Материалы доступны только для специалистов сферы здравоохранения. Авторизуйтесь или зарегистрируйтесь.
Представление о применении тканевой инженерии в гинекологии (обзор)
18 (2): 96–102.
________________________________________________
Sulina Y.Y., Ishchenko A.I., Lyundup A.V. et al. Presentation of the application of tissue engineering in gynecology (review). Gynecology. 2016; 18 (2): 96–102.
Материалы доступны только для специалистов сферы здравоохранения. Авторизуйтесь или зарегистрируйтесь.
Ключевые слова: тканевая инженерия, хирургическое лечение тазового пролапса, синдром недержания мочи, органозамещение, мезенхимальные стволовые клетки, клеточно-инженерная конструкция, сетчатый имплантат, биосовместимые матрицы, тазовый пролапс.
________________________________________________
The review deals with the development stages of the application of cell engineering technologies in Gynecology, Gynaecologic Oncology, Urogynecology. The basic principles, opportunities, advantages and disadvantages of development for the treatment of pelvic prolapse, urinary incontinence syndrome and partial organo with cell structures. The results of works published in the last 15 years. This review reflects the significance of the achievements of tissue-engineering technology for the regeneration of complex tissues and organs, as well as the importance of these innovations for the clinic.
Key words: tissue engineering, surgical treatment of pelvic prolapse syndrome, urinary incontinence, organoammonium, mesenchymal stem cells, cell engineering construction mesh implant biocompatible matrix, pelvic prolapse.
2. Spector L, Barnum H, Bernstein HJ, Swamy N. Quantum computing applications of genetic programming – Advances in genetic programming. MIT Press 1999; p. 135–60.
3. Langer R, Vacanti JP. Tissue engineering. Science 1993; 260 (5110): 920–6.
4. Пальцев М.А. Стволовые клетки и клеточные технологии: настоящее и будущее. Ремедиум. 2006; 8. / Pal'tsev M.A. Stvolovye kletki i kletochnye tekhnologii: nastoiashchee i budushchee. Remedium. 2006; 8. [in Russian]
5. Репин В.С., Ржанинова А.А., Шаменков Д.А. Эмбриональные стволовые клетки: фундаментальная биология и медицина. М.: Реметекс, 2002. / Repin V.S., Rzhaninova A.A., Shamenkov D.A. Embrional'nye stvolovye kletki: fundamental'naia biologiia i meditsina. M.: Remeteks, 2002. [in Russian]
6. Schofield R. The relationship between the spleen colony-forming cell and the haemopoietic stem cell. Blood Cells 1978; 4 (1–2): 7–25.
7. Унанян А.Л., Сидорова И.С., Коган Е.А. и др. Активный и неактивный аденомиоз: вопросы патогенеза и патогенетической терапии М.: Акушерство и гинекология, 2013; 4. / Unanian A.L., Sidorova I.S., Kogan E.A. i dr. Aktivnyi i neaktivnyi adenomioz: voprosy patogeneza i patogeneticheskoi terapii M.: Akusherstvo i ginekologiia, 2013; 4. [in Russian]
8. Reya T, Morrison SJ, Clarke MF, Weissman IL. Stem cells, cancer, and cancer stem cells. Nature 2001; 414 (6859): 105–11.
9. Al-Hajj M, Becker MW, Wicha M et al. Therapeutic implications of cancer stem cells. Curr Opin Genet Dev 2004; 14 (1): 43–7.
10. Прилепская В.Н. Заболевания шейки матки, влагалища и вульвы М.: МЕДпресс, 2000. / Prilepskaia V.N. Zabolevaniia sheiki matki, vlagalishcha i vul'vy M.: MEDpress, 2000. [in Russian]
11. Подистов Ю.И. Роль вируса папилломы в развитии предрака и рака шейки матки. Клин. лаб. диагностика. 2003; 5: 44–50. / Podistov Iu.I. Rol' virusa papillomy v razvitii predraka i raka sheiki matki. Klin. lab. diagnostika. 2003; 5: 44–50. [in Russian]
12. Ledwaba T, Dlamini Z, Naicker S, Bhoola K. Molecular genetics of human cervical cancer: role of papillomavirus and the apoptotic cascade. Biol Chem 2004; 385 (8): 671–82.
13. Коган Е.А., Файзуллина Н.М., Демура С.А. и др. Ремоделирование ниши стволовых клеток эндоцервикса при ВПЧ-ассоциированном предраке и микроинвазивном раке шейки матки. Акушерство и гинекология. 2012; 7: 55–9. / Kogan E.A., Faizullina N.M., Demura S.A. i dr. Remodelirovanie nishi stvolovykh kletok endotserviksa pri VPCh-assotsiirovannom predrake i mikroinvazivnom rake sheiki matki. Akusherstvo i ginekologiia. 2012; 7: 55–9. [in Russian]
14. Сухих Г.Т., Малайцев В.В., Богданова И.М., Дубровина И.В. Мезенхимальные стволовые клетки: Обзор. Бюллетень экспериментальной биологии и медицины. 2002; 133 (2): 124–31. / Sukhikh G.T., Malaitsev V.V., Bogdanova I.M., Dubrovina I.V. Mezenkhimal'nye stvolovye kletki: Obzor. Biulleten' eksperimental'noi biologii i meditsiny. 2002; 133 (2): 124–31. [in Russian]
15. Loewendorf A, Csete M. Concise review: immunologic lessons from solid organ transplantation for stem cell-based therapies. Stem Cells Transl Med 2013; 2 (2): 136–42. Doi: 10.5966/sctm.2012-0125.
