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Медицинская литература. Новинки


 

 

 

 

 

 
вce журналы << Анналы хирургической гепатологии << 2012 год << №1 <<
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Биодеградируемые материалы и методы тканевой инженерии в хирургии желчных протоков

Т.Г. Дюжева, Е.Е. Савицкая, А.Е. Котовский, М.А. Батин
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Т.Г. Дюжева –доктор мед. наук, проф., зав. отделом хирургии печени Первого МГМУ им. И.М. Сеченова. Е.Е. Савицкая – канд. биол. наук, cт. научный сотрудник лаборатории регенеративной медицины Московского физикотехнического института
Адрес для корреспонденции: Дюжева Татьяна Геннадьевна – Тел. (8 499) 782-30-83. E-mail: dlsurgery@mtu-net.ru

Ключевые слова:

Литература:
1. Mozer M.A., Wall W.J. Management of biliary problems after
liver transplantation // Liver Transpl. 2001. V. 7 (11, Suppl. 1).
P. 46–52.
2. Yazumi S., Chiba T. Biliary complications after a right-lobe living donor liver transplantation // J. Gastroenterol. 2005. V. 40.
P. 861–865.
3. Alazmi W.M., Fogel E.L., Watkins J.L. et al. Recurrence rate of
anastomotic biliary strictures in patients who have had previous
successful endoscopic therapy for anastomotic narrowing after
orthotopic liver transplantation // Endosc. 2006. V. 38. N 6.
P. 571–574.
4. Lillemoe K.D., Melton G.B. Cameron J.L. et al. Postoperative bile
duct strictures: management and outcome in the 1990s // Ann.
Surg. 2000.V. 232. N 3. P. 430–441.
5. Weber A., Feussner H., Winkelmann F. et al. Long-term
Outcome of Endoscopic Therapy in Patients with Bile Duct
Injury after Colecystectomy // J. Gastronterol. Hepatol. 2009.
V. 24. N 5. P. 762–769.
6. Kaffes A.J., Hourigan L., De Luca N. et al. Impact of endoscopic
intervention in 100 patients with suspected postcholecystectomy
bile leak // Gastrointest. Endosc. 2005. V. 61. N 2. P. 269–275.
7. Jaeques J.G., Bergman H.M., Burgemeister L. et al. Long-term
followup after biliary stent placement for postoperative bile
duct stenosis // Gastointestinal. Endosc. 2001. V. 54. N 2.
P. 154–161.
8. Coelho3Pradhu N., Baron T.H. Assesment of Need for Repeat
EPCP During Biliary Stent Removal After Clinical Resolution
of Postcholecystectomy Bile Leak // Am. J. Gastroenterol. 2010,
V. 105. P. 100–105.
9. Geenen D.J., Genen J.E., Hogan W.J. Endoscopic therapy for
benign bile duct strictures // Gastrointestinal. Endosc. 1989.
V. 35. P. 367–371.
10. Zoepf T., Maldonado3Lopez E.J., Hilgard P. et al. Balloon
Dilatation vs Balloone Dilatation Plus Bile Duct Endoprostheses
for Treatment of Anastomotic Biliary Strictures After Liver
Transplantation // Liver Transplantat. 2006. V.12. P. 89–94.
11. Suman L., Civelli E.M., Cozzi M. et al. Longterm results of balloon dilatation of benign bile duct strictures // Acta Radiol. 2003.
V. 44. N 2. P. 147–150.
12. Kuroda Y., Tsuynguchi T., Sakai Y. et al. Longterm follow-up
evaluation for more than 10 years after endoscopic treatment for
postoperative bile duct strictures // Surg. Endosc. 2010. V. 24.
N 4. P. 834–840.
13. Jepeda3Gomez S., Todd H. Baron. Benign biliary strictures: current endoscopic management // Nat. Rev. Gastroenterol.
Hepatol. 2011. V. 8. P. 573–581.
14. Lorenz J.M., Denison G., Funaki B. et al. Balloon Dilatation of
Biliary–Enteric Strictures in Children // Am. J. Roentgenol.
2005. V. 184. P. 151–155
15. Котовский А.Е., Глебов К.Г., Петрова Н.Ю. Эндоскопическое протезирование желчных протоков нитиноловым самораскрывающимся стентом: Пособие для врачей. М., 2011.
16. Ginsberg G., Cope C., Shah J. et al. In vivo evaluation of a new
bioabsorbable selfexpaning biliary stent // Gastrointest.
Endosc. 2003. V. 58. N 5. P. 777–784.
17. Meng B., Wang J., Shu N et al. Study of biodegradable and selfexpandable PLLA helical biliaru stent in vivo and in vitro //
J. Mater. Sci. Med. 2006. V. 17. P. 611–617.
18. Judah J.R., Draganov P.V. Endoscopic Therapy of benign biliary strictures // Wld J. Gastroenterol. 2007. V. 13. N 26.
P. 3531–3539.
19. Tashiro H., Ogawa T., Itamoto T. et al. Synthetic bioabsorbable
stent material for ducttoduct biliary reconstruction // J. Surg.
Res. 2009. V. 151. P. 85–88.
20. Зейналов Р.В., Асадав Д.А., Матини М.Б. и др. Результаты
стентирования коронарных артерии стентами с биодеградирующим полимерным и антипролиферативным (биолимус А9) покрытием // Междунар. журн. интервенц. кардиол. 2011. Т. 26. С. 17–24.
21. Capodanno D., Dipasqua F., Tauburino C. Novel drug-eluting
stents in the treatment of de novo coronary lesions// Vasc.
Health Risk Manag. 2011. V. 7. P. 103–118.
