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2011 | 67 | 10 |

Tytuł artykułu

Ocena kompetencji rozwojowej oocytów oraz zarodków świń na podstawie badań molekularnych i mikrofluidycznych

Warianty tytułu

EN
Assessment of porcine oocytes and embryo developmental competence based on molecular and microfluidic research

Języki publikacji

PL

Abstrakty

EN
Evaluation of oocyte developmental competence has an important influence on the ability of these cells to attain maturation, successful fertilization, development of embryo to the blastocyst stage and proper implantation. Factors determining the reproductive potential of gametes included: (1) expression of important transcription factors, (2) epigenetic changes, which influence the silencing of selected genes transcription, (3) transcription regulation, and (4) post-transcriptional regulation. The epigenetic changes mainly include: DNA methylation, histones modifications and changes in chromatin structure in the oocytes. In several studies, the association between oocyte morphology (mostly determined by cumulus cell layers and granularity of cytoplasm) and the ability of these cells to attain maturation and fertilization has been described. The use of biochemical, metabolomical and molecular markers is the most frequently applied tool in the assessment of oocyte developmental competence. However, most of these methods are invasive and lead to the decreased viability of the analyzed cells. Searching for new, objective and noninvasive techniques leads to the development of a microfluidic chip system, which shows the physical (spectral) properties of oocytes and embryos in comparison to the biological parameters. In this article, selected issues associated with the genetic regulation of such processes as: maturation of oocytes, fertilization and early stages of embryonic development, have been presented. Moreover, the regulation of transcription and post-transcriptional modification during oogenesis and embryogenesis in mammals, with special relation to pigs and the possibilities of applying of microfluidics in assessment of oocyte and embryo developmental competence was shown.

Wydawca

-

Rocznik

Tom

67

Numer

10

Opis fizyczny

s.673-677,rys.,bibliogr.

Twórcy

autor
  • Katedra i Zakład Histologii i Embriologii, Wydział Lekarski II, Uniwersytet Medyczny w Poznaniu, ul.Święcickiego 6, 60-781 Poznań
autor
autor
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autor
autor
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autor

