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用于未来不规则深度皮肤伤口愈合的快速原位形成明胶蛋白水凝胶的特性研究

Characterisation of Rapid In Situ Forming Gelipin Hydrogel for Future Use in Irregular Deep Cutaneous Wound Healing.

作者信息

Nike Dewi Utami, Katas Haliza, Mohd Nor Fatimah, Hiraoka Yosuke, Tabata Yasuhiko, Idrus Ruszymah Bt Hj, Fauzi Mh Busra

机构信息

Centre for Tissue Engineering and Regenerative Medicine, Faculty of Medicine, Universiti Kebangsaan Malaysia, Bandar Tun Razak, Kuala Lumpur 56000, Malaysia.

Centre for Drug Delivery Technology, Faculty of Pharmacy, Universiti Kebangsaan Malaysia, Kuala Lumpur 56000, Malaysia.

出版信息

Polymers (Basel). 2021 Sep 17;13(18):3152. doi: 10.3390/polym13183152.

Abstract

The irregular deep chronic wound is a grand challenge to be healed due to multiple factors including slow angiogenesis that causing regenerated tissue failure. The narrow gap of deep wounds could hinder and slow down normal wound healing. Thus, the current study aimed to develop a polymerised genipin-crosslinked gelatin (gelipin) hydrogel (GNP_GH) as a potential biodegradable filler for the abovementioned limitations. Briefly, GNP_GH bioscaffolds have been developed successfully within three-minute polymerisation at room temperature (22-24 °C). The physicochemical and biocompatibility of GNP_GH bioscaffolds were respectively evaluated. Amongst GNP_GH groups, the 0.1%GNP_GH10% displayed the highest injectability (97.3 ± 0.6%). Meanwhile, the 0.5%GNP_GH15% degraded within more than two weeks with optimum swelling capacity (108.83 ± 15.7%) and higher mechanical strength (22.6 ± 3.9 kPa) than non-crosslinked gelatin hydrogel 15% (NC_GH15%). Furthermore, 0.1%GNP_GH15% offered higher porosity (>80%) and lower wettability (48.7 ± 0.3) than NC_GH15%. Surface and cross-section SEM photographs displayed an interconnected porous structure for all GNP_GH groups. The EDX spectra and maps represented no major changes after GNP modification. Moreover, no toxicity effect of GNP_GH against dermal fibroblasts was shown during the biocompatibility test. In conclusion, the abovementioned findings indicated that gelipin has excellent physicochemical properties and acceptable biocompatibility as an acellular rapid treatment for future use in irregular deep cutaneous wounds.

摘要

不规则的深部慢性伤口由于多种因素(包括导致再生组织失败的血管生成缓慢)而难以愈合。深部伤口的狭窄间隙会阻碍并减缓正常的伤口愈合。因此,本研究旨在开发一种聚合京尼平交联明胶(gelipin)水凝胶(GNP_GH),作为一种潜在的可生物降解填充物,以克服上述局限性。简而言之,GNP_GH生物支架已在室温(22 - 24°C)下三分钟内成功制备。分别评估了GNP_GH生物支架的物理化学性质和生物相容性。在GNP_GH组中,0.1%GNP_GH10%表现出最高的可注射性(97.3±0.6%)。同时,0.5%GNP_GH15%在两周多的时间内降解,具有最佳的溶胀能力(108.83±15.7%),并且比非交联明胶水凝胶15%(NC_GH15%)具有更高的机械强度(22.6±3.9 kPa)。此外,0.1%GNP_GH15%比NC_GH15%具有更高的孔隙率(>80%)和更低的润湿性(48.7±0.3)。表面和横截面扫描电子显微镜照片显示所有GNP_GH组均具有相互连接的多孔结构。能谱仪(EDX)光谱和图谱表明GNP修饰后无重大变化。此外,在生物相容性测试中未显示GNP_GH对真皮成纤维细胞有毒性作用。总之,上述研究结果表明,gelipin作为一种无细胞快速治疗方法,具有优异的物理化学性质和可接受的生物相容性,可用于未来不规则深部皮肤伤口的治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdbf/8468405/5eac8a77ece9/polymers-13-03152-sch001.jpg

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