Paul Kallyanashis, Darzi Saeedeh, O'Connell Cathal D, Hennes David M Z B, Rosamilia Anna, Gargett Caroline E, Werkmeister Jerome A, Mukherjee Shayanti
The Ritchie Centre, Hudson Institute of Medical Research, Clayton, 3168, Australia.
Department of Obstetrics and Gynaecology, Monash University, Clayton, 3168, Australia.
Adv Sci (Weinh). 2025 Mar;12(11):e2405004. doi: 10.1002/advs.202405004. Epub 2024 Sep 19.
Pelvic organ prolapse (POP) is a highly prevalent yet neglected health burden for women. Strengthening the pelvic floor with bioactive tissue-engineered meshes is an emerging concept. This study investigates tissue regenerative design parameters, including degradability, porosity, and angulation, to develop alternative degradable melt electrowritten (MEW) constructs for surgical applications of POP. MEW constructs were fabricated in hierarchical geometries by two-way stacking of the fibers with three different inter layer angles of 90°, 45°, or 22.5°. Implants printed at 22.5° have higher tensile strength under dry conditions and show better vaginal fibroblast (VF) attachment in vitro. In vivo assessment using preclinical mouse and ovine models demonstrates more effective degradation and improved tissue integration in 22.5° angular meshes compared to 90° and 45° meshes, with evidence of neo-collagen deposition within implants at 6 weeks. The pattern and geometry of the layered MEW implants also influence the foreign body response, wherein the anti-inflammatory phenotype shows a greater ratio of anti-inflammatory CD206+ M2 macrophages/pro-inflammatory CCR7+ M1 macrophages. This presents an attractive strategy for improving the design and fabrication of next-generation vaginal implants for pelvic reconstructive surgery.
盆腔器官脱垂(POP)是一种普遍存在但被忽视的女性健康负担。使用生物活性组织工程网片加强盆底是一个新兴概念。本研究调查了组织再生设计参数,包括可降解性、孔隙率和角度,以开发用于POP手术应用的替代性可降解熔体电纺(MEW)构建体。通过以90°、45°或22.5°三种不同的层间角度对纤维进行双向堆叠,在分层几何结构中制造MEW构建体。在干燥条件下,以22.5°打印的植入物具有更高的拉伸强度,并且在体外显示出更好的阴道成纤维细胞(VF)附着。使用临床前小鼠和绵羊模型进行的体内评估表明,与90°和45°网片相比,22.5°角网片的降解更有效,组织整合性更好,在6周时植入物内有新胶原沉积的证据。分层MEW植入物的图案和几何形状也会影响异物反应,其中抗炎表型显示抗炎性CD206 + M2巨噬细胞/促炎性CCR7 + M1巨噬细胞的比例更高。这为改进用于盆腔重建手术的下一代阴道植入物的设计和制造提供了一种有吸引力的策略。