Department of Chemistry, Photochemistry Laboratory, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal 721302, India.
J Med Chem. 2023 Mar 23;66(6):3732-3745. doi: 10.1021/acs.jmedchem.2c01466. Epub 2023 Mar 13.
Targeted release of bioactive molecules for therapeutic purposes is a key area in the biomedical field that is growing quickly, where bioactive molecules are released passively or actively from drug delivery systems (DDSs) or bioactive donors. In the past decade, researchers have identified light as one of the prime stimuli that can implement the efficient spatiotemporally targeted delivery of drugs or gaseous molecules with minimal cytotoxicity and a real-time monitoring ability. This perspective emphasizes recent advances in the photophysical properties of ESIPT- (excited-state intramolecular proton transfer), AIE- (aggregation-induced emission), and AIE + ESIPT-attributed light-activated delivery systems or donors. The three major sections of this perspective describe the distinctive features of DDSs and donors concerning their design, synthesis, photophysical and photochemical properties, and in vitro and in vivo studies demonstrating their relevance as carrier molecules for releasing cancer drugs and gaseous molecules in the biological system.
为治疗目的靶向释放生物活性分子是生物医学领域的一个快速发展的关键领域,其中生物活性分子从药物传递系统(DDS)或生物活性供体中被动或主动释放。在过去的十年中,研究人员已经确定光作为一种主要的刺激物,可以实现药物或气态分子的高效时空靶向传递,具有最小的细胞毒性和实时监测能力。本观点强调了 ESIPT-(激发态分子内质子转移)、AIE-(聚集诱导发射)和 AIE + ESIPT 属性的光激活递药系统或供体的光物理性质的最新进展。本观点的三个主要部分描述了 DDS 和供体在设计、合成、光物理和光化学性质以及体外和体内研究方面的独特特征,这些研究证明它们作为载体分子在生物系统中释放癌症药物和气态分子的相关性。