16. Buckwalter JA, Mankin HJ. Articular cartilage, part I: tissue design and chondrocyte-matrix interactions. J Bone Joint Surg 1997; 79A: 600–11.
17. Casser-Bette M, Murray AB, Closs EI et al. Bone formation by osteoblast-like cells in a three- dimensional cell culture. Calcif Tissue Int 1990; 46: 46–56.
18. Haynesworth SE, Goshima J, Goldberg VM, Caplan AI. Characterization of cells with osteogenic potential from human marrow. Bone 1992; 13: 81–8.
19. Vandenburgh HH, Swadison S, Karlisch P. Computer-aided mechanogenesis of skeletal muscle organs from single cells in vitro. FASEB J 1991; 5: 2860–7.
20. Eschenhagen T, Fink C, Remmers U et al. Three-dimensional reconstitution of embryonic cardiomyocytes in a collagen matrix: a new heart muscle model system. FASEB J 1997; 11: 683–94.
21. Freed LE, Vunjak-Novakovic G. Microgravity tissue engineering. In Vitro Cell Dev Biol 1997; 33: 381–5.
22. Atala A, Bauer SB, Soker S et al. Tissue-engineered autologous bladders for patients needing cystoplasty. Lancet 2006; 367: 1241–6.
23. Kropp BP, Ludlow JK, Spicer D et al. Urology 1998; 52: 13842.
24. Chen F, Yoo JJ, Atala A. Urology 1999; 54: 407–10.
25. Yoo JJ, Meng J, Oberpenning F, Atala A. Urology 1998; 51: 221–5.
26. Kropp BP, Rippy MK, Badylak SF et al. J Urol 155; 1996: 2098–104.
27. Urita Y, Komuro H, Chen G et al. Pediatr Surg Int 2007; 23: 21–6.
28. Pariente JL, Kim BS, Atala A. J Biomed Mater Res 2001; 55: 33–9.
29. Pariente JL, Kim BS, Atala A. J Urol 2002; 167: 1867–71.
30. Eberli D, Susaeta R, Yoo JJ, Atala A. Int J Impot Res 2007; 19: 602–9.
31. Dawson RA, Goberdhan NJ, Freedlander E, MacNeil S. Burns 1996; 22: 93–100.
32. Курбанова А.Г. Результаты хирургического лечения различных пороков развития матки и влагалища. Акушерство и гинекология. 1984; 11: 52–5. / Kurbanova A.G. Rezul'taty khirurgicheskogo lecheniia razlichnykh porokov razvitiia matki i vlagalishcha. Akusherstvo i ginekologiia. 1984; 11: 52–5. [in Russian]
33. Окулов А.Б., Негмаджанов Б.Б., Глыбина Т.М. Ректосигмоидная вагинопластика у детей и подростков. Акушерство и гинекология. 1992; 1: 65–8. / Okulov A.B., Negmadzhanov B.B., Glybina T.M. Rektosigmoidnaia vaginoplastika u detei i podrostkov. Akusherstvo i ginekologiia. 1992; 1: 65–8. [in Russian]
34. Богданова Е.А., Алимбаева Г.Н., Мартыш Н.С. Клиника, диагностика и терапия удвоения матки и влагалища с частичной аплазией одного влагалища у подростков. Акушерство и гинекология. 1990; 9: 43–6. / Bogdanova E.A., Alimbaeva G.N., Martysh N.S. Klinika, diagnostika i terapiia udvoeniia matki i vlagalishcha s chastichnoi aplaziei odnogo vlagalishcha u podrostkov. Akusherstvo i ginekologiia. 1990; 9: 43–6. [in Russian]
35. Адамян Л.B., Кулаков В.И., Хашукоева А.З. Пороки развития матки и влагалища. М.: Медицина, 1998. / Adamian L.B., Kulakov V.I., Khashukoeva A.Z. Poroki razvitiia matki i vlagalishcha. M.: Meditsina, 1998. [in Russian]
36. Гулькевич Ю.В. Краткие сведения о развитии патологической анатомии в Русской и Советской Армии. Многотомное руководство по патологической анатомии. М., 1963; 1: 106–11. / Gul'kevich Iu.V. Kratkie svedeniia o razvitii patologicheskoi anatomii v Russkoi i Sovetskoi Armii. Mnogotomnoe rukovodstvo po patologicheskoi anatomii. M., 1963; 1: 106–11. [in Russian]
37. Волкова О.В., Пекарский М.И. Эмбриогенез и возрастная гистология внутренних органов человека. М.: Медицина, 1976. / Volkova O.V., Pekarskii M.I. Embriogenez i vozrastnaia gistologiia vnutrennikh organov cheloveka. M.: Meditsina, 1976. [in Russian]
38. Surgical treatment of high posttraumatic vaginal obliterations. In book of abstracts 13th congress of the European Association of gynecologists and obstetricians. Jerusalem, 1998; p. 78.
