Song Xingqi, Bai Baoshuai, Li Ke, Wei Xun, Wang Yuesheng, Jia Zenghui, Ma Yuanqi, Zhang Yixin, Ji Guangyu, Zhou Guangdong, Lei Dong
Department of Plastic and Reconstructive Surgery, Shanghai Key Lab of Tissue Engineering, Shanghai 9th People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200011, P.R. China.
Shandong Provincial Key Laboratory for Tissue Regeneration and Repair and Reconstruction (Under Preparation), Research Institute of Plastic Surgery, Shandong Second Medical University, Weifang, Shandong, 261053, P.R. China.
Sci Adv. 2025 Feb 14;11(7):eadt1320. doi: 10.1126/sciadv.adt1320.
Tracheal fistula (TF) is a severe thoracic disease characterized by high mortality rates, and current treatment methods present substantial risks while presenting challenges in reepithelialization. In this study, we developed a chimeric repairing patch (CRP) featuring a double-disc structure, designed to seal TF defects and promote organized tissue regeneration. The CRP incorporates a double-cross-linking silk fibroin network and hierarchical micropores, resulting in a flexible, hydrophilic, and biocompatible patch with tissue-matching mechanical properties. The CRP could effectively seal defects and encourage tissue ingrowth, successfully repairing TF. A tissue-engineered epithelialized CRP (E-CRP) was further developed to enhance in situ reepithelialization. The CRP demonstrated reliable structural stability and facilitated effective tissue regeneration and functional reconstruction of TF defects in a large animal model. Furthermore, the customized CRPs might be preloaded into a bronchoscope and precisely delivered to TF defects via noninvasive implantation. Consequently, the proposed CRP/E-CRP represents a promising scaffold for TF treatment, with substantial transformative potential in clinical practice.
气管瘘(TF)是一种严重的胸部疾病,死亡率很高,目前的治疗方法存在很大风险,同时在再上皮化方面也面临挑战。在本研究中,我们开发了一种具有双盘结构的嵌合修复贴片(CRP),旨在封闭TF缺损并促进有组织的组织再生。CRP包含一个双交联丝素蛋白网络和分级微孔,形成了一个具有组织匹配力学性能的柔性、亲水性和生物相容性贴片。CRP能够有效封闭缺损并促进组织向内生长,成功修复TF。进一步开发了一种组织工程化上皮化CRP(E-CRP)以增强原位再上皮化。在大型动物模型中,CRP表现出可靠的结构稳定性,并促进了TF缺损的有效组织再生和功能重建。此外,定制的CRP可以预先装载到支气管镜中,并通过无创植入精确递送至TF缺损处。因此,所提出的CRP/E-CRP是一种很有前景的TF治疗支架,在临床实践中具有巨大的变革潜力。