Membrane Purity

Membrane purity is the degree to which an isolated biological membrane preparation is free from contamination by cytosolic proteins, organelles, or other membrane compartments, making it essential for reliable immunology and infection studies. Researchers assess purity by separating membranes from cellular components and testing fractions with compartment-specific markers, often alongside protein or imaging analyses. High-purity preparations help clarify how pathogens attach to, enter, or alter host membranes and how immune receptors, transporters, and signaling proteins function within them. Careful purification improves the validity and reproducibility of biochemical assays, microscopy, and membrane-protein characterization.

Membrane Purity - Related Videos

Research

JoVE Journal - Biochemistry

Detection and Isolation of Apoptotic Bodies to High Purity

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Cited by 29 •

2018

A workflow using flow cytometry or differential centrifugation is developed to detect, quantify and isolate apoptotic bodies from an apoptotic sample to high purity.

Synthesis of High Purity Nonsymmetric Dialkylphosphinic Acid Extractants

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Cited by 6 •

2017

A protocol for the synthesis of high purity nonsymmetric dialkylphosphinic acid extractants is presented, taking (2,3-dimethylbutyl)(2,4,4'-trimethylpentyl)phosphinic acid as an example.

Rapid and Refined CD11b Magnetic Isolation of Primary Microglia with Enhanced Purity and Versatility

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Cited by 22 •

2017

Here, we present a protocol to isolate microglia from postnatal mouse pups (day 1) for in vitro experimentation. This improvised method of isolation generates both high yield and purity, a significant advantage over alternate methods that allows broad range experimentation for the purposes of elucidating microglial biology.

Research

JoVE Journal - Immunology and Infection
Free Sample

Determination of Immune Cell Identity and Purity Using Epigenetic-Based Quantitative PCR

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Cited by 1 •

2020

Here we describe a robust method of determining immune cell identity and purity through epigenetic signatures detected using quantitative PCR (qPCR). DNA demethylation at a specific locus serves as a unique identifier for a particular cell type and allows for identification of CD8+, regulatory, or Th17 T cells.

Research

JoVE Journal - Biology
Free Sample

Use of a Robot for High-throughput Crystallization of Membrane Proteins in Lipidic Mesophases

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Cited by 47 •

2012

Herein is described a robotic approach to high-throughput crystallization of membrane proteins in lipidic mesophases for use in structure determination using macromolecular X-ray crystallography. Three robots capable of handling the viscous and sticky protein-laden mesophase integral to the method are introduced.

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