CAUSES OF REPEATED IMPLANTATION FAILURES IN AN IN VITRO FERTILIZATION PROGRAM


Дәйексөз келтіру

Толық мәтін

Ашық рұқсат Ашық рұқсат
Рұқсат жабық Рұқсат берілді
Рұқсат жабық Рұқсат ақылы немесе тек жазылушылар үшін

Аннотация

Objective. To carry out a systematic analysis of the data available in modern literature on the causes of repeated implantation failures in an in vitro fertilization (IVF) program and terminology definitions. Material and methods. The review included the data of foreign and Russian papers published in the past 10 years and found through Pubmed on this topic. Results. The possible causes of repeated implantation failures in an IVF program and terminology definitions were described. Conclusion. The molecular biology of gametes and embryos and the mRNA gene expression of endometrial receptivity markers in patients with repeated implantation failures require further investigations. To adopt a uniform terminology and to clarify the prognostic role of each factor (gametes, embryos, and endometrium) will determine tactics to overcome repeated implantation failures in the ART cycles.

Негізгі сөздер

Толық мәтін

Рұқсат жабық

Авторлар туралы

Elena Mityurina

Email: mity-elena@yandex.ru
PhD, doctor of the 1st gynecological department, Research Center of Obstetrics, Gynecology and Perinatology, Ministry of Health of Russia. 117997, Russia, Moscow, Ac. Oparina str. 4

Svetlana Perminova

MD, leading researcher of 1st gynecological department, Research Center of Obstetrics, Gynecology and Perinatology, Ministry of Health of Russia. 117997, Russia, Moscow, Ac. Oparina str. 4

Tatiana Amyan

Email: amyantanya@rambler.ru
a graduate student of the 1st gynecological department, Research Center of Obstetrics, Gynecology and Perinatology, Ministry of Health of Russia. 117997, Russia, Moscow, Ac. Oparina str. 4

