Shafaat Sarah, Roman Regueros Sabiniano, Chapple Christopher, MacNeil Sheila, Hearnden Vanessa
Department of Materials Science and Engineering, Kroto Research Institute, University of Sheffield, Sheffield, UK.
Department of Urology, Royal Hallamshire Hospital, Urology Clinic, Sheffield, UK.
J Tissue Eng. 2023 Jan 27;14:20417314221149207. doi: 10.1177/20417314221149207. eCollection 2023 Jan-Dec.
Childbirth contributes to common pelvic floor problems requiring reconstructive surgery in postmenopausal women. Our aim was to develop a tissue-engineered vaginal wound model to investigate wound healing and the contribution of estradiol to pelvic tissue repair. Partial thickness scalpel wounds were made in tissue models based on decellularized sheep vaginal matrices cultured with primary sheep vaginal epithelial cells and fibroblasts. Models were cultured at an airliquid interface (ALI) for 3 weeks with and without estradiol-17β [E]. Results showed that E significantly increased wound healing and epithelial maturation. Also, E led to collagen reorganization after only 14 days with collagen fibers more regularly aligned and compactly arranged Additionally, E significantly downregulated α-SMA expression which is involved in fibrotic tissue formation. This model allows one to investigate multiple steps in vaginal wound healing and could be a useful tool in developing therapies for improved tissue healing after reconstructive pelvic floor surgery.
分娩会导致绝经后女性出现常见的盆底问题,需要进行重建手术。我们的目的是开发一种组织工程化阴道伤口模型,以研究伤口愈合以及雌二醇对盆腔组织修复的作用。在基于脱细胞绵羊阴道基质并与原代绵羊阴道上皮细胞和成纤维细胞共同培养的组织模型中制作部分厚度的手术刀伤口。模型在气液界面(ALI)培养3周,分别添加和不添加17β-雌二醇[E]。结果表明,E显著促进伤口愈合和上皮成熟。此外,E仅在14天后就导致胶原蛋白重组,胶原纤维排列更规则且紧密。此外,E显著下调参与纤维化组织形成的α-SMA表达。该模型可用于研究阴道伤口愈合的多个步骤,可能是开发改善盆底重建手术后组织愈合疗法的有用工具。