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首页> 外文期刊>Stem Cell Research & Therapy >A novel kartogenin-platelet-rich plasma gel enhances chondrogenesis of bone marrow mesenchymal stem cells in vitro and promotes wounded meniscus healing in vivo
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A novel kartogenin-platelet-rich plasma gel enhances chondrogenesis of bone marrow mesenchymal stem cells in vitro and promotes wounded meniscus healing in vivo

机译:一种新型的Kartogenin-血小板血浆凝胶在体外增强了骨髓间充质干细胞的软骨发生,促进体内受伤的弯月面愈合

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摘要

The meniscus tear is one of the most common knee injuries particularly seen in athletes and aging populations. Subchondral bone sclerosis, irreparable joint damage, and the early onset of osteoarthritis make the injured meniscus heal difficultly. The study was performed by in vitro and in vivo experiments. The in vitro experiments were carried out using the bone marrow stem cells (BMSCs) isolated from the rabbits, and the stemness of the BMSCs was tested by immunostaining. The BMSCs positively expressed stem cell markers were cultured with various concentrations of kartogenin (KGN) for 2?weeks. The chondrogenesis of BMSCs induced by KGN was examined by histochemical staining and quantitative RT-PCR. The in vivo experiments were completed by a rabbit model. Three holes were created in each meniscus by a biopsy punch. The rabbits were treated with four different conditions in each group. Group 1 was treated with 20?μl of saline (saline); group 2 was treated with 5?μl of 100?μM KGN and 15?μl saline (KGN); group 3 was treated with 5?μl of 100?μM KGN, 5?μl of 10,000?U/ ml thrombin, and 10?μl of PRP (KGN+PRP); group 4 was treated with 10,000 BMSCs in 10?μl of PRP, 5?μl of saline solution, and 5?μl of 10,000?U/ml thrombin (PRP+BMSC); group 5 was treated with 10,000 BMSCs in 10?μl of PRP, 5?μl of 100?μM KGN, and 5?μl of 10,000?U/ml thrombin (KGN+PRP+BMSC). The menisci were collected at day 90 post-surgery for gross inspection and histochemical analysis. The histochemical staining showed that KGN induced chondrogenesis of BMSCs in a concentration-dependent manner. The RT-PCR results indicated that chondrocyte-related genes were also increased in the BMSCs cultured with KGN in a dose-dependent manner. The in vivo results showed that large unhealed wound areas were still found in the wounds treated with saline and KGN groups. The wounds treated with BMSCs-containing PRP gel healed much faster than the wounds treated without BMSCs. Furthermore, the wounds treated with BMSCs-containing KGN-PRP gel have healed completely and formed more cartilage-like tissues than the wounds treated with BMSCs-containing PRP gel. BMSCs could be differentiated into chondrocytes when they were cultured with KGN-PRP gel in vitro and formed more cartilage-like tissues in the wounded rabbit meniscus when the wounds were treated with BMSCs-containing KGN-PRP gel. The results indicated that the BMSCs-containing KGN-PRP gel is a good substitute for injured meniscus repair and regeneration.
机译:半月板撕裂是在运动员和老龄化人口中特别看到的最常见的膝盖伤害之一。 Subchindrall骨硬化,无法弥补的关节损伤,并且骨关节炎的早期发作使受伤的弯月面难以愈合。该研究是通过体外和体内实验进行的。使用从兔中分离的骨髓干细胞(BMSC)进行体外实验,通过免疫染色测试BMSC的茎。 BMSCs正面表达干细胞标记物以各种浓度的Kartogenin(KGN)培养2?周。通过组织化学染色和定量RT-PCR检查由KGN诱导的BMSC的软骨发生。体内实验由兔模型完成。通过活组织检查冲头在每个弯月面上创建三个孔。兔子在每组中用四种不同的条件治疗。将第1组用20×μl盐水(盐水)处理;将第2组用5·μl100Ωkgn和15?μl盐水(Kgn)处理;将第3组用5·μl100Ωkgn,5≤μl10×100×ml凝血酶处理,10μlprp(kgn + prp)处理;将第4组用10×μLPrP,5·μl盐水溶液和5〜μl10×u / ml凝血酶(prp + bmsc)的10,000bmscs处理。将第5组用10×μlPrP,5·μl100Ωkgn和5·μl10×u / ml凝血酶(Kgn + prp + bmsc)中的10,000bmscs治疗。 Menisci在第90天收集,用于总检测和组织化学分析。组织化学染色表明,KGN以浓度依赖性方式诱导BMSC的软骨发生。 RT-PCR结果表明,用KGN以剂量依赖性方式培养的BMSC中也增加了相关基因。体内结果表明,用盐水和kgn组处理的伤口仍然存在大的未骨无骨伤口区域。用含BMSCs的PRP凝胶处理的伤口比没有BMSC的伤口愈合得多。此外,用含BMSCs的KGN-PRP凝胶处理的伤口完全愈合并形成了比用含BMSCs的PRP凝胶处理的伤口形成更多的软骨状组织。当用kgn-prp凝胶在体外培养并在受伤的兔弯月面中形成更多的软骨样组织时,BMSCs可以分化为软骨细胞,并且当伤口用含BMSCs的KGN-PRP凝胶处理时,在受伤的兔弯鼻耳中形成更多的软骨状组织。结果表明,含有BMSCs的KGN-PRP凝胶是损伤弯月球修复和再生的替代品。

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