39. Urogenital sinus forms in girls with congenital adrenal hyperplasia. In book of abstracts 12th Congress of pediatric and Adolescent Gynecology. Helsinki, 1998; M5.34.
40. De Filippo RE, Yoo JJ, Atala A. Engineering of Vaginal Tissue in Vivo. Tissue Engeneering 2003; 9 (2): 1–6.
41. Raya-Rivera AM, Esquiliano D, Fierro-Pastrana R et al. Tissue-engineered autologous vaginal organs in patients: a pilot cohort study. Lancet 2014.
42. House M, Sanchez CC, Rice WL et al. Cervical Tissue Engineering Using Silk Scaffolds and Human Cervical Cells. Tissue Engeneering Part A 2010; 16 (6): 1–12.
43. Mawajdeh SM, Al-Qutob RJ, Farag AM. Prevalence and risk factors of genital prolapse. A multicenter study. Saudi Med J 2003; 24 (2): 161–5.
44. Кулаков В.И., Адамян Л.В., Мынбаев О.А. Хирургическое лечение опущения и выпадения влагалища и матки. Оперативная Гинекология – хирургия. М.: Медицина, 2000; с. 741–60. / Kulakov V.I., Adamian L.V., Mynbaev O.A. Khirurgicheskoe lechenie opushcheniia i vypadeniia vlagalishcha i matki. Operativnaia Ginekologiia – khirurgiia. M.: Meditsina, 2000; s. 741–60. [in Russian]
45. Попов А.А. Хирургическое лечение осложненных и неосложненных форм пролапса гениталий. Материалы II Российского Форума «Мать и дитя». М., 2000; 271. / Popov A.A. Khirurgicheskoe lechenie oslozhnennykh i neoslozhnennykh form prolapsa genitalii. Materialy II Rossiiskogo Foruma «Mat' i ditia». M., 2000; 271. [in Russian]
46. Манухин И.Б., Даянов Ф.В., Колесов А.А. и др. Отдельные результаты эндоскопических операций при пролапсе гениталий. Эндоскопия в гинекологии. М.: 2000; с. 508–9. / Manukhin I.B., Daianov F.V., Kolesov A.A. i dr. Otdel'nye rezul'taty endoskopicheskikh operatsii pri prolapse genitalii. Endoskopiia v ginekologii. M.: 2000; s. 508–9. [in Russian]
47. Медицинские материалы и имплантаты с памятью формы. Под ред. В.Э.Гюнтера. Томск: МИЦ, 2010; c. 6–220. / Meditsinskie materialy i implantaty s pamiat'iu formy. Pod red. V.E.Giuntera. Tomsk: MITs, 2010; s. 6–220. [in Russian]
48. Волова Т.Г., Шишацкая Е.И., Миронов П.В. Материалы для медицины, клеточной и тканевой инженерии. Электронное учебное пособие. Красноярск: ИПК СФУ, 2009. / Volova T.G., Shishatskaia E.I., Mironov P.V. Materialy dlia meditsiny, kletochnoi i tkanevoi inzhenerii. Elektronnoe uchebnoe posobie. Krasnoiarsk: IPK SFU, 2009. [in Russian]
49. Богдан В.Г., Криворот С.Г., Владимирская Т.Э. и др. Влияние мезенхимальных стволовых клеток из жировой ткани на синтез коллагена при различных способах пластики моделированной послеоперационной грыжи. Минск: Экспериментальная хирургия, 2012; с. 21–8. / Bogdan V.G., Krivorot S.G., Vladimirskaia T.E. i dr. Vliianie mezenkhimal'nykh stvolovykh kletok iz zhirovoi tkani na sintez kollagena pri razlichnykh sposobakh plastiki modelirovannoi posleoperatsionnoi gryzhi. Minsk: Eksperimental'naia khirurgiia, 2012; s. 21–8. [in Russian]
50. Ho MH, Heydarkhan S, Vernet D et al. Stimulating vaginal repair in rats through skeletal muscle-derived stem cells seeded on small intestinal submucosal scaffolds. Obstet Gynecol 2009; 114: 300–9.
51. Boennelycke M, Gras S, Lose G. Tissue engineering as a potential alternative or adjunct to surgical reconstruction in treating pelvic organ prolapsed. Int Urogynecol J Includ Pelvic Floor Dysfunct 2012; 23 (8): 1–7.
52. Boennelycke M, Christensen L, Nielsen LF et al. Fresh muscle fiber fragments on a scaffold in rats-a new concept in urogynecology? Am J Obstet Gynecol 2011; 205 (235): 10–4.
