Zhang Yi, Yang Jian
Department of Bioengineering, University of Texas at Arlington, Arlington, TX 76010 ; Joint Biomedical Engineering Program, The University of Texas Southwestern Medical Center and The University of Texas at Arlington, Dallas, TX 75390.
J Mater Chem B. 2013 Jan 14;1(2):132-148. doi: 10.1039/C2TB00071G.
The marriage of biodegradable polymer and fluorescent imaging has resulted in an important area of polymeric biomaterials: biodegradable fluorescent polymers. Researchers have put significant efforts on developing versatile fluorescent biomaterials due to their promising in biological/biomedical labeling, tracking, monitoring, imaging, and diagnostic applications, especially in drug delivery, tissue engineering, and cancer imaging applications. Biodegradable fluorescent polymers can function not only as implant biomaterials but also as imaging probes. Currently, there are two major classes of biodegradable polymers used as fluorescent materials. The first class is the combination of non-fluorescent biodegradable polymers and fluorescent agents such as organic dyes and quantum dots. Another class of polymers shows intrinsic photoluminescence as polymers by themselves carrying integral fluorescent chemical structures in or pendent to their polymer backbone, such as Green Fluorescent protein (GFP), and the recently developed biodegradable photoluminescent polymer (BPLP). Thus there is no need to conjugate or encapsulate additional fluorescent materials for the latter. In the present review, we will review the fluorescent biodegradable polymers with emphases on material fluorescence mechanism, design criteria for fluorescence, and their cutting-edge applications in biomedical engineering. We expect that this review will provide insightful discussion on the fluorescent biomaterial design and lead to innovations for the development of the next generation of fluorescent biomaterials and fluorescence-based biomedical technology.
可生物降解荧光聚合物。由于其在生物/生物医学标记、追踪、监测、成像及诊断应用(尤其是药物递送、组织工程和癌症成像应用)方面的潜力,研究人员在开发多功能荧光生物材料方面投入了大量精力。可生物降解荧光聚合物不仅可作为植入生物材料,还可作为成像探针。目前,用作荧光材料的可生物降解聚合物主要有两大类。第一类是由非荧光可生物降解聚合物与荧光剂(如有机染料和量子点)组合而成。另一类聚合物本身带有完整的荧光化学结构,或连接在聚合物主链上,或存在于聚合物主链内,因而具有固有光致发光特性,如绿色荧光蛋白(GFP)以及最近开发的可生物降解光致发光聚合物(BPLP)。因此,对于后者而言,无需共轭或封装额外的荧光材料。在本综述中,我们将着重从材料荧光机制、荧光设计标准及其在生物医学工程中的前沿应用等方面对可生物降解荧光聚合物进行综述。我们期望本综述能为荧光生物材料设计提供深刻的讨论,并为下一代荧光生物材料及基于荧光的生物医学技术的发展带来创新。