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Stability studies on Promethazine unexposed and exposed to UV laser radiation

机译:异丙嗪未暴露和暴露于紫外线激光辐射下的稳定性研究

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As a phenothiazine derivative, Promethazine may undergo structural modifications when it is exposed to light. This process consists in the degradation of the initial compound and in the generation of new photoproducts with possible anti-infectious qualities. Stability studies are necessary in order to establish the proper use of drug solutions in different applications. At the same time, these investigations are important in the context of the generation of side-products induced by environmental conditions that bring new benefits to the compound. This study reports the stability of Promethazine aqueous solutions, based on their absorption spectra acquired before and after Nd:YAG laser irradiation sessions or under different temperature and illuminating storage conditions. Samples of Promethazine solutions in ultrapure water, at a concentration range between 10~(-6) M - 10~(-2) M, were kept in dark at 22°C, and 4°C as well as at 22°C in ambient light up to a time interval of three months. Absorption spectra were recorded periodically in order to determine any changes of the optical properties. Also, solutions of 20 mg/mL were exposed for different time intervals to laser radiation emitted at 266 nm by the Nd:YAG laser. The stability of the optical properties of irradiated Promethazine solutions for 4 h was investigated up to two months. The laser irradiated samples show similar but more rapid and intense changes compared to solutions exposed to ambient light, suggesting molecular modifications that could be due to the production of more polar phenothiazine derivatives.
机译:异丙嗪作为吩噻嗪衍生物,暴露于光线下可能会发生结构修饰。该过程包括初始化合物的降解以及具有可能的抗感染特性的新光产物的产生。为了在不同应用中正确使用药物溶液,必须进行稳定性研究。同时,这些研究在环境条件引起的副产物产生的背景下很重要,这些副产物为该化合物带来了新的好处。这项研究报告了异丙嗪水溶液的稳定性,基于其在Nd:YAG激光辐照之前或之后或在不同温度和光照条件下获得的吸收光谱。异丙嗪在超纯水中的溶液样品的浓度范围在10〜(-6)M-10〜(-2)M之间,在22°C,4°C和22°C下保持黑暗。环境光的间隔时间为三个月。周期性地记录吸收光谱以确定光学性质的任何变化。同样,将20 mg / mL的溶液以不同的时间间隔暴露于Nd:YAG激光器在266 nm处发射的激光辐射中。在长达两个月的时间内,研究了异丙嗪溶液辐照4 h的光学性能的稳定性。与暴露于环境光的溶液相比,激光辐照的样品显示出相似但更快速,更强烈的变化,表明分子修饰可能是由于产生了更多极性的吩噻嗪衍生物所致。

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