IDENTIFICATION AND LOCALIZATION OF STEM CELLS IN THE RESPIRATORY SYSTEM (REVIEW)
Abstract
About the Authors
Sergey S. TseluykoRussian Federation
Victoria S. Namakonova
Russian Federation
Nadezhda P. Krasavina
Russian Federation
Xiangdong Zhou
Russian Federation
Qi Li
Russian Federation
References
1. Боркина А.Н. Роль клеток Клара в гистофизиологии бронхиолярного эпителия и их значение в развитии легочной патологии // Пульмонология. 2007. №5. С.94-99
2. Красавина Н.П., Целуйко С.С., Доровских В.А. Тучные клетки органов дыхания и перспективы их изучения (обзор литературы) // Бюл. физиол. и патол. дыхания. 2004. Вып.19. С.74-79.
3. Корочкин Л.И. Стволовые клетки // Онтогенез. 2003. Т.34, №3. С.164-166.
4. Малайцев В.В., Богданова И.М., Сухих Г.Т. Современные представления о биологии стволовой клетки // Арх. патол. 2002. Т.64, №4. С.7-11.
5. Полякова B.C., Завалеева С.М., Стадников А.А. Структурная реорганизация воздухоносных и респираторных отделов легких при воздействии неблагоприятных факторов воздушной среды // Вестник ОГУ. 2003. №1. С.66-69.
6. Репин B.C., Ржанинова А.А., Шаменков Д.А. Эмбриональные стволовые клетки: фундаментальная биология и медицина. М.: Реметэкс, 2002. 165 с.
7. Стадников А.А., Шевлюк А.Н. Стволовые клетки и репаративная регенерация в постнатальном онтогенезе млекопитающих // Морфология. 2006. №6. С.84-88.
8. Целуйко С.С., Красавина Н.П., Горбунов М.М. Стволовые клетки в тканях органов дыхания при холодовых воздействиях // Вопросы морфологии XXI века: сб. науч. трудов. СПб, 2010. Вып.2. С.180-181.
9. Современные взгляды на вопросы пролиферации и дифференцировки стволовых клеток органов дыхания в норме и при холодовых воздействиях / С.С.Целуйко [и др.] // Бюл. физиол. и патол. дыхания. 2012. Вып.45. С.98-103.
10. Bertoncello I., McQualter J.L. Endogenous lung stem cells: what is their potential for use in regenerative medicine? // Expert. Rev. Respir. Med. 2010. Vol.4, №3. Р.349-362.
11. Bischoff S.C. Quercetin: potentials in the prevention and therapy of disease // Curr. Opin. Clin. Nutr. Metab. Care. 2008. Vol.11, №6. P.733-740.
12. Boers J.E., Ambergen A.W., Thunnissen F.B. Number and proliferation of basal and parabasal cells in normal human airway epithelium // Am. J. Respir. Crit. Care Med. 1998. Vol.157. №6 (Pt.1). P.2000-2006.
13. Evidence for stem-cell niches in the tracheal epithelium / D.W.Borthwick [et al.] // Am. J. Respir. Cell Mol. Biol. 2001. Vol.24, №6. Р.662-670.
14. Cell kinetics of normal adult hamster bronchial epithelium in the steady state / R.Breuer [et al.] // Am. J. Respir. Cell Mol. Biol. 1990. Vol.2, №1. Р.51-58.
15. Embryonic stem cells generate airway epithelial tissue / C.Coraux [et al.] // Am. J. Respir. Cell Mol. Biol. 2005. Vol.32, №2. Р.87-92.
16. Crystal R.G. Airway epithelial cells: current concepts and challenges / R.G.Crystal [et al.] // Proc. Am. Thorac. Soc. 2008. Vol.5, №7. Р.772-777.
17. Minimal criteria for defining multipotent mesenchymal stromal cells. The International Society for Cellular Therapy position statement / M.Dominici [et al.] // Cytotherapy. 2006. Vol.8, №4. P.315-317.
