金属有机骨架在生物医学中的合成、功能化及应用。
Synthesis, functionalization, and applications of metal-organic frameworks in biomedicine.
机构信息
Institute of Medical Engineering, School of Basic Medical Sciences, Xi'an Jiaotong University, Xi'an, Shaanxi 710061, China.
出版信息
Dalton Trans. 2018 Feb 13;47(7):2114-2133. doi: 10.1039/c7dt04116k.
Metal-organic frameworks (MOFs), also known as coordination polymers, have attracted extensive research interest in the past few decades due to their unique physical structures and potentially vast applications. In this review, we outline the recent progress in the synthesis, functionalization and applications of MOFs in biomedicine, mainly focusing on two promising, yet challenging areas, i.e., drug delivery and biosensing applications. A major challenge is the proper functionalization of MOFs with demanding properties suitable for biomedical applications. Extensive studies on MOFs in biomedicine have led to substantial progress in the control of key properties of MOFs such as toxicity, size and shape, and biological stability. Due to their flexible composition, pore size and easy functionalization properties, MOFs can be utilized as key components for the development of various functional systems, and their applications in drug delivery and biosensing are reviewed. Future trends and perspectives in these research areas are also outlined.
金属有机骨架(MOFs),也称为配位聚合物,由于其独特的物理结构和潜在的广泛应用,在过去几十年中引起了广泛的研究兴趣。在这篇综述中,我们概述了 MOFs 在生物医学中的合成、功能化和应用的最新进展,主要集中在两个有前途但具有挑战性的领域,即药物传递和生物传感应用。一个主要的挑战是用具有适合生物医学应用的苛刻性质的 MOFs 进行适当的功能化。对 MOFs 在生物医学中的广泛研究导致对 MOFs 的关键性质(如毒性、尺寸和形状以及生物稳定性)的控制取得了实质性进展。由于其组成灵活、孔径大和易于功能化的特性,MOFs 可用作开发各种功能系统的关键组件,综述了其在药物传递和生物传感中的应用。还概述了这些研究领域的未来趋势和展望。