BCL-2 overexpression exosomes promote the proliferation and migration of mesenchymal stem cells in hypoxic environment for skin injury in rats.

IF 5.7 3区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS Journal of Biological Engineering Pub Date : 2025-01-17 DOI:10.1186/s13036-024-00471-y
Ying Wang, Guang Li, Guofeng Li, Yutao Pan, Zhongmin Liu
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Abstract

Objective: The direction of this study was to detect and analyze the specific mechanism of anti-apoptosis in mesenchymal stem cells (MSCs) cells caused by high expression of BCL2.

Methods: Bioinformatics was completed in Link omics. GO analysis and KEGG analysis were carried out, and the grope tool of Link omics database was used to evaluate PPI information and other core path analysis information. The cultured cells were divided into MSC + normoxic group (MSCs were cultured in conventional medium, including 10% depleted serum of fetal bovine exosomes, 37 °C, 5% CO2 and 95% air) and Exo-BCL-2 + MSC + normoxic group (a certain concentration of purified BCL-2 exosomes was co-cultured with MSC in conventional medium, 37 °C, 5% CO2 and 95% air), Exo-BCL-2 + MSC + hypoxia group (a certain concentration of purified BCL-2 exosomes and MSC were co-cultured in hypoxia medium at 37 °C, 80% CO2 and 20% air), MSC + hypoxia group (MSCs were cultured in hypoxia medium with 10% depleted serum of fetal bovine exosomes, 37 °C, 80% CO2 and 20% air), exo WT + MSC + normoxic group (co-cultured with MSC in conventional medium at 37 °C, 5% CO2 and 95% air) and exoWT + MSC + hypoxic group (co-cultured with MSC in hypoxic medium at 37 °C, 80% CO2 and 20%). Cell proliferation ability was monitored by cell proliferation test. Cell migration test was used to check the migration capacity of MSCs. The expressions of apoptosis-related proteins BCL-2, caspase3 and caspase9, Runx2, ALP and PPAR-γ were analyzed by western blot. Tissue damage was scored by H&E and Ma Song trichrome staining. Masson staining was used to evaluate the collagen volume fraction of the wound. The expressions of KRT14, α-SMA, CD31 and PCNA in rat trauma tissues were analyzed by immunofluorescence staining. The horizontal of apoptosis-related proteins in skin lesions was checked by Western blot. The horizontal of inflammatory factors TNF-α and IL-6 in traumatic tissue of rats were detected by ELISA.

Results: From KEGG's results, we can see that BCL2-2 was closely related to base excision and repair, cell cycle, steroid biosynthesis and other pathways. When cultured for 48h and 72h, the proliferation ability and migration number of MSCs in MSC + hypoxia group were lower than MSC + normoxic group, but the expressions of caspase3 and caspase9 were higher. The proliferation ability and migration number of MSCs in Exo-BCL-2 + MSC + hypoxia group and MSC + hypoxia group were lower than those in Exo-BCL-2 + MSC + normoxic group and MSC + normoxic group, and the horizontal of caspase3 and caspase9 were lower. Exo-BCL-2 + MSC + normoxic group increased the proliferation capacity and migration number of MSCs, but decreased the expression of caspase3 and caspase9. Compared with Exo-BCL-2 + MSC + normoxia and Exo-BCL-2 + MSC + normoxia, the proliferation ability and migration quantity of MSCs in exo WT + MSC + normoxia and exo WT + MSC + hypoxia groups were lower, and the horizontal of caspase3 and caspase9 proteins was higher.

Conclusion: Bioinformatics analysis shows that BCL2-2 plays a worthwhile role in the process of cell apoptosis and proliferation. Exosomes with high expression of BCL-2 can encourage the proliferation of MSC in hypoxic environment. The wound treated with MSCs-BCL-2 promotes the compose of new blood vessels and granulation tissue in the wound, the redifferentiation of epithelial cells and the remodeling of collagen, which has a high therapeutic prospect for chronic wounds and skin regeneration.