18. Donnely G.M., Haack D.G., Heird C.S. Tracheal epithelium: cell kinetics and differentiation in normal rat tissue // Cell Tissue kinet. 1982. Vol.15, №2. Р.119-130.
19. Endogenous distal airway progenitor cells, lung mechanics, and disproportionate lobar growth following long-term postpneumonectomy in mice / P.Eisenhauer [et al.] // Stem Cells. 2013. Vol.31, №7. Р.1330-1339.
20. Cellular and molecular characteristics of basal cells in airway epithelium / M.J.Evans [et al.] // Exp. Lung Res. 2001. Vol.27, №5. Р.401-415.
21. Effect of mesenchymal stem cells on inhibiting airway remodeling and airway inflammation in chronic asthma / X.Ge [et al.] // J. Cell. Biochem. 2013. Vol.114, №7. Р.1595-1605
22. Giangreco A., Reynolds S.D., Stripp B.R. Terminal bronchioles harbor a unique airway stem cell population that localizes to the bronchoalveolar duct junction // Am. J. Pathol. 2002. Vol.161, №1. Р.173-182.
23. Novel stem/progenitor cell population from murine tracheal submucosal gland ducts with multipotent regenerative potential / A.E.Hegab [et al.] // Stem Cells. 2011. Vol.29, №8. Р.1283-1293.
24. Isolation and characterization of murine multipotent lung stem cells / A.E.Hegab [et al.] // Stem Cells Dev. 2010. Vol.19, №4. Р.523-536.
25. Isolation and characterization of basal cells from human upper respiratory epithelium / W.Hicks Jr [et al.] // Exp. Cell Res. 1997. Vol.237, №2. Р.357-363.
26. Basal cells are a multipotent progenitor capable of renewing the bronchial epithelium / K.U.Hong [et al.] // Am. J. Pathol. 2004. Vol.164, №2. Р.577-588.
27. In vivo differentiation potential of tracheal basal cells: evidence for multipotent and unipotent subpopulations / K.U.Hong [et al.] // Am. J. Physiol. Lung Cell. Mol. Physiol. 2004. Vol.286, №4. Р.L643-L649.
28. Clara cell secretory protein-expressing cells of the airway neuroepithelial body microenvironment include a label-retaining subset and are critical for epithelial renewal after progenitor cell depletion / K.U.Hong [et al.] // Am. J. Respir. Cell Mol. Biol. 2001. Vol.24, №6. Р.671-681.
29. Separation and characterization of basal and secretory cells from the rat trachea by flow cytometry / N.F.Johnson [et al.] // Cytometry. 1990. Vol.11, №3. Р.395-405.
30. Johnson N.F., Hubbs A.F. Epithelial progenitor cells in the rat trachea // Am. J. Respir. Cell Mol. Biol. 1990. Vol.3, №6. Р.579-585.
31. Identification of bronchioalveolar stem cells in normal lung and lung cancer / C.F.Kim [et al.] // Cell. 2005. Vol.121, №6. Р.823-835.
32. Differentiation of porcine mesenchymal stem cells into epithelial cells as a potential therapeutic application to facilitate epithelial regeneration / K.Kokubun [et al.] // J. Tissue Eng. Regen. Med. 2013. doi: 10.1002/term.1758.
33. Bone marrow-derived cells as progenitors of lung alveolar epithelium / D.N.Kotton [et al.] // Development. 2001. Vol.128, №24. P.5181-5188.
34. Kotton D.N., Fine A. Lung stem cells // Cell Tissue Res. 2008. Vol.331, №1. Р.145-156.
35. Stem cells and regenerative medicine in lung biology and diseases / A.N.Lau [et al.] // Mol. Ther. 2012. Vol.20, №6. Р.1116-1130.