Әдебиет тізімі

  1. Liu L., Zhou F., Lin X., Li T., Tong X., Zhu H., Zhang S. Recurrent IVF failure with elevated progesterone on the day of hCG administration. Eur. J. Obstet. Gynecol. Reprod. Biol. 2013; 171(1): 78-83.
  2. Donaghay M., Lessey B.A. Uterine receptivity: alteration associated with benign gynecological disease. Semin. Reprod. Med. 2007; 25(6): 461-75.
  3. Das M., Holzer H.E. Recurrent implantation failure: gamete and embryo factors. Fertil. Steril. 2012; 97(5): 1021-7.
  4. Achache H., Revel A. Endometrium receptivity markers, the journey to successful embryo implantation. Hum. Reprod. Update. 2006; 12(6): 731-46.
  5. Coughlan C., Ledger W., Wang Q., Liu F., Demirol A., Gurgan T. et al. Recurrent implantation failure: definition and management. Reprod. Biomed. Online. 2014; 28(1): 14-38.
  6. Laufer N., Simon A. Recurrent implantation failure: current update and clinical approach to an ongoing challenge. Fertil. Steril. 2012; 97(5): 1019-20.
  7. Aletebi F. Hysteroscopy in women with implantation failures after in vitro fertilization: findings and effect on subsequent pregnancy rates. Middle East Fertil. Soc. J. 2010; 15(4): 288-91.
  8. Huang C.C., Wang C.J., Soong Y.K., Wang H.S., Wang M.L., Lin C.Y., Chang C.L. Site - specific endometrial injury improves implantation and pregnancy in patients with repeated implantation failure. Reprod. Biol. Endocrinol. 2011; 9: 140.
  9. Sacks G., Yang Y., Gowen E., Smith S., Fay L., Chapman M. Detailed analysis of peripheral blood natural killer cells in women with repeated IVF failure. Am. J. Reprod. Immunol. 2012; 67(5): 434-42.
  10. Polanski L.T., Baumgarten M.N., Quenby S., Brosens J., Campbell B.K., Raine-Fenning N.J. What exactly do we mean by “recurrent implantation failure”? A systematic review and opinion. Reprod. Biomed. Online. 2014; 28(4): 409-23.
  11. Rienzi L., Ubaldi F., Iacobelli M., Minasi M.G., Romano S., Ferrero S. et al. Significance of morphological attributes of the early embryo. Reprod. Biomed. Online. 2005; 10(5): 669-81.
  12. Timeva T., Shterev A., Kyurkchiev S. Recurrent implantation failure: the role of the endometrium. J. Reprod. Infertil. 2014; 15(4): 173-83.
  13. Cutting R., Morroll D., Roberts S.A., Pickering S., Rutherford A. Elective single embryo transfer: guidelines for practice British Fertility Society and Association of Clinical Embryologists. Hum. Fertil. (Camb.). 2008; 11(3): 131-46.
  14. Tan B.K., Vandekerckhove P., Kennedy R., Keay S.D. Investigation and current management of recurrent IVF treatment failure in the UK. BJOG. 2005; 112(6): 773-80.
  15. Roque M., Lattes K., Serra S., Sold I., Geber S., Carreras R. et al. Fresh embryo transfer versus frozen embryo transfer in in vitro fertilization cycles: a systematic review and meta-analysis. Fertil Steril. 2013; 99(1): 156-62.
  16. Shapiro B.S., Daneshmand S.T., Garner F.C., Aguirre M., Hudson C. Freeze - all can be a superior therapy to another fresh cycle in patients with prior fresh blastocyst implantation failure. Reprod. Biomed. Online. 2014; 29(3): 286-90.
  17. Yang X., Huang R., Wang Y., Liang X. Pituitary suppression before frozen embryo transfer is beneficial for patients suffering from idiopathic repeated implantation failure. J. Huazhong Univ. Sci. Technolog. Med. Sci. 2016; 36(1): 127-31.
  18. Collins J. Mild stimulation for in vitro fertilization: making progress downward. Hum. Reprod. Update. 2009; 15: 1-3.
  19. Долгушина Н.В., Ратушняк С.С., Сокур С.А., Глинкина Ж.И. Риск анеуплоидии эмбрионов в программах вспомогательных репродуктивных технологий у мужчин с патозооспермией (мета-анализ). Акушерство и гинекология. 2012; 7: 4-13. [Dolgushina N.V., Ratushnyak S.S., Sokur S.A., Glinkina Zh.I. Risk for embryonic aneuploidy in assisted reproductive technology programs for men with abnormal zoospermia: Meta-analysis. Akusherstvo i Ginekologiya/Obstetrics and Gynecology. 2012; (7): 4-13. (in Russian)]
  20. Горшкова А.Г., Макарова Н.П., Долгушина Н.В. Дисморфизмы ооцитов в циклах вспомогательных репродуктивных технологий. Акушерство и гинекология. 2014; 6: 27-32. [Gorshkova A.G., Makarova N.P., Dolgushina N.V. Oocyte dysmorphisms in in vitro fertilization cycles: A review of literature. Akusherstvo i Ginekologiya/Obstetrics and Gynecology. 2014; (6): 27-32. (in Russian)]
  21. Figueira R., Braga D., Francisco L., Madaschi C., Assumpto Iaconelli Jr., Edson Borges Jr. Metaphase II human oocyte morphology: contributing factors and effects on fertilization potential and embryo developmental ability in ICSI cycles. Fertil. Steril. 2010; 94(3): 1115-7.
  22. Balaban B., Urman B. Effect of oocyte morphology on embryo development and implantation. Reprod. Biomed. Online. 2006; 12(5): 608-15.
  23. Hassold T., Hall H., Hunt P. The origin of human aneuploidy: where we have been, where we are going. Hum. Mol. Genet. 2007; 16(2): 203-8.
  24. Fragouli E., Katz-Jaffe M., Alfarawati S., Stevens J., Colls P., Goodall N. et al. Comprehensive chromosome screening of polar bodies and blastocysts from couples experiencing repeated implantation failure. Fertil. Steril. 2010; 94(3): 875-87.
  25. Schatten H., Qing-Yuan Sun, Prather R. The impact of mitochondrial function/ dysfunction on IVF and new treatment possibilities for infertility. Reprod. Biol. Endocrinol. 2014; 12: 111.
  26. Assou S., Haouzi D., De Vos J., Hamamah S. Human cumulus cells as biomarkers for embryo and pregnancy outcomes. Mol. Hum. Reprod. 2010; 16(8): 531-8.
