MicroRNA miR-145-5p Inhibits Cutaneous Wound Healing by Targeting PDGFD in Diabetic Foot Ulcer.

IF 2.1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochemical Genetics Pub Date : 2024-08-01 Epub Date: 2023-11-11 DOI:10.1007/s10528-023-10551-1
Chun Wang, Li Huang, Juan Li, Dan Liu, Biaoliang Wu
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Abstract

Diabetic foot ulcer (DFU) is one major, common and serious chronic complication of diabetes mellitus, which is characterized by high incidence, high risk, high burden, and high treatment difficulty and is a leading cause of disability and death in patients with diabetes. Long-term hyperglycemia can result in cellular dysfunction of fibroblasts, which play pivotal roles in wound healing. MicroRNAs (miRNAs) were reported to mediate the pathological processes of multiple diseases, including diabetic wound healing. This research aimed to investigate the functional role of miR-145-5p in high-glucose (HG)-exposed fibroblasts and in DFU mouse models. Human foreskin fibroblast cells (HFF-1) were stimulated by HG to induce cell injury. MiR-145-5p level in HG-stimulated HFF-1 cells was detected via RT-qPCR. The binding between miR-145-5p and PDGFD was validated by Luciferase reporter assay. The effects of the miR-145-5p/PDGFD axis on the viability, migration, and apoptosis of HG-exposed HFF-1 cells were determined by CCK-8, wound healing, and flow cytometry assays. DFU mouse models were subcutaneously injected at the wound edges with miR-145-5p inhibitor/mimics. Images of the wounds were captured on day 0 and 8 post-injection, and wound samples were collected after mice were sacrificed for histological analysis by H&E staining. HG decreased cell viability and increased miR-145-5p expression in HFF-1 cells in a dose- and time-dependent manner. MiR-145-5p downregulation promoted cell viability and migration and inhibited cell apoptosis of HG-stimulated HFF-1 cells, while miR-145-5p overexpression exerted an opposite effect on cell viability, migration, and apoptosis. PDGFD was a direct target gene of miR-145-5p, whose silencing reversed the influence of miR-145-5p downregulation on HG-induced cellular dysfunction of HFF-1 cells. Additionally, downregulating miR-145-5p facilitated while overexpressing miR-145-5p inhibited wound healing in DFU mouse models. MiR-145-5p level was negatively associated with PDGFD level in wound tissue samples of DFU mouse models. MiR-145-5p inhibition improves wound healing in DFU through upregulating PDGFD expression.

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MicroRNA miR-145-5p通过靶向PDGFD抑制糖尿病足溃疡皮肤伤口愈合。
糖尿病足溃疡(DFU)是糖尿病主要、常见、严重的慢性并发症,具有发病率高、危险性高、负担重、治疗难度大的特点,是糖尿病患者致残和死亡的主要原因。长期高血糖可导致成纤维细胞功能障碍,而成纤维细胞在伤口愈合中起关键作用。据报道,MicroRNAs (miRNAs)介导多种疾病的病理过程,包括糖尿病伤口愈合。本研究旨在探讨miR-145-5p在高糖(HG)暴露成纤维细胞和DFU小鼠模型中的功能作用。HG刺激人包皮成纤维细胞(HFF-1)诱导细胞损伤。RT-qPCR检测hg刺激HFF-1细胞中MiR-145-5p水平。通过荧光素酶报告基因检测验证miR-145-5p与PDGFD的结合。通过CCK-8、伤口愈合和流式细胞术检测miR-145-5p/PDGFD轴对hg暴露的HFF-1细胞的活力、迁移和凋亡的影响。在DFU小鼠模型创面边缘皮下注射miR-145-5p抑制剂/模拟物。分别于注射后第0天和第8天拍摄创面图像,处死小鼠后取创面标本进行H&E染色进行组织学分析。HG以剂量和时间依赖的方式降低HFF-1细胞的细胞活力并增加miR-145-5p的表达。在hg刺激的HFF-1细胞中,MiR-145-5p下调可促进细胞活力和迁移,抑制细胞凋亡,而MiR-145-5p过表达则对细胞活力、迁移和凋亡有相反的作用。PDGFD是miR-145-5p的直接靶基因,其沉默逆转了miR-145-5p下调对hg诱导的HFF-1细胞功能障碍的影响。此外,在DFU小鼠模型中,下调miR-145-5p促进了伤口愈合,而过表达miR-145-5p抑制了伤口愈合。DFU小鼠模型创面组织样本中MiR-145-5p水平与PDGFD水平呈负相关。MiR-145-5p抑制通过上调PDGFD表达促进DFU创面愈合。
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来源期刊
Biochemical Genetics
Biochemical Genetics 生物-生化与分子生物学
CiteScore
3.90
自引率
0.00%
发文量
133
审稿时长
4.8 months
期刊介绍: Biochemical Genetics welcomes original manuscripts that address and test clear scientific hypotheses, are directed to a broad scientific audience, and clearly contribute to the advancement of the field through the use of sound sampling or experimental design, reliable analytical methodologies and robust statistical analyses. Although studies focusing on particular regions and target organisms are welcome, it is not the journal’s goal to publish essentially descriptive studies that provide results with narrow applicability, or are based on very small samples or pseudoreplication. Rather, Biochemical Genetics welcomes review articles that go beyond summarizing previous publications and create added value through the systematic analysis and critique of the current state of knowledge or by conducting meta-analyses. Methodological articles are also within the scope of Biological Genetics, particularly when new laboratory techniques or computational approaches are fully described and thoroughly compared with the existing benchmark methods. Biochemical Genetics welcomes articles on the following topics: Genomics; Proteomics; Population genetics; Phylogenetics; Metagenomics; Microbial genetics; Genetics and evolution of wild and cultivated plants; Animal genetics and evolution; Human genetics and evolution; Genetic disorders; Genetic markers of diseases; Gene technology and therapy; Experimental and analytical methods; Statistical and computational methods.
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