53. Репин В.С., Ржанинова А.А., Шаменков Д.А. Эмбриональные стволовые клетки: фундаментальная биология и медицина. М.: Реметекс, 2002; с. 184. / Repin V.S., Rzhaninova A.A., Shamenkov D.A. Embrional'nye stvolovye kletki: fundamental'naia biologiia i meditsina. M.: Remeteks, 2002; s. 184. [in Russian]
54. Hung MJ, Wen MC, Hung CN et al. Tissue-engineered fascia from vaginal fibroblasts for patients needing reconstructive pelvic surgery. Int Urogynecol J Pelvic Floor Dysfunct 2010; 21: 1085–93.
55. Kapischke M, Prinz K, Tepel J et al. Precoating of alloplastic materials with living human fibroblasts – a feasibility study. Surg Endosc 2005; 19: 791–7.
56. Mangera A, Bullock AJ, Macneil S, Chapple C. Developing an autologous tissue engineered prosthesis for use in stress urinary incontinence and pelvic organ prolapse (ICS-IUGA 2010 Abstracts). Int Urogynecol J Pelvic Floor Dysfunct 2010; 21: S325–S326.
57. Drewa T, Galazka P, Prokurat A et al. Abdominal wall repair using a biodegradable scaffold seeded with cells. J Pediatr Surg 2005; 40: 317–21.
58. Ищенко А.И., Люндуп А.В., Александров Л.С., Сулина Я.Ю. Опыт создания клеточно-инженерной конструкции для хирургического лечения тазового пролапса (предварительное сообщение). Вестн. рос. ассоциации акушеров-гинекологов. 2015; 3 (15): 52–5. / Ishchenko A.I., Liundup A.V., Aleksandrov L.S., Sulina Ia.Iu. Opyt sozdaniia kletochno-inzhenernoi konstruktsii dlia khirurgicheskogo lecheniia tazovogo prolapsa (predvaritel'noe soobshchenie). Vestn. ros. assotsiatsii akusherov-ginekologov. 2015; 3 (15): 52–5. [in Russian]
59. Li H, Fu X. Mechanisms of action of mesenchymal stem cells in cutaneous wound repair and regeneration. Cell Tissue Res 2012; 348: 371.
60. Shi LB, Cai HX, Chen LK et al. Tissue engineered bulking agent with adipose-derived stem cells and silk fibroin microspheres for the treatment of intrinsic urethral sphincter deficiency. Biomaterials 2014; 35: 1519–30.
61. Kleinert S, Horton R. Retraction – Autologous myoblasts and fibroblasts versus collagen [corrected] for treatment of stress urinary incontinence in women: A [corrected] randomised controlled trial. Lancet 2008; 372: 789–90.
62. Mathias T, Souzan S, Gobet R et al. Adipose-Derived Stem Cells (ASCs) for Tissue Engineering 2011; 1–9.
63. Altman GH, Diaz F, Jakuba C et al. Biomaterials 2003; 24: 401–16.
64. Wiesmann HP, Meyer U. Biomaterials. In: U.Meyer, T.Meyer, J.Handschel, H.Wiesmann, editors. Fundamentals of tissue engineering and regenerative medicine. Berlin Heidelberg: Springer-Verlag, 2009; p. 457–68.
65. Demirbag B, Huri PY, Kose GT et al. Advanced cell therapies with and without scaffolds. Biotechnol J 2011; 6: 1437–53.
66. Olson JL, Atala A, Yoo JJ. Tissue engineering: current strategies and future directions. Chonnam Med J 2011; 47: 1–13.
67. Gras S, Lose G. The clinical relevance of cell-based therapy for the treatment of stress urinary incontinence. Acta Obstet Gynecol Scand 2011; 90: 815–24.
68. Zhao W, Zhang C, Jin C et al. Periurethral injection of autologous adipose-derived stem cells with controlled-release nerve growth factor for the treatment of stress urinary incontinence in a rat model. Eur Urol 2011; 59: 155–63.
69. Zou XH, Zhi YL, Chen X et al. Mesenchymal stem cell seeded knitted silk sling for the treatment of stress urinary incontinence. Biomaterials 2010; 31: 4872–9.
70. Dolce C, Stefanidis D, Keller J et al. Pushing the envelope in biomaterial research: initial results of prosthetic coating with stem cells in a rat model. Surg Endosc 2010; 24: 2687–93.
71. Kunisaki SM, Fuchs JR, Kaviani A et al. Diaphragmatic repair through fetal tissue engineering: a comparison between mesenchymal amniocyte – and myoblast-based constructs. J Pediatr Surg 2006; 41: 34–9.
72. Ulrich D, Edwards SL, Su K et al. Human endometrial mesenchymal stem cells modulate the tissue response and mechanical behavior of polyamide mesh implants for pelvic organ prolapse repair. Tissue Eng Part A 2014; 20 (3–4): 785–98. Doi: 10.1089/ten.TEA.2013.0170.
73. Hung MJ, Wen MC, Hung CN et al. Tissue-engineered fascia from vaginal fibroblasts for patients need- ing reconstructive pelvic surgery. Int Urogynecol J Pelvic Floor Dysfunct 2010; 21: 1085–93.