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BCL-2过表达外泌体促进缺氧环境下大鼠皮肤损伤间充质干细胞的增殖和迁移。
目的:本研究的方向是检测和分析BCL2高表达对间充质干细胞(MSCs)细胞抗凋亡的具体机制。方法:采用Link组学进行生物信息学分析。进行GO分析和KEGG分析,使用Link omics数据库的grope工具对PPI信息和其他核心路径分析信息进行评价。培养细胞分为MSC +常氧组(MSC在常规培养基培养,包括10%枯竭的胎牛血清液,37°C, 5%的二氧化碳和95%的空气)和Exo-BCL-2 + MSC +常氧组(一定浓度的bcl - 2纯化液是MSC在常规培养基培养,37°C, 5%的二氧化碳和95%的空气),Exo-BCL-2 + MSC +缺氧组(一定浓度的bcl - 2纯化液和MSC在缺氧培养介质37°C,80% CO2和20%空气),MSC +缺氧组(MSCs在缺氧培养基中培养,缺氧培养基中含有10%胎牛外泌体血清,37℃,80% CO2和20%空气),exoWT + MSC +常氧组(与MSC在37℃,5% CO2和95%空气中共培养)和exoWT + MSC +缺氧组(与MSC在37℃,80% CO2和20%缺氧培养基中共培养)。细胞增殖试验检测细胞增殖能力。采用细胞迁移试验检测MSCs的迁移能力。western blot检测凋亡相关蛋白BCL-2、caspase3和caspase9、Runx2、ALP和PPAR-γ的表达。H&E和马松三色染色对组织损伤进行评分。马松染色法测定创面胶原体积分数。采用免疫荧光染色法分析KRT14、α-SMA、CD31和PCNA在大鼠外伤组织中的表达。Western blot检测皮肤病变组织中凋亡相关蛋白水平。采用ELISA法检测大鼠创伤组织中炎症因子TNF-α和IL-6水平。结果:从KEGG的结果可以看出,BCL2-2与碱基切除修复、细胞周期、类固醇生物合成等途径密切相关。培养48h和72h时,MSC +缺氧组MSCs的增殖能力和迁移数量低于MSC +常氧组,但caspase3和caspase9的表达较高。Exo-BCL-2 + MSC +缺氧组和MSC +缺氧组MSCs的增殖能力和迁移数量均低于Exo-BCL-2 + MSC + normmoxic组和MSC + normmoxic组,caspase3和caspase9水平较低。Exo-BCL-2 + MSC + normmoxic组增加了MSCs的增殖能力和迁移数量,但降低了caspase3和caspase9的表达。与exo - bcl -2 + MSC + normmoxia组和exo - bcl -2 + MSC + normmoxia组相比,exo - bcl -2 + MSC + normmoxia组和exo - bcl -2 + MSC +缺氧组MSCs的增殖能力和迁移量较低,caspase3和caspase9蛋白水平较高。结论:生物信息学分析表明BCL2-2在细胞凋亡和增殖过程中发挥了重要作用。高表达BCL-2的外泌体可促进缺氧环境下MSC的增殖。MSCs-BCL-2可促进创面新生血管和肉芽组织的形成、上皮细胞的再分化和胶原的重塑,在慢性创面和皮肤再生中具有很高的治疗前景。
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来源期刊
Journal of Biological Engineering
Journal of Biological Engineering BIOCHEMICAL RESEARCH METHODS-BIOTECHNOLOGY & APPLIED MICROBIOLOGY
CiteScore
7.10
自引率
1.80%
发文量
32
审稿时长
17 weeks
期刊介绍: Biological engineering is an emerging discipline that encompasses engineering theory and practice connected to and derived from the science of biology, just as mechanical engineering and electrical engineering are rooted in physics and chemical engineering in chemistry. Topical areas include, but are not limited to: Synthetic biology and cellular design Biomolecular, cellular and tissue engineering Bioproduction and metabolic engineering Biosensors Ecological and environmental engineering Biological engineering education and the biodesign process As the official journal of the Institute of Biological Engineering, Journal of Biological Engineering provides a home for the continuum from biological information science, molecules and cells, product formation, wastes and remediation, and educational advances in curriculum content and pedagogy at the undergraduate and graduate-levels. Manuscripts should explore commonalities with other fields of application by providing some discussion of the broader context of the work and how it connects to other areas within the field.
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