about
miRNA and mammalian male germ cellsThe role of the molecular chaperone heat shock protein A2 (HSPA2) in regulating human sperm-egg recognitionThe effects of radiofrequency electromagnetic radiation on sperm functionAre sperm capacitation and apoptosis the opposite ends of a continuum driven by oxidative stress?A novel germ cell protein, SPIF (sperm PKA interacting factor), is essential for the formation of a PKA/TCP11 complex that undergoes conformational and phosphorylation changes upon capacitationIdentification of RARhoGAP, a novel putative RhoGAP gene expressed in male germ cellsThe chaperonin containing TCP1 complex (CCT/TRiC) is involved in mediating sperm-oocyte interactionGlioma pathogenesis-related 1-like 1 is testis enriched, dynamically modified, and redistributed during male germ cell maturation and has a potential role in sperm-oocyte bindingRabbit epididymal secretory proteins. III. Molecular cloning and characterization of the complementary DNA for REP38.Data on the concentrations of etoposide, PSC833, BAPTA-AM, and cycloheximide that do not compromise the vitality of mature mouse oocytes, parthenogencially activated and fertilized embryosNext Generation Sequencing Analysis Reveals Segmental Patterns of microRNA Expression in Mouse Epididymal Epithelial Cells.Assessment of microRNA expression in mouse epididymal epithelial cells and spermatozoa by next generation sequencing.Dynamin regulates specific membrane fusion events necessary for acrosomal exocytosis in mouse spermatozoa.New insights into the molecular mechanisms of sperm-egg interaction.Role of the epididymis in sperm competition.Characterisation of mouse epididymosomes reveals a complex profile of microRNAs and a potential mechanism for modification of the sperm epigenome.Dynamin 2 is essential for mammalian spermatogenesis.The rise of testicular germ cell tumours: the search for causes, risk factors and novel therapeutic targets.The biological significance of detergent-resistant membranes in spermatozoa.Testicular descent, sperm maturation and capacitation. Lessons from our most distant relatives, the monotremes.New insights into sperm physiology and pathology.Monotremes provide a key to understanding the evolutionary significance of epididymal sperm maturation.Proteomic insights into the maturation and capacitation of mammalian spermatozoa.The function of chaperone proteins in the assemblage of protein complexes involved in gamete adhesion and fusion processes.Sperm capacitation: a distant landscape glimpsed but unexplored.Sperm-zona pellucida interaction: molecular mechanisms and the potential for contraceptive intervention.Analysis of the small non-protein-coding RNA profile of mouse spermatozoa reveals specific enrichment of piRNAs within mature spermatozoa.The lipid peroxidation product 4-hydroxynonenal contributes to oxidative stress-mediated deterioration of the ageing oocyte.Non-coding RNA in Spermatogenesis and Epididymal Maturation.Developmental expression of the dynamin family of mechanoenzymes in the mouse epididymis.Epididymal CYP2E1 plays a critical role in acrylamide-induced DNA damage in spermatozoa and paternally mediated embryonic resorptions†.Inhibition of arachidonate 15-lipoxygenase prevents 4-hydroxynonenal-induced protein damage in male germ cells.Proteolytic degradation of heat shock protein A2 occurs in response to oxidative stress in male germ cells of the mouse.Biochemical alterations in the oocyte in support of early embryonic development.Non-surgical sterilisation methods may offer a sustainable solution to feral horse (Equus caballus) overpopulation.Heat Shock Protein member A2 forms a stable complex with angiotensin converting enzyme and protein disulfide isomerase A6 in human spermatozoa.The impact of oxidative stress on chaperone-mediated human sperm-egg interaction.Glycogen synthase kinase 3 regulates acrosomal exocytosis in mouse spermatozoa via dynamin phosphorylation.The 12 (th) International Symposium on Spermatology.Chronic acrylamide exposure in male mice induces DNA damage to spermatozoa; Potential for amelioration by resveratrol.
P50
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P50
description
researcher ORCID ID = 0000-0003-2745-8188
@en
wetenschapper
@nl
name
Brett Nixon
@ast
Brett Nixon
@en
Brett Nixon
@es
Brett Nixon
@nl
type
label
Brett Nixon
@ast
Brett Nixon
@en
Brett Nixon
@es
Brett Nixon
@nl
prefLabel
Brett Nixon
@ast
Brett Nixon
@en
Brett Nixon
@es
Brett Nixon
@nl
P1053
B-5121-2012
P106
P31
P496
0000-0003-2745-8188