74. Shi LB, Cai HX, Chen LK et al. Tissue engineered bulking agent with adipose-derived stem cells and silk fibroin microspheres for the treatment of intrinsic urethral sphincter deficiency. Biomaterials 2014; 35: 1519–30.
75. Ulrich D, Edwards SL, Su K et al. Human Endometrial Mesenchymal Stem Cells Modulate the Tissue Response and Mechanical Behaviour of Polyamide Mesh Implants for Pelvic Organ Prolapse Repair Tissue Engineering Part A Manuscript TEA 2013. 0170 R1 1–50.
76. Пустовалова О.Л., Агапов И.И., Мойсенович М.М. и др. Использование метода конфокальной микроскопии для изучения биологических свойств матрикса из рекомбинантной паутины. М.: Вестник трансплантологии и искусственных органов, 2009; 11 (2): 54–9. / Pustovalova O.L., Agapov I.I., Moisenovich M.M. i dr. Ispol'zovanie metoda konfokal'noi mikroskopii dlia izucheniia biologicheskikh svoistv matriksa iz rekombinantnoi pautiny. M.: Vestnik transplantоlogii i iskusstvennykh organov, 2009; 11 (2): 54–9. [in Russian]
77. Li Q, Wang J, Liu H et al. Tissue-engineered mesh for pelvic floor reconstruction fabricated from silk fibroin scaffold with adipose-derived mesenchymal stem cells. Cell Tissue Res 2013; 354 (2): 471–80.
78. Агапов И.И., Мойсенович М.М., Васильева Т.В. и др. Биодеградируемые матриксы из регенерированного шелка BOMBIX MORI. М.: Биохимия, биофизика, молекулярная биология доклады Академии наук. 2010; 433 (5): 699–702. / Agapov I.I., Moisenovich M.M., Vasil'eva T.V. i dr. Biodegradiruemye matriksy iz regenerirovannogo shelka BOMBIX MORI. M.: Biokhimiia, biofizika, molekuliarnaia biologiia doklady Akademii nauk, 2010; 433 (5): 699–702. [in Russian]
79. Kim HJ, Kim UJ, Leisk GG et al. Bone regeneration on macroporous aqueous-derived silk 3-D scaffolds. Macromol Biosci 2007 10; 7 (5): 643–55.
80. Park JS, Chu JS, Cheng C et al. Differential effects of equiaxial and uniaxial strain on mesenchymal stem cells. Biotechnol Bioeng 2004; 88: 359.
________________________________________________
1. Biologiia stvolovykh kletok i kletochnye tekhnologii. Pod red. M.P.Pal'tseva. T. 2. M.: Meditsina, 2009; 2. [in Russian]
2. Spector L, Barnum H, Bernstein HJ, Swamy N. Quantum computing applications of genetic programming – Advances in genetic programming. MIT Press 1999; p. 135–60.
3. Langer R, Vacanti JP. Tissue engineering. Science 1993; 260 (5110): 920–6.
4. Pal'tsev M.A. Stvolovye kletki i kletochnye tekhnologii: nastoiashchee i budushchee. Remedium. 2006; 8. [in Russian]
5. Repin V.S., Rzhaninova A.A., Shamenkov D.A. Embrional'nye stvolovye kletki: fundamental'naia biologiia i meditsina. M.: Remeteks, 2002. [in Russian]
6. Schofield R. The relationship between the spleen colony-forming cell and the haemopoietic stem cell. Blood Cells 1978; 4 (1–2): 7–25.
7. Unanian A.L., Sidorova I.S., Kogan E.A. i dr. Aktivnyi i neaktivnyi adenomioz: voprosy patogeneza i patogeneticheskoi terapii M.: Akusherstvo i ginekologiia, 2013; 4. [in Russian]
8. Reya T, Morrison SJ, Clarke MF, Weissman IL. Stem cells, cancer, and cancer stem cells. Nature 2001; 414 (6859): 105–11.
9. Al-Hajj M, Becker MW, Wicha M et al. Therapeutic implications of cancer stem cells. Curr Opin Genet Dev 2004; 14 (1): 43–7.
10. Prilepskaia V.N. Zabolevaniia sheiki matki, vlagalishcha i vul'vy M.: MEDpress, 2000. [in Russian]
11. Podistov Iu.I. Rol' virusa papillomy v razvitii predraka i raka sheiki matki. Klin. lab. diagnostika. 2003; 5: 44–50. [in Russian]
12. Ledwaba T, Dlamini Z, Naicker S, Bhoola K. Molecular genetics of human cervical cancer: role of papillomavirus and the apoptotic cascade. Biol Chem 2004; 385 (8): 671–82.
