Comparative analysis of human sperm glycocalyx from different freezability ejaculates by lectin microarray and identification of ABA as sperm freezability biomarker
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S. Tao | Zheng Li | Huijuan Shi | Hua Diao | Li Cheng | Bin Wu | Hui Lu | Yi-hua Gu | Guo-wu Chen | Xiao-Xi Sun | Ai-jie Xin | Yan-cheng Wu
[1] S. Tao,et al. Effects of cryopreservation on human sperm glycocalyx , 2017 .
[2] A. Moura,et al. Sperm membrane proteins associated with the boar semen cryopreservation. , 2017, Animal reproduction science.
[3] A. Moura,et al. Proteomic analysis of seminal plasma and sperm cells and their associations with semen freezability in Guzerat bulls. , 2016, Journal of animal science.
[4] S. Duan,et al. Lectin binding of human sperm associates with DEFB126 mutation and serves as a potential biomarker for subfertility , 2016, Scientific Reports.
[5] Zeng-jun Wang,et al. Enolase1 (ENO1) and glucose-6-phosphate isomerase (GPI) are good markers to predict human sperm freezability. , 2015, Cryobiology.
[6] P. Gagneux,et al. Sugar‐coated sperm: Unraveling the functions of the mammalian sperm glycocalyx , 2015, Molecular reproduction and development.
[7] M. Yeste,et al. Comparative analysis of boar seminal plasma proteome from different freezability ejaculates and identification of Fibronectin 1 as sperm freezability marker , 2015, Andrology.
[8] Shu-juan Guo,et al. Comprehensive profiling of accessible surface glycans of mammalian sperm using a lectin microarray , 2014, Clinical Proteomics.
[9] Hildegard Geyer,et al. Polysialic Acid Is Present in Mammalian Semen as a Post-translational Modification of the Neural Cell Adhesion Molecule NCAM and the Polysialyltransferase ST8SiaII* , 2013, The Journal of Biological Chemistry.
[10] C. Xiong,et al. [Proteins in sperm and seminal plasma associated with human sperm resistance to cryopreservation]. , 2013, Zhonghua nan ke xue = National journal of andrology.
[11] P. Gagneux,et al. Sialidases on Mammalian Sperm Mediate Deciduous Sialylation during Capacitation , 2012, The Journal of Biological Chemistry.
[12] C. Bevins,et al. Multifunctional glycoprotein DEFB126—a curious story of defensin-clad spermatozoa , 2012, Nature Reviews Urology.
[13] M. Hsu,et al. Kruger strict morphology and post‐thaw progressive motility in cryopreserved human spermatozoa , 2012, Andrologia.
[14] A. I. Yudin,et al. A Common Mutation in the Defensin DEFB126 Causes Impaired Sperm Function and Subfertility , 2011, Science Translational Medicine.
[15] J. Long,et al. Characterizing the glycocalyx of poultry spermatozoa: III. Semen cryopreservation methods alter the carbohydrate component of rooster sperm membrane glycoconjugates. , 2011, Poultry science.
[16] G. Dohle,et al. Use rate and assisted reproduction technologies outcome of cryopreserved semen from 629 cancer patients. , 2008, Fertility and sterility.
[17] Y. Li,et al. Lectin microarrays identify cell-specific and functionally significant cell surface glycan markers. , 2008, Glycobiology.
[18] Z. Rosenwaks,et al. Intracytoplasmic sperm injection (ICSI) using cryopreserved sperm from men with malignant neoplasm yields high pregnancy rates. , 2008, Fertility and sterility.
[19] F. Jamal,et al. Post-translational modifications in glycosylation status during epididymal passage and significance in fertility of a 33 kDa glycoprotein (MEF3) of rhesus monkey (Macaca mulatta). , 2008, Reproduction.
[20] M. Laloraya,et al. Distribution of N‐ and O‐linked oligosaccharides on surface of spermatozoa from normal and infertile subjects , 2008, Andrologia.
[21] J. Long. Avian semen cryopreservation: what are the biological challenges? , 2006, Poultry science.
[22] J. Anger,et al. Cryopreservation of sperm: indications, methods and results. , 2003, The Journal of urology.
[23] T. Irimura,et al. N-acetylgalactosamine incorporation into a peptide containing consecutive threonine residues by UDP-N-acetyl-D-galactosaminide:polypeptide N-acetylgalactosaminyltransferases. , 2001, Glycobiology.
[24] R. Ivell,et al. The glycocalyx of the sperm surface. , 1999, Human reproduction update.
[25] S. Benoff. Carbohydrates and fertilization: an overview. , 1997, Molecular human reproduction.
[26] E. Bennett,et al. Purification and cDNA Cloning of a Human UDP-N-acetyl-α- D-galactosamine:polypeptide N-Acetylgalactosaminyltransferase (*) , 1995, The Journal of Biological Chemistry.
[27] A. Aribarg,et al. Prediction of post-thaw sperm motility and sperm cryosurvival rate using the pre-freeze sperm parameters. , 1995, Journal of the Medical Association of Thailand = Chotmaihet thangphaet.
[28] B. Lassalle,et al. Human zona pellucida recognition associated with removal of sialic acid from human sperm surface , 1994, Journal of reproduction and fertility.
[29] B. T. Storey,et al. Evidence that membrane stress contributes more than lipid peroxidation to sublethal cryodamage in cryopreserved human sperm: glycerol and other polyols as sole cryoprotectant. , 1993, Journal of andrology.
[30] J. H. Olson,et al. Semen cryobanking for men with cancer--criteria change. , 1992, Fertility and sterility.
[31] E. McLaughlin,et al. Motility characteristics and membrane integrity of cryopreserved human spermatozoa. , 1992, Journal of reproduction and fertility.
[32] R. Raubertas,et al. Cryopreservation of human semen. Comparison of cryopreservatives, sources of variability, and prediction of post-thaw survival. , 1992, Journal of andrology.
[33] M. Leong,et al. The hypoosmotic swelling test and cryosurvival of human spermatozoa. , 1990, Human reproduction.
[34] D. Froman,et al. Alteration of the spermatozoal glycocalyx and its effect on duration of fertility in the fowl (Gallus domesticus). , 1989, Biology of reproduction.
[35] S. Mack,et al. Acrosomal enzymes and ultrastructure of unfrozen and cryotreated human spermatozoa. , 1987, Gamete research.
[36] J. Cohen,et al. In vitro fertilizing capacity of fresh and cryopreserved human spermatozoa: a comparative study of freezing and thawing procedures. , 1981, Fertility and sterility.
[37] R. Harrison,et al. A comparative study in methods of cryoprotection for human semen. , 1980, Cryobiology.
[38] A. Cesari,et al. Heterologous recombinant protein with decapacitating activity prevents and reverts cryodamage in ram sperm: An emerging biotechnological tool for cryobiology. , 2016, Animal reproduction science.
[39] L. Zheng. Effects of vapor nitrogen freezing method and direct liquid nitrogen freezing method on motility,morphology and ultrastructure of human sperm , 2012 .
[40] J. Overstreet,et al. Glycoconjugates of the human sperm surface: distribution and alterations that accompany capacitation in vitro. , 1987, Gamete research.