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由三聚磷酸钠交联明胶海绵层和卡拉胶纳米纤维层组成的释放 PDGF 和 VEGF 的双层伤口敷料。

PDGF and VEGF-releasing bi-layer wound dressing made of sodium tripolyphosphate crosslinked gelatin-sponge layer and a carrageenan nanofiber layer.

机构信息

Department of Biomedical Engineering, Yazd Branch, Islamic Azad University, Yazd, Iran.

Advanced Materials Research Center, Department of Materials Engineering, Najafabad Branch, Islamic Azad University, Najafabad, Iran.

出版信息

Int J Biol Macromol. 2023 Apr 1;233:123491. doi: 10.1016/j.ijbiomac.2023.123491. Epub 2023 Feb 1.

Abstract

The use of dressings is one of the most common methods for wound treatment. Since most single-layer dressings cannot mimic the hierarchical structure of the skin well, multi-layer dressings have been considered. In this study, a bilayer dressing was fabricated using a gelatin sponge layer cross-linked with sodium tripolyphosphate (Gel-STPP) and a layer of carrageenan nanofibers containing platelet-rich fibrin (Carr-PRF). Chemical interactions between the two layers were characterized by FTIR, and the microstructure was visualized by SEM. It was found that the presence of Carr-PRF nanofiber layer increased tensile strength by 12.96 % (from 0.216 ± 0.015 to 0.268 ± 0.036 MPa) and elastic modulus by 56.70 % (from 0.388 ± 0.072 to 0.608 ± 0.029 MPa) compared to Gel-STPP sponge. Gel-STPP/Carr-PRF wound dressing had a 45.76 ± 4.18 % degradability after 7 days of immersion in phosphate buffered saline (PBS). PRF-containing bilayer wound dressing was able to sustainably release growth factors over 7 days. The Carr-PRF nanofiber layer coated on Gel-STPP sponge was an ideal environment for adhesion and proliferation of L929 cells. Gel-STPP/Carr-PRF bilayer dressing outperformed the other tested samples in terms of angiogenic potential. Average wound closure was 94.21 ± 2.06 % in Gel-STPP/Carr-PRF dressing treated rats after 14 days, and based on the histopathological and immunohistochemical examinations, the Gel-STPP/Carr-PRF dressing group augmented full-thickness wound healing, keratin layer and skin appendages formation after 14 days.

摘要

敷料的使用是最常见的伤口处理方法之一。由于大多数单层敷料不能很好地模拟皮肤的层次结构,因此考虑使用多层敷料。在这项研究中,使用一种用三聚磷酸钠交联的明胶海绵层(Gel-STPP)和含有富含血小板纤维蛋白的卡拉胶纳米纤维层(Carr-PRF)制备了双层敷料。通过傅里叶变换红外光谱(FTIR)对两层之间的化学相互作用进行了表征,并通过扫描电子显微镜(SEM)观察了微观结构。结果发现,与 Gel-STPP 海绵相比,Carr-PRF 纳米纤维层的存在使拉伸强度提高了 12.96%(从 0.216±0.015 增加到 0.268±0.036 MPa),弹性模量提高了 56.70%(从 0.388±0.072 增加到 0.608±0.029 MPa)。Gel-STPP/Carr-PRF 伤口敷料在磷酸盐缓冲盐水(PBS)中浸泡 7 天后的降解率为 45.76±4.18%。含 PRF 的双层伤口敷料能够在 7 天内持续释放生长因子。涂覆在 Gel-STPP 海绵上的 Carr-PRF 纳米纤维层是 L929 细胞黏附和增殖的理想环境。在血管生成潜力方面,Gel-STPP/Carr-PRF 双层敷料优于其他测试样品。在 14 天后,接受 Gel-STPP/Carr-PRF 敷料治疗的大鼠的平均伤口闭合率为 94.21±2.06%,基于组织病理学和免疫组织化学检查,Gel-STPP/Carr-PRF 敷料组在 14 天后增强了全层伤口愈合、角质层和皮肤附属物的形成。

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