Poly(l-lactic acid)/gelatin microfiber membrane loaded with mitomycin C promoting bladder defect repair by anti-fibrosis and antibacterial action

IF 6.1 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Lunjie Zhao, Jianyou Xia, Congcong Yang, Jianping Tao, Shanfu Zhang, Wentao Hu, Chen Zhang, Jiuwu Zhang, Qiang Li and Yujie Xu
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引用次数: 0

Abstract

When the bladder is affected by factors such as tumors, tuberculosis, or trauma, its normal structure and function can be severely damaged. At this point, bladder replacement or enlargement surgery may become necessary to restore its structure and improve the patient's quality of life. Traditional bladder reconstruction surgery, specifically ileum augmentation cystoplasty, involves a complex surgical process, along with relatively large operative wounds and possible intestinal obstruction complications. There is also an urgent need for suitable bladder replacement materials. Over the past decade, synthetic bladder scaffolds have emerged as alternatives; however, most fail to simultaneously address the issues of postoperative fibrosis and bacterial infection. To overcome these challenges, we developed an electrospun poly(L-lactic acid)/gelatin (PLLA/GEL) microfiber membrane loaded with mitomycin C (MMC). By optimizing the PLLA/GEL ratio (7 : 3), the membrane exhibited both good rigidity and excellent elasticity. The MMC-loaded fibers demonstrated sustained drug release, effectively inhibiting E. coli and S. aureus in vitro. In rat partial cystectomy models, the PLLA/GEL/MMC group showed a reduction in collagen III deposition through inhibition of the TGF-β/Smad2 pathway, as well as enhanced urothelium regeneration and promotion of angiogenesis. Notably, the membrane maintained cell viability for both urothelial cells and smooth muscle cells over 7 days, confirming its biocompatibility. These findings highlight the promising potential of the PLLA/GEL/MMC microfiber membrane not only as a material for bladder tissue engineering but also as a tool for therapeutic intervention that addresses multiple facets of bladder healing and regeneration.

负载丝裂霉素C的聚乳酸/明胶微纤维膜通过抗纤维化和抗菌作用促进膀胱缺损修复
当膀胱受到肿瘤、结核或外伤等因素的影响时,其正常结构和功能会受到严重损害。在这一点上,膀胱置换或扩大手术可能是必要的,以恢复其结构和改善患者的生活质量。传统的膀胱重建手术,特别是回肠增强膀胱成形术,是一个复杂的手术过程,伴随着相对较大的手术伤口和可能的肠梗阻并发症。同时也迫切需要合适的膀胱替代材料。在过去的十年里,合成膀胱支架作为替代品出现了;然而,大多数不能同时解决术后纤维化和细菌感染的问题。为了克服这些挑战,我们开发了一种负载丝裂霉素C (MMC)的电纺丝聚乳酸/明胶(PLLA/GEL)微纤维膜。通过优化PLLA/GEL比(7:3),膜具有良好的刚性和弹性。mmc负载纤维表现出持续的药物释放,有效抑制体外大肠杆菌和金黄色葡萄球菌。在大鼠部分膀胱切除术模型中,PLLA/GEL/MMC组通过抑制TGF-β/Smad2通路,减少III型胶原沉积,增强尿路上皮再生,促进血管生成。值得注意的是,该膜在7天内维持了尿路上皮细胞和平滑肌细胞的细胞活力,证实了其生物相容性。这些发现突出了PLLA/GEL/MMC超纤维膜的巨大潜力,不仅可以作为膀胱组织工程的材料,还可以作为治疗干预的工具,解决膀胱愈合和再生的多个方面。
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来源期刊
Journal of Materials Chemistry B
Journal of Materials Chemistry B MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.30%
发文量
866
期刊介绍: Journal of Materials Chemistry A, B & C cover high quality studies across all fields of materials chemistry. The journals focus on those theoretical or experimental studies that report new understanding, applications, properties and synthesis of materials. Journal of Materials Chemistry A, B & C are separated by the intended application of the material studied. Broadly, applications in energy and sustainability are of interest to Journal of Materials Chemistry A, applications in biology and medicine are of interest to Journal of Materials Chemistry B, and applications in optical, magnetic and electronic devices are of interest to Journal of Materials Chemistry C.Journal of Materials Chemistry B is a Transformative Journal and Plan S compliant. Example topic areas within the scope of Journal of Materials Chemistry B are listed below. This list is neither exhaustive nor exclusive: Antifouling coatings Biocompatible materials Bioelectronics Bioimaging Biomimetics Biomineralisation Bionics Biosensors Diagnostics Drug delivery Gene delivery Immunobiology Nanomedicine Regenerative medicine & Tissue engineering Scaffolds Soft robotics Stem cells Therapeutic devices
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