scholarly journals Developmental competence of prepubertal goat oocytes selected with brilliant cresyl blue and matured with cysteamine supplementation

2003 ◽  
Vol 43 (2) ◽  
pp. 179-187 ◽  
Author(s):  
Elisabeth Rodríguez-González ◽  
Manel López-Bejar ◽  
Dolors Izquierdo ◽  
María-Teresa Paramio
Zygote ◽  
2019 ◽  
Vol 27 (3) ◽  
pp. 166-172 ◽  
Author(s):  
Linying Jia ◽  
Bo Ding ◽  
Chong Shen ◽  
Shiwei Luo ◽  
Yanru Zhang ◽  
...  

SummaryRabbits play an important role in people’s lives due to their high nutritional value and high-quality hair that can be used as raw material for textiles. Furthermore, rabbits are an important animal model for human disease, as genome-edited animals are particularly valuable for studying gene functions and pathogenesis. Somatic cell nuclear transfer (SCNT) is an important technique for producing genome-edited animals and it has great value in saving endangered species and in clone stem cell therapy. However, the low efficiency of SCNT limits its application, with the selection of suitable rabbit oocytes being crucial to its success. In the present study, we collected oocytes from ovarian follicles and stained them with 26 μM brilliant cresyl blue (BCB). We then matured the oocytes in vitro and used them for SCNT. Comparison of the BCB-positive oocytes with BCB-negative oocytes and the control group showed that the BCB-positive group had a significantly higher maturation rate (81.4% vs. 48.9% and 65.3% for the negative and control groups, respectively), cleavage rate (86.6% vs. 67.9% and 77.9%), blastocyst rate (30.5% vs. 12.8% and 19.6%), total number of blastocysts (90±7.5 vs. 65.3±6.3 and 67.5±5.7), and inner cell mass (ICM)/ trophectoderm (TE) index (42.3±4.2 vs. 30.2±2.1 and 33.9±5.1) (P<0.05). The BCB-positive group had a significantly lower apoptosis index (2.1±0.6 vs. 8.2±0.9 and 6.7±1.1 for the negative and control groups, respectively) (P<0.05). These findings demonstrate that BCB-positive oocytes have a higher maturation ability and developmental competence in vitro, indicating that BCB staining is a reliable method for selecting oocytes to enhance the efficiency of SCNT.


2019 ◽  
Vol 7 (1) ◽  
pp. 1-10 ◽  
Author(s):  
Katarzyna Stefańska ◽  
Małgorzata Józkowiak ◽  
Paweł Antosik ◽  
Dorota Bukowska ◽  
Piotr Celichowski ◽  
...  

AbstractCorrect maturation of the oocyte is crucial for further fertilization and embryogenesis. It comprises of both nuclear and cytoplasmic maturation, during which the proteins, nutrients and mRNAs are assembled. Cumulus cells are connected with the oocyte via gap-junctions, which enable bi-directional transfer of molecules, forming cumulus-oocyte complex (COC). The expression pattern in CCs is thought to resemble the genes expressed in the oocyte. The CCs surrounding the gamete of high developmental competence have an increased expression of apoptotic markers. Therefore, our aim in this study was to determine whether any apoptosis-related genes are upregulated in porcine oocytes before or after IVM. We isolated COCs from 45 pubertal crossbred gilts, performed brilliant cresyl blue (BCB) staining and analyzed the gene expression pattern in oocytes before and after IVM with the use of microarray analysis. The results include 419 differentially expressed transcripts, 25 of which belong to „regulation of apoptosis” and „regulation of cell death” GO BP terms. This set of genes includes BCLAF1, EIF2AK3, KLF10, MIF, MAP3K1, NOTCH2, TXNIP and APP, all of which have been upregulated in immature porcine oocytes. Our results suggest that they play part in porcine oocyte maturation and could be used as potential markers of female gamete’s developmental competence. This knowledge could serve as a basis to improve ART in pigs.


2016 ◽  
Vol 86 (8) ◽  
pp. 2020-2027 ◽  
Author(s):  
Liqin Wang ◽  
Xiangjiu Jiang ◽  
Yangsheng Wu ◽  
Jiapeng Lin ◽  
Li Zhang ◽  
...  

Zygote ◽  
2009 ◽  
Vol 18 (3) ◽  
pp. 209-216 ◽  
Author(s):  
Gustavo Bruno Mota ◽  
Ribrio Ivan Tavares Pereira Batista ◽  
Raquel Varella Serapião ◽  
Mariana Cortes Boité ◽  
João Henrique Moreira Viana ◽  
...  

