Trombino Sonia, Sole Roberta, Curcio Federica, Cassano Roberta
Department of Pharmacy, Health and Nutritional Science, University of Calabria, Arcavacata, 87036 Rende, Italy.
Membranes (Basel). 2023 Jun 1;13(6):576. doi: 10.3390/membranes13060576.
The development of biomedical applications is a transdisciplinary field that in recent years has involved researchers from chemistry, pharmacy, medicine, biology, biophysics, and biomechanical engineering. The fabrication of biomedical devices requires the use of biocompatible materials that do not damage living tissues and have some biomechanical characteristics. The use of polymeric membranes, as materials meeting the above-mentioned requirements, has become increasingly popular in recent years, with outstanding results in tissue engineering, for regeneration and replenishment of tissues constituting internal organs, in wound healing dressings, and in the realization of systems for diagnosis and therapy, through the controlled release of active substances. The biomedical application of hydrogel membranes has had little uptake in the past due to the toxicity of cross-linking agents and to the existing limitations regarding gelation under physiological conditions, but now it is proving to be a very promising field This review presents the important technological innovations that the use of membrane hydrogels has promoted, enabling the resolution of recurrent clinical problems, such as post-transplant rejection crises, haemorrhagic crises due to the adhesion of proteins, bacteria, and platelets on biomedical devices in contact with blood, and poor compliance of patients undergoing long-term drug therapies.
生物医学应用的发展是一个跨学科领域,近年来涉及化学、药学、医学、生物学、生物物理学和生物力学工程等领域的研究人员。生物医学设备的制造需要使用生物相容性材料,这些材料不会损害活组织并具有一些生物力学特性。作为满足上述要求的材料,聚合物膜的使用近年来越来越普遍,在组织工程中,用于构成内脏器官的组织的再生和补充、伤口愈合敷料以及通过活性物质的控释实现诊断和治疗系统方面都取得了显著成果。由于交联剂的毒性以及生理条件下凝胶化存在的局限性,水凝胶膜的生物医学应用过去很少被采用,但现在它正被证明是一个非常有前景的领域。本综述介绍了膜水凝胶的使用所推动的重要技术创新,这些创新能够解决一些反复出现的临床问题,如移植后排斥危机、由于蛋白质、细菌和血小板在与血液接触的生物医学设备上粘附而导致的出血危机,以及长期药物治疗患者的依从性差等问题。