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相关概念视频

Tissue Homogenization and Cell Lysis01:32

Tissue Homogenization and Cell Lysis

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Tissue homogenization involves disintegrating tissue architecture and lysing cells, and is an early step in isolating and analyzing cellular components. The method used for homogenization depends on the sample type, the amount of sample available, the analyte to be obtained, and the sensitivity of the method. These methods are broadly classified as mechanical and non-mechanical methods.
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Overview Of Cell Separation And Isolation01:20

Overview Of Cell Separation And Isolation

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Cell separation was first achieved in 1964 by S. H. Seal, who separated large tumor cells from the smaller blood cells using filtration. Two years later, Pohl and Hawk performed experiments on how cells respond differently to a nonuniform electric field based on the cell type. Such observations were the inception of cell separation methods, which allow isolating a single cell type from a heterogeneous sample.
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High-Resolution Mass Spectrometry (HRMS)01:15

High-Resolution Mass Spectrometry (HRMS)

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The resolution of a mass spectrometer depends on the efficiency of separating ions with different ion masses. The mass of an atom is approximated to the sum of the masses of protons and neutrons inside, considering the masses of protons and neutrons as equal. However, the masses of the proton (1.6726 × 10−24 g) and neutron (1.6749 × 10−24 g) are not truly equal. There is a minor error in the expression of atomic masses relative to the simplest atom of hydrogen. For...
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Racemic Mixtures and the Resolution of Enantiomers02:30

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A racemic mixture, or racemate, is an equimolar mixture of enantiomers of a molecule that can be separated using their unique interaction with chiral molecules or media. Racemic mixtures are denoted by the (±)- prefix. This ‘optical rotation descriptor’ applies to the whole solution of a racemic mixture rather than a specific stereoisomer. Enantiomers typically have the same physical and chemical properties. Hence, they are not easily separable. However, enantiomers can exhibit...
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Super-resolution Fluorescence Microscopy01:37

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Super-resolution fluorescence microscopy (SRFM) provides a better resolution than conventional fluorescence microscopy by reducing the point spread function (PSF). PSF is the light intensity distribution from a point that causes it to appear blurred. Due to PSF, each fluorescing point appears bigger than its actual size, and it is the PSF interference of nearby fluorophores that causes the blurred image. Various approaches to achieving higher resolution through SRFM have recently been...
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Subcellular Fractionation01:32

Subcellular Fractionation

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The homogenate obtained after cell lysis contains various membrane-bound organelles that can be further separated into pure fractions by subcellular fractionation. These isolates are used to study specific cellular components, analyze localized protein activity, and are even employed in diagnostics. Fractionation is typically achieved using centrifugation methods, the most common being density-gradient and differential centrifugation.
Differential Centrifugation
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异种多元性提高了细胞机械分类中的分辨率.

Jialu Zhang1,2, Yihao Huang1, Shuang Wan1

  • 1The MOE Key Laboratory of Spectrochemical Analysis and Instrumentation, the Key Laboratory of Chemical Biology of Fujian Province, State Key Laboratory of Physical Chemistry of Solid Surfaces, Department of Chemical Biology, College of Chemistry and Chemical Engineering, School of Mathematical Sciences, Xiamen University, Xiamen, Fujian, 361005, China.

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概括

研究人员开发了新的异构多元联体,以精确测量细胞机制. 这一突破使得细微细胞差异的敏感检测和基于机械性质的细胞群的改进分类成为可能.

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异种多重价值性 异种多重价值性结合体组合的结合体组合.机械现象类型 机械现象类型微流体细胞分类 分类分类解决方案的分类解决方案

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科学领域:

  • 生物物理学的生物物理.
  • 分子工程分子工程分子工程
  • 细胞生物学 细胞生物学

背景情况:

  • 细胞通过受体-连接体力量与环境相互作用,这对发育和疾病至关重要.
  • 目前用于剖析细胞力学的方法缺乏精度,原因是连接体设计的局限性.
  • 传统连接体中离散的价值变化阻碍了连续调制的结合性.

研究的目的:

  • 引入一种用于构建具有可独立调节的亲和力和价值力的异构多元联体的双变量策略.
  • 为了克服传统的同价配体配体在实现连续性调制方面的局限性.
  • 为了提高机械细胞造型的灵敏度和分辨率.

主要方法:

  • 在DNA纳米支架上,两个具有明显结合亲和力的aptamer的联合组装.
  • 软体测量调制以精确控制连接体激情.
  • 异质多元联体的应用用于机械力测量和细胞分类.

主要成果:

  • 为配体生成连续的性谱,超越离散的同价系统.
  • 在力测量中提高灵敏度,揭示细胞中微妙的机械差异.
  • 通过使用流速调整成功对表型相似的细胞亚群进行序列分类.

结论:

  • 敏度调制对于工程多价值相互作用和机械细胞分析至关重要.
  • 异质多价联体为精确的机械细胞分析提供了比同价联体策略更好的优势.
  • 这种方法提升了基于细微的机械表型识别和分类细胞的能力.