首页> 外文期刊>Stem Cell Research & Therapy >PEDF-derived peptide promotes tendon regeneration through its mitogenic effect on tendon stem/progenitor cells
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PEDF-derived peptide promotes tendon regeneration through its mitogenic effect on tendon stem/progenitor cells

机译:通过其对肌腱茎/祖细胞的致动作用促进PEDF衍生的肽促进肌腱再生

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Tendon stem/progenitor cells (TSPC) exhibit a low proliferative response to heal tendon injury, leading to limited regeneration outcomes. Exogenous growth factors that activate TSPC proliferation have emerged as a promising approach for treatment. Here, we evaluated the pigment epithelial-derived factor (PEDF)-derived short peptide (PSP; 29-mer) for treating acute tendon injury and to determine the timing and anatomical features of CD146- and necleostemin-positive TSPC in the tendon healing process. Tendon cells were isolated from rabbit Achilles tendons, stimulated by the 29-mer and analyzed for colony-forming capacity. The expression of the TSPC markers CD146, Oct4, and nestin, induced by the 29-mer, was examined by immunostaining and western blotting. Tendo-Achilles injury was induced in rats by full-thickness insertion of an 18-G needle and immediately treated topically with an alginate gel, loaded with 29-mer. The distribution of TSPC in the injured tendon and their proliferation were monitored using immunohistochemistry with antibodies to CD146 and nucleostemin and by BrdU labeling. TSPC markers were enriched among the primary tendon cells when stimulated by the 29-mer. The 29-mer also induced the clonogenicity of CD146+ TSPC, implying TSPC stemness was retained during TSPC expansion in culture. Correspondingly, the expanded TSPC differentiated readily into tenocyte-like cells after removal of the 29-mer from culture. 29-mer/alginate gel treatment caused extensive expansion of CD146+ TSPC in their niche on postoperative day 2, followed by infiltration of CD146+/BrdU- TSPC into the injured tendon on day 7. The nucleostemin+ TSPC were located predominantly in the healing region of the injured tendon in the later phase (day 7) and exhibited proliferative capacity. By 3?weeks, 29-mer-treated tendons showed more organized collagen fiber regeneration and higher tensile strength than control tendons. In culture, the mitogenic effect of the 29-mer was found to be mediated by the phosphorylation of ERK2 and STAT3 in nucleostemin+ TSPC. The anatomical analysis of TSPC populations in the wound healing process supports the hypothesis that substantial expansion of resident TSPC by exogenous growth factor is beneficial for tendon healing. The study suggests that synthetic 29-mer peptide may be an innovative therapy for acute tendon rupture.
机译:肌腱茎/祖细胞(TSPC)表现出对愈合肌腱损伤的低增殖反应,导致再生结果有限。激活TSPC增殖的外源生长因子已成为一种有希望的治疗方法。在此,我们评估了色素上皮衍生的因子(PEDF)的短肽(PSP; 29-MER),用于治疗急性肌腱损伤,并确定肌腱愈合过程中CD146和NeCleoflemin阳性Tspc的定时和解剖特征。肌腱细胞从兔achilles肌腱中分离,由29-mer刺激并分析菌落形成能力。通过免疫染色和蛋白质印迹检查由29-MER诱导的TSPC标记CD146,OCT4和Nestin的表达。通过18g针的全厚度插入,在大鼠中诱导肌腱血管损伤,并立即用藻酸盐凝胶局部处理,装载29-ME1。使用免疫组织化学与CD146和核病症和Brdu标记的抗体和Brdu标记监测TSPC在受伤肌腱中的TSPC分布及其增殖。当由29-MER刺激时,TSPC标记物在初级肌腱细胞中富集。 29-MER还诱导CD146 + TSPC的克隆因性,暗示在培养中的TSPC扩增期间保留了TSPC茎。相应地,在从培养物中除去29-MET后,扩增的TSPC容易分化成邻胞细胞样细胞。 29-MER /海藻酸盐凝胶处理在术后第2天在其Niche中引起CD146 + TSPC的广泛扩展,然后在第7天渗透到受伤的肌腱中。核病蛋白+ TSPC主要位于愈合区域后期(第7天)的受伤肌腱并表现出增殖能力。达到3个?几周,29分型肌腱显示出更多有组织的胶原纤维再生和比对照肌腱更高的拉伸强度。在培养中,发现29-ME的促进效果被ERK2和STAT3中的核病症+ TSPC中的磷酸化介导。伤口愈合过程中TSPC种群的解剖学分析支持通过外源生长因子大大扩增驻留TSPC的大量扩增是有益的肌腱愈合。该研究表明,合成29-MEL肽可能是急性肌腱破裂的创新疗法。

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