Laboratory of Optical Processes in Nanostructured Materials, National Institute of Materials Physics, Atomistilor Street 405A, P.O. Box MG-7, 77125, Magurele, Romania.
Pro-Vitam Ltd., Muncitorilor Street 16, Sfantu Gheorghe, Romania.
Sci Rep. 2021 Jul 28;11(1):15338. doi: 10.1038/s41598-021-94693-5.
In this work, the photodegradation process of atorvastatin calcium (ATC) is reported as depending on: (1) the presence and the absence of excipients in the solid state; (2) the chemical interaction of ATC with phosphate buffer (PB) having pH equal to 7 and 8; and (3) hydrolysis reaction of ATC in the presence of aqueous solution of NaOH. The novelty of this work consists in the monitoring of the ATC photodegradation by photoluminescence (PL). The exposure of ATC in solid state to UV light induces the photo-oxygenation reactions in the presence of water vapors and oxygen from air. According to the X-ray photoelectron spectroscopic studies, we demonstrate that the photo-oxygenation reaction leads to photodegradation compounds having a high share of C=O bonds compared to ATC before exposure to UV light. Both in the presence of PB and NaOH, the photodegradation process of ATC is highlighted by a significant decrease in the intensity of the PL and photoluminescence excitation (PLE) spectra. According to PLE spectra, the exposure of ATC in the presence of NaOH to UV light leads to the appearance of a new band in the spectral range 340-370 nm, this belonging to the photodegradation products. Arguments concerning the chemical compounds, that resulted in this last case, are shown by Raman scattering and FTIR spectroscopy.
在这项工作中,阿托伐他汀钙 (ATC) 的光降解过程取决于:(1) 在固态中存在和不存在赋形剂;(2) ATC 与 pH 值分别为 7 和 8 的磷酸盐缓冲液 (PB) 的化学相互作用;以及 (3) 在 NaOH 水溶液存在下水解 ATC。这项工作的新颖之处在于通过光致发光 (PL) 监测 ATC 的光降解。将 ATC 暴露于固态中的紫外光会在水蒸气和空气中氧气的存在下引发光氧化反应。根据 X 射线光电子能谱研究,我们证明光氧化反应导致光降解化合物与暴露于紫外光之前的 ATC 相比具有更高比例的 C=O 键。在 PB 和 NaOH 的存在下,PL 和光致发光激发 (PLE) 光谱的强度显著降低,突出了 ATC 的光降解过程。根据 PLE 光谱,在 NaOH 存在下将 ATC 暴露于紫外光会导致在 340-370nm 的光谱范围内出现新的带,这属于光降解产物。关于在这种情况下形成的化合物的论据,通过拉曼散射和傅里叶变换红外光谱显示。