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在猪模型中使用基于鲑鱼明胶的生物材料作为伤口敷料对皮肤伤口再上皮化的评估

Re-Epithelialization Appraisal of Skin Wound in a Porcine Model Using a Salmon-Gelatin Based Biomaterial as Wound Dressing.

作者信息

Acevedo Cristian A, Sánchez Elizabeth, Orellana Nicole, Morales Patricio, Olguín Yusser, Brown Donald I, Enrione Javier

机构信息

Centro de Biotecnología, Universidad Técnica Federico Santa María, Avenida España 1680, Valparaíso 2340000, Chile.

Departamento de Física, Universidad Técnica Federico Santa María, Avenida España 1680, Valparaíso 2340000, Chile.

出版信息

Pharmaceutics. 2019 Apr 26;11(5):196. doi: 10.3390/pharmaceutics11050196.

Abstract

The design of new functional materials for skin tissue engineering is an area of constant research. In this work, a novel wound-dressing biomaterial with a porous structure, previously formulated using salmon-gelatin as main component (called salmon-gelatin biomaterial (SGB)), was tested in vivo using pigs as skin wound models. Four weeks after cutaneous excision and implantation in the animals, the healing process did not show apparent symptoms of inflammation or infection. Interestingly, the temporal evolution of wound size from 100% to around 10% would indicate a faster recovery when SGB was compared against a commercial control. Histological analysis established that wounds treated with SGB presented similar healing and epithelialization profiles with respect to the commercial control. Moreover, vascularized granulation tissue and epithelialization stages were clearly identified, indicating a proliferation phase. These results showed that SGB formulation allows cell viability to be maintained. The latter foresees the development of therapeutic alternatives for skin repair based on SGB fabricated using low cost production protocols.

摘要

用于皮肤组织工程的新型功能材料设计是一个持续研究的领域。在这项工作中,一种先前以鲑鱼明胶为主要成分配制的具有多孔结构的新型伤口敷料生物材料(称为鲑鱼明胶生物材料(SGB)),以猪作为皮肤伤口模型进行了体内测试。在动物身上进行皮肤切除和植入四周后,愈合过程未显示出明显的炎症或感染症状。有趣的是,当将SGB与商业对照进行比较时,伤口大小从100%到约10%的时间演变表明恢复更快。组织学分析表明,用SGB处理的伤口与商业对照相比呈现出相似的愈合和上皮形成特征。此外,明确识别出血管化肉芽组织和上皮形成阶段,表明处于增殖期。这些结果表明,SGB配方能够维持细胞活力。后者预示着基于使用低成本生产方案制造的SGB开发皮肤修复治疗替代方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b43/6571591/ff44bbf5a08c/pharmaceutics-11-00196-g001.jpg

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