Department of Pharmaceutics, Amity Institute of Pharmacy, Amity University, Malhaur Railway Station Road, Gomti Nagar, Lucknow, Uttar Pradesh, 201313, India.
Department of Pharmaceutics, School of Pharmaceutical Sciences, Siksha 'O' Anusandhan University, Bhubaneswar, Odisha, 751030, India.
Macromol Biosci. 2024 Jul;24(7):e2400049. doi: 10.1002/mabi.202400049. Epub 2024 Apr 19.
Biomaterials denoting self-healing and versatile structural integrity are highly curious in the biomedicine segment. The injectable and/or printable 3D printing technology is explored in a few decades back, which can alter their dimensions temporarily under shear stress, showing potential healing/recovery tendency with patient-specific intervention toward the development of personalized medicine. Thus, self-healing injectable hydrogels (IHs) are stunning toward developing a paradigm for tissue regeneration. This review comprises the designing of IHs, rheological characterization and stability, several benchmark consequences for self-healing IHs, their translation into tissue regeneration of specific types, applications of IHs in biomedical such as anticancer and immunomodulation, wound healing and tissue/bone regeneration, antimicrobial potentials, drugs, gene and vaccine delivery, ocular delivery, 3D printing, cosmeceuticals, and photothermal therapy as well as in other allied avenues like agriculture, aerospace, electronic/electrical industries, coating approaches, patents associated with therapeutic/nontherapeutic avenues, and numerous futuristic challenges and solutions.
在生物医药领域,具有自我修复和多功能结构完整性的生物材料备受关注。几十年来,人们一直在探索可注射和/或可打印的 3D 打印技术,这种技术可以在剪切应力下暂时改变其尺寸,显示出潜在的愈合/恢复趋势,并针对个性化医疗的发展进行患者特异性干预。因此,自我修复可注射水凝胶(IHs)在开发组织再生范例方面具有很大的吸引力。本综述包括 IHs 的设计、流变特性和稳定性、自我修复 IHs 的几个基准结果、它们在特定类型的组织再生中的转化、IHs 在生物医学中的应用,如抗癌和免疫调节、伤口愈合和组织/骨骼再生、抗菌潜力、药物、基因和疫苗输送、眼部输送、3D 打印、化妆品以及光热治疗,以及在农业、航空航天、电子/电气行业、涂层方法、与治疗/非治疗途径相关的专利以及许多未来的挑战和解决方案等其他相关领域的应用。