  27. Benkhalifa M., Demirol A., Sari T., Balashova E., Tsouroupaki M., Giakoumakis Y. et al. Autologous embryo-cumulus cells co-culture and blastocyst transfer in repeated implantation failures: a collaborative prospective randomized study. Zygote. 2012; 20(2): 173-80.
  28. Cohen J., Ziyyat A., Naoura I., Chabbert-Buffel N., Aractingi S., Darai E. et al. Effect of induced peritoneal endometriosis on oocyte and embryo quality in a mouse model. J. Assist. Reprod. Genet. 2015; 32(2): 263-70.
  29. Diaz I., Navarro J., Blasco L., Simon C., Pellicer A., Remohi J. Impact of stage III-IV endometriosis on recipients of sibling oocytes: matched case-control study. Fertil. Steril. 2000; 74(1): 31-4.
  30. Yang C., Geng Y., Li Y., Chen C., Gao Y. Impact of ovarian endometrioma on ovarian responsiveness and IVF: a systematic review and meta-analysis. Reprod. Biomed. Online. 2015; 31: 9-19.
  31. Seli E., Gargner D.K., Schoolcraft W.B., Moffatt O., Sakkas D. et al. Extent of nuclear DNA damage in ejaculated spermatozoa impacts on blastocyst development after in vitro fertilization. Fertil. Steril. 2004; 82(2): 378-83.
  32. Collins J.A., Barnhart K.T., Schlegel P.N. Do sperm DNA integrity tests predict pregnancy with in vitro fertilization? Fertil. Steril. 2008; 89(4): 823-31.
  33. Sakkas D., Alvarez J. Sperm DNA fragmentation: mechanisms of origin, impact on reproductive outcome, and analysis. Fertil. Steril. 2010; 93(4): 1027-35.
  34. Rodrigo L., Peinado V., Mateu E., Remoh J., Pellicer A., Simon C. et al. Impact of different patterns of sperm chromosomal abnormalities on the chromosomal constitution of preimplantation embryos. Fertil. Steril. 2010; 94(4): 1380-6.
  35. Rubio C., Gil-Salom M., Simon C., Vidal F., Rodrigo L., Minguez Y. et al. Incidence of sperm chromosomal abnormalities in a risk population: relationship with sperm quality and ICSI outcome. Hum. Reprod. 2001; 16(10): 2084-92.
  36. Lessey B.A. The role of the endometrium during embryo implantation. Hum. Reprod. 2006; 15(Suppl. 6): 39-50.
  37. Шуршалина А.В., Демура Т.А. Морфо-функциональные перестройки эндометрия в «окно имплантации». Акушерство и гинекология. 2011; 7-2: 9-13. [Shurshalina A.V., Demura T.A. Morphofunctional rearrangements of the endometrium during the implantation window. Akusherstvo i Ginekologiya/ Obstetrics and Gynecology. 2011; (7-2): 9-13. (in Russian)]
  38. Таболова В.К., Корнеева И.Е. Влияние хронического эндометрита на исходы программ вспомогательных репродуктивных технологий: морфо-функциональные и молекулярно-генетические особенности (обзор литературы). Акушерство и гинекология. 2013; 10: 17-22. [Tabolova V.K., Korneeva I.E. Impact of chronic endometritis on the outcomes of assisted reproductive technology programs: morphofunctional and molecular genetic features. Akusherstvo i Ginekologiya/Obstetrics and Gynecology. 2013; (10): 17-22. (in Russian)]
  39. Kasius J.C., Fatemi H.M., Bourgain C., Sie-Go D.M., Eijkemans R.G., Fauser B.C. et al. The impact of chronic endometritis on reproductive outcome. Fertil. Steril. 2011; 96(6): 1451-6.
  40. MacAnanny J., Hartnett J., Engmann L., Nulsen J.C., Sanders M.M., Benadiva C.A. Chronic endometritis is a frequent finding in women with recurrent implantation failure after in vitro fertilization. Fertil. Steril. 2010; 93(2): 437-41.
  41. Pereira N., Petrini A.C., Lekovich J.P., Elias R.T., Spandorfer S.D. Surgical management of endometrial polyps in infertile women: a comprehensive review. Surg. Res. Pract. 2015; 2015: 914390. Available at: http://dx.doi.org/ 10.1155/2015/914390
  42. Costello M.F., Lindsay K., McNally G. The effect of adenomyosis on in vitro fertilisation and intra-cytoplasmic sperm injection treatment outcome. Eur. J. Obstet. Gynecol. Reprod. Biol. 2011; 158(2): 229-34.
  43. Tremellen K., Russell P. The distribution of immune cells and macrophages in the endometrium of women with recurrent reproductive failure. II: adenomyosis and macrophages. J. Reprod. Immunol. 2012; 93(1): 58-63.
  44. de Ziegler D., Pirtea P., Galliano D., Cicinelli E., Meldrum D. Optimal uterine anatomy and physiology necessary for normal implantation and placentation. Fertil. Steril. 2016; 105(4): 844-54.
  45. Rackow B.W., Taylor H.S. Submucosal uterine leiomyomas have a global effect on molecular determinants of endometrial receptivity. Fertil. Steril. 2010; 93(6): 2027-34.
  46. Pritts E.A., Parker W.H., Olive D.L. Fibroids and infertility: an updated systematic review of the evidence. Fertil. Steril. 2009; 91(4): 1215-23.
  47. Evans-Hoeker E.A., Young S.L. Endometrial receptivity and intrauterine adhesive disease. Semin. Reprod. Med. 2014; 32(5): 392-401.
  48. Tarlatzis B.C., Fauser B.C., Kolibianakis E.M., Diedrich K., Rombauts L., Devroey P. GnRH antagonists in ovarian stimulation for IVF. Hum. Reprod. Update. 2006; 12(4): 333-40.
  49. Chen Q.J., Sun X.X., Gao X.H. Effects of ovarian stimulation on endometrial integrin beta 3 and leukemia inhibitory factor expression in the peri-implantation phase. Fertil. Steril. 2008; 89(5): 1357-63.
  50. Kyrou D., Kolibianakis E.M., Venetis C.A., Miliaras D., Theodoridis T., Tzevelekis F. et al. Steroid receptor expression in human endometrium during the follicular phase of stimulated cycles. Hum. Reprod. 2009; 24(11): 2931-5.

Қосымша файлдар

Қосымша файлдар
Әрекет
1. JATS XML

© Bionika Media, 2016

Осы сайт cookie-файлдарды пайдаланады

Біздің сайтты пайдалануды жалғастыра отырып, сіз сайттың дұрыс жұмыс істеуін қамтамасыз ететін cookie файлдарын өңдеуге келісім бересіз.< / br>< / br>cookie файлдары туралы< / a>