Vol. 19 No. 4-2 (2015): Cell Technologies in Cardiology (Special Issue)
EXPERIMENTAL STUDIES

Comparative analysis of bone marrow derived mesenchymal stromal cells, cardiac regional stem cells and human skin fibroblasts

S. Pavlova
Academician Ye. Meshalkin Novosibirsk Research Institute of Circulation Pathology, Ministry of Health Care of Russian Federation, 15 Rechkunovskaya St., 630055 Novosibirsk, Russian Federation; The Federal Research Center Institute of Cytology and Genetics, The Siberian Branch of the Russian Federation Academy of Sciences, 10 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation; Institute of Chemical Biology and Fundamental Medicine, The Siberian Branch of the Russian Federation Academy of Sciences, 8 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation
D. Sergeevichev
Academician Ye. Meshalkin Novosibirsk Research Institute of Circulation Pathology, Ministry of Health Care of Russian Federation, 15 Rechkunovskaya St., 630055 Novosibirsk, Russian Federation
E. Chepeleva
Academician Ye. Meshalkin Novosibirsk Research Institute of Circulation Pathology, Ministry of Health Care of Russian Federation, 15 Rechkunovskaya St., 630055 Novosibirsk, Russian Federation; Institute of Chemical Biology and Fundamental Medicine, The Siberian Branch of the Russian Federation Academy of Sciences, 8 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation
V. Kozyreva
Academician Ye. Meshalkin Novosibirsk Research Institute of Circulation Pathology, Ministry of Health Care of Russian Federation, 15 Rechkunovskaya St., 630055 Novosibirsk, Russian Federation
A. Malakhova
Academician Ye. Meshalkin Novosibirsk Research Institute of Circulation Pathology, Ministry of Health Care of Russian Federation, 15 Rechkunovskaya St., 630055 Novosibirsk, Russian Federation; The Federal Research Center Institute of Cytology and Genetics, The Siberian Branch of the Russian Federation Academy of Sciences, 10 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation; Institute of Chemical Biology and Fundamental Medicine, The Siberian Branch of the Russian Federation Academy of Sciences, 8 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation
I. Zakharova
Academician Ye. Meshalkin Novosibirsk Research Institute of Circulation Pathology, Ministry of Health Care of Russian Federation, 15 Rechkunovskaya St., 630055 Novosibirsk, Russian Federation; The Federal Research Center Institute of Cytology and Genetics, The Siberian Branch of the Russian Federation Academy of Sciences, 10 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation; Institute of Chemical Biology and Fundamental Medicine, The Siberian Branch of the Russian Federation Academy of Sciences, 8 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation
E. Grigor'eva
Academician Ye. Meshalkin Novosibirsk Research Institute of Circulation Pathology, Ministry of Health Care of Russian Federation, 15 Rechkunovskaya St., 630055 Novosibirsk, Russian Federation; The Federal Research Center Institute of Cytology and Genetics, The Siberian Branch of the Russian Federation Academy of Sciences, 10 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation; Institute of Chemical Biology and Fundamental Medicine, The Siberian Branch of the Russian Federation Academy of Sciences, 8 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation
E. Pokushalov
Academician Ye. Meshalkin Novosibirsk Research Institute of Circulation Pathology, Ministry of Health Care of Russian Federation, 15 Rechkunovskaya St., 630055 Novosibirsk, Russian Federation
S. Zakiyan
Academician Ye. Meshalkin Novosibirsk Research Institute of Circulation Pathology, Ministry of Health Care of Russian Federation, 15 Rechkunovskaya St., 630055 Novosibirsk, Russian Federation; The Federal Research Center Institute of Cytology and Genetics, The Siberian Branch of the Russian Federation Academy of Sciences, 10 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation; Institute of Chemical Biology and Fundamental Medicine, The Siberian Branch of the Russian Federation Academy of Sciences, 8 Lavrentieva Avenue, 630090 Novosibirsk, Russian Federation; Novosibirsk National Research State University, 2 Pirogova St., 630090 Novosibirsk, Russian Federation

Published 2016-01-14

Keywords

  • cardiac stem cells,
  • mesenchymal stem cells,
  • myocardium regeneration

How to Cite

Pavlova, S., Sergeevichev, D., Chepeleva, E., Kozyreva, V., Malakhova, A., Zakharova, I., Grigor’eva, E., Pokushalov, E., & Zakiyan, S. (2016). Comparative analysis of bone marrow derived mesenchymal stromal cells, cardiac regional stem cells and human skin fibroblasts. Patologiya Krovoobrashcheniya I Kardiokhirurgiya, 19(4-2), 12–19. https://doi.org/10.21688/1681-3472-2015-4-2-12-19

Abstract

A characteristic marker of cardiac stem cells (CSC) is a tyrosine kinase receptor c-kit. The cells with the c-kit+ phenotype can be easily isolated and cultivated in vitro. However, only CSC of postnatal animal hearts have the true cardiomyogenic potential. Currently it is being proposed that there are two lineages of c-kit+ cell population in heart. C-kit+ cells capable to differentiate into cardiomyocytes derive from the primary heart field and disappear soon after birth, and иc-kit+ cells of proepicardial origin expressing mesenchymal markers are capable to differentiate into endothelial, mural and fibroblast direction. We have previously described c-kit+ cells isolated from fragments of right atrial appendage, and investigated their angiogenic potential in vitro. In this study, we compared the surface markers of MSCs-BM, CSC and human dermal fibroblasts by flow cytometry and RT-PCR analysis.

