):e87410.
 [16] Giani JF, Miquet JG, Muoz MC, et al. Upregulation of the angiotensin-converting enzyme 2/angiotensin-(1-7)/Mas receptor axis in the heart and the kidney of growth hormone receptor knock-out mice[J]. Growth Horm IGF Res, 2012, 22(6):224-233.
 [17] Chen CL, Liao JW, Hu OY, et al. Blockade of KCa-3.1 potassium channels protects against cisplatin-induced acute kidney injury[J].Arch Toxicol, 2016, 90(9):2249-2260. 
 [18] Guimar?es GG, Santos SH, Oliveira ML, et al. Exercise induces renin-angiotensin system unbalance and high collagen expression in the heart of Mas-deficient mice[J]. Peptides, 2012, 38(1):54-61.
 [19] Huang C, Zhang L, Shi Y, et al. The KCa 3.1 blocker TRAM34 reverses renal damage in a mouse model of established diabetic nephropathy[J]. PLoS One, 2018, 13(2):e0192800. 

基金

ACE2-Ang (1-7)-Mas调控TLR4-KCa3.1抑制心肌纤维化炎症反应研究;TLR4-KCa3.1在Ang II诱导心肌纤维化炎症反应中的作用研究

PDF(5460 KB)

Accesses

Citation

Detail

段落导航
相关文章

/