使用可切换的水友性溶剂进行微提取,以确定口服液中的皮质醇和,通过高性能液体染色学-二极管阵列检测
Carolina Silveira Dalanhol1, Camila Scheid1, Josias Merib1,2
1Programa de Pós-Graduação em Biociências, Universidade Federal de Ciências da Saúde de Porto Alegre, Porto Alegre, Brazil.
Journal of separation science
|November 8, 2024
概括
这项研究引入了一种新的,可持续的方法,用于测量口服液 (OF) 中的皮质醇和,使用可切换的水友性溶剂. 经过验证的技术为诊断复杂的荷尔蒙障碍提供了准确的生物标志物确定.
科学领域:
- 分析化学 分析化学
- 生物标记分析 生物标记分析
- 环境化学环境化学
背景情况:
- 皮质醇和是诊断PCOS和库辛综合征等疾病的关键生物标志物.
- 重叠的症状往往使差异诊断复杂化.
- 准确和高效的生物标志物测定方法至关重要.
研究的目的:
- 开发和验证一种用于测定口服液中皮质醇和的新型分析方法.
- 使用可切换的水友性溶剂,以提高提取效率.
- 评估开发方法的可持续性和绿色性.
主要方法:
- 开发可切换的水友性基于溶剂的提取方法.
- 使用二极管阵列检测 (HPLC-DAD) 的高性能液体染色学测定皮质醇和.
- 提取条件的优化,包括溶剂成分和样品体积.
主要成果:
- 该方法实现了高的确定系数 (>0.9926).
- 获得了低检测极限 (4.55 ng/mL) 和量化极限 (15.00 ng/mL).
- 显示出极好的精度 (一天内:5.611.9%;一天内:6.113.5%) 和恢复 (98.9104.6%的皮质醇,89.1103.9%的丸激素).
结论:
- 开发的方法是可靠和准确的皮质醇和在口服液的分析.
- 使用可切换的水友性溶剂为样品制备提供了一种可持续的方法.
- 这种方法为临床诊断荷尔蒙障碍提供了有价值的工具.
相关概念视频
High-Performance Liquid Chromatography: Elution Process
428
In High-Performance Liquid Chromatography (HPLC), the elution process is critical to the separation of analytes and the quality of chromatographic results. Elution describes how compounds move through the column and separate based on their interactions with the mobile and stationary phases. This process determines the resolution, peak shape, and retention times in the chromatogram, which are essential for identifying and quantifying components in complex mixtures. Understanding the elution...
428
Capillary Electrophoresis: Applications
336
Capillary electrophoretic separations offer various modes, each with unique applications. These modes include capillary zone electrophoresis, capillary gel electrophoresis, capillary array electrophoresis, capillary isoelectric focusing, capillary isotachophoresis, micellar electrokinetic chromatography, and capillary electrochromatography.
Capillary zone electrophoresis (CZE) separates ionic components based on their electrophoretic mobility. It has been used to separate proteins, amino acids,...
Capillary zone electrophoresis (CZE) separates ionic components based on their electrophoretic mobility. It has been used to separate proteins, amino acids,...
336
High-Performance Liquid Chromatography: Introduction
1.5K
High-performance liquid chromatography(HPLC), formerly referred to as High-pressure liquid chromatography, is a powerful technique used to separate, identify, and quantify components in complex mixtures. The term "high pressure" refers to using high pressure to push the liquid mobile phase through the tightly packed columns.
In HPLC, two phases play a critical role in the separation process:
In HPLC, two phases play a critical role in the separation process:
1.5K
Supercritical Fluid Chromatography
209
Supercritical fluid chromatography (SFC) provides a beneficial substitute for gas chromatography (GC) and liquid chromatography (LC) for certain samples because it merges the top attributes of both techniques. SFC allows the separation and analysis of compounds that GC or LC does not easily manage. These compounds are traditionally nonvolatile or thermally unstable, making GC unsuitable and lacking functional groups required for HPLC analysis.
SFC utilizes a supercritical fluid mobile phase,...
SFC utilizes a supercritical fluid mobile phase,...
209
High-Performance Liquid Chromatography: Instrumentation
1.4K
High-performance liquid chromatography, or HPLC, is an analytical technique that separates liquid samples under high pressures. An HPLC instrument consists of glass bottles for storing solvents called mobile phase reservoirs. HPLC-grade solvents are used to maintain high purity, and the dissolved gases are removed using a degasser, such as a vacuum pumping system or sparging with helium. The solvents are then pumped into the analytical column using a screw-driven syringe or reciprocating pumps.
1.4K
High-Performance Liquid Chromatography: Types of Detectors
485
The role of the detectors in High-Performance Liquid Chromatography (HPLC) is to analyze the solutes as they exit from the chromatographic column. The detector recognizes the solute's property and generates corresponding electrical signals, which are converted into a readable graph of the detector's response versus elution time called a chromatogram at the computer. There are several types of HPLC detectors, each with its own advantages and limitations, depending on the analyte...
485