13. Kogan E.A., Faizullina N.M., Demura S.A. i dr. Remodelirovanie nishi stvolovykh kletok endotserviksa pri VPCh-assotsiirovannom predrake i mikroinvazivnom rake sheiki matki. Akusherstvo i ginekologiia. 2012; 7: 55–9. [in Russian]
14. Sukhikh G.T., Malaitsev V.V., Bogdanova I.M., Dubrovina I.V. Mezenkhimal'nye stvolovye kletki: Obzor. Biulleten' eksperimental'noi biologii i meditsiny. 2002; 133 (2): 124–31. [in Russian]
15. Loewendorf A, Csete M. Concise review: immunologic lessons from solid organ transplantation for stem cell-based therapies. Stem Cells Transl Med 2013; 2 (2): 136–42. Doi: 10.5966/sctm.2012-0125.
16. Buckwalter JA, Mankin HJ. Articular cartilage, part I: tissue design and chondrocyte-matrix interactions. J Bone Joint Surg 1997; 79A: 600–11.
17. Casser-Bette M, Murray AB, Closs EI et al. Bone formation by osteoblast-like cells in a three- dimensional cell culture. Calcif Tissue Int 1990; 46: 46–56.
18. Haynesworth SE, Goshima J, Goldberg VM, Caplan AI. Characterization of cells with osteogenic potential from human marrow. Bone 1992; 13: 81–8.
19. Vandenburgh HH, Swadison S, Karlisch P. Computer-aided mechanogenesis of skeletal muscle organs from single cells in vitro. FASEB J 1991; 5: 2860–7.
20. Eschenhagen T, Fink C, Remmers U et al. Three-dimensional reconstitution of embryonic cardiomyocytes in a collagen matrix: a new heart muscle model system. FASEB J 1997; 11: 683–94.
21. Freed LE, Vunjak-Novakovic G. Microgravity tissue engineering. In Vitro Cell Dev Biol 1997; 33: 381–5.
22. Atala A, Bauer SB, Soker S et al. Tissue-engineered autologous bladders for patients needing cystoplasty. Lancet 2006; 367: 1241–6.
23. Kropp BP, Ludlow JK, Spicer D et al. Urology 1998; 52: 13842.
24. Chen F, Yoo JJ, Atala A. Urology 1999; 54: 407–10.
25. Yoo JJ, Meng J, Oberpenning F, Atala A. Urology 1998; 51: 221–5.
26. Kropp BP, Rippy MK, Badylak SF et al. J Urol 155; 1996: 2098–104.
27. Urita Y, Komuro H, Chen G et al. Pediatr Surg Int 2007; 23: 21–6.
28. Pariente JL, Kim BS, Atala A. J Biomed Mater Res 2001; 55: 33–9.
29. Pariente JL, Kim BS, Atala A. J Urol 2002; 167: 1867–71.
30. Eberli D, Susaeta R, Yoo JJ, Atala A. Int J Impot Res 2007; 19: 602–9.
31. Dawson RA, Goberdhan NJ, Freedlander E, MacNeil S. Burns 1996; 22: 93–100.
32. КKurbanova A.G. Rezul'taty khirurgicheskogo lecheniia razlichnykh porokov razvitiia matki i vlagalishcha. Akusherstvo i ginekologiia. 1984; 11: 52–5. [in Russian]
33. Okulov A.B., Negmadzhanov B.B., Glybina T.M. Rektosigmoidnaia vaginoplastika u detei i podrostkov. Akusherstvo i ginekologiia. 1992; 1: 65–8. [in Russian]
34. Bogdanova E.A., Alimbaeva G.N., Martysh N.S. Klinika, diagnostika i terapiia udvoeniia matki i vlagalishcha s chastichnoi aplaziei odnogo vlagalishcha u podrostkov. Akusherstvo i ginekologiia. 1990; 9: 43–6. [in Russian]
35. Adamian L.B., Kulakov V.I., Khashukoeva A.Z. Poroki razvitiia matki i vlagalishcha. M.: Meditsina, 1998. [in Russian]
36. Gul'kevich Iu.V. Kratkie svedeniia o razvitii patologicheskoi anatomii v Russkoi i Sovetskoi Armii. Mnogotomnoe rukovodstvo po patologicheskoi anatomii. M., 1963; 1: 106–11. [in Russian]
37. Volkova O.V., Pekarskii M.I. Embriogenez i vozrastnaia gistologiia vnutrennikh organov cheloveka. M.: Meditsina, 1976. [in Russian]
38. Surgical treatment of high posttraumatic vaginal obliterations. In book of abstracts 13th congress of the European Association of gynecologists and obstetricians. Jerusalem, 1998; p. 78.
39. Urogenital sinus forms in girls with congenital adrenal hyperplasia. In book of abstracts 12th Congress of pediatric and Adolescent Gynecology. Helsinki, 1998; M5.34.
40. De Filippo RE, Yoo JJ, Atala A. Engineering of Vaginal Tissue in Vivo. Tissue Engeneering 2003; 9 (2): 1–6.
41. Raya-Rivera AM, Esquiliano D, Fierro-Pastrana R et al. Tissue-engineered autologous vaginal organs in patients: a pilot cohort study. Lancet 2014.
42. House M, Sanchez CC, Rice WL et al. Cervical Tissue Engineering Using Silk Scaffolds and Human Cervical Cells. Tissue Engeneering Part A 2010; 16 (6): 1–12.
