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- W2097624746 endingPage "1859" @default.
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- W2097624746 abstract "Highly reactive carbonyl compounds formed during glycolysis, such as methylglyoxal (MG), can lead to the formation of 'advanced glycation end products' (AGE) and carbonyl stress. Toxic AGEs are suspected to accumulate and play a role in reducing quality and developmental potential of mammalian oocytes of aged females and in PCOS and diabetic patients. Whether and how MG and AGE affect young and aged oocytes at the cellular level is unknown.The study consists of three parts. In Part A expression of MG-detoxifying enzymes glyoxalases 1 and 2 was analysed by RT-PCR at different stages of maturation in denuded oocytes (DO), cumulus-enclosed oocytes (CEO) and metaphase (M)II oocytes of the CD-1 mouse to obtain information on stage-specific susceptibility to carbonyl stress. DO and CEO from young and aged females and from stimulated cycles were exposed to MG during maturation in vitro to assess also age-related changes in sensitivity to carbonyl stress induced by MG. Induction of apoptosis by MG on in vitro maturing DO was assessed by terminal deoxynucleotidyl transferase-mediated dUDP nick-end labelling test. In Part B of the study, DO from large antral follicles of ovaries of adult, young MF-1 mice in late diestrous were exposed to MG to assess direct influences of MG and AGEs formed during continuous exposure to MG on rate and kinetics of maturation to MII, on DNA integrity (by γ-H2AX staining) in the germinal vesicle (GV) stage, and on spindle formation and chromosome alignment (by tubulin and pericentrin immunofluorescence and polarization microscopy), and chromosome segregation (by C-banding) during in vitro maturation. Since MG and AGEs can affect functionality of mitochondria in Part C, mitochondrial distribution and membrane potential was studied using JC-1 probe. Expression of a redox-sensitive mito-Grx1-roGFP2 protein in mitochondria of maturing oocytes by confocal laser scanning microscopy was employed to determine the inner mitochondrial glutathion (GSH)/glutathion disulfide (GSSG)-dependent redox potential.Part A revealed that mRNA for glyoxalases decreases during meiotic maturation. Importantly, cumulus from aged mice in CEO obtained from stimulated cycles does not protect oocytes efficiently from MG-induced meiotic arrest during in vitro maturation. Part B showed that the MG-induced meiotic delay or arrest is associated with significant rises in spindle aberrations, chromosome congression failure and aberrant telophase I in oocytes. MG exposure of meiotically arrested GV-stage oocytes significantly increases the numbers of γ-H2AX spots in the nucleus suggesting increased DNA damage, while MG exposure during maturation affects chromatin condensation and induces chromosome lagging at anaphase I. Moreover, Part C revealed that carbonyl stress by chronic exposure to MG is associated with delays in changes in mitochondrial distribution and altered inner-mitochondrial GSH/GSSG redox potential, which might be particularly relevant for cytoskeletal dynamics as well as processes after fertilization. Sensitivity to a meiotic block by MG appears dependent on the genetic background.The sensitivity to carbonyl stress by MG appears to increase with maternal age. Since MG-exposure induces DNA damage, meiotic delay, spindle aberrations, anaphase I lagging and epimutation, aged oocytes are particularly at risk for such disturbances in the absence of efficient protection by cumulus. Furthermore, disturbances in mitochondrial distribution and redox regulation may be especially critical for fertilization and developmental competence of oocytes exposed to MG and carbonyl stress before or during maturation, for instance, in aged females, or in PCOS or diabetic patients, in agreement with recent suggestions of correlations between poor follicular and embryonic development, lower pregnancy rate and presence of toxic AGEs in serum, irrespective of age." @default.
- W2097624746 created "2016-06-24" @default.
- W2097624746 creator A5009772540 @default.
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- W2097624746 date "2011-05-09" @default.
- W2097624746 modified "2023-10-01" @default.
- W2097624746 title "Evidence that carbonyl stress by methylglyoxal exposure induces DNA damage and spindle aberrations, affects mitochondrial integrity in mammalian oocytes and contributes to oocyte ageing" @default.
- W2097624746 cites W174942032 @default.
