Anwar Zubair, Noreen Aisha, Usmani Muneeba, Akram Zuneera, Ejaz Muhammad Ahsan, Sheraz Muhammad Ali, Ahmed Sofia, Zahid Saima, Sabir Saba, Musharraf Syed Ghulam
Department of Pharmaceutical Chemistry, Baqai Institute of Pharmaceutical Sciences, Baqai Medical University Gadap Road, Super Highway Karachi-75340 Pakistan
Department of Pharmaceutics, Baqai Institute of Pharmaceutical Sciences, Baqai Medical University Gadap Road, Super Highway Karachi-75340 Pakistan.
RSC Adv. 2024 Dec 11;14(53):39174-39192. doi: 10.1039/d4ra05836d. eCollection 2024 Dec 10.
Riboflavin (RF) sensitized photooxidation of pyridoxine HCl (PD) in the pH range of 2.0-12.0 has been carried out under UV and visible irradiation in aerobic and anaerobic conditions. PD follows first-order kinetics in the absence and presence of RF for its photodegradation. The first-order rate constants ( ) for the photodegradation of PD in the presence of RF (0.05-0.50 × 10 M) in aerobic and anaerobic conditions range from 0.046-0.755 and 0.0089-0.755 × 10 min, respectively. RF acts as a promoter for the photodegradation of PD and the second-order rate constants ( ) are in the range of 0.026-1.285 and 0.004-0.128 × 10 M min in aerobic and anaerobic conditions, respectively. The -pH profile for the photodegradation shows a slanted curve, indicating that with an increase in pH, the rate of photodegradation of PD also increases. Green UV-visible spectrometric and high-performance liquid chromatographic (HPLC) methods have been developed for the simultaneous determination of PD and RF in pure and degraded solutions. These two developed methods are statistically compared and it is found that there is no significant difference between them. We have conducted studies to assess the formation of ground state complexes, molecular interactions, and the binding affinities of RF and PD.
在有氧和无氧条件下,于紫外光和可见光照射下,开展了核黄素(RF)对盐酸吡哆醇(PD)在pH值2.0至12.0范围内的敏化光氧化反应。在有无RF存在的情况下,PD的光降解均遵循一级动力学。在有氧和无氧条件下,当存在RF(0.05 - 0.50×10⁻⁶ M)时,PD光降解的一级速率常数(k)分别在0.046 - 0.755和0.0089 - 0.755×10⁻³ min⁻¹范围内。RF作为PD光降解的促进剂,其二级速率常数(k₂)在有氧和无氧条件下分别为0.026 - 1.285和0.004 - 0.128×10⁻³ M⁻¹ min⁻¹。光降解的lnk - pH曲线呈倾斜状,表明随着pH值升高,PD的光降解速率也增加。已开发出绿色紫外 - 可见光谱法和高效液相色谱法(HPLC),用于同时测定纯溶液和降解溶液中的PD和RF。对这两种开发的方法进行了统计学比较,发现它们之间没有显著差异。我们进行了研究,以评估基态络合物的形成、分子相互作用以及RF和PD的结合亲和力。