43. Mawajdeh SM, Al-Qutob RJ, Farag AM. Prevalence and risk factors of genital prolapse. A multicenter study. Saudi Med J 2003; 24 (2): 161–5.
44. Kulakov V.I., Adamian L.V., Mynbaev O.A. Khirurgicheskoe lechenie opushcheniia i vypadeniia vlagalishcha i matki. Operativnaia Ginekologiia – khirurgiia. M.: Meditsina, 2000; s. 741–60. [in Russian]
45. Popov A.A. Khirurgicheskoe lechenie oslozhnennykh i neoslozhnennykh form prolapsa genitalii. Materialy II Rossiiskogo Foruma «Mat' i ditia». M., 2000; 271. [in Russian]
46. Manukhin I.B., Daianov F.V., Kolesov A.A. i dr. Otdel'nye rezul'taty endoskopicheskikh operatsii pri prolapse genitalii. Endoskopiia v ginekologii. M.: 2000; s. 508–9. [in Russian]
47. Meditsinskie materialy i implantaty s pamiat'iu formy. Pod red. V.E.Giuntera. Tomsk: MITs, 2010; s. 6–220. [in Russian]
48. Volova T.G., Shishatskaia E.I., Mironov P.V. Materialy dlia meditsiny, kletochnoi i tkanevoi inzhenerii. Elektronnoe uchebnoe posobie. Krasnoiarsk: IPK SFU, 2009. [in Russian]
49. Bogdan V.G., Krivorot S.G., Vladimirskaia T.E. i dr. Vliianie mezenkhimal'nykh stvolovykh kletok iz zhirovoi tkani na sintez kollagena pri razlichnykh sposobakh plastiki modelirovannoi posleoperatsionnoi gryzhi. Minsk: Eksperimental'naia khirurgiia, 2012; s. 21–8. [in Russian]
50. Ho MH, Heydarkhan S, Vernet D et al. Stimulating vaginal repair in rats through skeletal muscle-derived stem cells seeded on small intestinal submucosal scaffolds. Obstet Gynecol 2009; 114: 300–9.
51. Boennelycke M, Gras S, Lose G. Tissue engineering as a potential alternative or adjunct to surgical reconstruction in treating pelvic organ prolapsed. Int Urogynecol J Includ Pelvic Floor Dysfunct 2012; 23 (8): 1–7.
52. Boennelycke M, Christensen L, Nielsen LF et al. Fresh muscle fiber fragments on a scaffold in rats-a new concept in urogynecology? Am J Obstet Gynecol 2011; 205 (235): 10–4.
53. Repin V.S., Rzhaninova A.A., Shamenkov D.A. Embrional'nye stvolovye kletki: fundamental'naia biologiia i meditsina. M.: Remeteks, 2002; s. 184. [in Russian]
54. Hung MJ, Wen MC, Hung CN et al. Tissue-engineered fascia from vaginal fibroblasts for patients needing reconstructive pelvic surgery. Int Urogynecol J Pelvic Floor Dysfunct 2010; 21: 1085–93.
55. Kapischke M, Prinz K, Tepel J et al. Precoating of alloplastic materials with living human fibroblasts – a feasibility study. Surg Endosc 2005; 19: 791–7.
56. Mangera A, Bullock AJ, Macneil S, Chapple C. Developing an autologous tissue engineered prosthesis for use in stress urinary incontinence and pelvic organ prolapse (ICS-IUGA 2010 Abstracts). Int Urogynecol J Pelvic Floor Dysfunct 2010; 21: S325–S326.
57. Drewa T, Galazka P, Prokurat A et al. Abdominal wall repair using a biodegradable scaffold seeded with cells. J Pediatr Surg 2005; 40: 317–21.
58. Ishchenko A.I., Liundup A.V., Aleksandrov L.S., Sulina Ia.Iu. Opyt sozdaniia kletochno-inzhenernoi konstruktsii dlia khirurgicheskogo lecheniia tazovogo prolapsa (predvaritel'noe soobshchenie). Vestn. ros. assotsiatsii akusherov-ginekologov. 2015; 3 (15): 52–5. [in Russian]
59. Li H, Fu X. Mechanisms of action of mesenchymal stem cells in cutaneous wound repair and regeneration. Cell Tissue Res 2012; 348: 371.
60. Shi LB, Cai HX, Chen LK et al. Tissue engineered bulking agent with adipose-derived stem cells and silk fibroin microspheres for the treatment of intrinsic urethral sphincter deficiency. Biomaterials 2014; 35: 1519–30.
61. Kleinert S, Horton R. Retraction – Autologous myoblasts and fibroblasts versus collagen [corrected] for treatment of stress urinary incontinence in women: A [corrected] randomised controlled trial. Lancet 2008; 372: 789–90.