Bibliografia

  • 1.Anderson A. R., Wilkinson S. S., Price S., Crain J. L.: Reduction of high order multiples in frozen embryo transfers. Reprod. BioMedicine Online 2005, 10, 402-405.
  • 2.Antosik P., Kempisty B., Bukowska D., Jackowska M., Włodarczyk R., Budna J., Brüssow K. P., Lianeri M., Jagodziński P. P., Jaśkowski J. M.: Follicular size is associated with the levels of transcripts and proteins of selected molecules responsible for the fertilization ability of oocytes of puberal gilts. J. Reprod. Dev. 2009, 55, 588-593.
  • 3.Antosik P., Kempisty B., Bukowska D., Lianeri M., Bieżyński J., Jaśkowski J. M., Olechnowicz J.: Effect of different estrus synchronization systems on embryo quality in multiparous sows and prepuberal gilts. Medycyna Wet. 2010, 66, 251-256.
  • 4.Antosik P., Kempisty B., Jackowska M., Bukowska D., Lianeri M., Brüssow K. P., Woźna M., Jaśkowski J.: The morphology of porcine oocytes is associated with zona pellucida glycoprotein 3 and integrin beta 2 protein levels. Vet. Med. Praha 2010, 55, 154-162.
  • 5.Antosik P., Kempisty B., Jackowska M., Piotrowska H., Bukowska D., Woźna M., Lianeri M., Brüssow K. P., Jaśkowski J.: Assessment of transcript and protein levels contributing to cell cycle control and gap junction connections in morphologically variable groups of porcine cumulus-oocyte complexes. Vet. Med. Praha 2010, 55, 512-521.
  • 6.Bukowska D., Kempisty B., Antosik P., Jackowska M., Woźna M., Lianeri M., Jaśkowski J. M.: Association between the number and quality of bitch COC.s and selected donor factors. Medycyna Wet. 2010, 66, 480-483.
  • 7.Bukowska D., Kempisty B., Antosik P., Jaśkowski J. M., Olechnowicz J.: Selected aspects of canine oocytes maturation, fertilization and embryo development in dogs. Medycyna Wet. 2008, 64, 617-736.
  • 8.Carter D. B., Lai L., Park K. W., Samuel M., Lattimer J. C., Jordan K. R., Estes D. M., Besch-Williford C., Prather R. S.: Phenotyping of transgenic cloned piglets. Cloning Stem. Cells 2002, 4, 131-145.
  • 9.Depa-Martynów M., Kempisty B., Lianeri M., Jagodziñski P. P., Jedrzejczak P.: Association between fertilin beta, protamines 1 and 2 and spermatid-specific linker histone H1-like protein mRNA levels, fertilization ability of human spermatozoa, and quality of preimplantation embryos. Folia Histochem. Cytobiol. 2007, 45, 79-85.
  • 10.Górska I., Kempisty B., Jagodziñski P. P.: Epigenetyczne modyfikacje w komórkach rozrodczych. Gin. Prakt. 2006, 3, 2-5.
  • 11.Iager A. E., Ragina N. P., Ross P. J., Beyhan Z., Cunniff K., Rodriguez R. M., Cibelli J. B.: Trichostatin A improves histone acetylation in bovine somatic cell nuclear transfer early embryos. Cloning Stem. Cells 2008, 10, 371-379.
  • 12.Jackowska M., Kempisty B., Antosik P., Bukowska D., Budna J., Lianeri M., Rosińska E., Woźna M., Jagodziński P. P., Jaśkowski J. M.: The morphology of porcine oocytes is associated with zona pellucida glycoprotein transcript contents. Reprod. Biol. 2009, 9, 79-85.
  • 13.Jaśkowski J. M., Kempisty B., Woźna M., Walczak R., Szczepańska P., Dziuban J., Antosik P.: Wybrane metody oceny kompetencji rozwojowej oraz selekcji oocytów i zarodków bydlęcych. Medycyna Wet. 2010, 66, 740-744.
  • 14.Jędrzejczak P., Kempisty B., Bryja A., Mostkowska M., Depa-Martynów M., Pawlaczyk L., Jagodziński P. P.: Qantitative assessment of transition proteins 1, 2 spermatid-specific linker histone H1-like protein transcripts in spermatozoa from normozoospermic and asthenozoospermic men. Arch. Androl. 2007, 53, 199-205.
  • 15.Kempisty B., Antosik P., Bukowska D., Jackowska M., Lianeri M., Jaśkowski J. M., Jagodziński P. P.: Analysis of selected transcript levels in porcine spermatozoa, oocytes, zygotes and two-cell stage embryos. Reprod. Fertil. Dev. 2008, 20, 513-518.
  • 16.Kempisty B., Antosik P., Bukowska D., Jackowska M., Lianeri M., Jaśkowski J. M., Jagodziński P. P.: Assessment of zona pellucida glycoprotein and integrin transcript contents in porcine oocytes. Reprod. Biol. 2009, 9, 71-78.
  • 17.Kempisty B., Bukowska D., Woźna M., Sikora J., Jaśkowski J. M.: Molekularne aspekty interakcji plemnika z oocytem u ssaków. Medycyna Wet. 2010, 66, 544-546.
