Department of Drug Sciences, University of Pavia, 27100 Pavia, Italy.
Department of Clinical, Surgical, Diagnostic & Pediatric Sciences, University of Pavia, IRCCS Policlinico S. Matteo, 27100 Pavia, Italy.
Int J Mol Sci. 2020 Mar 4;21(5):1764. doi: 10.3390/ijms21051764.
Aim of work was to locate a simple, reproducible protocol for uniform seeding and optimal cellularization of biodegradable patch minimizing the risk of structural damages of patch and its contamination in long-term culture. Two seeding procedures are exploited, namely static seeding procedures on biodegradable and biocompatible patches incubated as free floating (floating conditions) or supported by CellCrown insert (fixed conditions) and engineered by porcine bone marrow MSCs (p-MSCs). Scaffold prototypes having specific structural features with regard to pore size, pore orientation, porosity, and pore distribution were produced using two different techniques, such as temperature-induced precipitation method and electrospinning technology. The investigation on different prototypes allowed achieving several implementations in terms of cell distribution uniformity, seeding efficiency, and cellularization timing. The cell seeding protocol in stating conditions demonstrated to be the most suitable method, as these conditions successfully improved the cellularization of polymeric patches. Furthermore, the investigation provided interesting information on patches' stability in physiological simulating experimental conditions. Considering the in vitro results, it can be stated that the in vitro protocol proposed for patches cellularization is suitable to achieve homogeneous and complete cellularizations of patch. Moreover, the protocol turned out to be simple, repeatable, and reproducible.
工作目的是找到一种简单、可重复的方案,用于均匀接种和最佳细胞化可生物降解贴片,最大程度地降低贴片结构损坏的风险及其在长期培养中的污染。利用两种接种程序,即在作为游离漂浮(漂浮条件)或由 CellCrown 插入物支撑(固定条件)孵育的可生物降解和生物相容的贴片上进行静态接种程序,并由猪骨髓间充质干细胞(p-MSCs)进行工程化。使用两种不同的技术(例如温度诱导沉淀法和静电纺丝技术)来生产具有特定结构特征(孔径、孔取向、孔隙率和孔分布)的支架原型。对不同原型的研究实现了细胞分布均匀性、接种效率和细胞化时间方面的多种实施。在起始条件下的细胞接种方案被证明是最合适的方法,因为这些条件成功地促进了聚合物贴片的细胞化。此外,研究还提供了有关贴片在生理模拟实验条件下稳定性的有趣信息。考虑到体外结果,可以指出,为贴片细胞化提出的体外方案适合实现贴片的均匀和完全细胞化。此外,该方案简单、可重复且可重现。