A Comparison of m-Carboxycinnamic Acid Bishydroxamide with Trichostatin A as Histone Deacetylase Inhibitor on the Developmental Competence of Somatic Cell Nuclear Transfer Porcine Embryos

논문상세정보
' A Comparison of m-Carboxycinnamic Acid Bishydroxamide with Trichostatin A as Histone Deacetylase Inhibitor on the Developmental Competence of Somatic Cell Nuclear Transfer Porcine Embryos' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • m-carboxycinnamicacidbishydroxamide
  • porcinescnt
  • trichstatina
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
8 0

0.0%

' A Comparison of m-Carboxycinnamic Acid Bishydroxamide with Trichostatin A as Histone Deacetylase Inhibitor on the Developmental Competence of Somatic Cell Nuclear Transfer Porcine Embryos' 의 참고문헌

  • Viable offspring derived from fetal and adult mammalian cells
    Wilmut, I. Nature 386 : 200 ~ [1997]
  • Valproic acid enhances in vitro development and Oct-3/4 expression of miniature pig somatic cell nuclear transfer embryos
    Miyoshi, K. Cellular Reprogramming 12 : 67 ~ 74 [2010]
  • Trichostatin a(TSA)improves the development of rabbit-rabbit intraspecies cloned embryos, but not rabbit-human interspecies cloned embryos
    Shi, L. H. Developmental Dynamics 237 : 640 ~ 648 [2008]
  • Trichostatin A improves histone acetylation in bovine somatic cell nuclear transfer early embryos
    Iager, A. E. Cloning Stem Cells 10 : 371 ~ 379 [2008]
  • Trichostatin A affects histone acetylation and gene expression in porcine somatic cell nucleus transfer embryos
    Cervera, R. P. Theriogenology 72 : 1097 ~ 1110 [2009]
  • Transcription of chromatin : these are complex times
    Armstrong, J. A. Current Opinion Genetics & Development 8 : 165 ~ 172 [1998]
  • The paternal allele of the H19 gene is progressively silenced during early mouse development : the acetylation status of histones may be involved in the generation of variegated expression patterns
    Svensson, K. Development 125 : 61 ~ 69 [1998]
  • The histone deacetylase inhibitor scriptaid enhances nascent mRNA production and rescues full-term development in cloned inbred mice
    Van Thuan, N. Reproduction 138 : 309 ~ 317 [2009]
  • The developmental potential of mouse somatic cell nuclear-transferred oocytes treated with trichostatin A and 5-aza-2'-deoxycytidine
    Tsuji, Y. Zygote 17 : 109 ~ 115 [2009]
  • TSA improves transgenic porcine cloned embryo development and transgene expression
    Kong, Q. R. Yi Chuan 33 : 749 ~ 756 [2011]
  • Synchronization of porcine oocyte meiosis using cycloheximide and its application to the study of regulation by cumulus cells
    Ye, J. Reprod. Fertil. Dev 14 : 433 ~ 442 [2002]
  • Somatic Nucleus Reprogramming Is Significantly Improved by m-carboxycinnamic acid bishydroxamide, a Histone Deacetylase Inhibitor
    Dai, X. P. Journal of Biological Chemistry 285 : 31002 ~ 31010 [2010]
  • Significant improvement of mouse cloning technique by treatment with trichostatin A after somatic nuclear transfer
    Kishigami, S Biochemical and Biophysical Research Communications 340 : 183 ~ 189 [2006]
  • Production of goats by somatic cell nuclear transfer
    Baguisi, A. Nature Biotechnology 17 : 456 ~ 461 [1999]
  • Potent and specific inhibition of mammalian histone deacetylase both in vivo and in vitro by trichostatin A
    Yoshida, M. Journal of Biological Chemistry 265 : 17174 ~ 17179 [1990]
  • Pluripotency maintenance in mouse somatic cell nuclear transfer embryos and its improvement by treatment with the histone deacetylase inhibitor TSA
    Hai, T. Cellular Reprogramming 13 : 47 ~ 56 [2011]
  • Pig cloning by microinjection of fetal fibroblast nuclei
    Onishi, A. Science 289 : 1188 ~ 1190 [2000]
  • Nuclear reprogramming to produce cloned mice and embryonic stem cells from somatic cells
    Wakayama, S. Reprod. Biomed. Online 16 : 545 ~ 552 [2008]
  • Nuclear reprogramming of cloned embryos and its implications for therapeutic cloning
    Yang, X. Z. Nature Genetics 39 : 295 ~ 302 [2007]
  • Nuclear cloning, stem cells, and genomic reprogramming
    Jaenisch, R. Cloning Stem Cells 4 : 389 ~ 396 [2002]
  • Methylated DNA and MeCP2 recruit histone deacetylase to repress transcription
    Jones, P. L. Nature Genetics 19 : 187 ~ 191 [1998]
  • Live Birth of Somatic Cell-Cloned Rabbits following Trichostatin A Treatment and Cotransfer of Parthenogenetic Embryos
    Meng, Q. G. Cloning Stem Cells 11 : 203 ~ 208 [2009]