- W2097624746 cites W1951314249 @default.
- W2097624746 cites W1964343416 @default.
- W2097624746 cites W1965146473 @default.
- W2097624746 cites W1968879203 @default.
- W2097624746 cites W1974916178 @default.
- W2097624746 cites W1978767110 @default.
- W2097624746 cites W1980189058 @default.
- W2097624746 cites W1985775217 @default.
- W2097624746 cites W1995165032 @default.
- W2097624746 cites W1995569975 @default.
- W2097624746 cites W2000782226 @default.
- W2097624746 cites W2002263665 @default.
- W2097624746 cites W2007616778 @default.
- W2097624746 cites W2023780628 @default.
- W2097624746 cites W2024887000 @default.
- W2097624746 cites W2027470518 @default.
- W2097624746 cites W2027851004 @default.
- W2097624746 cites W2029136090 @default.
- W2097624746 cites W2031014742 @default.
- W2097624746 cites W2033443844 @default.
- W2097624746 cites W2035437519 @default.
- W2097624746 cites W2036687646 @default.
- W2097624746 cites W2037511720 @default.
- W2097624746 cites W2043229179 @default.
- W2097624746 cites W2044387885 @default.
- W2097624746 cites W2046619214 @default.
- W2097624746 cites W2053137609 @default.
- W2097624746 cites W2057010657 @default.
- W2097624746 cites W2057315336 @default.
- W2097624746 cites W2057733021 @default.
- W2097624746 cites W2060325240 @default.
- W2097624746 cites W2064386201 @default.
- W2097624746 cites W2066487508 @default.
- W2097624746 cites W2066851999 @default.
- W2097624746 cites W2067999045 @default.
- W2097624746 cites W2069271483 @default.
- W2097624746 cites W2075755772 @default.
- W2097624746 cites W2076020177 @default.
- W2097624746 cites W2076853816 @default.
- W2097624746 cites W2079160030 @default.
- W2097624746 cites W2079584602 @default.
- W2097624746 cites W2080925629 @default.
- W2097624746 cites W2082474879 @default.
- W2097624746 cites W2084134136 @default.
- W2097624746 cites W2086156368 @default.
- W2097624746 cites W2086358586 @default.
- W2097624746 cites W2090174812 @default.
- W2097624746 cites W2090464907 @default.
- W2097624746 cites W2090495023 @default.
- W2097624746 cites W2091227303 @default.
- W2097624746 cites W2096528264 @default.
- W2097624746 cites W2096528326 @default.
- W2097624746 cites W2096819061 @default.
- W2097624746 cites W2097846668 @default.
- W2097624746 cites W2100811292 @default.
- W2097624746 cites W2102826720 @default.
- W2097624746 cites W2104938297 @default.
- W2097624746 cites W2110194655 @default.
- W2097624746 cites W2114634093 @default.
- W2097624746 cites W2117086217 @default.
- W2097624746 cites W2119230276 @default.
- W2097624746 cites W2119830507 @default.
- W2097624746 cites W2121527030 @default.
- W2097624746 cites W2122907952 @default.
- W2097624746 cites W2123814691 @default.
- W2097624746 cites W2124411067 @default.
- W2097624746 cites W2126237969 @default.
- W2097624746 cites W2126240554 @default.
- W2097624746 cites W2129577285 @default.
- W2097624746 cites W2132878122 @default.
- W2097624746 cites W2135278966 @default.
- W2097624746 cites W2138592209 @default.
- W2097624746 cites W2140074366 @default.
- W2097624746 cites W2144282214 @default.
- W2097624746 cites W2144800653 @default.
- W2097624746 cites W2145155061 @default.
- W2097624746 cites W2146521283 @default.
- W2097624746 cites W2149224534 @default.
- W2097624746 cites W2152709629 @default.
- W2097624746 cites W2157077875 @default.
- W2097624746 cites W2160778315 @default.
- W2097624746 cites W2161869323 @default.
- W2097624746 cites W2171451674 @default.
- W2097624746 cites W2499159811 @default.
- W2097624746 doi "https://doi.org/10.1093/humrep/der140" @default.