Identification of protein changes in human spermatozoa throughout the cryopreservation process

Author:

Bogle O. A.1,Kumar K.2,Attardo-Parrinello C.1,Lewis S. E. M.2,Estanyol J. M.3,Ballescà J. L.4,Oliva R.1

Affiliation:

1. Molecular Biology of Reproduction and Development Research Group; Department of Biomedicine; Faculty of Medicine; Institut d'Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS); Biochemistry and Molecular Genetics Service; Hospital Clínic; University of Barcelona; Barcelona Spain

2. Centre for Public Health, Reproductive Medicine; Institute of Clinical Science; Queen's University Belfast; Northern Ireland UK

3. Proteomics Unit; Scientific Technical Services; University of Barcelona; Barcelona Spain

4. Clinic Institute of Gynecology, Obstetrics and Neonatology; Clinic Hospital; Barcelona Spain

Funder

Ministerio de Economía y Competitividad

Fundación Salud 2000

Seventh Framework Programme

Publisher

Wiley

Subject

Urology,Endocrinology,Reproductive Medicine,Endocrinology, Diabetes and Metabolism

Reference78 articles.

1. Evidence for increased lipid peroxidative damage and loss of superoxide dismutase activity as a mode of sublethal cryodamage to human sperm during cryopreservation;Alvarez;J Androl,1992

2. Human sperm tail proteome suggests new endogenous metabolic pathways;Amaral;Mol Cell Proteomics,2013

3. The combined human sperm proteome: cellular pathways and implications for basic and clinical science;Amaral;Hum Reprod Update,2014a

4. Identification of proteins involved in human sperm motility using high-throughput differential proteomics;Amaral;J Proteome Res,2014b

5. High-throughput sperm differential proteomics suggests that epigenetic alterations contribute to failed assisted reproduction;Azpiazu;Hum Reprod,2014

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