[1] | Guzick DS, Overstreet JW, Factor-Litvak P, Brazil CK, Nakajima ST, Coutifaris C, Carson SA, Cisneros P, Steinkampf MP, Hill JA, Xu D, Vogel DL . Sperm morphology, motility, and concentration in fertile and infertile men. New Engl J Med, 2001,345(19):1388-1393. | [2] | Dacheux J, Voglmayr J . Sequence of sperm cell surface differentiation and its relationship to exogenous fluid proteins in the ram epididymis. Biol Reprod, 1983,29(4):1033-1046. | [3] | Gatti JL, Castella S, Dacheux F, Ecroyd H, Métayer S, Thimon V, Dacheux JL. Post-testicular sperm environment and fertility. Anim Reprod Sci, 2004, 82-83:321-339. | [4] | Caballero J, Frenette G, Sullivan R . Post testicular sperm maturational changes in the bull: important role of the epididymosomes and prostasomes. Vet Med Int, 2010,2011:757194. | [5] | Yanagimachi R, Kamiguchi Y, Mikamo K, Suzuki F, Yanagimachi H . Maturation of spermatozoa in the epididymis of the Chinese hamster. Devel Dyn, 1985,172(4):317-330. | [6] | Sullivan R, Saez F, Girouard J, Frenette G . Role of exosomes in sperm maturation during the transit along the male reproductive tract. Blood Cell Mol Dis, 2005,35(1):1-10. | [7] | Sullivan R, Saez F . Epididymosomes, prostasomes, and liposomes: their roles in mammalian male reproductive physiology. Reproduction, 2013,146(1):R21-R35. | [8] | Sullivan R, Frenette G, Girouard J . Epididymosomes are involved in the acquisition of new sperm proteins during epididymal transit. Asian J Androl, 2007,9(4):483-491. | [9] | Martin-DeLeon PA . Epididymosomes: transfer of fertility- modulating proteins to the sperm surface. Asian J Androl, 2015,17(5):720-725. | [10] | Bajpai V, Shipstone A, Ratna KB, Qaisar J, Setty B . Ultrastructure of the epididymal epithelium of rhesus monkey (Macaca mulatta). Acta Eur Fertil, 1984,16(3):207-217. | [11] | AGRAWAL Y, VANHA-PERTTULA T . Electron microscopic study of the secretion process in bovine reproductive organs. J Androl, 1988,9(5):307-316. | [12] | Frenette G, Lessard C, Sullivan R . Selected proteins of “prostasome-like particles” from epididymal cauda fluid are transferred to epididymal caput spermatozoa in bull. Biol Reprod, 2002,67(1):308-313. | [13] | Frenette G, Sullivan R . Prostasome-like particles are involved in the transfer of P25b from the bovine epididymal fluid to the sperm surface. Mol Reprod Dev, 2001,59(1):115-121. | [14] | Hermo L, Adamali HI, Andonian S . Immunolocalization of CA II and H^+ V-ATPase in epithelial cells of the mouse and rat epididymis. J Androl, 2000,21(3):376-391. | [15] | Fornés M, Barbieri A, Cav |
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