SMART Lab, Centre for Biomedical Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi-110016, India.
Bio-therapeutics Lab, Centre for Biomedical Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi-110016, India.
J Mater Chem B. 2024 Oct 23;12(41):10490-10515. doi: 10.1039/d4tb01126k.
A state of hypoxia (lack of oxygen) persists in the initial and later phases of healing in cardiovascular diseases, which can alter the tissue's repair or regeneration, ultimately affecting the structure and functionality of the related organ. Consequently, this results in a cascade of events, leading to metabolic stress and the production of reactive oxygen species (ROS) and autophagy. This unwanted situation not only limits the oxygen supply to the needy tissues but also creates an inflammatory state, limiting the exchange of nutrients and other supplements. Consequently, biomaterials have gained considerable attention to alleviate hypoxia and oxidative stress in cardiovascular diseases. Numerous oxygen releasing and antioxidant biomaterials have been developed and proven to alleviate hypoxia and oxidative stress. This review article summarizes the mechanisms involved in cardiovascular pathologies due to hypoxia and oxidative stress, as well as the treatment modalities currently in practice. The applications, benefits and possible shortcomings of these approaches have been discussed. Additionally, the review explores the role of novel biomaterials in combating the limitations of existing approaches, primarily focusing on the development of oxygen-releasing and antioxidant biomaterials for cardiac repair and regeneration. It also directs attention to various other potential applications with critical insights for further advancement in this area.
在心血管疾病的初始和后期愈合阶段,存在缺氧(氧气缺乏)状态,这会改变组织的修复或再生,最终影响相关器官的结构和功能。因此,这会引发一系列事件,导致代谢应激和活性氧(ROS)和自噬的产生。这种不良情况不仅限制了需要氧气的组织的氧气供应,还会产生炎症状态,限制营养物质和其他补充剂的交换。因此,生物材料已经引起了相当大的关注,以减轻心血管疾病中的缺氧和氧化应激。已经开发并证明了许多释放氧气和抗氧化的生物材料可以缓解缺氧和氧化应激。本文综述了由于缺氧和氧化应激引起的心血管病变的机制,以及目前正在应用的治疗方法。讨论了这些方法的应用、益处和可能的缺点。此外,该综述还探讨了新型生物材料在克服现有方法的局限性方面的作用,主要集中在开发用于心脏修复和再生的释放氧气和抗氧化的生物材料上。它还关注了其他各种潜在的应用,为该领域的进一步发展提供了关键的见解。