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Alpha-tocopherol improves sperm quality by regulate intracellular Ca2+ intensity (influx/efflux) of Simmental bull cattle sperm

BACKGROUND: The effects of α-tocopherol on intracellular Ca(2+) intensity in semen cryopreservation by regulate intracellular Ca(2+) intensity have not been reported yet. OBJECTIVE: The research was conducted to evaluate the effect of supplementation α- tocopherol into egg yolk skim milk extender on...

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Autores principales: H, Ratnani, T.W., Suprayogi, T, Sardjito, S, Susilowati, S, Azura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PAGEPress Publications, Pavia, Italy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7447939/
https://www.ncbi.nlm.nih.gov/pubmed/32874453
http://dx.doi.org/10.4081/idr.2020.8721
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author H, Ratnani
T.W., Suprayogi
T, Sardjito
S, Susilowati
S, Azura
author_facet H, Ratnani
T.W., Suprayogi
T, Sardjito
S, Susilowati
S, Azura
author_sort H, Ratnani
collection PubMed
description BACKGROUND: The effects of α-tocopherol on intracellular Ca(2+) intensity in semen cryopreservation by regulate intracellular Ca(2+) intensity have not been reported yet. OBJECTIVE: The research was conducted to evaluate the effect of supplementation α- tocopherol into egg yolk skim milk extender on sperm quality and intracellular Ca(2+) intensity. METHODS: Semen samples were collected and supplemented with respectively 0mM (P0); 0.5mM (P1); 1mM (P2); 1.5mM (P3) and 2mM (P4) α-tocopherol in extender before cryopreservation processes. Post-thawing sperm was evaluated for motility, viability, and abnormality using Phase Contrast Microscope (200x) with eosin-nigrosine staining, and intracellular Ca(2+) intensity of the best result dose was evaluated using Confocal Laser Scan Microscope (400x) with Fluo-3 Staining. RESULTS: The results showed there was a significant difference (P≤0.05) in sperm motility and viability between P0; P1 with P2; P3; P4. The Motility and viability between groups P0; P1 and P3; P4 showed no significant difference (P≥0.05), while P2 with P3; P4 showed significant difference (P≤0.05). There was a significant difference (P≤0.05) in sperm abnormality of P0; P1 with P2; P3; P4. The abnormality between P0; P1 and P2; P3 showed no significant difference (P≥0.05), while P2; P3 showed a significant difference with P4 (P≤0.05). The best result in sperm quality was supplementation with 1.5mM α-tocopherol. Ca(2+) intracellular intensity: 142.76± 21.8 au (P0) and 176.06±61.43 au (P3). CONCLUSIONS: It was concluded that 1.5mM α-tocopherol is the best dose to improve sperm quality by regulating intracellular Ca(2+) intensity on Simmental bull cattle.
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spelling pubmed-74479392020-08-31 Alpha-tocopherol improves sperm quality by regulate intracellular Ca2+ intensity (influx/efflux) of Simmental bull cattle sperm H, Ratnani T.W., Suprayogi T, Sardjito S, Susilowati S, Azura Infect Dis Rep Article BACKGROUND: The effects of α-tocopherol on intracellular Ca(2+) intensity in semen cryopreservation by regulate intracellular Ca(2+) intensity have not been reported yet. OBJECTIVE: The research was conducted to evaluate the effect of supplementation α- tocopherol into egg yolk skim milk extender on sperm quality and intracellular Ca(2+) intensity. METHODS: Semen samples were collected and supplemented with respectively 0mM (P0); 0.5mM (P1); 1mM (P2); 1.5mM (P3) and 2mM (P4) α-tocopherol in extender before cryopreservation processes. Post-thawing sperm was evaluated for motility, viability, and abnormality using Phase Contrast Microscope (200x) with eosin-nigrosine staining, and intracellular Ca(2+) intensity of the best result dose was evaluated using Confocal Laser Scan Microscope (400x) with Fluo-3 Staining. RESULTS: The results showed there was a significant difference (P≤0.05) in sperm motility and viability between P0; P1 with P2; P3; P4. The Motility and viability between groups P0; P1 and P3; P4 showed no significant difference (P≥0.05), while P2 with P3; P4 showed significant difference (P≤0.05). There was a significant difference (P≤0.05) in sperm abnormality of P0; P1 with P2; P3; P4. The abnormality between P0; P1 and P2; P3 showed no significant difference (P≥0.05), while P2; P3 showed a significant difference with P4 (P≤0.05). The best result in sperm quality was supplementation with 1.5mM α-tocopherol. Ca(2+) intracellular intensity: 142.76± 21.8 au (P0) and 176.06±61.43 au (P3). CONCLUSIONS: It was concluded that 1.5mM α-tocopherol is the best dose to improve sperm quality by regulating intracellular Ca(2+) intensity on Simmental bull cattle. PAGEPress Publications, Pavia, Italy 2020-07-06 /pmc/articles/PMC7447939/ /pubmed/32874453 http://dx.doi.org/10.4081/idr.2020.8721 Text en ©Copyright: the Author(s) http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Noncommercial License (by-nc 4.0) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Article
H, Ratnani
T.W., Suprayogi
T, Sardjito
S, Susilowati
S, Azura
Alpha-tocopherol improves sperm quality by regulate intracellular Ca2+ intensity (influx/efflux) of Simmental bull cattle sperm
title Alpha-tocopherol improves sperm quality by regulate intracellular Ca2+ intensity (influx/efflux) of Simmental bull cattle sperm
title_full Alpha-tocopherol improves sperm quality by regulate intracellular Ca2+ intensity (influx/efflux) of Simmental bull cattle sperm
title_fullStr Alpha-tocopherol improves sperm quality by regulate intracellular Ca2+ intensity (influx/efflux) of Simmental bull cattle sperm
title_full_unstemmed Alpha-tocopherol improves sperm quality by regulate intracellular Ca2+ intensity (influx/efflux) of Simmental bull cattle sperm
title_short Alpha-tocopherol improves sperm quality by regulate intracellular Ca2+ intensity (influx/efflux) of Simmental bull cattle sperm
title_sort alpha-tocopherol improves sperm quality by regulate intracellular ca2+ intensity (influx/efflux) of simmental bull cattle sperm
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7447939/
https://www.ncbi.nlm.nih.gov/pubmed/32874453
http://dx.doi.org/10.4081/idr.2020.8721
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