Highly Sensitive Immunoprecipitation Method for Extracting and Concentrating Low-Abundance Proteins from Human Serum (Technical Briefs) Highly Sensitive Immunoprecipitation Method for Extracting and Concentrating Low-Abundance Proteins from Human Serum (Technical Briefs)

Highly Sensitive Immunoprecipitation Method for Extracting and Concentrating Low-Abundance Proteins from Human Serum (Technical Briefs‪)‬

Clinical Chemistry 2005, Jan, 51, 1

    • 2,99 €
    • 2,99 €

Publisher Description

Purification and identification of small, low-abundance proteins from complex samples such as serum for use in Western blotting experiments has long been a challenge. Unfortunately, commercially available methods are not always suitable for small sample sizes and low-abundance proteins such as cardiac troponin T (cTnT). In this report we present a highly sensitive immunoprecipitation method we have developed for extracting and concentrating low-abundance proteins from serum. We compared the performance of our method with that of the commercially available ImmunoPure[R] Protein-A IgG orientation Kit (Pierce), using antibodies directed against cTnT and serum of a patient with acute myocardial infarction (AMI). Both methods are based on the binding of antibodies to Sepharose beads and subsequent cross-linking with a diimido ester. The formation of amidines between imido esters and amines from protein side chains was first described in 1962 by Hunter et al. (1), who suggested this for cross-linking purposes. Levy et al. (2) described the use of diimido esters for covalent coupling of antibodies to immobilized antigens. Later studies reported similar methods for antibody immobilization with cross-linkers such as dimethyl pimelimidate and dimethyl suberimidate (3, 4).

GENRE
Science & Nature
RELEASED
2005
1 January
LANGUAGE
EN
English
LENGTH
8
Pages
PUBLISHER
American Association for Clinical Chemistry, Inc.
PROVIDER INFO
The Gale Group, Inc., a Delaware corporation and an affiliate of Cengage Learning, Inc.
SIZE
233.4
KB
Protein Analysis using Mass Spectrometry Protein Analysis using Mass Spectrometry
2017
Proteomics Sample Preparation Proteomics Sample Preparation
2011
Advances in GAPDH Protein Analysis: A Functional and Biochemical Approach Advances in GAPDH Protein Analysis: A Functional and Biochemical Approach
2018
Applications of Monolithic Column and Isotope Dimethylation Labeling in Shotgun Proteome Analysis Applications of Monolithic Column and Isotope Dimethylation Labeling in Shotgun Proteome Analysis
2013
Expression and Purification of Mycobacterium Tuberculosis Antigens for Use in Immunoassays for Serodetection of M. Tuberculosis Infection in TB Patients (Report) Expression and Purification of Mycobacterium Tuberculosis Antigens for Use in Immunoassays for Serodetection of M. Tuberculosis Infection in TB Patients (Report)
2012
Modern Proteomics – Sample Preparation, Analysis and Practical Applications Modern Proteomics – Sample Preparation, Analysis and Practical Applications
2016
Percent Free Prostate-Specific Antigen in Assessing the Probability of Prostate Cancer Under Optimal Analytical Conditions (Enzymes and Protein Markers) Percent Free Prostate-Specific Antigen in Assessing the Probability of Prostate Cancer Under Optimal Analytical Conditions (Enzymes and Protein Markers)
1998
Distribution of Adiponectin, Leptin, And Metabolic Correlates of Insulin Resistance: A Longitudinal Study in British Children; 1: Prepuberty (Earlybird 15) (Endocrinology and Metabolism) (Clinical Report) Distribution of Adiponectin, Leptin, And Metabolic Correlates of Insulin Resistance: A Longitudinal Study in British Children; 1: Prepuberty (Earlybird 15) (Endocrinology and Metabolism) (Clinical Report)
2008
The MALDI-TOF Mass Spectrometric View of the Plasma Proteome and Peptidome. The MALDI-TOF Mass Spectrometric View of the Plasma Proteome and Peptidome.
2006
Interlaboratory Comparison of Fetal Male DNA Detection from Common Maternal Plasma Samples by Real-Time Pcr (Molecular Diagnostics and Genetics) Interlaboratory Comparison of Fetal Male DNA Detection from Common Maternal Plasma Samples by Real-Time Pcr (Molecular Diagnostics and Genetics)
2004
Ghrelin, Leptin, IGF-1, IGFBP-3, and Insulin Concentrations at Birth: Is There a Relationship with Fetal Growth and Neonatal Anthropometry?(Pediatric Clinical Chemistry) Ghrelin, Leptin, IGF-1, IGFBP-3, and Insulin Concentrations at Birth: Is There a Relationship with Fetal Growth and Neonatal Anthropometry?(Pediatric Clinical Chemistry)
2008
Association of Increased Ferritin with Premature Coronary Stenosis in Men (Lipids, Lipoproteins, And Cardiovascular Risk Factors) Association of Increased Ferritin with Premature Coronary Stenosis in Men (Lipids, Lipoproteins, And Cardiovascular Risk Factors)
2001