Tianjin Medical Journal ›› 2023, Vol. 51 ›› Issue (1): 30-34.doi: 10.11958/20220897
• Experimental Research • Previous Articles Next Articles
PENG Ming(), LI Yukai, WANG Lan, HUANG Liang, CHENG Zhong, XIAO Jie(
)
Received:
2022-06-08
Revised:
2022-07-06
Published:
2023-01-15
Online:
2023-01-17
Contact:
XIAO Jie
E-mail:150672639@qq.com;puai_xj@163.com
PENG Ming, LI Yukai, WANG Lan, HUANG Liang, CHENG Zhong, XIAO Jie. Effects of autonomic nervous regulation on myocardial structural remodeling, electrical remodeling and fibrosis in rats with ejection fraction preserved heart failure based on calcium overload[J]. Tianjin Medical Journal, 2023, 51(1): 30-34.
CLC Number:
基因名称 | 引物序列(5′→3′) | 产物大小(bp) |
---|---|---|
MMP-9 | 上游:AGGTGCCTCGGATGGTTATCG | 208 |
下游:TGCTTGCCCAGGAAGACGAA | ||
TIMP-1 | 上游:GGCGAACCGGAAACCTGT | 188 |
下游:GCGCCCTTTGCATCTCTGG | ||
SERCA2a | 上游:CACCTG?GAA?GAT?TCT?GCG?AAC?T | 226 |
下游:CAT?CCT?CAT?CCT?GCC?CAA?AG | ||
PLB | 上游:GGA?GCC?TGT?GTC?CTT?GTG?TC | 159 |
下游:GAA?GTC?ATC?CCT?GGT?GTC?GT | ||
GAPDH | 上游:TGCCACTCAGAAGACTGTGG | 227 |
下游:GGATGCAGGGATGTTCT |
Tab.1 Primer sequence of PCR
基因名称 | 引物序列(5′→3′) | 产物大小(bp) |
---|---|---|
MMP-9 | 上游:AGGTGCCTCGGATGGTTATCG | 208 |
下游:TGCTTGCCCAGGAAGACGAA | ||
TIMP-1 | 上游:GGCGAACCGGAAACCTGT | 188 |
下游:GCGCCCTTTGCATCTCTGG | ||
SERCA2a | 上游:CACCTG?GAA?GAT?TCT?GCG?AAC?T | 226 |
下游:CAT?CCT?CAT?CCT?GCC?CAA?AG | ||
PLB | 上游:GGA?GCC?TGT?GTC?CTT?GTG?TC | 159 |
下游:GAA?GTC?ATC?CCT?GGT?GTC?GT | ||
GAPDH | 上游:TGCCACTCAGAAGACTGTGG | 227 |
下游:GGATGCAGGGATGTTCT |
组别 | NT-proBNP(ng/L) | E/A | LVPWD-D(mm) | IVS-D(mm) | LVEF | ERP(ms) | MAPD(ms) |
---|---|---|---|---|---|---|---|
对照组 | 45.22±6.26 | 1.85±0.06 | 7.59±0.06 | 1.51±0.02 | 0.58±0.04 | 155.43±4.32 | 172.04±4.85 |
模型组 | 301.25±16.07a | 1.28±0.06a | 7.99±0.22a | 2.14±0.08a | 0.57±0.06 | 183.11±5.83 a | 216.95±4.76a |
调控组 | 79.33±5.63b | 1.66±0.05b | 7.74±0.04b | 1.70±0.02b | 0.57±0.06 | 167.49±2.23b | 179.86±2.98b |
调控+拮抗组 | 297.73±18.77 | 1.28±0.04 | 7.97±0.20 | 2.14±0.07 | 0.58±0.05 | 182.88±4.90 | 216.22±4.40 |
F | 1 112.080** | 255.841** | 16.429** | 371.247** | 0.049 | 87.549** | 301.465** |
Tab.2 Comparison of indexes of heart failure, structural remodeling and electrical remodeling between four groups of rats
组别 | NT-proBNP(ng/L) | E/A | LVPWD-D(mm) | IVS-D(mm) | LVEF | ERP(ms) | MAPD(ms) |
---|---|---|---|---|---|---|---|
对照组 | 45.22±6.26 | 1.85±0.06 | 7.59±0.06 | 1.51±0.02 | 0.58±0.04 | 155.43±4.32 | 172.04±4.85 |
模型组 | 301.25±16.07a | 1.28±0.06a | 7.99±0.22a | 2.14±0.08a | 0.57±0.06 | 183.11±5.83 a | 216.95±4.76a |
调控组 | 79.33±5.63b | 1.66±0.05b | 7.74±0.04b | 1.70±0.02b | 0.57±0.06 | 167.49±2.23b | 179.86±2.98b |
调控+拮抗组 | 297.73±18.77 | 1.28±0.04 | 7.97±0.20 | 2.14±0.07 | 0.58±0.05 | 182.88±4.90 | 216.22±4.40 |
F | 1 112.080** | 255.841** | 16.429** | 371.247** | 0.049 | 87.549** | 301.465** |
组别 | MMP-9 mRNA | MMP-9 蛋白 | TIMP-1 mRNA | TIMP-1 蛋白 |
---|---|---|---|---|
对照组 | 1.00±0.02 | 0.22±0.04 | 1.00±0.02 | 0.80±0.07 |
模型组 | 5.78±0.81a | 0.69±0.06a | 0.13±0.03a | 0.31±0.03a |
调控组 | 1.37±0.03b | 0.49±0.05b | 0.72±0.16b | 0.71±0.04b |
