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相关概念视频

Mass Spectrometry: Complex Analysis01:21

Mass Spectrometry: Complex Analysis

1.6K
Mass spectrometry is an important technique for the identification of pure compounds. However, it has some limitations for the analysis of complex mixtures, often due to excessive fragmentation making the spectrum too complicated to decipher. Mass spectrometry can be combined with suitable separation methods in sequence, forming hyphenated methods, which are useful in the analysis of complex mixtures.
GC–MS is a powerful hyphenated method commonly used in forensics and environmental...
1.6K
Electrospray Ionization (ESI) Mass Spectrometry01:12

Electrospray Ionization (ESI) Mass Spectrometry

2.1K
Higher molecular weight biomolecules are nonvolatile compounds that may decompose before ionizing or vaporizing during mass analysis with conventional electron impact ionization methods. Accordingly, electrospray ionization (ESI) is the favored method for vaporizing and ionizing biomolecules as it circumvents rapid fragmentation and enables the recording of mass signals for the entire biomolecule.
ESI utilizes electrical energy to transfer ions from the liquid phase of the sample into the...
2.1K
Tandem Mass Spectrometry01:21

Tandem Mass Spectrometry

2.3K
Tandem mass spectrometry is a technique that uses multiple mass analyzers in series to obtain a higher selectivity and reduce chemical noise during analyte detection. Instruments with multiple analyzers separated by an interaction cell enable secondary fragmentation and selected study of the fragment ions.Secondary fragmentations occur in the interaction cell and can be induced by various factors. Fragmentation induced by collision with inert gases, such as N2, Ar, He, etc., is called...
2.3K
Mass Spectrometry: Overview01:19

Mass Spectrometry: Overview

8.2K
Mass spectrometry is an analytical technique used to determine the molecular mass and molecular formula of a compound. The basic principle of mass spectrometry is to generate ions from the analyte molecule and measure these ion abundances against their molecular mass. One common type of ionization, known as electron ionization or EI, bombards the analyte molecules in the gas phase with high-energy electron beams. The electron beams displace an electron from the molecule and leave behind a...
8.2K
MALDI-TOF Mass Spectrometry01:19

MALDI-TOF Mass Spectrometry

6.5K
Mass spectrometry is a powerful characterization technique that can identify and separate a wide variety of compounds ranging from chemical to biological entities, based on their mass-to-charge ratio (m/z). The instruments that allow this detection, known as mass spectrometers, have three components: an ion source, a mass analyzer, and a detector. These spectrometers differ based on the nature of their ion source and analyzers.Matrix-assisted laser desorption ionization (MALDI) is a commonly...
6.5K
Mass Spectrometers01:16

Mass Spectrometers

8.2K
This lesson details the instrumentation of a mass spectrometer—a physical instrument to perform mass spectrometry on analyte molecules and record the characteristic mass spectra. This is achieved via three chief functions:
8.2K

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Leaf Spray Mass Spectrometry: A Rapid Ambient Ionization Technique to Directly Assess Metabolites from Plant Tissues
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Leaf Spray Mass Spectrometry: A Rapid Ambient Ionization Technique to Directly Assess Metabolites from Plant Tissues

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动态喷雾质谱仪用于复杂混合物的直接分析.

Purva S Damale1, Dmytro S Kulyk1, Alexander P Zumock1

  • 1Department of Chemistry and Biochemistry, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio 43210, United States.

Analytical chemistry
|October 17, 2025
PubMed
概括

一种新型的动态电源使单步纳米电子喷雾电离 (nESI) 和大气压化学电离 (APCI) 方法用于质谱学 (MS) 成为可能. 该技术有效地分析复杂混合物的极性和非极性化合物,包括用于疟疾诊断的全血.

科学领域:

  • 分析化学 分析化学
  • 质谱测量质量谱测量
  • 生物技术是生物技术.

背景情况:

  • 对各种科学领域来说,分析微量复杂的生物混合物至关重要.
  • 现有的质谱法经常难以同时分析极性和非极性化合物.

研究的目的:

  • 开发用于质谱的单步离子化方法,可以分析极性和非极性化合物.
  • 提高矩阵耐受性,并使不同分析物的同时定量.

主要方法:

  • 开发一种用于纳米电子喷雾电离 (nESI) 的新型动态电源.
  • 从同一发射器实现线性电压扫描,从电喷射电离 (ESI) 过渡到大气压化学电离 (APCI).
  • 该方法的应用用于分析广泛的化合物,包括蛋白质,核酸,类固醇,药物,脂质和脂肪酸.

主要成果:

  • 动态喷雾过程成功地在单个步骤中电离了极性 (通过ESI) 和非极性 (通过APCI) 分析物.
  • 证明了增强的矩阵耐受性,喷雾电压的自我校正,以及同时定量能力.
  • 通过分析全血而没有先前的样本准备,成功地应用了诊断疟疾的方法,显示出良好的灵敏度,准确性和精度.

结论:

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  • 开发的单步nESI-APCI方法为传统质谱技术提供了多功能和高效的替代方案.
  • 该平台在分析各种诊断和研究目的的复杂生物流体样本方面具有广泛的适用性.
  • 该方法在分析全血以诊断疟疾方面的简单性和有效性突出了其临床应用的潜力.