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促进金属配合物发光体渗透和载体化以及降低其细胞毒性以用于生物成像和细胞内传感的策略。

Strategies to promote permeation and vectorization, and reduce cytotoxicity of metal complex luminophores for bioimaging and intracellular sensing.

作者信息

Holden Lorcan, Burke Christopher S, Cullinane David, Keyes Tia E

机构信息

School of Chemical Sciences, and National Centre for Sensor Research Dublin City University Dublin 9 Ireland

出版信息

RSC Chem Biol. 2021 May 5;2(4):1021-1049. doi: 10.1039/d1cb00049g. eCollection 2021 Aug 5.

Abstract

Transition metal luminophores are emerging as important tools for intracellular imaging and sensing. Their putative suitability for such applications has long been recognised but poor membrane permeability and cytotoxicity were significant barriers that impeded early progress. In recent years, numerous effective routes to overcoming these issues have been reported, inspired in part, by advances and insights from the pharmaceutical and drug delivery domains. In particular, the conjugation of biomolecules but also other less natural synthetic species, from a repertoire of functional motifs have granted membrane permeability and cellular targeting. Such motifs can also reduce cytotoxicity of transition metal complexes and offer a valuable avenue to circumvent such problems leading to promising metal complex candidates for application in bioimaging, sensing and diagnostics. The advances in metal complex probes permeability/targeting are timely, as, in parallel, over the past two decades significant technological advances in luminescence imaging have occurred. In particular, super-resolution imaging is enormously powerful but makes substantial demands of its imaging contrast agents and metal complex luminophores frequently possess the photophysical characteristics to meet these demands. Here, we review some of the key vectors that have been conjugated to transition metal complex luminophores to promote their use in intra-cellular imaging applications. We evaluate some of the most effective strategies in terms of membrane permeability, intracellular targeting and what impact these approaches have on toxicity and phototoxicity which are important considerations in a luminescent contrast or sensing agent.

摘要

过渡金属发光体正成为细胞内成像和传感的重要工具。它们在这类应用中的潜在适用性早已得到认可,但较差的膜通透性和细胞毒性是阻碍早期进展的重大障碍。近年来,受制药和药物递送领域进展与见解的部分启发,已报道了许多克服这些问题的有效途径。特别是,将生物分子以及其他不太天然的合成物种与一系列功能基序进行缀合,赋予了膜通透性和细胞靶向性。这些基序还可以降低过渡金属配合物的细胞毒性,并提供一条有价值的途径来规避此类问题,从而产生有望用于生物成像、传感和诊断的金属配合物候选物。金属配合物探针通透性/靶向性方面的进展恰逢其时,因为在过去二十年中,发光成像同时取得了重大技术进步。特别是,超分辨率成像功能强大,但对其成像造影剂有很高要求,而金属配合物发光体通常具有满足这些要求的光物理特性。在此,我们综述了一些已与过渡金属配合物发光体缀合以促进其在细胞内成像应用中使用的关键载体。我们从膜通透性、细胞内靶向性以及这些方法对毒性和光毒性的影响等方面评估了一些最有效的策略,而毒性和光毒性是发光造影剂或传感剂的重要考虑因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfcc/8341117/ee7e8b17ca32/d1cb00049g-f1.jpg

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