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      The epididymis re-visited: a personal view

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      Asian Journal of Andrology
      Medknow Publications & Media Pvt Ltd

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          Abstract

          The sperm maturation and storage functions of the epididymis are important determinants of ejaculate quality, and perhaps provide an avenue to male contraception. In the last 50 years, the creation of epididymal fertility profiles in laboratory animals was followed by recognition of new sperm maturation-related parameters (organization of the acrosome, of the sperm plasmalemma, and –S–S– -based structural change) which made it possible to confirm that a similar pattern of sperm maturation obtains in man. The novel sperm storage function of the cauda epididymidis in therian mammals is regulated by androgen, usually in conjunction with the low temperature of the scrotum. The temperature-dependence of the scrotal cauda is reflected in the secretory and ion transport functions of the epithelium, in its duct dimensions and so in sperm storage capacity. Moreover, a variety of indirect evidence suggests that an elevated temperature of the cauda created by clothing may be compromising its function in man. The pattern of change in the sperm plasmalemma involving sterols, and also glycosylphosphatidylinositol-linked macromolecules as spermatozoa enter the cauda region, may underlie the need for their capacitation subsequently in the female tract. Further, in a variety of taxa the anatomy of the scrotum, together with the U-shaped configuration of the epididymis/vas deferens, suggests that the cauda's storage function may also underlie the evolution of the scrotum. Finally, despite the still relative paucity of comparative evidence, we can consider now why the epididymis has come to be organized as it is.

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          Most cited references71

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          Epididymosomes, prostasomes, and liposomes: their roles in mammalian male reproductive physiology.

          Mammalian spermatozoa are unique cells in many ways, and the acquisition of their main function, i.e. fertilization capacity, is a multistep process starting in the male gonad and ending near the female egg for the few cells reaching this point. Owing to the unique character of this cell, the molecular pathways necessary to achieve its maturation also show some specific characteristics. One of the most striking specificities of the spermatozoon is that its DNA is highly compacted after the replacement of histones by protamines, making the classical processes of transcription and translation impossible. The sperm cells are thus totally dependent on their extracellular environment for their protection against oxidative stress, for example, or for the molecular changes occurring during the transit of the epididymis; the first organ in which post-testicular maturation takes place. The molecular mechanisms underlying sperm maturation are still largely unknown, but it has been shown in the past three decades that extracellular vesicles secreted by the male reproductive tract are involved in this process. This review will examine the roles played by two types of naturally occurring extracellular vesicles, epididymosomes and prostasomes, secreted by the epididymis and the prostate respectively. We will also describe how the use of artificial vesicles, liposomes, contributed to the study of male reproductive physiology.
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            Role of cholesterol in sperm capacitation.

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              Sperm maturation in rabbit epididymis.

              Eva Crist (1967)
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                Author and article information

                Journal
                Asian J Androl
                Asian J. Androl
                AJA
                Asian Journal of Andrology
                Medknow Publications & Media Pvt Ltd (India )
                1008-682X
                1745-7262
                Sep-Oct 2015
                07 April 2015
                : 17
                : 5
                : 693-698
                Affiliations
                [1]Department of Obstetrics and Gynecology, The Center for Reproductive Medicine, Weill Cornell Medical College, Box 30, 1300 York Avenue, New York, NY 10065, USA.
                Author notes
                Correspondence: Prof. JM Bedford ( mbedford@ 123456med.cornell.edu )
                [*]

                This article was presented at the 6 th International Conference on the Epididymis in Shanghai, Oct 31- Nov 3, 2014.

                Article
                AJA-17-693
                10.4103/1008-682X.153297
                4577573
                25851661
                b7ec89a5-951b-4498-956c-f71b7c2ff24f
                Copyright: © Asian Journal of Andrology

                This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 3.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as the author is credited and the new creations are licensed under the identical terms

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