Spectroscopic study of methylene blue photophysical properties in biological media

Q3 Medicine
Д. В. Поминова, Анна Владимировна Рябова, И.Д. Романишкин, И.В. Маркова, Е. В. Ахлюстина, А.С. Скобельцин, Skobeltsin A.S Pominova
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引用次数: 0

Abstract

A spectroscopic study of the photophysical properties of methylene blue (MB) in aqueous solutions was carried out. Absorption and fluorescence spectra as well as fluorescence lifetime were recorded. The concentration dependence of the intensity and shape of the spectra allowed establishing the ranges of MB concentrations for in vitro and in vivo studies at which aggregation is not observed (up to 0.01 mM, which corresponds to 3.2 mg/kg). Studies of photodegradation in biological media showed that photobleaching of more than 80% in plasma and culture media is observed already at a dose of 5 J/cm2 , while in water at this concentration and dose photobleaching is not yet observed, and at a dose of 50 J/cm2  photobleaching of MB is about 30%. It was found that in media containing proteins and having an alkaline pH, photobleaching occurs significantly faster than in neutral aqueous media. The ionic strength of the solution has no effect on the photobleaching rate. Such photobleaching is caused by the photodegradation of MB rather than the transition to the leucoform.The efficiency of singlet oxygen generation and photodynamic activity were evaluated in vitro. In the investigated range of MB concentrations, the efficiency of singlet oxygen generation is rather low, because positively charged MB binds to negatively charged cell membranes, which leads to a change in the type of photodynamic reaction. The emergence of other reactive oxygen species (ROS), different from singlet oxygen, in cells has been demonstrated. The generation of ROS and the low quantum yield of singlet oxygen generation indicate the tendency of MB to provide the type I photosensitization mechanism (electron transfer with the formation of semi-reduced and semi-oxidized MB+ radicals) rather than to the type II mechanism (energy transfer to oxygen with the formation of singlet oxygen) in biological media and in vivo.
生物介质中亚甲基蓝光物理性质的光谱研究
对亚甲基蓝(MB)在水溶液中的光物理性质进行了光谱研究。记录了吸收光谱和荧光光谱以及荧光寿命。光谱强度和形状的浓度依赖性允许建立未观察到聚集的体外和体内研究的MB浓度范围(高达0.01mM,相当于3.2mg/kg)。对生物介质中光降解的研究表明,在5J/cm2的剂量下,已经在血浆和培养基中观察到超过80%的光漂白,而在该浓度和剂量的水中还没有观察到光漂白,并且在50J/cm2剂量下,MB的光漂白约为30%。研究发现,在含有蛋白质并具有碱性pH的介质中,光漂白的发生速度明显快于中性水性介质。溶液的离子强度对光漂白速率没有影响。这种光漂白是由MB的光降解而不是向隐色体的转变引起的。在体外评价了单线态氧的产生效率和光动力活性。在所研究的MB浓度范围内,单线态氧生成的效率相当低,因为带正电的MB与带负电的细胞膜结合,这导致光动力反应类型的变化。细胞中出现了不同于单线态氧的其他活性氧(ROS)。ROS的产生和单线态氧产生的低量子产率表明MB在生物介质和体内倾向于提供I型光敏机制(电子转移,形成半还原和半氧化的MB+自由基),而不是II型机制(能量转移到氧,形成单线态氧)。
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来源期刊
Biomedical Photonics
Biomedical Photonics Medicine-Surgery
CiteScore
1.80
自引率
0.00%
发文量
19
审稿时长
8 weeks
期刊介绍: The main goal of the journal – to promote the development of Russian biomedical photonics and implementation of its advances into medical practice. The primary objectives: - Presentation of up-to-date results of scientific and in research and scientific and practical (clinical and experimental) activity in the field of biomedical photonics. - Development of united Russian media for integration of knowledge and experience of scientists and practitioners in this field. - Distribution of best practices in laser medicine to regions. - Keeping the clinicians informed about new methods and devices for laser medicine - Approval of investigations of Ph.D candidates and applicants.
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