Characterization of DNA in cell culture supernatant by fluorescence-detection size-exclusion chromatography

Lihan Tan1, Veronica Yeo, Yuansheng Yang

  • 1Bioprocessing Technology Institute, A*STAR, Downstream Processing Group, 20 Biopolis Way, Centros #06-01, Singapore, 138668, Singapore, tan_lihan@bti.a-star.edu.sg.

Related Concept Videos

Isolation of Bacterial Extracellular Vesicles Using Size-Exclusion Chromatography03:24

Isolation of Bacterial Extracellular Vesicles Using Size-Exclusion Chromatography

Source: Watson, D. C., et al. Scalable Isolation and Purification of Extracellular Vesicles from Escherichia coli and Other Bacteria. J. Vis. Exp. (2021)This video demonstrates the use of size exclusion chromatography with porous resin beads to isolate bacterial extracellular vesicles (EVs) from a bacterial culture filtrate. Larger EVs elute early by bypassing the resin pores, while smaller proteins enter the pores and elute...
348
Rapid Assessment of Membrane Protein Quality by Fluorescent Size Exclusion Chromatography06:26

Rapid Assessment of Membrane Protein Quality by Fluorescent Size Exclusion Chromatography

The present protocol describes a procedure to perform fluorescent size exclusion chromatography (FSEC) on membrane proteins to assess their quality for downstream functional and structural analysis. Representative FSEC results collected for several G-protein coupled receptors (GPCRs) under detergent-solubilized and detergent-free conditions are...
3.9K
Size Exclusion Chromatography for Separating Extracellular Vesicles from Conditioned Cell Culture Media10:46

Size Exclusion Chromatography for Separating Extracellular Vesicles from Conditioned Cell Culture Media

The protocol here demonstrates that extracellular vesicles can be adequately separated from conditioned cell culture media using size exclusion chromatography.
4.7K
Size Exclusion Chromatography to Analyze Bacterial Outer Membrane Vesicle Heterogeneity07:26

Size Exclusion Chromatography to Analyze Bacterial Outer Membrane Vesicle Heterogeneity

Bacterial vesicles play important roles in pathogenesis and have promising biotechnological applications. The heterogeneity of vesicles complicates analysis and use; therefore, a simple, reproducible method to separate varying sizes of vesicles is necessary. Here, we demonstrate the use of size exclusion chromatography to separate heterogeneous vesicles produced by Aggregatibacter...
5.1K
Fluorescence-Detection Size-Exclusion Chromatography: A Technique to Identify the Integrity of Fluorescent Membrane Proteins upon Detergent Solubilization03:05

Fluorescence-Detection Size-Exclusion Chromatography: A Technique to Identify the Integrity of Fluorescent Membrane Proteins upon Detergent Solubilization

In this video, we demonstrate a fluorescence-detection size-exclusion chromatography technique to screen for green fluorescent protein (GFP)-fused membrane protein stability in Escherichia coli following detergent solubilization. Proteins exhibiting a symmetrical peak in the size-exclusion profile with little or no free GFP indicate purified proteins with minimum degradation and aggregation, which can subsequently be selected for structure-function...
1.6K
Size-Exclusion Chromatography01:08

Size-Exclusion Chromatography

In size-exclusion chromatography (SEC), also known as molecular-exclusion or gel-permeation chromatography, molecules are separated based on their sizes. This technique is important for separating large molecules such as polymers and biomolecules. The two classes of micron-sized stationary phases encountered in SEC are silica particles and cross-linked polymer resin beads. Both materials are porous, but their pore sizes vary significantly.
Silica particles offer advantages such as rigidity,...
1.8K