调控+拮抗组 | 5.40±1.62 | 0.70±0.04 | 0.13±0.02 | 0.30±0.06 |
F | 79.460** | 220.176** | 296.185** | 269.906 ** |
Tab.3 Comparison of related indexes of myocardial fibrosis between four groups of rats
组别 | MMP-9 mRNA | MMP-9 蛋白 | TIMP-1 mRNA | TIMP-1 蛋白 |
---|---|---|---|---|
对照组 | 1.00±0.02 | 0.22±0.04 | 1.00±0.02 | 0.80±0.07 |
模型组 | 5.78±0.81a | 0.69±0.06a | 0.13±0.03a | 0.31±0.03a |
调控组 | 1.37±0.03b | 0.49±0.05b | 0.72±0.16b | 0.71±0.04b |
调控+拮抗组 | 5.40±1.62 | 0.70±0.04 | 0.13±0.02 | 0.30±0.06 |
F | 79.460** | 220.176** | 296.185** | 269.906 ** |
组别 | SERCA2a mRNA | SERCA2a 蛋白 | PLB mRNA | PLB 蛋白 |
---|---|---|---|---|
对照组 | 0.99±0.01 | 0.71±0.08 | 1.01±0.02 | 0.24±0.02 |
模型组 | 0.14±0.03a | 0.19±0.05a | 5.76±0.99a | 0.74±0.03a |
调控组 | 0.80±0.06b | 0.52±0.03 b | 1.95±0.12b | 0.44±0.03b |
调控+拮抗组 | 0.11±0.03 | 0.23±0.04 | 5.68±0.75 | 0.76±0.05 |
F | 1 439.914** | 215.837** | 156.731** | 539.140** |
Tab.4 Comparison of related indexes of calcium overload between four groups of rats
组别 | SERCA2a mRNA | SERCA2a 蛋白 | PLB mRNA | PLB 蛋白 |
---|---|---|---|---|
对照组 | 0.99±0.01 | 0.71±0.08 | 1.01±0.02 | 0.24±0.02 |
模型组 | 0.14±0.03a | 0.19±0.05a | 5.76±0.99a | 0.74±0.03a |
调控组 | 0.80±0.06b | 0.52±0.03 b | 1.95±0.12b | 0.44±0.03b |
调控+拮抗组 | 0.11±0.03 | 0.23±0.04 | 5.68±0.75 | 0.76±0.05 |
F | 1 439.914** | 215.837** | 156.731** | 539.140** |
[1] | PONIKOWSKI P, VOORS A, ANKER S D, et al. 2016 ESC Guidelines for the diagnosis and treatment of acute and chronic heart failure[J]. Kardiol Pol,2016, 74(10):1037-1147. doi:10.5603/KP.2016.0141. |
[2] | SOENARTA A, BURANAKITJAROEN P, CHIA Y C, et al. An overview of hypertension and cardiac involvement in Asia:Focus on heart failure[J]. J Clin Hypertens (Greenwich), 2020, 22(3):423-430. doi:10.1111/jch.13753. |
[3] | YOUN J C, AHN Y, JUNG H O. Pathophysiology of heart failure with preserved ejection fraction[J]. Heart Fail Clin, 2021, 17(3):327-335. doi:10.1016/j.hfc.2021.02.001. |
[4] | MARTINEZ-AMEZCUA P, HAQUE W, KHERA R, et al. the upcoming epidemic of heart failure in South Asia[J]. Circ Heart Fail, 2020, 13(10):e007218. doi:10.1161/CIRCHEARTFAILURE.120.007218. |
[5] | LAM C, VOORS A, DE BOER R A, et al. Heart failure with preserved ejection fraction:from mechanisms to therapies[J]. Eur Heart J, 2018, 39(30):2780-2792. doi:10.1093/eurheartj/ehy301. |
[6] | MCDONAGH T A, METRA M, ADAMO M, et al. 2021 ESC Guidelines for the diagnosis and treatment of acute and chronic heart failure:Developed by the Task Force for the diagnosis and treatment of acute and chronic heart failure of the European Society of Cardiology (ESC). With the special contribution of the Heart Failure Association (HFA) of the ESC[J]. Eur J Heart Fail,2022, 24(1):4-131. doi:10.1002/ejhf.2333. |
[7] | 温霞, 高江峰. 钙调蛋白激酶Ⅱ抑制剂KN-93对大鼠离体肥厚心肌电生理特性的影响[J]. 中国心血管病研究, 2017, 15(9):854-857. |
WEN X, GAO J F. The influence of KN-93,the inhibitor of CaMK Ⅱ,on the cardiac electrophysiology of hypertrophy rats[J]. Chinese Journal of Cardiovascular Research, 2017, 15(9):854-857. doi:10.3969/j.issn.1672-5301.2017.09.022. | |
