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Preparation and Properties of Minocycline-Loaded Carboxymethyl Chitosan Gel/Alginate Nonwovens Composite Wound Dressings

机译:米诺环素负载羧甲基壳聚糖凝胶/藻酸盐非织造布复合伤口敷料的制备及性能

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摘要

As derivatives from marine natural biomaterials, alginate-based and chitosan-based biomaterials are commonly used in wound dressings. Calcium alginate fiber (CAF) dressings possess excellent absorption and unique gel forming performance, but the low bioactivity limits its application in wound healing. Carboxymethyl chitosan (CM-Chit) has excellent antibacterial activity, but the gel structure with weak mechanical properties restricts its application. In this study, minocycline (Mino)/CM-Chit solution was coated on the surface of plasma treated CAF needle-punched nonwovens, and then Mino loaded CM-Chit gel/CAF nonwovens composite dressings were fabricated by EDC/NHS (1-3-(3-dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride/N-hydroxysuccinimide) crosslinking. The dressings had a porous composite structure, which allowed them to quickly absorb and store a large number of wound exudates. Skin-like tensile performance allowed the dressings to provide a better healing environment. Antibacterial assay against and indicated that the addition of Mino significantly improved the antibacterial activity of the wound dressings. The tight structure of CM-Chit gel prevented the burst release of Mino so that the dressings had antibacterial activity in a certain period of release time. Cell culture assay showed that the dressings had excellent cell biocompatibility. As new functional dressings, the prepared composite dressings had excellent potential in the clinical healing of wounds.
机译:作为来自海洋天然生物材料的衍生物,藻酸盐基和壳聚糖基生物材料通常用于伤口敷料中。海藻酸钙纤维(CAF)敷料具有出色的吸收能力和独特的凝胶形成性能,但是低生物活性限制了其在伤口愈合中的应用。羧甲基壳聚糖(CM-Chit)具有出色的抗菌活性,但机械性能较弱的凝胶结构限制了其应用。在这项研究中,将米诺环素(Mino)/ CM-Chit溶液涂覆在经过等离子体处理的CAF针刺无纺布的表面上,然后通过EDC / NHS制备Mino负载的CM-Chit凝胶/ CAF无纺布复合敷料(1-3 -(3-二甲基氨基丙基)-3-乙基碳二亚胺盐酸盐/ N-羟基琥珀酰亚胺)交联。敷料具有多孔的复合结构,这使得它们可以快速吸收并存储大量伤口渗出液。皮肤般的拉伸性能使敷料提供了更好的愈合环境。抗菌试验表明,加入Mino可以显着改善伤口敷料的抗菌活性。 CM-Chit凝胶的紧密结构阻止了Mino的突然释放,因此敷料在一定的释放时间内具有抗菌活性。细胞培养测定表明敷料具有优异的细胞生物相容性。作为新型功能性敷料,制备的复合敷料在伤口的临床愈合中具有极好的潜力。

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