Research Center for Biosensor and Nanotheranostic, School of Biomedical Engineering, Health Science Center, Shenzhen University, Guangdong, 518060, P. R. China.
Beijing Key Laboratory for Bioengineering and Sensing Technology, Research Center for Bioengineering and Sensing Technology, School of Chemistry and Biological Engineering, University of Science and Technology Beijing, Beijing, 100083, P. R. China.
Small. 2022 Jan;18(3):e2103516. doi: 10.1002/smll.202103516. Epub 2021 Oct 3.
Luminescent covalent organic frameworks (LCOFs) have attracted significant attention due to their tunability of structures and photophysical properties at molecular level. LCOFs are built to highly ordered and periodic 2D or 3D framework structures through covalently assembling with various luminophore building blocks. Recently, the advantages of LCOFs including predesigned properties of structure, unique photoluminescence, hypotoxicity and good biocompatibility and tumor penetration, broaden their applications in biorelated fields, such as biosensing, bioimaging, and drug delivery. A specific review that analyses the advances of LCOFs in the field of biosensing and bioimaging is thus urged to emerge. Here the construction of LCOFs is reviewed first. The synthetic chemistry of LCOFs highlights the key role of chemical linkages, which not only concrete the building blocks but also affect the optical properties and even can act as the responsive sites for potential sensing applications. How to brighten LCOFs are clarified through description of structure managements. The ability to utilize the luminescence of LCOFs for applications in biosensing and bioimaging is discussed using state-of-the-art examples of varied practical goals. A prospect finally addresses opportunities and challenges the development of LCOFs facing from chemistry, physics to the applications, according to their current progress.
具有发光特性的共价有机框架(Luminescent covalent organic frameworks,LCOFs)因其在分子水平上可对结构和光物理性质进行调控而受到广泛关注。LCOFs 是通过将各种发光体砌块进行共价组装,构建成高度有序和周期性的 2D 或 3D 框架结构。最近,LCOFs 的优势,包括结构的预定性质、独特的荧光、低毒性和良好的生物相容性和肿瘤穿透性,拓宽了它们在生物相关领域的应用,如生物传感、生物成像和药物传递。因此,非常需要有一个专门的综述来分析 LCOFs 在生物传感和生物成像领域的进展。本文首先综述了 LCOFs 的构建。LCOFs 的合成化学强调了化学键的关键作用,化学键不仅将砌块具体化为实体,而且还会影响光学性质,甚至可以作为潜在传感应用的响应位点。通过描述结构管理,阐明了如何使 LCOFs 发光。最后,根据其当前进展,从化学、物理到应用等方面,讨论了将 LCOFs 的发光用于生物传感和生物成像应用的能力。最后,展望了 LCOFs 在化学、物理到应用等方面面临的机遇和挑战。