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青藤碱通过miR-143-5p减轻尿毒症血管钙化。

Sinomenine attenuates uremia vascular calcification by miR-143-5p.

作者信息

Yu Fengyi, Peng Zhong, Gao Ning, Tang Zixu, Liao Zihao, Zhao Song, Zhong Shuzhu, Umwiza Gloria, Huang Hong, Long Wei, He Zhangxiu

机构信息

Department of Nephrology, Yiyang Central Hospital, 118 Kangfubei Road, Yiyang, 413000, Hunan, China.

Department of Gastroenterology, Yiyang Central Hospital, Yiyang, Hunan, China.

出版信息

Sci Rep. 2025 Jan 13;15(1):1798. doi: 10.1038/s41598-025-86055-2.

Abstract

Vascular calcification is considered to be a killer of the cardiovascular system, involved inflammation and immunity. There is no approved therapeutic strategy for the prevention of vascular calcification. Sinomenine exhibited anti-inflammatory and immunosuppressive effects. Objective of this study was to investigate the effect of sinomenine in vascular calcification and its potential molecular mechanism. Adenine-induced uremic rats were constructed and administrated with sinomenine. Optical clearing of aortas, alizarin red staining, von Kossa staining, calcification quantification, micro-CT analyses of vascular calcification were performed to analyze calcification in aortas. Administration of 40 mg/kg/d sinomenine effectively alleviated vascular calcification in uremic rats. The miRNA sequencing revealed differentially expressed miRNAs in aortas and bioinformatic analysis assisted with miRNA screening. We screened 9 differential expressed miRNAs and their predicted target genes. By qRT-PCR, we validated that the expression of rno-miR-143-5p was corresponding to our prediction. Sinomenine inhibited vascular smooth muscle cells (VSMCs) calcification, accompanied with miR-143-5p upregulation. MiR-143-5p mimic decreased VSMCs calcification in high phosphate condition. On the contrary, miR-143-5p inhibitor increased VSMCs calcification in high phosphate condition, which was inhibited by sinomenine. In chronic kidney disease patients with vascular calcification, the expression level of circulating miR-143-5p was lower than those without vascular calcification. Sinomenine significantly inhibited vascular calcification in VSMCs and uremic rat. MiR-143-5p was one of the collection of miRNAs modified by sinomenine in vascular calcification. Reduction of miR-143-5p in VSMCs was not only a concomitant phenomenon in pro-calcification condition but also contribute to VSMCs calcification. Circulating miR-143-5p was supposed to be a potential biomarker for vascular calcification in chronic kidney disease patients. In conclusion, sinomenine effectively alleviated vascular calcification, which was attributed to miR-143-5p regulation partly.

摘要

血管钙化被认为是心血管系统的杀手,涉及炎症和免疫。目前尚无获批的预防血管钙化的治疗策略。青藤碱具有抗炎和免疫抑制作用。本研究的目的是探讨青藤碱对血管钙化的影响及其潜在的分子机制。构建腺嘌呤诱导的尿毒症大鼠模型并给予青藤碱。进行主动脉光学透明化、茜素红染色、冯科萨染色、钙化定量分析以及血管钙化的显微CT分析,以分析主动脉中的钙化情况。给予40mg/kg/d的青藤碱可有效减轻尿毒症大鼠的血管钙化。miRNA测序揭示了主动脉中差异表达的miRNA,并通过生物信息学分析辅助筛选miRNA。我们筛选出9个差异表达的miRNA及其预测的靶基因。通过qRT-PCR,我们验证了rno-miR-143-5p的表达与我们的预测相符。青藤碱抑制血管平滑肌细胞(VSMC)钙化,同时伴有miR-143-5p上调。miR-143-5p模拟物在高磷条件下可降低VSMC钙化。相反,miR-143-5p抑制剂在高磷条件下可增加VSMC钙化,而青藤碱可抑制这种增加。在患有血管钙化的慢性肾脏病患者中,循环miR-143-5p的表达水平低于无血管钙化的患者。青藤碱可显著抑制VSMC和尿毒症大鼠的血管钙化。miR-143-5p是青藤碱在血管钙化中调节的miRNA之一。VSMC中miR-143-5p的减少不仅是促钙化状态下的伴随现象,而且还促进VSMC钙化。循环miR-143-5p被认为是慢性肾脏病患者血管钙化的潜在生物标志物。总之,青藤碱可有效减轻血管钙化,部分归因于对miR-143-5p的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/511e/11730593/2f6ee83cb256/41598_2025_86055_Fig1_HTML.jpg

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