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Related Concept Videos

Detergent Purification of Membrane Proteins01:18

Detergent Purification of Membrane Proteins

Detergents are used to purify the integral proteins of the membrane. The hydrophobic portion of the detergent can replace membrane phospholipids while solubilizing the membrane proteins. When detergent monomers reach a specific concentration in a solution called critical micelle concentration (CMC), they form micelles. Above CMC, the concentration of the detergent monomers remains in equilibrium with the micelle. The number of detergent monomers present in the CMC varies for each detergent, and...
Immunoprecipitation01:20

Immunoprecipitation

Immunoprecipitation, or IP, is a widely used technique that employs protein-antibody interactions to isolate proteins or protein complexes in their native state for studying protein-protein interactions, quaternary structures, or supramolecular complexes. Various modifications of the technique, including chromatin IP, cross-linking IP, and fluorescence IP, are commonly used.
Chromatin Immunoprecipitation
Chromatin immunoprecipitation, also known as ChIP, is used to study protein-DNA or...
Downstream Processing01:29

Downstream Processing

Downstream processing begins once fermentation is complete and involves a series of steps to recover and purify products such as acids, vitamins, antibiotics, or proteins.Cell HarvestingFor example, for intracellular protein-based products, the first step is harvesting the cells. This is typically achieved using centrifugation or filtration to separate the cells from the liquid phase.Cell Disruption for Intracellular ProductsIf the target product is intracellular, the harvested cells must be...

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Related Experiment Video

Updated: Jun 19, 2026

An Economical and Versatile High-Throughput Protein Purification System Using a Multi-Column Plate Adapter
10:08

An Economical and Versatile High-Throughput Protein Purification System Using a Multi-Column Plate Adapter

Published on: May 21, 2021

Rational and systematic protein purification process development: the next generation.

Beckley K Nfor1, Peter D E M Verhaert, Luuk A M van der Wielen

  • 1Department of Biotechnology, Delft University of Technology, 2628 BC Delft, the Netherlands.

Trends in Biotechnology
|October 10, 2009
PubMed
Summary
This summary is machine-generated.

Novel bioprocess development uses biothermodynamics and simulation tools to create databases for in silico purification. This enables faster response to product quality and market demands in biopharmaceutical manufacturing.

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Last Updated: Jun 19, 2026

An Economical and Versatile High-Throughput Protein Purification System Using a Multi-Column Plate Adapter
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An Economical and Versatile High-Throughput Protein Purification System Using a Multi-Column Plate Adapter

Published on: May 21, 2021

High-throughput Purification of Affinity-tagged Recombinant Proteins
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High-throughput Purification of Affinity-tagged Recombinant Proteins

Published on: August 26, 2012

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11:12

Organic Solvent-Based Protein Precipitation for Robust Proteome Purification Ahead of Mass Spectrometry

Published on: February 7, 2022

Area of Science:

  • Biopharmaceutical Manufacturing
  • Process Development
  • Biothermodynamics

Background:

  • Current biopharmaceutical manufacturing relies on platform purification processes for speed and harmonization.
  • These platform processes face challenges in meeting increasing quality and capacity demands.

Purpose of the Study:

  • To introduce novel approaches for purification process development.
  • To enable faster and more informed process development for biopharmaceuticals.

Main Methods:

  • Incorporation of biothermodynamics principles.
  • Utilization of modern high-throughput experimentation (HTE).
  • Application of simulation tools for process modeling.

Main Results:

  • Development of production platform-specific databases.
  • Inclusion of thermodynamic protein descriptors for host cell proteins.
  • Creation of a foundation for in silico purification process development.

Conclusions:

  • The novel approach enhances process understanding.
  • It provides the potential for rapid adaptation to product quality and market needs.
  • Future work aims to further rationalize bioprocess development.