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            Chapter Membrane Dynamics of Spermatozoa during Capacitation: New Insight in Germ Cells Signalling

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            Author(s)
            Ramal Sanchez, Marina
            Mattioli, Mauro
            Valbonetti, Luca
            Barboni, Barbara
            Bernabò, Nicola
            Capacchietti, Giulia
            Language
            English
            Show full item record
            Abstract
            The study of germline stem cells and of germline cells has deep implications for the understanding of fertility, development and cancer. Nowadays, we are experiencing the very fascinating challenge of application of –OMICS technologies to this issue, which is opening new and unexpected horizons in virtually all the branches of biology. Here, we carried out a review of signalling systems involved in maturation of male germ cells and in the process that leads them to become fully fertile. In particular, we discuss the control mechanisms involved in capacitation and acrosome reaction that act at membrane level. Indeed, spermatozoa membranes play key roles in determining the achievement of fertility: they are the interface with the surrounding environment, they locate the signal transduction systems and they are active in recognizing and binding the oocyte. In addition, we discuss the effect of several compounds that could exert a negative effect on reproductive activity, by interfering with the endocrine axis, the so-called endocrine disruptors.
            URI
            https://doab-dev.siscern.org/handle/20.500.12854/156561
            Keywords
            germline stem cells, spermatozoa, membrane, signalling, fertility; thema EDItEUR::M Medicine and Nursing::MF Pre-clinical medicine: basic sciences::MFK Human reproduction, growth and development::MFKC Reproductive medicine
            DOI
            10.5772/intechopen.69964
            Publisher
            InTechOpen
            Publication date and place
            2018
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            • logo EUEuropean Union
              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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