SummaryThe objective of this work was to evaluate the selection of immature bovine oocytes by brilliant cresyl blue dye (BCB) and expression of transcripts MATER and ZAR1. Cumulus–oocyte complexes (COCs) from slaughterhouse ovaries were exposed to BCB diluted in mDPBS and incubated for 60 min at 38.5 °C in humidified air. After exposure those COCs were distributed in two groups, according to their cytoplasm colour: BCB+ (coloured cytoplasm) or BCB− (colourless cytoplasm). The control group was submitted to in vitro maturation (IVM) immediately after morphological selection and holding control group COCs were exposed to mDPBS without BCB but in the same incubation conditions of BCB+ and BCB− group. The COCs of all groups were submitted to IVM, in vitro fertilization (IVF) and in vitro culture (IVC). Cleavage rate (72 h post-insemination) was similar between control (65.3%) and BCB+ (64.4%) groups, but greater than (p < 0.05) holding control (49.8%) and BCB− (51.3%) groups. Blastocyst rate (192 h post-insemination) was not different between BCB+ (18.5%) and control (16.3%) groups, but greater (p < 0.05) than BCB− (8.4%) group. No difference was found for blastocyst rate between holding control group (14.2%), control and BCB+ groups. The relative expression of MATER and ZAR1 genes was evaluated by real-time PCR in immature oocytes collected from the control, holding control, BCB+ and BCB− groups. Despite the relative expression of MATER in holding control, BCB+ and BCB− were down regulated in comparison to control group there was no statistical difference (p > 0.05) in the relative expression of MATER and ZAR1 transcripts among groups. The results indicate that the BCB dye detects immature oocyte populations with different developmental competence, although no improvement in in vitro embryo production using oocytes exposed or not to BCB was observed. Development competence of immature oocytes exposed to BCB does not seem to be associated with variations in the expression of MATER and ZAR1 transcripts.


2005 ◽  
Vol 17 (2) ◽  
pp. 269
Author(s):  
H. Alm ◽  
H. Torner ◽  
B. Loehrke ◽  
T. Viergutz ◽  
I. Ghoneim ◽  
...  

A large proportion of bovine oocytes fail to develop to blastocyst stage following maturation, fertilization, and culture in vitro. While suboptimal culture conditions undoubtedly contribute to this poor development, it is recognized that immature oocytes, especially from cows with reduced reproductive performance or which are slaughtered on the end of their use, are heterogeneous in quality and developmental competence (Gordon 2003). The aim of the present study was to increase the efficiency of blastocyst production from cows after IVM/IVF by oocyte selection before maturation. Immature oocytes are known to synthesize a variety of proteins (Wassarman PM 1988, Annu. Rev. Biochem. 57, 415–442), among them, glucose-6-phosphate dehydrogenase (G6PDH). This enzyme is active in the growing oocyte, but has decreased activity in oocytes that have finished their growth phase. Brilliant cresyl blue (BCB) has been used to measure G6PDH activity. The BCB test is based on the capability of the G6PDH to convert the BCB stain from blue to colorless (Erisson et al. 1993 Theriogenology 39, 214). The ovaries were obtained from a slaughterhouse and transported to the laboratory; cumulus-oocyte complexes (COCs) were recovered by slicing the surface of the ovary. Only oocytes with a compact cumulus investment were used. Oocytes were placed into three groups: (1) control – placed immediately into culture; (2) holding control – COCs kept in PBS containing 0.4% BSA for 90 min at 38.5°C before placement into culture; and (3) treatment – incubation with brilliant cresyl blue for 90 min at 38.5°C before culture. Treated oocytes were then divided into BCB− (colorless cytoplasm, increased G6PDH) and BCB+ (colored cytoplasm, low G6PDH) on their ability to metabolize the stain. Activity of G6PDH was determined via measurement of NADP reduction in control, BCB−, and BCB+ groups; activity was significantly increased in BCB− COCs in comparison to the control and BCB+ COCs. After IVM, oocytes were fertilized in vitro. Embryos were cultured to Day 8. The rate of maturation to metaphase II was significantly higher for control and BCB+ oocytes (77.1 and 72.5%, respectively) than for BCB− oocytes (58.1%). The BCB+ oocytes yielded a significantly higher proportion of blastocysts (34.1%) than either control group (18.3 and 19.2%); and both controls and BCB+ oocytes had significantly higher blastocyst development than did BCB− oocytes (3.9%). The number of nuclei in the blastocysts was comparable in BCB+ and both control groups (105.5 ± 5.8 and 117.5 ± 8.5, 101.8 ± 6.2, respectively). Blastocysts in the BCB− group had a significantly lower cell number (61.0 ± 2.6) than did controls. The results show that the staining of COCs from cows before IVM may be useful in increasing the efficiency of blastocyst production during standard IVF procedures. In addition, classification of G6PDH activity on the basis of BCB staining may be used to effectively select cow oocytes with further developmental competence. To our knowledge, this is the first study to evaluate the association between G6PDH activity in oocytes and further blastocyst development in cows.


2015 ◽  
Vol 27 (1) ◽  
pp. 242
Author(s):  
M. Yang ◽  
S. Hu ◽  
L. Cox ◽  
M. Regouski ◽  
H. Rutigliano ◽  
...  

