Direct photogeneration of singlet oxygen in biological medium for cancer therapy

A. Bogdanov, A. Bogdanov, V. Klimenko, N. Verlov, V. Moiseyenko
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Abstract

Advances in cancer treatment require continuous improvement and the search for new therapies. Methods for direct photogeneration of singlet oxygen in tissue using IR lasers may be an effective alternative to photodynamic tumor therapy. The physical limitation for the direct photogeneration of singlet oxygen in a biological medium is the low absorption cross section of molecular oxygen. To overcome this limitation, it is necessary to use infrared radiation with a high power density, which in a living system is limited by thermal effects. A promising direction in the development of this approach could be the use of pulsed laser irradiation. By solving the problem of direct photogeneration of cytotoxic concentrations of singlet oxygen in a biological environment, including tumor tissue, without simultaneous heating to biocritical temperatures, it is possible to develop new effective and safe methods for the treatment of malignant neoplasms. Key words: single oxygen, direct photogeneration, reactive oxygen species, cancer therapy, photobiomodulation.
生物介质中单线态氧的直接光生用于癌症治疗
癌症治疗的进步需要不断改进和寻找新的治疗方法。利用红外激光在组织中直接产生单线态氧的方法可能是光动力肿瘤治疗的有效替代方法。单线态氧在生物介质中直接光生成的物理限制是分子氧的低吸收截面。为了克服这一限制,有必要使用具有高功率密度的红外辐射,这在生命系统中受到热效应的限制。在这种方法的发展中,一个有希望的方向是使用脉冲激光照射。通过解决在生物环境(包括肿瘤组织)中不同时加热到生物临界温度的单线态氧直接光产生细胞毒性浓度的问题,有可能开发出新的有效和安全的治疗恶性肿瘤的方法。关键词:单氧,直接光生,活性氧,癌症治疗,光生物调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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