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相关概念视频

Mass Spectrometry: Complex Analysis01:21

Mass Spectrometry: Complex Analysis

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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...
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Peptide Identification Using Tandem Mass Spectrometry01:33

Peptide Identification Using Tandem Mass Spectrometry

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Tandem mass spectrometry, also known as MS/MS or MS2, is an analytical technique that employs two mass analyzers. Essentially it is a series of mass spectrometers that helps isolate a particular biomolecule and then helps study its chemical properties.
This technique helps gather information regarding the protein from which the peptide was obtained and to study the peptides’ amino acid sequence. Identifying peptides from a complex mixture is an important component of the growing field of...
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Mass Spectrometry: Overview01:19

Mass Spectrometry: Overview

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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 electrospray 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...
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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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Mass Analyzers: Overview01:13

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The mass analyzer is a crucial component of the mass spectrometer. In the ionization chamber, the vaporized sample is bombarded with a high-energy electron beam to generate a radical cation and further fragment into neutral molecules, radicals, and cations. A series of negatively charged accelerator plates accelerate the cations into the mass analyzer. The mass analyzer separates ions according to their mass-to-charge (m/z) ratios and then directs them to the detector. The common types of mass...
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Mass Spectrometry: Isotope Effect01:13

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Most elements exist in nature as a mixture of isotopes. The isotopes differ in weight due to their respective number of neutrons. The molecular weight of a molecule is different depending on the specific isotope of its elements involved. As a result, the mass spectrum of the molecule exhibits peaks from the same fragment at multiple positions. The positions of these mass signals depend on the difference between the molecular mass. Furthermore, the intensity of these signals is dependent on the...
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相关实验视频

Updated: Jun 13, 2025

Large Scale Non-targeted Metabolomic Profiling of Serum by Ultra Performance Liquid Chromatography-Mass Spectrometry UPLC-MS
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多吸管学:为全面的曝光体表征提供先进的质谱技术.

Mu-Rong Chao1,2, Yuan-Jhe Chang1, Marcus S Cooke3

  • 1Department of Occupational Safety and Health, Chung Shan Medical University, Taichung 402, Taiwan.

Trends in analytical chemistry : TRAC
|September 9, 2024
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概括

吸附学研究了暴露的分子吸附物. 质谱学的进步改善了检测,有助于了解环境健康影响和精准医学.

关键词:
附带生理学是什么意思吸附器 吸附器 吸附器交叉链接 交叉链接 交叉链接它们是DNA DNA DNA DNA.暴露组体是指暴露组体.高分辨率质谱测量高分辨率质谱测量数据分析后的数据分析.蛋白质蛋白质是一种蛋白质.这是一个RNARNARNARNARNA.

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相关实验视频

Last Updated: Jun 13, 2025

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科学领域:

  • 生物化学 生物化学
  • 毒理学 毒理学 毒理学
  • 分子生物学分子生物学

背景情况:

  • 吸附学研究了由内源性和外源性物质形成的DNA,RNA和蛋白质吸附物.
  • 这些添加物可以来自环境污染物,饮食和异生菌,影响细胞功能和疾病风险,包括癌症.
  • 了解添加物形成对于评估暴露对健康的影响至关重要.

研究的目的:

  • 审查用于 adduct 检测的质谱学 (MS) 的进展.
  • 讨论目前和新兴的 adductomics 研究的趋势.
  • 突出 adductomics 在环境健康和精准医学中的潜力.

主要方法:

  • 复习用于 adductomic 分析的质谱 (MS) 技术.
  • 讨论生物分子修饰的查策略.
  • 探索区分外源和内源 adducts 的方法.

主要成果:

  • 随着MS仪器仪表的显著进步,它可以更好地检测各种附加物,从单一附加物到复杂的交叉链接.
  • 新兴趋势包括新的MS应用程序和多omics集成.
  • 在开发专门的MS光谱数据库方面仍然存在挑战.

结论:

  • 吸收学,由MS的进步提供动力,提供了强大的洞察力对环境暴露的健康影响.
  • 该领域有望通过识别个人暴露相关风险来实现个性化医疗.
  • 进一步开发数据库和综合方法将推动 adductomics 的研究.