Oocyte quality plays a critical role in determining the success of embryo development. Studies on cattle and goats indicate that oocytes derived from large follicles (LFO) have greater developmental competence than those derived from small follicles (SFO). Brilliant cresyl blue (BCB) staining determines the activity of glucose-6-phosphate dehydrogenase and is a commonly used noninvasive marker of oocyte competence. Studies in pigs, goats, cows, mice, and dogs showed that the maturation and blastocyst developmental rate of BCB+ oocytes is significantly higher than BCB– oocytes. The aim of this study was to evaluate the maturation rate of goat oocytes selected based on follicular size and BCB staining and compare their relative patterns of gene expression. Maturation rate and gene expression profile were expected to be different in these oocyte groups. Cumulus-oocyte complexes were recovered from abattoir-derived ovaries using a slicing technique. Eleven rounds of oocyte maturation and 4 rounds of BCB staining were carried out. During each replicate, oocytes from large (≥3 mm) and small (<3 mm) follicles were collected separately from the same group of ovaries. Oocyte maturation rates were 54.3 ± 5.4% for LFO (n = 378) and only 33.5 ± 3.7% for SFO (n = 981; P < 0.01). The BCB+ (n = 223) oocytes yielded a significantly higher maturation rate than the BCB– (n = 194) oocytes (56.1 ± 1.8 v. 20.6 ± 3.8%, respectively; P < 0.001). Gene expression analysis was conducted on individual MII oocytes (21 oocytes per group). Specific target amplification was performed on a single oocyte directly by using the CellsDirect One-Step qRT–PCR Kit (Invitrogen). Quantitative real-time PCR was then performed using the 48.48 BioMark platform from Fluidigm. Forty two genes were selected from the following categories: growth factors, transcription factors, metabolism, pluripotency, cell cycle, apoptosis, and oocyte-specific genes. Relative expression values were calculated using the ΔΔCT (fold change) method and analysed by ANOVA. The significance was assigned at P < 0.05. The relative expression of CCNA2, CDK2, CCNB1, POU5F1, SOX2, EGF, FGF2, GDF9, ZP3, BCL2, GJA1, DDR1, PFKFB3, IGF2R, and GRB10 was significantly greater (P < 0.05) in both LFO and BCB+ oocytes compared to SFO and BCB– oocytes, respectively. The proapoptotic gene BAX, the ACSL3 gene involved in fatty acid oxidation, and the growth factor IGF1 were expressed significantly higher (P < 0.05) in SFO compared to LFO. By investigating these differentially expressed transcripts, we will better understand pathways involved in oocyte developmental competence and potentially use them as markers of oocyte quality. We expect that the ability to select oocytes of better quality based on BCB staining will improve outcomes of IVF and SCNT.


Reproduction ◽  
2011 ◽  
Vol 142 (4) ◽  
pp. 517-527 ◽  
Author(s):  
Maria Gracia Catalá ◽  
Dolors Izquierdo ◽  
Svetlana Uzbekova ◽  
Roser Morató ◽  
Montserrat Roura ◽  
...  

The aim of this study was to test the Brilliant Cresyl Blue (BCB) stain to select prepubertal sheep oocytes for in vitro blastocyst production. Oocyte diameter, mitochondrial activity, maturation-promoting factor (MPF) activity and mRNA relative expression (RE) of genes related to metabolism (ATPase Na+/K+ transporting α 1 (ATP1A1) and cytochrome c oxidase subunit 1 (COX1)) and constitutive function of the cell (cytoplasmic polyadenylation-element-binding protein (CPEB) and S100A10) were assessed. Immature oocytes were exposed to different BCB concentrations (13, 26, 39 and 52 μM) and classified according to their cytoplasm colouration as grown BCB+ (blue cytoplasm) and growing BCB− (colourless cytoplasm). Staining oocytes with 13 μM BCB during 60 min allows selection of (BCB+) the largest (123.66 μm) and most competent oocytes to develop to the blastocyst stage (21%) with a higher number of cells (69.71±6.19 s.e.m.) compared with non-stained BCB− oocytes (106.82 μm, 9% and 45.91±3.35 s.e.m. respectively). Mitochondrial activity, assessed by MitoTracker Orange CMTMRos probe, was significantly higher in BCB+ than in BCB− oocytes after in vitro maturation (3369 and 1565 AU respectively). MPF activity was assessed by CDC2 kinase activity assay showing significantly higher activity at metaphase II stage in BCB+ than in BCB− oocytes (1.479±0.09 and 1.184±0.05 optical density respectively). The genes analysed in this work, ATP1A1, COX1, CPEB and S100A10, did not show significant effect in mRNA RE between BCB selected oocytes. In conclusion, BCB stains larger and more competent oocytes to develop to the blastocyst stage with more active mitochondria and MPF activity and higher blastocyst cell number.


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