[8] | CHEN M, LI X, YANG H, et al. Hype or hope:Vagus nerve stimulation against acute myocardial ischemia-reperfusion injury[J]. Trends Cardiovasc Med, 2020, 30(8):481-488. doi:10.1016/j.tcm.2019.10.011. |
[9] | DENG J, JIANG Y, WANG M, et al. Activation of vagovagal reflex prevents hepatic ischaemia-reperfusion-induced lung injury via anti-inflammatory and antioxidant effects[J]. Exp Physiol, 2021, 106(11):2210-2222. doi:10.1113/EP089865. |
[10] | RATHOD N, BAK J, PRIMEAU J O, et al. Nothing regular about the Regulins:Distinct functional properties of SERCA transmembrane peptide regulatory subunits[J]. Int J Mol Sci, 2021, 22(16):8891. doi:10.3390/ijms22168891. |
[11] | BRAUN J L, HAMSTRA S I, MESSNER H N, et al. SERCA2a tyrosine nitration coincides with impairments in maximal SERCA activity in left ventricles from tafazzin-deficient mice[J]. Physiol Rep, 2019, 7(16):e14215. doi:10.14814/phy2.14215. |
[12] | GORSKI P A, CEHOLSKI D K, YOUNG H S. Structure-function relationship of the SERCA pump and its regulation by phospholamban and sarcolipin[J]. Adv Exp Med Biol, 2017, 981:77-119. doi:10.1007/978-3-319-55858-5_5. |
[13] | ZHANG Y, VAN LAER A O, BAICU C F, et al. Phenotypic characterization of primary cardiac fibroblasts from patients with HFpEF[J]. PLoS One, 2022, 17(1):e0262479. doi:10.1371/journal.pone.0262479. |
[14] | LIU W, CHEN P, DENG J, et al. Resveratrol and polydatin as modulators of Ca(2+) mobilization in the cardiovascular system[J]. Ann N Y Acad Sci, 2017, 1403(1):82-91. doi:10.1111/nyas.13386. |
[15] | KANAPORIS G, BLATTER L A. Membrane potential determines calcium alternans through modulation of SR Ca(2+) load and L-type Ca(2+) current[J]. J Mol Cell Cardiol, 2017, 105:49-58. doi:10.1016/j.yjmcc.2017.02.004. |
[16] | BARON M A, FERREIRA L, TEIXEIRA P C, et al. Matrix metalloproteinase 2 and 9 enzymatic activities are selectively increased in the myocardium of chronic chagas disease cardiomyopathy patients:Role of TIMPs[J]. Front Cell Infect Microbiol, 2022, 12:836242. doi:10.3389/fcimb.2022.836242. |
[17] | LIAO S Y, LIU Y, ZUO M, et al. Remodelling of cardiac sympathetic re-innervation with thoracic spinal cord stimulation improves left ventricular function in a porcine model of heart failure[J]. Europace, 2015, 17(12):1875-1883. doi:10.1093/europace/euu409. |
[18] | LINZ B, THOSTRUP A H, SALJIC A, et al. Pharmacological inhibition of acetylcholine-regulated potassium current(IK,Ach)prevents atrial arrhythmogenic changes in a rat model of repetitive obstructive respiratory events[J]. Heart Rhythm O2, 2022, 3(1):97-104. doi:10.1016/j.hroo.2021.11.013. |
[1] | GAO Pan, XIE Bingxin, ZHOU Zandong, LIU Tong. Promoting effect of circulating FGF23 on atrial fibrosis in chronic kidney disease [J]. Tianjin Medical Journal, 2024, 52(9): 917-923. |
[2] | LI Xin, LI Xue, WANG An. Effects of chrysotile on expression of Wnt5a, p16 and p21 in endothelial cells [J]. Tianjin Medical Journal, 2024, 52(7): 679-682. |
[3] | HOU Weiling, QIAO Yunyang, WU Xiaoyun, SHI Huimin, QU Gaoting, ZHANG Aiqing. Zinc finger protein 281 inhibits high glucose-induced epithelial-mesenchymal transition and extracellular matrix synthesis in renal tubular epithelial cells [J]. Tianjin Medical Journal, 2024, 52(7): 720-726. |
