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具有分级结构的抗炎肽接枝丝素/水凝胶杂化双纤维支架促进慢性伤口愈合。

Anti-Inflammatory Peptide-Conjugated Silk Fibroin/Cryogel Hybrid Dual Fiber Scaffold with Hierarchical Structure Promotes Healing of Chronic Wounds.

机构信息

Department of Burn and Plastic Surgery, Affiliated Hospital of Nantong University, Nantong, 226001, China.

Zhejiang Engineering Research Center for Tissue Repair Materials, Wenzhou Institute, University of the Chinese Academy of Sciences, Wenzhou, Zhejiang, 325000, China.

出版信息

Adv Mater. 2024 Apr;36(16):e2307328. doi: 10.1002/adma.202307328. Epub 2024 Feb 4.

Abstract

Chronic wounds resulting from diabetes, pressure, radiation therapy, and other factors continue to pose significant challenges in wound healing. To address this, this study introduces a novel hybrid fibroin fibrous scaffold (FFS) comprising randomly arranged fibroin fibers and vertically aligned cryogel fibers (CFs). The fibroin scaffold is efficiently degummed at room temperature and simultaneously formed a porous structure. The aligned CFs are produced via directional freeze-drying, achieved by controlling solution concentration and freezing polymerization temperature. The incorporation of aligned CFs into the expanded fibroin fiber scaffold leads to enhanced cell infiltration both in vitro and in vivo, further elevating the hybrid scaffold's tissue compatibility. The anti-inflammatory peptide 1 (AP-1) is also conjugated to the hybrid fibrous scaffold, effectively transforming the inflammatory status of chronic wounds from pro-inflammatory to pro-reparative. Consequently, the FFS-AP1+CF group demonstrates superior granulation tissue formation, angiogenesis, collagen deposition, and re-epithelialization during the proliferative phase compared to the commercial product PELNAC. Moreover, the FFS-AP1+CF group displays epidermis thickness, number of regenerated hair follicles, and collagen density closer to normal skin tissue. These findings highlight the potential of random fibroin fibers/aligned CFs hybrid fibrous scaffold as a promising approach for skin tissue filling and tissue regeneration.

摘要

由糖尿病、压力、放射疗法和其他因素引起的慢性伤口仍然对伤口愈合构成重大挑战。为了解决这个问题,本研究引入了一种新型的混合丝素纤维支架(FFS),由随机排列的丝素纤维和垂直排列的水凝胶纤维(CFs)组成。丝素支架在室温下高效脱胶,并同时形成多孔结构。通过控制溶液浓度和冷冻聚合温度,通过定向冷冻干燥生产出对齐的 CFs。将对齐的 CFs 掺入扩展的丝素纤维支架中,导致体外和体内细胞的浸润增加,进一步提高了混合支架的组织相容性。抗炎肽 1(AP-1)也被连接到混合纤维支架上,有效地将慢性伤口的炎症状态从促炎转变为修复。因此,与商业产品 PELNAC 相比,FFS-AP1+CF 组在增殖期表现出更好的肉芽组织形成、血管生成、胶原蛋白沉积和再上皮化。此外,FFS-AP1+CF 组的表皮厚度、再生毛囊数量和胶原蛋白密度更接近正常皮肤组织。这些发现强调了随机丝素纤维/对齐 CFs 混合纤维支架作为皮肤组织填充和组织再生的有前途的方法的潜力。

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