Hyperbranched polylysine/oxidized carboxymethyl cellolose integrated gelatin composite for wound treatment

Fatemeh Hakimi , Moein Kosari , Parya Esmaeelnejad , Shabnam Sattari , Fahimeh Kazeminava , Sheida Moradi , Motaleb Ghasemian , Mohsen Adeli , Zainab Ahmadian
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Abstract

Herein, we report the preparation and evaluation of a new composite consisting of gelatin matrix, oxidized carboxymethyl cellulose (OCMC), and hyperbranched polylysine (PL) components for full-thickness wound treatment. To enhance the antimicrobial activity of the gelatin matrix, OCMC/PL was successfully combined with this matrix via the Schiff base reaction. Moreover, allantoin (Alla) as a drug model was loaded by this composite and the optimal formulation for wound healing (PLOCG-Alla) was obtained. The structural properties, thermal stability, crystallinity and interactions between materials were investigated using SEM, TGA, XRD and FTIR techniques. Cytotoxicity and antibacterial capacity were evaluated by MTT assay and colony counting methods, respectively. The release behavior was investigated at two different pH values. Blood coagulation and wound healing potential were also evaluated in vivo. PLOCG-Alla exhibited high antibacterial capacity, pH-dependent release behavior, biocompatibility and high blood clotting ability. It also accelerated wound healing in vivo.

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用于伤口治疗的超支化聚赖氨酸/氧化羧甲基纤维素集成明胶复合材料
在此,我们报告了一种由明胶基质、氧化羧甲基纤维素(OCMC)和超支化聚赖氨酸(PL)成分组成的新型复合材料的制备和评估情况,该复合材料可用于全厚伤口治疗。为了增强明胶基质的抗菌活性,OCMC/PL 通过希夫碱反应与明胶基质成功结合。此外,该复合材料还添加了尿囊素(Alla)作为药物模型,并获得了用于伤口愈合的最佳配方(PLOCG-Alla)。利用 SEM、TGA、XRD 和 FTIR 技术研究了材料的结构特性、热稳定性、结晶度和相互作用。细胞毒性和抗菌能力分别通过 MTT 法和菌落计数法进行了评估。研究了两种不同 pH 值下的释放行为。此外,还对体内血液凝固和伤口愈合潜力进行了评估。结果表明,PLOCG-Alla 具有很高的抗菌能力、随 pH 值变化的释放行为、生物相容性和较高的凝血能力。它还能加速体内伤口愈合。
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