62. Mathias T, Souzan S, Gobet R et al. Adipose-Derived Stem Cells (ASCs) for Tissue Engineering 2011; 1–9.
63. Altman GH, Diaz F, Jakuba C et al. Biomaterials 2003; 24: 401–16.
64. Wiesmann HP, Meyer U. Biomaterials. In: U.Meyer, T.Meyer, J.Handschel, H.Wiesmann, editors. Fundamentals of tissue engineering and regenerative medicine. Berlin Heidelberg: Springer-Verlag, 2009; p. 457–68.
65. Demirbag B, Huri PY, Kose GT et al. Advanced cell therapies with and without scaffolds. Biotechnol J 2011; 6: 1437–53.
66. Olson JL, Atala A, Yoo JJ. Tissue engineering: current strategies and future directions. Chonnam Med J 2011; 47: 1–13.
67. Gras S, Lose G. The clinical relevance of cell-based therapy for the treatment of stress urinary incontinence. Acta Obstet Gynecol Scand 2011; 90: 815–24.
68. Zhao W, Zhang C, Jin C et al. Periurethral injection of autologous adipose-derived stem cells with controlled-release nerve growth factor for the treatment of stress urinary incontinence in a rat model. Eur Urol 2011; 59: 155–63.
69. Zou XH, Zhi YL, Chen X et al. Mesenchymal stem cell seeded knitted silk sling for the treatment of stress urinary incontinence. Biomaterials 2010; 31: 4872–9.
70. Dolce C, Stefanidis D, Keller J et al. Pushing the envelope in biomaterial research: initial results of prosthetic coating with stem cells in a rat model. Surg Endosc 2010; 24: 2687–93.
71. Kunisaki SM, Fuchs JR, Kaviani A et al. Diaphragmatic repair through fetal tissue engineering: a comparison between mesenchymal amniocyte – and myoblast-based constructs. J Pediatr Surg 2006; 41: 34–9.
72. Ulrich D, Edwards SL, Su K et al. Human endometrial mesenchymal stem cells modulate the tissue response and mechanical behavior of polyamide mesh implants for pelvic organ prolapse repair. Tissue Eng Part A 2014; 20 (3–4): 785–98. Doi: 10.1089/ten.TEA.2013.0170.
73. Hung MJ, Wen MC, Hung CN et al. Tissue-engineered fascia from vaginal fibroblasts for patients need- ing reconstructive pelvic surgery. Int Urogynecol J Pelvic Floor Dysfunct 2010; 21: 1085–93.
74. Shi LB, Cai HX, Chen LK et al. Tissue engineered bulking agent with adipose-derived stem cells and silk fibroin microspheres for the treatment of intrinsic urethral sphincter deficiency. Biomaterials 2014; 35: 1519–30.
75. Ulrich D, Edwards SL, Su K et al. Human Endometrial Mesenchymal Stem Cells Modulate the Tissue Response and Mechanical Behaviour of Polyamide Mesh Implants for Pelvic Organ Prolapse Repair Tissue Engineering Part A Manuscript TEA 2013. 0170 R1 1–50.
76. Pustovalova O.L., Agapov I.I., Moisenovich M.M. i dr. Ispol'zovanie metoda konfokal'noi mikroskopii dlia izucheniia biologicheskikh svoistv matriksa iz rekombinantnoi pautiny. M.: Vestnik transplantоlogii i iskusstvennykh organov, 2009; 11 (2): 54–9. [in Russian]
77. Li Q, Wang J, Liu H et al. Tissue-engineered mesh for pelvic floor reconstruction fabricated from silk fibroin scaffold with adipose-derived mesenchymal stem cells. Cell Tissue Res 2013; 354 (2): 471–80.
78. Agapov I.I., Moisenovich M.M., Vasil'eva T.V. i dr. Biodegradiruemye matriksy iz regenerirovannogo shelka BOMBIX MORI. M.: Biokhimiia, biofizika, molekuliarnaia biologiia doklady Akademii nauk, 2010; 433 (5): 699–702. [in Russian]
79. Kim HJ, Kim UJ, Leisk GG et al. Bone regeneration on macroporous aqueous-derived silk 3-D scaffolds. Macromol Biosci 2007 10; 7 (5): 643–55.
80. Park JS, Chu JS, Cheng C et al. Differential effects of equiaxial and uniaxial strain on mesenchymal stem cells. Biotechnol Bioeng 2004; 88: 359.
1. ГБОУ ВПО Первый Московский государственный медицинский университет им. И.М.Сеченова Минздрава России. 119991, Россия, Москва, ул. Трубецкая, д. 8, стр. 2;
2. ЦКП Регенеративная медицина. 119991, Россия, Москва, ул. Трубецкая, д. 8, стр. 2
*ya.suli.na@gmail.com
________________________________________________
Y.Y.Sulina*1, A.I.Ishchenko1, A.V.Lyundup2, L.S.Alexandrov1, A.A.Ischenko1
1. I.M.Sechenov First Moscow State Medical University of the Ministry of Health of the Russian Federation. 119991, Russian Federation, Moscow, ul. Trubetskaia, d. 8, str. 2;
2. Regenerative Medicine. 119991, Russian Federation, Moscow, ul. Trubetskaia, d. 8, str. 2
*ya.suli.na@gmail.com