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Promoting Diabetic Wound Therapy Using Biodegradable rhPDGF-Loaded Nanofibrous Membranes

机译:使用可生物降解的rhPDGF纳米纤维膜促进糖尿病伤口治疗

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摘要

The nanofibrous biodegradable drug-loaded membranes that sustainably released recombinant human platelet-derived growth factor (rhPDGF-BB) to repair diabetic wounds were developed in this work.rhPDGF-BB and poly(lactic-co-glycolic acid) (PLGA) were mixed in hexafluoroisopropyl alcohol, followed by the electrospinning of the solutions into biodegradable membranes to equip the nanofibrous membranes. An elution technique and an enzyme-linked immunosorbent assay kit were used to determine the rhPDGF-BB release rates in vitro and in vivo from this membrane. Eighteen Sprague-Dawley streptozotocin-induced diabetic rats were randomized into 3 groups: rhPDGF-BB-loaded nanofibrous membrane group, PLGA only membrane group, and conventional gauze sponge group for the wound associated with diabetes of rat in each group.The nanofibrous biodegradable membranes released effective concentrations of rhPDGF-BB for over 21 days. The nanofibrous rhPDGF-BB-loaded PLGA membranes contained more water and were further hydrophilic than PLGA only fibers. The rhPDGF-BB-loaded PLGA membranes considerably helped the diabetic wounds repairing. Furthermore, the proliferative cells and angiogenesis of rats associated with diabetes by rhPDGF-BB-loaded nanofibrous membranes were greater than those of other groups, owing to the increased matrix metalloproteinase 9.These biodegradable rhPDGF-BB-loaded membranes were effective in treating diabetic wounds as very advanced accelerators during the initial phases of wound-healing process.
机译:这项工作开发了纳米纤维可生物降解的载药膜,该膜可持续释放重组人血小板衍生生长因子(rhPDGF-BB)来修复糖尿病伤口.rhPDGF-BB和聚乳酸-乙醇酸(PLGA)混合在六氟异丙醇中溶解,然后将溶液静电纺丝到可生物降解的膜中,以装备纳米纤维膜。使用洗脱技术和酶联免疫吸附测定试剂盒来确定rhPDGF-BB从该膜的体外和体内释放速率。将18只Sprague-Dawley链脲佐菌素诱导的糖尿病大鼠随机分为3组:rhPDGF-BB加载的纳米纤维膜组,仅PLGA膜组和常规纱布海绵组,用于与大鼠糖尿病相关的伤口。纳米纤维生物降解膜释放了超过21天的有效浓度的rhPDGF-BB。载有rhPDGF-BB纳米纤维的PLGA膜比仅PLGA的纤维含有更多的水,并且亲水性更高。装有rhPDGF-BB的PLGA膜极大地帮助了糖尿病伤口的修复。此外,由于基质金属蛋白酶9的增加,rhPDGF-BB纳米纤维膜与糖尿病相关的大鼠的增殖细胞和血管生成均大于其他组。这些可生物降解的rhPDGF-BB膜可有效治疗糖尿病伤口作为伤口愈合过程初期的非常先进的促进剂。

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