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首页> 外文期刊>International Journal of Nanomedicine >Multiple cargo deliveries of growth factors and antimicrobial peptide using biodegradable nanopolymer as a potential wound healing system
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Multiple cargo deliveries of growth factors and antimicrobial peptide using biodegradable nanopolymer as a potential wound healing system

机译:使用可生物降解的纳米聚合物作为潜在的伤口愈合系统,可多次运送生长因子和抗菌肽

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Background: Treatment of wounds with the help of nanoparticles (NPs) is more effective and superior in comparison to traditional wound healing methods as it protects and sustains active drug release at the wound site thus enhancing the safety of the drug and reducing the possibility of side effects. The advantages of this method are the possibility of allowing a reduction in administered dose, limiting toxicity levels to the minimum, and increasing safety of topical delivery of the drug. Materials and methods: We report the synthesis of a novel poly (lactic-co-glycolic acid) (PLGA) NP-based multicargo delivery system for growth factors and antimicrobial peptide. Growth factors vascular endothelial growth factor (VEGF) and basic fibroblast growth factor (bFGF) were entrapped in PLGA NPs by solvent diffusion method and an antimicrobial peptide (K4) was conjugated to the NP by carbodiimide chemistry. The developed multiple cargo delivery systems with growth factors (VEGF and bFGF) and an antimicrobial peptide (K4) were investigated and optimized for potential wound healing. Results: The system showed a sustained release of growth factors and was evaluated for cytotoxicity by MTT and live/dead assay, which revealed that the bioactivity of the growth factor-entrapped NPs was higher than that of free growth factors, and it also induced enhanced cell proliferation in vitro. Conclusion: The development of a system for the codelivery of growth factors (VEGF and bFGF) and an antimicrobial peptide (K4) was investigated for potential wound healing application. The entrapment of growth factors with very high efficiency is an advantage in this method along with its sustained release from the nanoparticulate system, which will enhance the angiogenesis. Our system also displayed broad-spectrum antimicrobial activity against both gram-positive and gram-negative bacteria.
机译:背景:与传统的伤口愈合方法相比,借助纳米颗粒(NPs)治疗伤口更有效,更优越,因为它可以保护并维持伤口处的主动药物释放,从而提高药物的安全性并减少侧面的可能性效果。该方法的优点是可以减少给药剂量,将毒性水平限制在最低限度,并提高局部给药的安全性。材料和方法:我们报道了一种新型的聚乳酸-乙醇酸共聚物(PLGA)基于NP的多货物递送系统,用于生长因子和抗菌肽的合成。通过溶剂扩散法将生长因子血管内皮生长因子(VEGF)和碱性成纤维细胞生长因子(bFGF)包裹在PLGA NP中,并通过碳二亚胺化学方法将抗菌肽(K4)与NP偶联。研究并开发了具有生长因子(VEGF和bFGF)和抗菌肽(K4)的多种货物输送系统,并针对潜在的伤口愈合进行了优化。结果:该系统显示出生长因子的持续释放,并通过MTT和活/死试验评估了细胞毒性,这表明被生长因子包裹的NPs的生物活性高于自由生长因子,并且还诱导了增强体外细胞增殖。结论:研究了生长因子(VEGF和bFGF)和抗菌肽(K4)的代码传递系统在潜在伤口愈合中的应用。这种方法的一个优点是,生长因子的截留效率很高,并且可以从纳米颗粒系统中持续释放,这将增强血管生成。我们的系统还显示了针对革兰氏阳性和革兰氏阴性细菌的广谱抗菌活性。

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