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Improving the Solid-State Photostability of Furosemide by Its Cocrystal Formation

机译:通过Cocrystal形成改善呋塞米的固态光稳定性

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摘要

The photostability of three types of furosemide (FUR) cocrystal (FUR-caffeine, FUR-urea, and FUR-nicotinamide cocrystals) was studied under irradiation with a D65 fluorescent lamp. The coloration of the FUR-urea pellets was significantly faster than that of the intact FUR, whereas the coloration of FUR-nicotinamide was suppressed compared with that of intact FUR and the other cocrystals. In the case of FUR-urea, the chemical degradation of FUR increased by approximately 6.6% after irradiation for 90d. On the other hand, FUR-nicotinamide showed better chemical stability, with only 1.3% of FUR degraded, which was significantly lower than the other cocrystals. The FUR-urea pellets showed a UV-Visible absorption spectrum similar to that of intact FUR, while the absorption range of FUR-nicotinamide shifted to a shorter wavelength. The light sensitivity of FUR-nicotinamide was improved because of the much lower emission of the D65 fluorescent lamp in the absorption range of the cocrystal.
机译:在用D65荧光灯照射下,研究了三种类型的呋塞胺(毛皮)COCRYSTAL(毛皮)COCRYSTAL(毛皮,毛脲和毛脲酰胺酰胺COCRYSTALS)的光稳定性。 毛发尿素颗粒的着色显着比完整毛皮的着色更快,而抑制了毛皮胺酰胺的着色与完整毛皮和其他茂密的胶囊的着色。 在毛发尿素的情况下,毛皮的化学降解在照射后升温约为60d。 另一方面,皮草烟酰胺显示出更好的化学稳定性,只有1.3%的毛皮降解,其显着低于其他钴。 毛脲颗粒显示出类似于完整毛皮的UV可见吸收光谱,而Fur-烟酰胺的吸收范围移至较短的波长。 由于COCRYSTAL的吸收范围中的D65荧光灯的发射大大降低,提高了Fur-烟酰胺的光敏感性。

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