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Oocyte metabolism predicts the development of cat embryos to blastocyst in vitro

✍ Scribed by Rebecca E. Spindler; Budhan S. Pukazhenthi; David E. Wildt


Publisher
John Wiley and Sons
Year
2000
Tongue
English
Weight
124 KB
Volume
56
Category
Article
ISSN
1040-452X

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✦ Synopsis


Current methods for detecting complete oocyte maturation and developmental competence are inadequate. The objectives of this study were to (1) examine the relationship between cat oocyte energy metabolism and development in vitro after fertilization and (2) determine if cumulus cell metabolism could be used to predict development of individual oocytes after fertilization in vitro. The hanging drop method was used to assess metabolism of three different types of cat oocytes: immature (IMO), in vitro matured (IVM), and in vivo matured (IVOM). Stage of oocyte nuclear maturation or developmental competence was assessed after metabolic analysis. Glycolysis and oxidation of glucose, glutamine, palmitate, and lactate increased with the resumption of oocyte meiotic maturation (P Ο½ 0.05). Pyruvate was the preferred substrate, but uptake was not linked to maturation. IVM oocytes had impaired glucose and palmitate metabolism compared to IVOM oocytes (P Ο½ 0.05). Oocyte glycolytic activity and oocyte glucose oxidation correlated well with embryo development after insemination in vitro (P Ο½ 0.05). Furthermore, oocytes that had similar glucose metabolism and that were grouped together for culture on this basis had higher (P Ο½ 0.05) overall rates of development than oocytes grouped randomly. There was no correlation (P ΟΎ 0.05) between cumulus cell metabolism and individual oocyte development after in vitro fertilization. The data reveal that energy metabolism is linked to oocyte maturation in the cat and that glucose metabolic activity can indicate those oocytes most likely to fertilize and develop in vitro. Measuring cumulus cell metabolism does not accurately predict individual oocyte development after insemination in vitro.


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