Author/Authors :
najafzadeh, vahid university of waikato - faculty of science engineering - department of biological sciences, new zealand , najafzadeh, vahid tehran university of medical sciences - school of medicine - department of anatomical sciences, ايران , shirazi, reza iran university of medical sciences - school of medicine, cellular and molecular research center, department of anatomical sciences, ايران , habibi roudkenar, mehryar high institute for research and education in transfusion medicine - blood transfusion research center, ايران , baazm, maryam arak university of medical sciences - school of medicine - department of anatomical sciences, ايران , amidi, fardin tehran university of medical sciences - school of medicine - department of anatomical sciences, ايران , mehrannia, kobra tehran university of medical sciences - school of medicine - department of anatomical sciences, ايران , sobhani, aligholi tehran university of medical sciences - school of medicine - department of anatomical sciences, ايران
Abstract :
introduction: contrary to a common belief, most mammalian females lose the ability of germ cell (gc) renewal and oogenesis during fetal life. although, it has been claimed that germ line stem cells preserve oogenesis in postnatal mouse ovaries, that postnatal oogenesis keeps producing functional and sufficient gcs in the case of infertility (caused by different reasons) is doubtful. on the other hand, there are many studies showing derivation of primordial gcs and late gcs from embryonic stem cells (escs) in vitro. this study aimed to clarify the role of escderived gcs in oogenesis. methods: mouse escs via embryoid body (eb) formation were differentiated into gc lineage by adding bone morphogenetic protein 4 (bmp4) and retinoic acid (ra) to the culture medium. expression of gc markers was characterized by using reverse transcription polymerase chain reaction (rtpcr) and immunohistochemistry. several 6 to 10weekold female mice, sterilized using chemical agents, were injected with escsderived gcs thorough their tail veins. to track the transplanted cells, their ovaries were immunohistochemically stained after two months. results: expression of gc specific markers such as mouse vasa homologue (mvh) and deleted in azoospermialike (dazl) indicated that gcs were successfully developed from escs. interestingly, there was no evidence of homing of gcs in the transplanted ovaries after transplantation of escsderived gcs. conclusion: our findings do not suggest any contribution of escderived gcs within the sterilized mice ovaries.
Keywords :
bone morphogenetic protein 4 (bmp4) , stem cells , germ cells , oogenesis , retinoic acid