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相关概念视频

Matrix-Assisted Laser Desorption Ionization (MALDI)01:08

Matrix-Assisted Laser Desorption Ionization (MALDI)

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Matrix-assisted laser desorption ionization (MALDI) is a powerful analytical technique used in mass spectrometry. It enables the identification and characterization of various biomolecules, including proteins, peptides, nucleic acids, and carbohydrates. MALDI is an ionization technique, widely employed in biological and medical research, as well as in fields like pharmacology and biochemistry.The analyte of interest, a biomolecule or a mixture of biomolecules, is mixed with a suitable matrix...
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MALDI-TOF Mass Spectrometry01:19

MALDI-TOF Mass Spectrometry

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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...
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Mass Spectrometers01:16

Mass Spectrometers

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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:
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Inductively Coupled Plasma–Mass Spectrometry (ICP–MS): Overview01:19

Inductively Coupled Plasma–Mass Spectrometry (ICP–MS): Overview

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In inductively coupled plasma–mass spectrometry (ICP–MS), an inductively coupled plasma (ICP) torch is used as an atomizer and ionizer. Solid samples are dissolved and volatilized before being introduced into the high-temperature argon plasma, while solution samples are nebulized and passed through the high-temperature argon plasma. Plasma dissociates the analytes and ionizes their component atoms to form a mixture of positive ions and molecular species. The positive ions are then...
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Mass Spectrum: Interpretation01:24

Mass Spectrum: Interpretation

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An unknown compound can be established by identifying the molecular ion peak in the mass spectrum. The molecular ion peak is often weak or absent due to the predominance of fragmentation in high-energy electron beams. In such cases, a soft-energy electron beam can be used to scan the spectrum to enhance the intensity of the molecular ion peak. Additionally, chemical ionization, field ionization, and desorption ionization spectra are used to obtain a relatively intense molecular ion peak.To...
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Chemical Ionization (CI) Mass Spectrometry01:21

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The molecular ion peak of a molecule in the mass spectrum provides vital information for molecular identification. However, conventional electron impact ionization can lead to the rapid dissociation of some molecular ions before they reach the detector. A milder ionization method is required to increase the lifetime of such ionized analyte molecules. Chemical ionization (CI) is a gas-phase protonation reaction useful for mass-analyzing analyte molecules that are easily protonated to yield the...
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Atmospheric-pressure Molecular Imaging of Biological Tissues and Biofilms by LAESI Mass Spectrometry
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用激光诱导的后离子化进行质谱成像.

Jens Soltwisch1, Hans Kettling2, Simeon Vens-Cappell2

  • 1Institute for Hygiene, University of Münster, Robert-Koch-Strasse 41, 48149 Münster, Germany.

Science (New York, N.Y.)
|March 7, 2015
PubMed
概括

这项研究引入了一种二次电离技术,以显著提高矩阵辅助激光消耗/电离质谱成像 (MALDI-MSI) 的灵敏度. 这种方法增强了组织中各种生物分子的检测,提高了成像能力.

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科学领域:

  • 分析化学 分析化学
  • 生物技术是生物技术.
  • 质谱仪成像成像 质谱仪成像

背景情况:

  • 矩阵辅助激光脱/电离质谱成像 (MALDI-MSI) 是绘制组织中的生物分子图像的强大工具.
  • 目前的MALDI-MSI方法由于有限的电离效率而面临灵敏度的限制.
  • 低电离率阻碍了对各种生物分子类的综合分析.

研究的目的:

  • 开发一种新的后离子化方法,以提高MALDI-MSI中的离子产量.
  • 提高对脂质,维生素和糖类的敏感性和检测能力.
  • 为了实现更高灵敏度的高侧分辨率成像.

主要方法:

  • 使用波长可调节的后离子化激光来诱导气相中的二次MALDI样离子化.
  • 应用该技术分析动物和植物组织样本.
  • 研究了关键参数,包括冷却气体压力,激光波长,脉冲能量和脉冲间延迟.

主要成果:

  • 为脂质,脂溶性维生素和糖类的离子产量增加了两级.
  • 通过5微米激光斑点大小的成功成像.
  • 确定了优化二次电离过程至关重要的关键参数.

结论:

  • 开发的后离子化激光技术显著提高了MALDI-MSI的灵敏度.
  • 这一进步使组织中生物分子分布的分析更加全面.
  • 该方法有可能在低微米横向分辨率下进行敏感的MALDI-MS成像.