Resveratrol treatment during goat oocytes maturation enhances developmental competence of parthenogenetic and hand-made cloned blastocysts by modulating intracellular glutathione level and embryonic gene expression
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S. De | H. Malik | Sudarshan Kumar | S. Saugandhika | D. Malakar | A. Mukherjee | A. Dubey | Dinesh Kumar Singhal | S. Guha | A. Saha | S. Boateng | D. K. Singhal
[1] Kyung-Chul Choi,et al. The effects of resveratrol on porcine oocyte in vitro maturation and subsequent embryonic development after parthenogenetic activation and in vitro fertilization. , 2012, Theriogenology.
[2] A. Mohanty,et al. Handmade cloned and parthenogenetic goat embryos – A comparison of different culture media and donor cells , 2012 .
[3] R. Baruffi,et al. IVF/ICSI outcomes after culture of human embryos at low oxygen tension: a meta-analysis , 2011, Reproductive biology and endocrinology : RB&E.
[4] R. Scarpulla,et al. Metabolic control of mitochondrial biogenesis through the PGC-1 family regulatory network. , 2011, Biochimica et biophysica acta.
[5] K. Singh,et al. Assessment of DNA damage during in vitro development of buffalo (Bubalus bubalis) embryos: effect of cysteamine. , 2010, Reproduction in domestic animals = Zuchthygiene.
[6] Eunsong Lee,et al. Anthocyanin stimulates in vitro development of cloned pig embryos by increasing the intracellular glutathione level and inhibiting reactive oxygen species. , 2010, Theriogenology.
[7] Kiho Lee,et al. Effect of resveratrol on the development of porcine embryos produced in vitro. , 2010, The Journal of reproduction and development.
[8] S. Pervaiz,et al. Resveratrol: its biologic targets and functional activity. , 2009, Antioxidants & redox signaling.
[9] Rongfeng Li,et al. Method of oocyte activation affects cloning efficiency in pigs , 2009, Molecular reproduction and development.
[10] Sajal Gupta,et al. Could oxidative stress influence the in-vitro maturation of oocytes? , 2009, Reproductive biomedicine online.
[11] I. Polejaeva,et al. Global gene expression analysis of bovine blastocysts produced by multiple methods , 2008, Molecular reproduction and development.
[12] D. Amarnath,et al. Gene expression in individual bovine somatic cell cloned embryos at the 8-cell and blastocyst stages of preimplantation development. , 2007, The Journal of reproduction and development.
[13] Seang Tan,et al. In vitro maturation of oocytes collected from unstimulated ovaries for oocyte donation. , 2007, Fertility and Sterility.
[14] P. Puigserver,et al. Metabolic control of muscle mitochondrial function and fatty acid oxidation through SIRT1/PGC‐1α , 2007, The EMBO journal.
[15] B. Knoops,et al. Peroxiredoxins in gametogenesis and embryo development. , 2007, Sub-cellular biochemistry.
[16] P. Puigserver,et al. Resveratrol Improves Mitochondrial Function and Protects against Metabolic Disease by Activating SIRT1 and PGC-1α , 2006, Cell.
[17] P. Puigserver,et al. Resveratrol improves health and survival of mice on a high-calorie diet , 2006, Nature.
[18] D. Amarnath,et al. Analysis of development-related gene expression in cloned bovine blastocysts with different developmental potential. , 2006, Cloning and stem cells.
[19] T. Mukherjee,et al. Scavenging of reactive oxygen radicals by resveratrol: antioxidant effect , 2006 .
[20] Wilhelm Haas,et al. Nutrient control of glucose homeostasis through a complex of PGC-1α and SIRT1 , 2005, Nature.
[21] Z. Luberda. The role of glutathione in mammalian gametes. , 2005, Reproductive biology.
[22] Dong Ryul Lee,et al. Obstetric outcome of patients with polycystic ovary syndrome treated by in vitro maturation and in vitro fertilization-embryo transfer. , 2004, Fertility and sterility.
[23] Steven P Gygi,et al. Nutrient control of glucose homeostasis through a complex of PGC-1alpha and SIRT1. , 2005, Nature.
