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定量荧光分光光度法测定醋酸奥曲肽合成肽衍生物的纯品及其善宁安注射液的形式。

Quantitative spectrofluorimetric method for determination of octreotide acetate synthetic peptide derivative in pure and its Sandostatin ampules forms.

机构信息

Analytical Chemistry Department, Faculty of Pharmacy, Minia University, Minia, Egypt.

Analytical Chemistry Department, Faculty of Pharmacy, Minia University, Minia, Egypt.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2024 Jan 15;305:123546. doi: 10.1016/j.saa.2023.123546. Epub 2023 Oct 16.

DOI:10.1016/j.saa.2023.123546
PMID:37864971
Abstract

A unique spectrofluorimetric protocol has been conceived for octreotide (a synthetic peptide drug) quantitation in both its authentic form and its application to dosage form. The protocol has been established simply upon condensation of octreotide by ninhydrin / phenyl acetaldehyde reagent in buffered media (pH 6.2). An intense fluorescence product has been formed and quantified at 463 nm (390 nm for excitation). After optimization for various experimental conditions, a wide linear interval (0.2-4.0 µg/ml) has been used to construct the calibration curve with a determination coefficient (r) of 0.9994, a slope ± SD of 81.147 ± 0.7985, and a highly sensitive detection and quantitation limits nearly equal to 0.066 and 0.2 µg/ml, respectively. A proposed protocol has been checked in accordance with ICH validation guidelines, which indicate good accuracy and high precision of the proposed method. Furthermore, this protocol could be perfectly applied for the quantitative estimation of octreotide in its ampoules with a high degree of accuracy and precision. As a result, a developed protocol is ideally appropriate for fast and simple octreotide quantitative estimation in quality control laboratories.

摘要

已经设计了一种独特的荧光分光光度法方案,用于奥曲肽(一种合成肽药物)在其真实形式及其应用于剂型中的定量。该方案是通过在缓冲介质(pH 6.2)中用邻苯二醛/苯乙酮试剂缩合奥曲肽而简单建立的。已经形成了强烈的荧光产物,并在 463nm(激发波长为 390nm)处进行定量。在对各种实验条件进行优化后,使用了较宽的线性区间(0.2-4.0µg/ml)来构建校准曲线,其决定系数(r)为 0.9994,斜率±SD 为 81.147±0.7985,检测限和定量限均非常灵敏,接近 0.066 和 0.2µg/ml。该方案已根据 ICH 验证指南进行了检查,表明该方法具有良好的准确性和高精度。此外,该方案可完美应用于安瓿中奥曲肽的定量估计,具有高度的准确性和精密度。因此,所开发的方案非常适合在质量控制实验室中快速简便地定量估计奥曲肽。

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