Publications
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Differences and Similarities: The Richness of Comparative Sperm Physiology. Physiology, 35, 196–208. Retrieved from https://doi.org/10.1152/physiol.00033.2019
. (2020). Transient Sperm Starvation Improves the Outcome of Assisted Reproductive Technologies. Frontiers in Cell and Developmental Biology, 7. Retrieved from https://doi.org/10.3389/fcell.2019.00262
. (2019). Super-resolution imaging of live sperm reveals dynamic changes of the actin cytoskeleton during acrosomal exocytosis. Journal of Cell Science, 131, jcs218958. Retrieved from https://doi.org/10.1242/jcs.218958
. (2018). Essential Role of CFTR in PKA-Dependent Phosphorylation, Alkalinization, and Hyperpolarization During Human Sperm Capacitation. Journal of Cellular Physiology, 232, 1404–1414. presented at the oct. Retrieved from https://doi.org/10.1002/jcp.25634
. (2016). Transient exposure to calcium ionophore enables in vitro fertilization in sterile mouse models. Scientific Reports, 6. presented at the sep. Retrieved from https://doi.org/10.1038/srep33589
. (2016). The tyrosine kinase FER is responsible for the capacitation-associated increase in tyrosine phosphorylation in murine sperm. Development. presented at the 2016 May 25.
. (2016). Biphasic Role of Calcium in Mouse Sperm Capacitation Signaling Pathways. J Cell Physiol. presented at the 2015 Jan 17.
. (2015). Compartmentalization of Distinct cAMP Signaling Pathways in Mammalian Sperm. J Biol Chem. presented at the 2013 Oct 15.
. (2013). Electrophysiological evidence for the presence of cystic fibrosis transmembrane conductance regulator (CFTR) in mouse sperm. Journal of cellular physiology. presented at the 2012 Jul 25.
. (2012). Flow cytometry analysis reveals a decrease in intracellular sodium during sperm capacitation. Journal of cell science. presented at the 2012 Feb 2.
. (2012). Participation of the Cl-/HCO3- Exchangers SLC26A3 and SLC26A6, the Cl- Channel CFTR, and the Regulatory Factor SLC9A3R1 in Mouse Sperm Capacitation. Biology of reproduction, 86(1), 1-14. presented at the 2012.
. (2012). Ion channels, phosphorylation and mammalian sperm capacitation. Asian journal of andrology, 13(3), 395-405. presented at the 2011 May.
. (2011). Chloride Is essential for capacitation and for the capacitation-associated increase in tyrosine phosphorylation. The Journal of biological chemistry, 283(51), 35539-50. presented at the 2008 Dec 19.
. (2008). Sodium and epithelial sodium channels participate in the regulation of the capacitation-associated hyperpolarization in mouse sperm. The Journal of biological chemistry, 281(9), 5623-33. presented at the 2006 Mar 3.
. (2006).
Veterinary and Animal Sciences