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Effects of Addition of Tissue-Type Plasminogen Activator in In Vitro Fertilization Medium on Bovine Embryo Development and Quality

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Autore
Krania, F.; Dovolou, E.; Rekkas, C. A.; Theodosiadou, E. K.; Pappas, I.; Amiridis, G. S.
Data
2015
DOI
10.1111/rda.12456
Soggetto
Blastocyst
gene expression
apoptosis
in vitro fertilization
MESSENGER-RNA EXPRESSION
EPSILON-AMINOCAPROIC ACID
CUMULUS-OOCYTE
COMPLEXES
BLASTOCYST DEVELOPMENT
ACROSOMAL MEMBRANE
SPERM
PENETRATION
ZONA-PELLUCIDA
MATURATION
GENES
VIVO
Agriculture, Dairy & Animal Science
Reproductive Biology
Veterinary
Sciences
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Abstract
Contents Plasminogen activators/Plasmin system plays pivotal role in regulating reproductive functions of mammals. Here, we examined the effects of modification of in vitro fertilization medium (IVF medium) with the addition of tissue-type plasminogen activator (t-PA), on bovine embryo development and quality, assessed by quantification of expression of various genes related to metabolism, oxidation, implantation and apoptosis. In addition, plasminogen activator activity (PAA) and plasminogen activator inhibition (PAI) were measured in the spent media. After conventional IVM, 2016 cumulus-oocyte complexes (COCs) were divided into four groups with modified composition of the IVF medium containing t-PA and/or its inhibitor epsilon-aminocaproic acid (control, t-PA, t-PA+epsilon-ACA, epsilon-ACA). Presumptive zygotes were cultured for 8days in synthetic oviductal fluid (SOF) medium; gene expression studies were carried out on morulae and blastocysts. t-PA alone significantly suppressed cleavage and blastocyst formation rates, but this effect was neutralized by the addition of epsilon-ACA. PAA in the treated group was significantly reduced by epsilon-ACA, but without total elimination. Significant differences were detected in the expression of genes related to apoptosis and/or cell cycle arrest (BAX, BCL2L1, KAT2B) between embryos produced in t-PA-modified media and controls, giving an overall notion that the inferior developmental competence of treated embryos may be attributed to apoptotic phenomena induced by t-PA. In conclusion, it appears that excessive t-PA content in the IVF media, suppresses blastocyst formation rate, possibly due to induction of apoptotic phenomena.
URI
http://hdl.handle.net/11615/30021
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