Pishavar Elham, Khosravi Fatemeh, Naserifar Mahshid, Rezvani Ghomi Erfan, Luo Hongrong, Zavan Barbara, Seifalian Amelia, Ramakrishna Seeram
Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad 91735, Iran.
Center for Nanotechnology and Sustainability, Department of Mechanical Engineering, National University of Singapore, Singapore 117581, Singapore.
Polymers (Basel). 2021 Aug 11;13(16):2680. doi: 10.3390/polym13162680.
Regenerative medicine seeks to assess how materials fundamentally affect cellular functions to improve retaining, restoring, and revitalizing damaged tissues and cancer therapy. As potential candidates in regenerative medicine, hydrogels have attracted much attention due to mimicking of native cell-extracellular matrix (ECM) in cell biology, tissue engineering, and drug screening over the past two decades. In addition, hydrogels with a high capacity for drug loading and sustained release profile are applicable in drug delivery systems. Recently, self-healing supramolecular hydrogels, as a novel class of biomaterials, are being used in preclinical trials with benefits such as biocompatibility, native tissue mimicry, and injectability via a reversible crosslink. Meanwhile, the localized therapeutics agent delivery is beneficial due to the ability to deliver more doses of therapeutic agents to the targeted site and the ability to overcome post-surgical complications, inflammation, and infections. These highly potential materials can help address the limitations of current drug delivery systems and the high clinical demand for customized drug release systems. To this aim, the current review presents the state-of-the-art progress of multifunctional and self-healable hydrogels for a broad range of applications in cancer therapy, tissue engineering, and regenerative medicine.
再生医学旨在评估材料如何从根本上影响细胞功能,以改善受损组织的保留、修复和恢复活力以及癌症治疗。作为再生医学的潜在候选材料,在过去二十年中,水凝胶由于在细胞生物学、组织工程和药物筛选中模拟天然细胞外基质(ECM)而备受关注。此外,具有高载药能力和缓释特性的水凝胶适用于药物递送系统。最近,自愈合超分子水凝胶作为一类新型生物材料,正用于临床试验,具有生物相容性、天然组织模拟性和通过可逆交联实现可注射性等优点。同时,局部治疗剂递送是有益的,因为它能够将更多剂量的治疗剂递送至靶向部位,并且能够克服术后并发症、炎症和感染。这些极具潜力的材料有助于解决当前药物递送系统的局限性以及对定制药物释放系统的高临床需求。为此,本综述介绍了多功能和自愈合水凝胶在癌症治疗、组织工程和再生医学等广泛应用领域的最新进展。