[24] B. Pintado,et al. Effect of speed of development on mRNA expression pattern in early bovine embryos cultured in vivo or in vitro , 2004, Molecular reproduction and development.
[25] C. Wrenzycki,et al. Gene expression patterns in in vitro-produced and somatic nuclear transfer-derived preimplantation bovine embryos: relationship to the large offspring syndrome? , 2004, Animal reproduction science.
[26] A. Gutiérrez-Adán,et al. 243 TEMPORAL DIVERGENCE IN THE PATTERN OF MRNA EXPRESSION IN BOVINE EMBRYOS CULTURED FROM THE ZYGOTE TO BLASTOCYST STAGE IN VITRO OR IN VIVO , 2004 .
[27] Nam-Hyung Kim,et al. Expression of early development-related genes in bovine nuclear transferred and fertilized embryos , 2003, Zygote.
[28] P. Devroey,et al. Reproductive biology and IVF: ovarian stimulation and luteal phase consequences , 2003, Trends in Endocrinology & Metabolism.
[29] M. Aboulghar,et al. Ovarian hyperstimulation syndrome: classifications and critical analysis of preventive measures. , 2003, Human reproduction update.
[30] M. Sirard,et al. Antioxidant requirements for bovine oocytes varies during in vitro maturation, fertilization and development. , 2003, Theriogenology.
[31] M. Menon,et al. Resveratrol induces prostate cancer cell entry into s phase and inhibits DNA synthesis. , 2002, Cancer research.
[32] A. Gutiérrez-Adán,et al. Analysis of Differential Messenger RNA Expression Between Bovine Blastocysts Produced in Different Culture Systems: Implications for Blastocyst Quality1 , 2002, Biology of reproduction.
[33] W. Dröge. Free radicals in the physiological control of cell function. , 2002, Physiological reviews.
[34] C. Wrenzycki,et al. Changes in the relative abundance of mRNA transcripts for insulin-like growth factor (IGF-I and IGF-II) ligands and their receptors (IGF-IR/IGF-IIR) in preimplantation bovine embryos derived from different in vitro systems. , 2001, Reproduction.
[35] Y. Surh,et al. Protective effects of resveratrol on hydrogen peroxide-induced apoptosis in rat pheochromocytoma (PC12) cells. , 2001, Mutation research.
[36] H. Malonne,et al. A reappraisal of the potential chemopreventive and chemotherapeutic properties of resveratrol. , 2001, Carcinogenesis.
[37] M. Pfaffl,et al. A new mathematical model for relative quantification in real-time RT-PCR. , 2001, Nucleic acids research.
[38] Y. Menezo,et al. Oxidative stress and protection against reactive oxygen species in the pre-implantation embryo and its surroundings. , 2001, Human reproduction update.
[39] A. Okano,et al. Effect of oxidative stress on development and DNA damage in in-vitro cultured bovine embryos by comet assay. , 2000, Theriogenology.
[40] B. Szende,et al. Dose-dependent effect of resveratrol on proliferation and apoptosis in endothelial and tumor cell cultures , 2000, Experimental & Molecular Medicine.
[41] D. Betts,et al. Apoptosis in the early bovine embryo , 2000, Zygote.
[42] C. Furnus,et al. The importance of having high glutathione (GSH) level after bovine in vitro maturation on embryo development effect of beta-mercaptoethanol, cysteine and cystine. , 2000, Theriogenology.
[43] N. Minami,et al. Effects of cumulus cell density during in vitro maturation of the developmental competence of bovine oocytes. , 1998, Theriogenology.
[44] Barry Halliwell,et al. DNA damage by oxygen‐derived species Its mechanism and measurement in mammalian systems , 1991, FEBS letters.
[45] M. Johnson,et al. Hydrogen peroxide levels in mouse oocytes and early cleavage stage embryos developed in vitro or in vivo. , 1990, Development.
[46] R. J. Pryce,et al. Identification of pterostilbene as a phytoalexin from Vitis vinifera leaves , 1979 .
[47] E. Kosower,et al. The glutathione status of cells. , 1978, International review of cytology.