  • Large offspring syndrome in cattle and sheep
    Young, L. E. Reviews of Reproduction 3 : 155 ~ 163 [1998]
  • Inhibition of histone deacetylases triggers pharmacologic preconditioning effects against myocardial ischemic injury
    Zhao, T. C. Cardiovascular Research 76 : 473 ~ 481 [2007]
  • Inhibition of Class IIb Histone Deacetylase Significantly Improves Cloning Efficiency in Mice
    Ono, T. Biology of Reproduction 83 : 929 ~ 937 [2010]
  • Induction of pluripotent stem cells from primary human fibroblasts with only Oct4 and Sox2
    Huangfu, D. Nature Biotechnology 26 : 1269 ~ 1275 [2008]
  • Increasing histone acetylation of cloned embryos, but not donor cells, by sodium butyrate improves their in vitro development in pigs
    Das, Z. C. Cellular Reprogramming 12 : 95 ~ 104 [2010]
  • Increased pre-implantation development of cloned bovine embryos treated with 5-aza-2 ′-deoxycytidine and trichostatin A
    Ding, X. Theriogenology 70 : 622 ~ 630 [2008]
  • Hybrid polar histone deacetylase inhibitor induces apoptosis and CD95/CD95 ligand expression in human neuroblastoma
    Glick, R. D. Cancer Res 59 : 4392 ~ 4399 [1999]
  • Histone deacetylase inhibitors improve in vitro and in vivo developmental competence of somatic cell nuclear transfer porcine embryos
    Zhao, J. Cellular Reprogramming 12 : 75 ~ 83 [2010]
  • Histone acetylation in chromatin structure and transcription
    Grunstein, M. Nature 389 : 349 ~ 352 [1997]
  • High in vitro development after somatic cell nuclear transfer and trichostatin A treatment of reconstructed porcine embryos
    Li, J. Theriogenology 70 : 800 ~ 808 [2008]
  • Genetic and epigenetic regulators of pluripotency
    Surani, M. A. Cell 128 : 747 ~ 762 [2007]
  • Full-term development of mice from enucleated oocytes injected with cumulus cell nuclei
    Wakayama, T. Nature 394 : 369 ~ 374 [1998]
  • Factors influencing the commercialisation of cloning in the pork industry
    Pratt, S. L. Soc. Reprod. Fertil 62 : 303 ~ 315 [2006]
  • Expression pattern of Oct-4 in preimplantation embryos of different species
    Kirchhof, N. Biology of Reproduction 63 : 1698 ~ 1705 [2000]
  • Errors in development of fetuses and placentas from in vitro-produced bovine embryos
    Farin, P. W. Theriogenology 65 : 178 ~ 191 [2006]
  • Epigenetic signatures of stem-cell identity
    Spivakov, M. Nature Review Genetics 8 : 263 ~ 271 [2007]
  • Eight calves cloned from somatic cells of a single adult
    Kato, Y. Science 282 : 2095 ~ 2098 [1998]
  • Differential gene expression patterns in porcine nuclear transfer embryos reconstructed with fetal fibroblasts and mesenchymal stem cells
    Kumar, B. M. Developmental Dynamics 236 : 435 ~ 446 [2007]
  • DNA methylation patterns and epigenetic memory
    Bird, A. Genes Development 16 : 6 ~ 21 [2002]
  • Cytochalasin B and Trichostatin A Treatment Postactivation Improves In Vitro Development of Porcine Somatic Cell Nuclear Transfer Embryos
    Beebe, L. F. S. Cloning and Stem Cells 11 : 477 ~ 482 [2009]
  • Comparison between the Effects of Valproic Acid and Trichostatin A on the In Vitro Development, Blastocyst Quality, and Full-Term Development of Mouse Somatic Cell Nuclear Transfer Embryos
    Costa-Borges, N. Cellular Reprogramming 12 : 437 ~ 446 [2010]
  • Cloning, DNA sequence, functional analysis and transcriptional regulation of the genes encoding dipicolinic acid synthetase required for sporulation in Bacillus subtilis
    Daniel, R. A. Journal of Molecular Biology 232 : 468 ~ 483 [1993]
  • Cloned rabbits produced by nuclear transfer from adult somatic cells
    Chesne, P. Nature Biotechnology 20 : 366 ~ 369 [2002]
  • Chromatin modifications and their function
    Kouzarides, T. Cell 128 : 693 ~ 705 [2007]
  • Chromatin modification and epigenetic reprogramming in mammalian development
    Li, E. Nature Reviews Genetics 3 : 662 ~ 673 [2002]
  • Centrifugation of bovine oocytes for nuclear micromanipulation and sperm microinjection
    Tatham, B. G. Hum. Reprod 11 : 1499 ~ 1503 [1996]
  • CBHA is a family of hybrid polar compounds that inhibit histone deacetylase, and induces growth inhibition, cell cycle arrest and apoptosis in human endometrial and ovarian cancer cells
    Takai, N. Oncology 70 : 97 ~ 105 [2006]
  • An epigenetic modifier results in improved in vitro blastocyst production after somatic cell nuclear transfer
    Zhang, Y. Cloning Stem Cells 9 : 357 ~ 363 [2007]