22. Serruys P.W., Ormiston J.A., Onuma Y. et al. A biabsorbable
everolimuseluting coronary stent system: 2year outcomes and
results from multiple imaging methods // Lancet. 2009. V. 373.
P. 897–910.
23. Saito Y., Tanaka T., Andoh A. et al. Novel biabsorbable stents for
benign esophageal strictures following endoscopic submucosal
dissection // Dig. Dis. Sci. 2008. V. 53. P. 330–333.
24. Kim B.S., Mooney D.J. Development of biocompatible synthetic
extracellular matrices for tissue engineering // Trends Biotechnol. 1998. V. 16. P. 224–230.
25. Shishatskaya Ye.I., Volova T.G., Markelova N.M. et al. Experimental validation of Polyhydroxyalkanoates based biodegradable
suture material use // European Journal of natural history. 2008.
N 6. P. 59–62.
26. Miyazawa M., Torii T., Toshimitsu Y. et al. A tissueengineered
artificial bile duct grown to resemble the native bile duct // Am.
J. Transplant. 2005. V. 5. P. 1541–1547.
27. Aikawa M., Miyazawa M., Okada K. et al. Regeneration of extrahepatic bile duct–possibility to clinical application by recognition of the regenerative process // J. Smooth Muscle Res. 2007.
V. 43. P. 211–218.
28. Miyazawa M., Aikawa M., Okada, K. et al. Development of
bioabsorbable biliary tract stents for treatment of benign biliary
stenosis// Jpn. J. Gastroenterol. Surg. 2007. V. 40. P. 1548.
29. Aikawa M., Miyazawa M., Okada K. et al. Development of a
novel refluxfree bilionteric anastomosis procedure by using a
bioabsorbable polymer tube // J. Hepatobilю Pancreat. Sci.
2010. V. 17. P. 284–290.
30. Miyazawa M., Aikawa M., Okada K. et al. Regeneration of extrahepatic bile ducts by tissue engineering with a bioabsorbable
polymer // J. Artif. Organs. 2011. Publ. online 23 July
31. Laukkarinen J.M., Sand J.A., Chow P. et al. A novel biodegradable biliary stent in the normal duct hepaticojejunal anastomosis:
an 18month followup in a large animal model // J. Gastroentest. Surg. 2007. V. 11. P. 750–757.
32. Laukkarinen J., Nordback I., Mikkonen J. et al. A novel biodegradable biliary stent in the endoscopic treatment of cystic-duct
leakage after cholecystectomy // Gastrointest. Endosc. 2007.
V. 65. P. 1063–1068.
33. Laukkarinen J., Sand J., Leppiniemi J. et al. A novel technique
for hepaticojejunostomy for nondilated bile ducts: a purse-string
anastomosis with an intraanastomotic biodegradable biliary
stent // Am. J. Surg. 2010. V. 200. P. 124–130.
34. Xu X., Liu T., Liu S. et al. Feasibility of biodegradable PLGA
common bile duct stents:an in vitro and in vivo study // J. Mater.
Sci. Mater. Med. 2009. V. 20. P. 1167–1173.
35. Aikawa M., Miyazawa M., Okamoto K. et al. An extrahepatic bile
duct grafting using a bioabsorbable polymer tube // J.
Gastrointest. Surg. 2012. V. 16. P. 529–534.
36. Aikawa M., Miyazawa M., Okamoto K et al. A novel treatment for
bile duct injury with a tissueengineered bioabsorbable polymer
patch // Surg. 2010. V. 147. P. 575–580.
37. Petril J., Bruna R., Horak L. et al. Management of benign intrahepatic bile duct strictures: initial experience with polydioxanone biodegradable stents // Endosc. 2010. V. 42. E89–E90.
38. Jang Y., Collector M., Baylin S. et al. Hematopoietic stem cells
convert into liver cells within days without fusion// Nat. Cell.
Biol. 2004. V. 6. P. 532–539.
39. Kollet O., Shivtiel S., ChenY. et al. HGF, SDF1, and MMP-9
are involved in stressinduced human CD34+ stem cell recruitment to the liver // J. Clin. Invest. 2003. V. 112. P. 160–169.
40. Bezerra J. Potential etiologies of biliary atresia // Pediatr.
Transplant. 2005. V. 9. P. 646–651.
41. Mack C., Sokol R. Unreveling the pathogenesis and etiology of
biliary atresia // Pediatr. Res. 2005. V. 57. P. 87R–94R.
42. Kohsaka T., Yuan Z., Tagawa M. et al. The significance of human
jagged 1 mutations detected in severe cases of extrahepatic biliary
atresia // Hepatol. 2002. V. 36. P. 904–912.
43. Mazziotti M., Willis L., Heuckeroth R. et al. Anomalous development of the hepatobiliary system in the Inv mouse // Hepatol.
1999. V. 30. P. 373–378.
44. Bamford R., Roessler E., Burdine R. et al. Loss-of-function mutations in the EGFCFC gene CFC1 are associated with human
leftright laterality defects // Nat. Genet. 2000. V. 26.
P. 365–369.
45. Ware S., Peng J., Zhu L. et al. Identification and functional
analysis of ZIC3 mutations in heterotaxy and related congenital
heart defects // Am. J. Hum. Genet. 2004. V. 74. P. 93–105.

Biodegradable Materials and Tissue Engineering Technologies in the Biliary Surgery

T.G. Dyuzheva, E.E.Savitskaya, A.E. Kotovsky, M.A. Batin

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