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DNA-modulated photosensitization: current status and future aspects in biosensing and environmental monitoring

机译:DNA调制的光敏化:生物传感和环境监测的当前状态和未来方面

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摘要

Recently, photosensitized oxidation has been explored in many fields of research and applications, such as photodynamic therapy (PDT) and photodynamic antimicrobial chemotherapy (PACT). Although the photosensitized generation of ROS features emerging applications, controllable management of the photosensitization process is still sometimes problematic. DNA has long been considered the carrier for genetic information. With the in-depth study of the chemical properties of DNA, the molecular function of DNA is gradually witnessed by the scientific community. Undoubtedly, the selective recognition nature of DNA endows them excellent candidate modulators for photosensitized oxidation. According to current research, reports on DNA regulation of photosensitized oxidation can be roughly divided into two categories in principle: P-Q quenching pair-switched photosensitization and host-guest interaction-switched photosensitization. In this review, the development status of these two analytical methods will be summarized, and the future development direction of DNA-modulated photosensitization in biosensing and environmental monitoring will also be prospected.
机译:最近,在许多研究和应用领域探讨了光敏氧化,例如光动力治疗(PDT)和光动力抗菌化疗(PACT)。虽然ROS的光敏成产生具有新兴应用的功能,但是光敏过程的可控管理仍有有时是有问题的。 DNA长期被认为是遗传信息的载体。随着DNA化学性质的深入研究,科学界逐渐见证DNA的分子函数。毫无疑问,DNA的选择性识别性质赋予它们优异的候选调节剂,用于光敏氧化。根据目前的研究,关于光敏氧化的DNA调节的报告可以大致原则上分为两类:P-Q淬火配对切换的光敏和寄主访客交互切换光敏。在本综述中,将概述这两种分析方法的发展状况,并将展望未来DNA调制的生物传感和环境监测中的DNA调制光敏的发展方向。

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