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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >A human epidermal growth factor-curcumin bandage bioconjugate loaded with mesenchymal stem cell for in vivo diabetic wound healing
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A human epidermal growth factor-curcumin bandage bioconjugate loaded with mesenchymal stem cell for in vivo diabetic wound healing

机译:一种人表皮生长因子 - 姜黄绷带生物缀合物,用于体内糖尿病伤口愈合的间充质干细胞

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摘要

Bone-marrow-derived mesenchymal stem cells (MSCs) are of growing interest for the treatment of diabetic wound healing. However, they are often associated with poor proliferation and viability at the wounded site. Here, it is reported the use of human epidermal growth factor -curcumin bandage bioconjugate (EGF-Cur B) loaded with MSCs (MSCs-EGF-Cur B) at the wounded site for diabetic wound healing. Conjugation efficiency of EGF was determined by FTIR and XPS, surface morphology was analyzed by SEM and AFM and hydrophilicity by contact angle. Chemical integrity of curcumin with the polymeric matrix was studied by FTIR and, antiinflamatory and biocompatibility of EGF-Cur B were determined by TNF alpha ELISA and MTT study respectively. The culture of MSCs over EGF-Cur B enhanced MSC viability and expression of transcription factors associated with the maintenance of pluripotency and self-renewal (OCT3/4, SOX2, and Nanog) as compared to MSCs grown in standard conditions. Its therapeutic effect was examined on diabetic full-thickness excisional wound model in terms of size and histological examination. Synergetic combinational approach especially when treated with MSCs-EGF-Cur B significantly enhanced wound closure by increasing granulation tissue formation, collagen deposition, and angiogenesis as compared to other groups. In conclusion, biocompatible therapeutic MSCs-EGF-Cur B might have great application for diabetic wound healing in the near future.
机译:骨髓衍生的间充质干细胞(MSCs)对治疗糖尿病伤口愈合的兴趣日益增长。然而,它们通常与受伤部位的增殖和活力差有关。这里,据报道使用人表皮生长因子 - 在受伤部位的MSCs(MSCS-EGF-CUR-C)的人表皮生长因子 - 尿绷带生物缀合物(EGF-CUR B)用于糖尿病伤口愈合。 EGF的缀合效率通过FTIR和XPS测定,通过SEM和AFM和AFM和接触角亲密地分析表面形态。通过FTIR研究了与聚合物基质的姜黄素的化学完整性,通过TNFαELISA和MTT研究测定EGF-CUR-F B的抗抗炎和生物相容性。与在标准条件下生长的MSC相比,ENGF-Cur B型上的MSC培养增强了MSC活力和与维持多能性和自我更新(OCT3 / 4,SOX2和NANOG)相关的转录因子的表达。在大小和组织学检查方面检查其治疗效果。当与其他基团相比,通过增加肉芽组织形成,胶原沉积和血管生成,尤其是当用MSCs-EGF-Cur-Cur-Cur-Curf-Curs治疗而显着增强的伤口闭合时。总之,生物相容性治疗MSCS-EGF-CUR-CUS-CUS-FUS-EGF-CURS在不久的将来可能具有很大的应用糖尿病伤口愈合。

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