Pericyte-derived extracellular vesicles improve vascular barrier function in sepsis via the Angpt1/PI3K/AKT pathway and pericyte recruitment: an in vivo and in vitro study.

IF 7.1 2区 医学 Q1 CELL & TISSUE ENGINEERING
Zi-Sen Zhang, Ao Yang, Xi Luo, He-Nan Zhou, Yi-Yan Liu, Dai-Qin Bao, Jie Zhang, Jia-Tao Zang, Qing-Hui Li, Tao Li, Liang-Ming Liu
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引用次数: 0

Abstract

Background: Extracellular vesicles derived from pericytes (PCEVs) have been shown to improve vascular permeability, with their therapeutic effects attributed to the presence of pro-regenerative molecules. We hypothesized that angiopoietin 1 (Angpt1) carried by PCEVs contributes to their therapeutic effects after sepsis.

Methods: A cecal ligation and puncture (CLP)-induced sepsis rat model was used in vivo, and the effects of PCEVs on vascular endothelial cells were studied in vitro. First, proteomic and Gene Ontology enrichment analyses were performed to analyze the therapeutic mechanism of PCEVs, revealing that the angiogenesis-related protein Angpt1 was highly expressed in PCEVs. We then down-regulated Angpt1 in PCEVs. The role of PCEV-carried Angpt1 on intestinal barrier function, PCs recruitment, and inflammatory cytokines was measured by using septic Sprague-Dawley rats and platelet-derived growth factor receptor beta (PDGFR-β)-Cre + mT/mG transgenic mice.

Results: PCEVs significantly improved vascular permeability, proliferation, and angiogenesis in CLP-induced gut barrier injury both in vivo and in vitro. Further studies have shown that PCEVs exert a protective effect on intestinal barrier function and PC recruitment. Additionally, PCEVs reduced serum inflammatory factor levels. Our data also demonstrated that the protein levels of phospho-PI3K and phospho-Akt both increased after PCEVs administration, whereas knocking out Angpt1 suppressed the protective effects of PCEVs through decreased activation of PI3K/Akt signaling.

Conclusion: PCEVs protect against sepsis by regulating the vascular endothelial barrier, promoting PC recruitment, protecting intestinal function, and restoring properties via activation of the Angpt1/PI3K/AKT pathway.

周细胞来源的细胞外囊泡通过Angpt1/PI3K/AKT通路和周细胞募集改善脓毒症的血管屏障功能:一项体内和体外研究。
背景:来自周细胞的细胞外囊泡(pcev)已被证明可以改善血管通透性,其治疗作用归因于促再生分子的存在。我们假设pcev携带的血管生成素1 (Angpt1)有助于脓毒症后的治疗效果。方法:采用盲肠结扎穿刺(CLP)致脓毒症大鼠体内模型,在体外研究pcev对血管内皮细胞的影响。首先,通过蛋白质组学和基因本体富集分析分析了pcev的治疗机制,发现血管生成相关蛋白Angpt1在pcev中高表达。然后我们下调pcev中的Angpt1。通过化脓性Sprague-Dawley大鼠和血小板衍生生长因子受体β (PDGFR-β)-Cre + mT/mG转基因小鼠,检测pcev携带Angpt1对肠道屏障功能、pc募集和炎症因子的作用。结果:pcev在体内和体外均能显著改善clp诱导的肠屏障损伤的血管通透性、增殖和血管生成。进一步研究表明,pcev对肠道屏障功能和PC募集具有保护作用。此外,pcev降低了血清炎症因子水平。我们的数据还表明,在pcev给药后,磷酸化PI3K和磷酸化Akt的蛋白水平均升高,而敲除Angpt1通过降低PI3K/Akt信号的激活来抑制pcev的保护作用。结论:pcev通过激活Angpt1/PI3K/AKT通路,调节血管内皮屏障,促进PC募集,保护肠道功能,恢复机体功能,从而起到预防败血症的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Stem Cell Research & Therapy
Stem Cell Research & Therapy CELL BIOLOGY-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
13.20
自引率
8.00%
发文量
525
审稿时长
1 months
期刊介绍: Stem Cell Research & Therapy serves as a leading platform for translational research in stem cell therapies. This international, peer-reviewed journal publishes high-quality open-access research articles, with a focus on basic, translational, and clinical research in stem cell therapeutics and regenerative therapies. Coverage includes animal models and clinical trials. Additionally, the journal offers reviews, viewpoints, commentaries, and reports.
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