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Ovulation of the preovulatory follicle originating from the first-wave dominant follicle leads to formation of an active corpus luteum

The objective of our study was to compare the characteristics of the corpus luteum (CL) formed after ovulation of the dominant follicle (DF) of the first follicular wave (W1) and those of the CL formed after ovulation of the DF of the second (induced) follicular wave (W2). Non-lactating Holstein cow...

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Autores principales: MIURA, Ryotaro, HANEDA, Shingo, MATSUI, Motozumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Society for Reproduction and Development 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4547989/
https://www.ncbi.nlm.nih.gov/pubmed/26018204
http://dx.doi.org/10.1262/jrd.2014-099
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author MIURA, Ryotaro
HANEDA, Shingo
MATSUI, Motozumi
author_facet MIURA, Ryotaro
HANEDA, Shingo
MATSUI, Motozumi
author_sort MIURA, Ryotaro
collection PubMed
description The objective of our study was to compare the characteristics of the corpus luteum (CL) formed after ovulation of the dominant follicle (DF) of the first follicular wave (W1) and those of the CL formed after ovulation of the DF of the second (induced) follicular wave (W2). Non-lactating Holstein cows were used for this study. In Experiment 1, cows were treated with PGF2α and GnRH on days 6 and 8 (day 0 = day of follicular wave emergence) for W1 (n = 6) and W2 (n = 6), respectively. Dominant follicles were aspirated on day 9 to quantify the amounts of mRNA (VEGF120, VEGF164, FGF-2, StAR, P450-scc and 3β-HSD) in granulosa cells (GC). In Experiment 2, the size and blood flow area of the CL formed after ovulation of the DF in W1 (W1CL; n = 6) and W2 (W2CL; n = 6) (the day of DF ovulation in W1 and W2 was day 10) were evaluated on days 12, 15, 18 and 21. The plasma P4 concentration was measured on days 10 to 21. The amounts of VEGF164, P450-scc and 3β-HSD mRNA were higher (P < 0.05) in the DF in W1, and those of VEGF120,FGF-2 and StAR mRNA tended to be higher (P < 0.1) in the DF in W1. The size of the CL was greater in the W1CL on days 15, 18 and 21. The blood flow area of the CL was greater in the W1CL on days 12 and 15. The plasma P4 concentrations were higher in the W1CL. These results indicate that the CL formed after ovulation of the DF in W1 was greater in terms of size, blood flow and plasma P4 concentration.
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spelling pubmed-45479892015-08-27 Ovulation of the preovulatory follicle originating from the first-wave dominant follicle leads to formation of an active corpus luteum MIURA, Ryotaro HANEDA, Shingo MATSUI, Motozumi J Reprod Dev Original Article The objective of our study was to compare the characteristics of the corpus luteum (CL) formed after ovulation of the dominant follicle (DF) of the first follicular wave (W1) and those of the CL formed after ovulation of the DF of the second (induced) follicular wave (W2). Non-lactating Holstein cows were used for this study. In Experiment 1, cows were treated with PGF2α and GnRH on days 6 and 8 (day 0 = day of follicular wave emergence) for W1 (n = 6) and W2 (n = 6), respectively. Dominant follicles were aspirated on day 9 to quantify the amounts of mRNA (VEGF120, VEGF164, FGF-2, StAR, P450-scc and 3β-HSD) in granulosa cells (GC). In Experiment 2, the size and blood flow area of the CL formed after ovulation of the DF in W1 (W1CL; n = 6) and W2 (W2CL; n = 6) (the day of DF ovulation in W1 and W2 was day 10) were evaluated on days 12, 15, 18 and 21. The plasma P4 concentration was measured on days 10 to 21. The amounts of VEGF164, P450-scc and 3β-HSD mRNA were higher (P < 0.05) in the DF in W1, and those of VEGF120,FGF-2 and StAR mRNA tended to be higher (P < 0.1) in the DF in W1. The size of the CL was greater in the W1CL on days 15, 18 and 21. The blood flow area of the CL was greater in the W1CL on days 12 and 15. The plasma P4 concentrations were higher in the W1CL. These results indicate that the CL formed after ovulation of the DF in W1 was greater in terms of size, blood flow and plasma P4 concentration. The Society for Reproduction and Development 2015-05-28 2015-08 /pmc/articles/PMC4547989/ /pubmed/26018204 http://dx.doi.org/10.1262/jrd.2014-099 Text en ©2015 Society for Reproduction and Development http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives (by-nc-nd) License.
spellingShingle Original Article
MIURA, Ryotaro
HANEDA, Shingo
MATSUI, Motozumi
Ovulation of the preovulatory follicle originating from the first-wave dominant follicle leads to formation of an active corpus luteum
title Ovulation of the preovulatory follicle originating from the first-wave dominant follicle leads to formation of an active corpus luteum
title_full Ovulation of the preovulatory follicle originating from the first-wave dominant follicle leads to formation of an active corpus luteum
title_fullStr Ovulation of the preovulatory follicle originating from the first-wave dominant follicle leads to formation of an active corpus luteum
title_full_unstemmed Ovulation of the preovulatory follicle originating from the first-wave dominant follicle leads to formation of an active corpus luteum
title_short Ovulation of the preovulatory follicle originating from the first-wave dominant follicle leads to formation of an active corpus luteum
title_sort ovulation of the preovulatory follicle originating from the first-wave dominant follicle leads to formation of an active corpus luteum
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4547989/
https://www.ncbi.nlm.nih.gov/pubmed/26018204
http://dx.doi.org/10.1262/jrd.2014-099
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