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一种具有顺序双生长因子释放功能的双层生物工程贴片,用于促进膀胱重建中的血管生成。

A bilayer bioengineered patch with sequential dual-growth factor release to promote vascularization in bladder reconstruction.

作者信息

Zhao Jian, Zhang Haoqian, Ling Zhengyun, An Ziyan, Xiao Shuwei, Wang Pengchao, Fu Zhouyang, Shao Jinpeng, Sun Yanfeng, Fu Weijun

机构信息

Medical School of PLA, Beijing 100853, China.

Department of Urology, The Third Medical Center, PLA General Hospital, Beijing 100039, China.

出版信息

Regen Biomater. 2024 Jul 25;11:rbae083. doi: 10.1093/rb/rbae083. eCollection 2024.

Abstract

Bladder tissue engineering holds promise for addressing bladder defects resulting from congenital or acquired bladder diseases. However, inadequate vascularization significantly impacts the survival and function of engineered tissues after transplantation. Herein, a novel bilayer silk fibroin (BSF) scaffold was fabricated with the capability of vascular endothelial growth factor (VEGF) and platelet derived growth factor-BB (PDGF-BB) sequential release. The outer layer of the scaffold was composed of compact SF film with waterproofness to mimic the serosa of the bladder. The inner layer was constructed of porous SF matrix incorporated with SF microspheres (MS) loaded with VEGF and PDGF-BB. We found that the 5% (w/v) MS-incorporated scaffold exhibited a rapid release of VEGF, whereas the 0.2% (w/v) MS-incorporated scaffold demonstrated a slow and sustained release of PDGF-BB. The BSF scaffold exhibited good biocompatibility and promoted endothelial cell migration, tube formation and enhanced endothelial differentiation of adipose derived stem cells (ADSCs) . The BSF patch was constructed by seeding ADSCs on the BSF scaffold. After transplantation, not only could the BSF patch facilitate the regeneration of urothelium and smooth muscle, but more importantly, stimulate the regeneration of blood vessels. This study demonstrated that the BSF patch exhibited excellent vascularization capability in bladder reconstruction and offered a viable functional bioengineered patch for future clinical studies.

摘要

膀胱组织工程有望解决先天性或后天性膀胱疾病导致的膀胱缺损问题。然而,血管化不足会显著影响移植后工程组织的存活和功能。在此,制备了一种新型双层丝素蛋白(BSF)支架,其具有血管内皮生长因子(VEGF)和血小板衍生生长因子-BB(PDGF-BB)的顺序释放能力。支架的外层由具有防水性的致密丝素蛋白膜组成,以模拟膀胱的浆膜。内层由多孔丝素蛋白基质构成,其中掺入了负载VEGF和PDGF-BB的丝素蛋白微球(MS)。我们发现,掺入5%(w/v)MS的支架表现出VEGF的快速释放,而掺入0.2%(w/v)MS的支架则显示出PDGF-BB的缓慢持续释放。BSF支架表现出良好的生物相容性,促进了内皮细胞迁移、管形成,并增强了脂肪来源干细胞(ADSC)的内皮分化。通过将ADSC接种在BSF支架上构建了BSF补片。移植后,BSF补片不仅可以促进尿路上皮和平滑肌的再生,更重要的是,还能刺激血管再生。这项研究表明,BSF补片在膀胱重建中表现出优异的血管化能力,并为未来的临床研究提供了一种可行的功能性生物工程补片。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b42/11286312/85566167a06e/rbae083f8.jpg

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