[4] | MAN Jun, GAO Yanyan, SONG Longfei, GAO Fusheng. The effect of lncRNA FEZF1-AS1 targeting regulation of miR-200c-3p on biological behaviors of human lung fibroblasts [J]. Tianjin Medical Journal, 2024, 52(3): 231-236. |
[5] | ZHOU Mengzhu, ZHANG Haifeng, ZHANG Xue, ZHANG Yue, CHENG Lijun, LIU Tong, LIU Changle. Effect of NLRP3-CAMKⅡ-IRE-1α pathway induced oxidative stress on ventricular remodeling in diabetic rats [J]. Tianjin Medical Journal, 2023, 51(6): 580-585. |
[6] | LIU Zhufeng, WANG Wenhong, FAN Shuying, LIU Yan, LIU Tao, WANG Xin, WU Xia. Protective effect of Klotho protein on acute renal injury and fibrosis in rats with ischemia-reperfusion [J]. Tianjin Medical Journal, 2023, 51(4): 371-375. |
[7] | ZHENG Yue, MA Yunting, ZHAO Xiaoying, ZHAO Xinxiang. Correlation between homocysteine and left ventricular myocardial fibrosis in hypertensive patients [J]. Tianjin Medical Journal, 2023, 51(4): 395-399. |
[8] | LIU Zhijie, ZHENG Qipeng, XU Xiaodan, WANG Qiong, LI Mengdi, ZHANG Cong, WANG Zhiru, ZHAN Jianghua. Expression and clinical significance of CD163 in hepatic fibrosis with biliary atresia [J]. Tianjin Medical Journal, 2023, 51(4): 400-403. |
[9] | YANG Guohong, YU Fangfang, CAI Wei, NIU Xiulong, ZHANG Xin, ZHAO Jihong, LI Yuming, CHEN Shaobo. Effects of peripheral blood VEGFR-3+ monocytes on left ventricular remodeling in mice with hypertension [J]. Tianjin Medical Journal, 2023, 51(2): 144-148. |
[10] | ZHANG Xue, WANG Jiarui, CHEN Kangyin. Effects of glycyrrhizin on myocardial HMGB1/TLR4/NF-κB/HIF-1α signaling pathway in chronic kidney disease rats [J]. Tianjin Medical Journal, 2023, 51(2): 155-159. |
[11] | LONG Guangwen, ZHANG Qian, YANG Xiulin, SUN Hongpeng, JI Chunling. Impacts of miR-141-3p on pulmonary fibrosis in rats with acute respiratory distress syndrome by regulating Keap1-NRF2/ARE signaling pathway [J]. Tianjin Medical Journal, 2023, 51(12): 1300-1306. |
[12] | LEI Xianghong, YAN Wenjun, XIONG Meimei, LONG Haibo, CHEN Sijia. Micheliolide ameliorates renal lesion of unilateral ureteral obstruction mice by inhibiting NF-κB/NLRP3 axis [J]. Tianjin Medical Journal, 2023, 51(10): 1059-1064. |
[13] | HAN Jiao, WANG Huabing, XU Lingwen, DONG Fang. The role of γ-secretase inhibitor in pulmonary fibrosis epithelial-mesenchymal transition [J]. Tianjin Medical Journal, 2022, 50(9): 917-920. |
[14] | LONG Guangwen, ZHANG Qian, YANG Xiulin, JI Chunling, DONG Yukang. The effect and mechanism of inhibiting miR-33 expression on pulmonary fibrosis in rats with acute respiratory distress syndrome [J]. Tianjin Medical Journal, 2022, 50(9): 921-926. |
[15] | XING Jianong, LIANG Zhuo, XING Aijun, LIU Junlan, PENG Hongchao, ZHANG Tianhua, ZHANG Chunlai. Effects of lncRNA MIAT on ventricular remodeling and myocardial fibrosis in rats with atrial fibrillation through targeting regulation of miR-128-3p [J]. Tianjin Medical Journal, 2022, 50(9): 932-937. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||