Pharmaceutical Analytical Chemistry Department, Faculty of Pharmacy, Al-Azhar University, Assiut Branch, Assiut, 71524, Egypt.
J Fluoresc. 2023 Sep;33(5):1887-1896. doi: 10.1007/s10895-023-03190-7. Epub 2023 Mar 3.
Community-acquired pneumonia is one of the most common infectious diseases and a substantial cause of mortality and morbidity worldwide. Therefore eravacycline (ERV) was approved by the FDA in 2018 for the treatment of acute bacterial skin infections, GIT infections, and community-acquired bacterial pneumonia caused by susceptible bacteria. Hence, a green highly sensitive, cost-effective, fast, and selective fluorimetric approach was developed for the estimation of ERV in milk, dosage form, content uniformity, and human plasma. The selective method is based on the utilization of plum juice and copper sulphate for the synthesis of green copper and nitrogen carbon dots (Cu-N@CDs) with high quantum yield. The quantum dots' fluorescence was enhanced after the addition of ERV. The calibration range was found to be in the range 1.0 - 80.0 ng mL with LOQ equal to 0.14 ng mL and LOD was found to be 0.05 ng mL. The creative method is simple to deploy in clinical labs and therapeutic drug health monitoring system. The current approach has been bioanalytically validated using US-FDA and validated ICH criteria. High-resolution transmission electron microscopy (HR-TEM), X-ray photon spectroscopy (XPS), Zeta potential measurements, fluorescence, UV-VIS, and FTIR spectroscopy have all been used to fully characterize the Cu-N@CQDs. The Cu-N@CQDs were effectively applied in human plasma and milk samples with a high percentage of recovery ranging from 97.00 to 98.80%.
社区获得性肺炎是最常见的传染病之一,也是全球发病率和死亡率的主要原因。因此,依拉环素(ERV)于 2018 年获得 FDA 批准,用于治疗急性细菌性皮肤感染、胃肠道感染和由敏感细菌引起的社区获得性细菌性肺炎。因此,开发了一种绿色、高灵敏度、经济高效、快速且选择性的荧光方法来估计牛奶、剂型、含量均匀度和人血浆中的 ERV。该选择性方法基于利用李子汁和硫酸铜合成具有高量子产率的绿色铜和氮碳点(Cu-N@CDs)。加入 ERV 后,量子点的荧光增强。校准范围在 1.0-80.0ng/mL 之间,LOQ 等于 0.14ng/mL,LOD 等于 0.05ng/mL。该创新方法简单易用,可在临床实验室和治疗药物健康监测系统中部署。该方法已使用美国 FDA 和 ICH 验证标准进行了生物分析验证。高分辨率透射电子显微镜(HR-TEM)、X 射线光电子能谱(XPS)、Zeta 电位测量、荧光、紫外可见和傅里叶变换红外光谱已被用于全面表征 Cu-N@CQDs。Cu-N@CQDs 已有效地应用于人血浆和牛奶样品中,回收率高达 97.00%至 98.80%。