36. Martin U. Methods for studying stem cells: adult stem cells for lung repair // Methods. 2008. Vol.45, №2. Р.121-132.
37. Mauricio R. Stem Cells in the Respiratory System. Totowa, N.J.: Humana Press; London: Springer, 2010. 168 р.
38. McQualter J.L., Bertoncello I. Concise review: Deconstructing the lung to reveal its regenerative potential // Stem Cells. 2012. Vol.30, №5. Р.811-816.
39. Evidence of an epithelial stem/progenitor cell hierarchy in the adult mouse lung / J.L.McQualter [et al.] // Proc. Natl Acad. Sci. USA. 2010. Vol.107, №4. Р.1414-1419.
40. Immunohistochemical and ultrastructural studies of basal cells, Clara cells and bronchiolar cuboidal cells in normal human airways / M.Nakajima [et al.] // Pathol. Int. 1998. Vol.48, №12. Р.944-953.
41. Airway epithelial repair, regeneration, and remodeling after injury in chronic obstructive pulmonary disease / E.Puchelle [et al.] // Proc. Am. Thorac. Soc. 2006. Vol.3, №8. Р.726-733.
42. Immortalization of human bronchial epithelial cells in the absence of viral oncoproteins / R.D.Ramirez [et al.] // Cancer Res. 2004. Vol.64, №24. Р.9027-9034.
43. Rawlins E.L., Hogan B.L.M. Epithelial stem cells of the lung: privileged few or opportunities for many? // Development. 2006. Vol.133, №13. Р.2455-2465.
44. Derivation of distal lung epithelial progenitors from murine embryonic stem cells using a novel three-step differentiation protocol / H.J.Rippon [et al.] // Stem Cells. 2006. Vol.24, №5. Р.1389-1398.
45. Basal cells as stem cells of the mouse trachea and human airway epithelium / J.R.Rock [et al.] // Proc. Natl Acad. Sci USA. 2009. Vol.106, №31. Р.12771-12775.
46. A subset of mouse tracheal epithelial basal cells generates large colonies in vitro / K.G.Schoch [et al.] // Am. J. Physiol. Lung Cell. Mol. Physiol. 2004. Vol.286, №4. Р.L631-L642.
47. Sen N., Weprin S., Peter Y. Discrimination between lung homeostatic and injury-induced epithelial progenitor subsets by cell-density properties // Stem Cells Dev. 2013. Vol.22, №14. Р.2036-2046.
48. Sueblinvong V., Weiss D.J. Stem cells and cell therapy approaches in lung biology and diseases // Transl. Res. 2010. Vol.156, №3. Р.188-205.
49. The airway epithelium: more than just a structural barrier / A.Tam [et al.] // Ther. Adv. Respir. Dis. 2011. Vol.5, №4. Р.255-273.
50. Mesenchymal stem cells and idiopathic pulmonary fibrosis. Potential for clinical testing / R.L.Toonkel [et al.] // Ame. J. Respir. Crit. Care Med. 2013 Vol.188, №2. Р.133-140.
51. Vaughan A.E., Chapman H.A. Regenerative activity of the lung after epithelial injury // Biochim. Biophys. Acta. 2013. Vol.1832, №7. Р.922-930.
52. Stem cells and cell therapies in lung biology and lung diseases / D.J.Weiss [et al.] // Proc. Am. Thorac. Soc. 2011. Vol.8, №3. Р.223-272.
53. Morphological analysis of the lung of neonatal yak / B.Yang [et al.] // Anat. Histol. Embryol. 2010. Vol.39, №2. Р.138-151.
54. You, Y., Growth and differentiation of mouse tracheal epithelial cells: selection of a proliferative population / Y.You [et al.] // Am. J. Physiol. Lung Cell. Mol. Physiol. 2002. Vol.283, №6. Р.L1315-L1321.
Review
For citations:
Tseluyko S.S., Namakonova V.S., Krasavina N.P., Zhou X., Li Q. IDENTIFICATION AND LOCALIZATION OF STEM CELLS IN THE RESPIRATORY SYSTEM (REVIEW). Bulletin Physiology and Pathology of Respiration. 2014;(52):121-128. (In Russ.)