Dobrzyńska-Mizera Monika, Dodda Jagan Mohan, Liu Xiaohua, Knitter Monika, Oosterbeek Reece N, Salinas Pablo, Pozo Eduardo, Ferreira Ana Marina, Sadiku Emmanuel Rotimi
Institute of Materials Technology, Polymer Division, Poznan University of Technology, Poznan, Poland.
New Technologies - Research Centre (NTC), University of West Bohemia, Univerzitní 8, Pilsen, 30100, Czech Republic.
Adv Healthc Mater. 2024 Dec;13(30):e2401674. doi: 10.1002/adhm.202401674. Epub 2024 Sep 4.
Herein, the recent advances in the development of resorbable polymeric-based biomaterials, their geometrical forms, resorption mechanisms, and their capabilities in various biomedical applications are critically reviewed. A comprehensive discussion of the engineering approaches for the fabrication of polymeric resorbable scaffolds for tissue engineering, drug delivery, surgical, cardiological, aesthetical, dental and cardiovascular applications, are also explained. Furthermore, to understand the internal structures of resorbable scaffolds, representative studies of their evaluation by medical imaging techniques, e.g., cardiac computer tomography, are succinctly highlighted. This approach provides crucial clinical insights which help to improve the materials' suitable and viable characteristics for them to meet the highly restrictive medical requirements. Finally, the aspects of the legal regulations and the associated challenges in translating research into desirable clinical and marketable materials of polymeric-based formulations, are presented.
本文对可吸收聚合物基生物材料的最新进展、其几何形态、吸收机制及其在各种生物医学应用中的能力进行了批判性综述。还解释了用于组织工程、药物递送、外科、心脏病学、美学、牙科和心血管应用的聚合物可吸收支架制造工程方法的全面讨论。此外,为了解可吸收支架的内部结构,简要强调了通过医学成像技术(如心脏计算机断层扫描)对其进行评估的代表性研究。这种方法提供了关键的临床见解,有助于改善材料的适用性和可行性,使其能够满足高度严格的医学要求。最后,介绍了法规方面以及将研究转化为理想的基于聚合物配方的临床和可销售材料所面临的相关挑战。