  • 18.Kempisty B., Depa-Martynow M., Lianeri M., Jedrzejczak P., Darul-Wasowicz A., Jagodzinski P. P.: Evaluation of protamines 1 and 2 transcript contents in spermatozoa from asthenozoospermic men. Folia Histochem Cytobiol. 2007, 45, 109-113.
  • 19.Kempisty B., Walczak R., Antosik P., Szczepańska P., Woźna M., Bukowska D., Zaorska K., Dziuban J., Jaśkowski J. M.: Systemy oceny kompetencji rozwojowej oocytów oraz zarodków oparte na technologii mikrofluidycznej typu Lab-on-Chip. Medycyna Wet. 2011, 67, 25-28.
  • 20.Kim S., Kim H. J., Jeon N. L.: Biological applications of microfluidic gradient devices. Integr. Biol. (Camb). 2010, 2, 584-603.
  • 21.Klose R. J., Bird A. P.: Genomic DNA methylation: the mark and its mediators. Trends Biochem Sci. 2006, 31, 89-97.
  • 22.Mizushima N., Levine B., Cuervo A. M., Klionsky D. J.: Autophagy fights disease through cellular self-digestion. Nature 2008, 451, 1069-1075.
  • 23.Ostermeier G. C., Miller D., Huntriss J. D., Diamond M. P., Krawetz S. A.: Reproductive biology: delivering spermatozoan RNA to the oocyte. Nature 2004, 429, 154.
  • 24.Park J., Li J., Han A.: Micro-macro hybrid soft-lithography master (MMHSM) fabrication for lab-on-a-chip applications. Biomed. Microdev. 2010, 12, 345-351.
  • 25.Prather R. S.: Nuclear control of early embryonic development in domestic pigs. J. Reprod. Fertil. Suppl. 1993, 48, 17-29.
  • 26.Prather R. S., Hoffman K. E., Schoenbeck R. A., Stumpf T. T., Li J.: Characterization of DNA synthesis during the 2-cell stage and the production of tetraploid chimeric pig embryos. Mol. Reprod. Dev. 1996, 45, 38-42.
  • 27.Sano H., Matsuura K., Naruse K., Funahashi H.: Application of a microfluidic sperm sorter to the in-vitro fertilization of porcine oocytes reduced the incidence of polyspermic penetration. Theriogenology 2010, 74, 863-870.
  • 28.Schier A. F.: The maternal-zygotic transition: death and birth of RNAs. Science 2007, 316, 406-407.
  • 29.Schoenbeck R. A., Peters M. S., Rickords L. F., Stumpf T. T., Prather R. S.: Characterization of deoxyribonucleic acid synthesis and the transition from maternal to embryonic control in the 4-cell porcine embryo. Biol. Reprod. 1992, 47, 1118-1125.
  • 30.Sikora J., Kempisty B., Jędrzejczak P., Jagodziński P. P.: Rola uszkodzeń DNA w plemnikach w ocenie ich zdolności do zapłodnienia. Przegl. Lek. 2006, 63, 800-802.
  • 31.Stitzel M. L., Seydoux G.: Regulation of the oocyte-to-zygote transition. Science 2007, 316, 407-408.
  • 32.Szczepańska P., Walczak R., Dziuban J., Jackowska M., Kempisty B., Jaśkowski J. M., Bargiel S.: Lab-on-chip quality classification of porcine/bovine oocytes. Procedia Chemistry 2009, 1, 341-344.
  • 33.Szczepańska P., Walczak R., Dziuban J., Kempisty B., Jackowska M., Antosik P., Jaśkowski J., Bargiel S.: Ocena jakościowa komórek rozrodczych zwierząt hodowlanych z wykorzystaniem mikrocytometru typu lab-chip. Elektronika 2010, 6, 93-96.
  • 34.Tian L., Wu X., Lin Y., Liu Z., Xiong F., Han Z., Zhou Y., Zeng Q., Wang Y., Deng J., Chen H.: Characterization and Potential Function of a Novel Pre-Implantation Embryo-Specific RING Finger Protein: TRIML. Mol. Reprod. and Develop. 2009, 76, 656-664.
  • 35.Tsukamoto S., Kuma A., Murakami M., Kishi C., Yamamoto A., Mizushima N.: Autophagy is essential for preimplantation development of mouse embryos. Science 2008, 321, 117-120.
  • 36.Walczak R., Szczepańska P., Dziuban J., Kempisty B., Jackowska M., Antosik P., Jaśkowski J., Chełmońska-Soyta A.: Lab-on-a-chip for developmental competence assessment of bovine oocytes. Elektronika 2010, 11, 30-33.
  • 37.Whitworth K. M., Agca C., Kim J. G., Patel R. V., Springer G. K., Bivens N. J., Forrester L. J., Mathialagan N., Green J. A., Prather R. S.: Transcriptional profiling of pig embryogenesis by using a 15-K member unigene set specific for pig reproductive tissues and embryos. Biol. Reprod. 2005, 72, 1437-1451.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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