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Nicolli, A. R.

Publications and source records attributed to Nicolli, A. R..

2 recordsLinked to original sources

Effect of seminal plasma extracellular vesicles in post-thaw functional parameters of cryopreserved ram sperm

Cryopreservation of ram semen induces structural and functional alterations that compromise sperm function. Given that seminal plasma contributes to sperm physiology regulation, increasing attention has focused on extracellular vesicles (EVs), which carry proteins involved in membrane organization and capacitation. These properties suggest that EVs may contribute to maintaining sperm stability during cryopreservation. Therefore, this study evaluated the effect of seminal plasma-derived EVs on post-thaw functional parameters of ram sperm. Semen was cryopreserved in the presence or absence of EVs isolated by ultracentrifugation previously characterized by nanoparticle tracking analysis, TEM, FTIR and Western blotting. Post-thaw sperm quality was assessed through viability, membrane lipid disorder, reactive oxygen species production, protein phosphorylation, acrosome status, intracellular calcium levels, and motility. Sperm cryopreserved with EV-supplemented extender showed reduced membrane lipid disorder and lower intracellular calcium levels compared to controls (p < 0.05). CASA analysis revealed no significant differences in total or progressive motility; however, EV supplementation was associated with a modified kinematic profile, characterized by increased velocity and trajectory-related parameters (p < 0.001), suggesting a potential effect on sperm movement patterns . No significant differences were observed in viability, ROS levels, protein phosphorylation (tyrosine residues or PKA), or acrosome status. These findings provide proof-of-concept evidence that supplementation with seminal plasma-derived EVs during ram semen cryopreservation is associated with changes in membrane lipid organization, intracellular calcium homeostasis, and selected sperm kinematic parameters. Further studies are required to determine whether these changes translate into improved fertilizing ability.

cell biology↗

SPINK3-sperm interaction determines a stable sperm subpopulation with intact CatSper channel

Sperm capacitation involves proteolytic remodeling of membrane proteins, including components of the CatSper calcium channel, which is essential for hyperactivation and male fertility. Here, we identify the seminal protease inhibitor SPINK3, a known decapacitation factor that suppresses premature capacitation in the female tract, as the first physiological inhibitor of CATSPER1 processing. In mouse sperm, SPINK3 blocks capacitation-induced CATSPER1 cleavage, preserving a subpopulation with intact CatSper channels and lacking pTyr development in the flagellum. SPINK3 localizes to the outer surface of the sperm principal piece membrane in a CatSper-dependent but non-quadrilateral pattern, stabilizes membrane organization, and delays cholesterol efflux. These results reveal SPINK3 as a multifunctional regulator of capacitation, shaping sperm subpopulations in the female reproductive tract. SIGNIFICANCE STATEMENTThis study unveils a novel physiological regulator from the male reproductive tract, SPINK3, which extracellularly controls the processing of CATSPER1, a key subunit of the CatSper calcium channel essential for sperm capacitation in mice. We show that SPINK3 binds to the sperm surface and prevents the processing of CATSPER1 during capacitation. SPINK3-sperm interaction is dependent on the presence of the sperm-specific CatSper channel. Our findings reveal that SPINK3 stabilizes sperm membranes providing new insights into the molecular regulation of sperm function and fertility. GRAPHICAL ABSTRACT O_FIG O_LINKSMALLFIG WIDTH=194 HEIGHT=200 SRC="FIGDIR/small/672324v3_ufig1.gif" ALT="Figure 1"> View larger version (52K): org.highwire.dtl.DTLVardef@164c737org.highwire.dtl.DTLVardef@1531499org.highwire.dtl.DTLVardef@16d7abaorg.highwire.dtl.DTLVardef@945453_HPS_FORMAT_FIGEXP M_FIG C_FIG

cell biology↗