| Literature DB >> 24548378 |
Roberto Russo, Davide Monaco, Marcello Rubessa, Khalid A El-Bahrawy, Ashraf El-Sayed, Nicola A Martino, Benedicte Beneult, Francesca Ciannarella, Maria E Dell'Aquila, Giovanni M Lacalandra, Manuel Filioli Uranio1.
Abstract
BACKGROUND: Reproductive biotechnologies in dromedary camel (Camelus dromedarius) are less developed than in other livestock species. The in vitro maturation (IVM) technology is a fundamental step for in vitro embryo production (IVP), and its optimization could represent a way to increase the success rate of IVP. The aim of the present study was to investigate the bioenergy/oxidative status of dromedary camel oocytes before and after IVM by confocal microscopy 3D imaging.Entities:
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Year: 2014 PMID: 24548378 PMCID: PMC3931272 DOI: 10.1186/1477-7827-12-16
Source DB: PubMed Journal: Reprod Biol Endocrinol ISSN: 1477-7827 Impact factor: 5.211
Mitochondrial distribution pattern of dromedary camel oocytes before (*) and after IVM
| GV* | 23 | 18 (78)a | 2 (9) | 2 (9)e | 1 (4) | 0 |
| M I | 27 | 11 (41)b | 2 (7) | 9 (33)f | 5 (19) | 0 |
| M II | 45 | 17 (38)c | 8 (18) | 14 (31)f | 4 (9) | 2 (4) |
Chi-square Test (within columns): a,b: P < 0.02; a,c: P < 0.01; e,f: P < 0.05.
GV: Germinal vesicle; M: Metaphase; SA: Small Aggregates; DTN: Diffused Tubular Network; PCTN: Pericortical Tubular Network; PN/PCTN: Perinuclear/Pericortical Tubular Network.
Figure 1Quantitative analysis of bioenergy/redox parameters in dromedary camel oocytes before and after maturation. Mean ± SD of mitochondrial (mt) activity (Panel A), intracellular ROS levels (Panel B) and mt-ROS colocalization (Panel C) of dromedary camel oocytes, as examined before and after in vitro maturation. Numbers of analyzed oocytes per group are indicated above the histograms. Mitochondrial activity and ROS levels are expressed as MitoTracker Orange CMTM Ros fluorescence intensity and 2′,7′-dichlorodihydrofluorescein diacetate (H2DCF-DA) fluorescence intensity in Arbitrary Densitometric Units (ADU). Mt/ROS colocalization is expressed as Pearson’s correlation coefficient of MitoTracker Orange CMTM Ros and DCF fluorescent labelling. One-way ANOVA: a,b: P < 0.001; a,c: P < 0.01; a,d: P < 0.05.
Figure 2Confocal images of mt distribution, ROS levels and mt/ROS colocalization of dromedary camel oocytes. Mitochondrial distribution patterns and intracellular reactive oxygen species (ROS) localization in dromedary camel oocytes at GV (Panel A), MI (Panel B), and MII (Panel C) stage observed after staining with MitoTracker Orange CMTM Ros, H2DCF-DA and Hoechst 33258. An immature GV stage oocyte showing homogeneous mt distribution pattern of small mitochondrial aggregates (Panel A), a MI oocyte showing heterogeneous distribution of mitochondria (pericortical tubular network, PCTN; Panel B), and a MII oocyte showing heterogeneous distribution of mitochondria (perinuclear/pericortical tubular network, PN/PCTN; Panel C) are shown. For each sample, corresponding bright field (A1, B1, C1), UV light (A2, B2, C2) and confocal images showing mitochondrial distribution pattern (A3, B3, C3) intracellular ROS localization (A4, B4, C4), mitochondrial/ROS merge (A5, B5, C5) and the mitochondrial/ROS colocalization scatter plot (A6, B6, C6) are shown. The scale bar represents 60 μm.
Figure 3Twenty-five serial optical sections analysis of bioenergy/redox parameters in a dromedary camel oocyte. Confocal microscopy twenty-five optical plane analysis of bioenergy/oxidative status in a dromedary camel MII stage oocyte representative of the PN/PCTN mitochondrial pattern. Concerning mt distribution (A), in planes nearer the equatorial position (planes 6–17), the perinuclear/pericortical tubular network (PN/PCTN) pattern can be observed. The section circled in white indicates the equatorial plane which was used for quantification analysis as reported in Figure 1. Values of mitochondria activity (A), intracellular ROS level (B) and mt/ROS colocalization (C) of the individual oocyte shown in this figure are: 1183 ADU, 1728 ADU and 0.54 Pearson’s coefficient, respectively. Scale bar represents 60 μm.