References

  1. Beltrami A.P., Barlucchi L., Torella D., Baker M., Limana F., Chimenti S., Kasahara H., Rota M., Musso E., Urbanek K., Leri A., Kajstura J., Nadal-Ginard B., Anversa P. Adult cardiac stem cells are multipotent and support myocardial regeneration // Cell. 2003. Vol. 114. № 6. P. 763–76.
  2. Bolli R., Chugh A.R., D'Amario D., Loughran J.H., Stoddard M.F., Ikram S., Beache G.M., Wagner S.G., Leri A., Hosoda T., Sanada F., Elmore J.B., Goichberg P., Cappetta D., Solankhi N.K., Fahsah I., Rokosh D.G., Slaughter M.S., Kajstura J., Anversa P. Cardiac stem cells in patients with ischaemic cardiomyopathy (SCIPIO): initial results of a randomised phase 1 trial // Lancet. 2011. Vol. 378. № 9806. P. 1847–57.
  3. Keith M.C., Bolli R. "String theory" of c-kit(pos) cardiac cells: a new paradigm regarding the nature of these cells that may reconcile apparently discrepant results // Circ. Res. 2015. Vol. 116. № 7. P. 1216–30.
  4. Павлова С.В., Перовский П.П., Чепелева Е.В., Малахова А.А., Дементьева Е.В., Покушалов Е.А., Сухих Г.Т., Закиян С.М. Характеристика кардиальных культур клеток, полученных из экспланта сердечной мышцы человека // Клеточные технологии в биологии и медицине. 2013. № 3. С. 132–141.
  5. Сергеевичев Д.С., Сергеевичева В.В., Субботовская А.И., Подхватилина Н.А., Васильев В.Ю., Русакова Я.Л. Токсическое влияние детергентов на мезенхимальные стромальные клетки человека при заселении графтов // Патология кровообращения и кардиохирургия. 2013. № 2. С. 67–73.
  6. Ferreira-Martins J., Ogorek B., Cappetta D., Matsuda A., Signore S., D'Amario D., Kostyla J., Steadman E., Ide-Iwata N., Sanada F., Iaffaldano G., Ottolenghi S., Hosoda T., Leri A., Kajstura J., Anversa P., Rota M. Cardiomyogenesis in the developing heart is regulated by c-kit-positive cardiac stem cells // Circ. Res. 2012. Vol. 110. № 5. P. 701–15.
  7. Wu S.M., Fujiwara Y., Cibulsky S.M., Clapham D.E., Lien C.L., Schultheiss T.M., Orkin S.H. Developmental origin of a bipotential myocardial and smooth muscle cell precursor in the mammalian heart // Cell. 2006. Vol. 127. № 6. P. 1137–50.
  8. van Berlo J.H., Kanisicak O., Maillet M., Vagnozzi R.J., Karch J., Lin S.C., Middleton R.C., Marbán E., Molkentin J.D. c-kit+ cells minimally contribute cardiomyocytes to the heart // Nature. 2014. Vol. 509. № 7500. P. 337–41.
  9. Чепелева Е.В., Павлова С.В, Малахова А.А., Милевская Е.А., Русакова Я.Л., Подхватилина Н.А., Сергеевичев Д.С., Покушалов Е.А., Караськов А.М., Сухих Г.Т., Закиян С.М. Терапия хронического кардиосклероза у крыс линии WAG культурами кардиоваскулярных клеток, обогащенными стволовыми клетками сердца // Клеточные технологии в биологии и медицине. 2015. № 3. С. 10.
  10. He J.Q., Vu D.M., Hunt G., Chugh A., Bhatnagar A., Bolli R. Human cardiac stem cells isolated from atrial appendages stably express c-kit // PLoS One. 2011. Vol. 6. № 11. P. e27719.
  11. Davis D.R., Kizana E., Terrovitis J., Barth A.S., Zhang Y., Smith R.R., Miake J., Marbán E. Isolation and expansion of functionally-competent cardiac progenitor cells directly from heart biopsies // J. Mol. Cell. Cardiol. 2010. Vol. 49. № 2. P. 312–21.
  12. Koninckx R., Daniels A., Windmolders S., Carlotti F., Mees U., Steels P., Rummens J..L, Hendrikx M., Hensen K. Mesenchymal stem cells or cardiac progenitors for cardiac repair? A comparative study // Cell. Mol. Life Sci. 2011. Vol. 68. № 12. P. 2141–56.
  13. Medvedev S.P., Malakhova A.A., Grigor'eva E.V., Shevchenko A.I., Dementyeva E.V., Sobolev I.A., Lebedev I.N., Shilov A.G., Zhimulev I.F., Zakian S.M. Derivation of induced pluripotent stem cells from fetal human skin fibroblasts // Acta Naturae. 2010. Vol. 2. № 2. P. 102–6.
  14. Morisaki N., Moriwaki S., Sugiyama-Nakagiri Y., Haketa K., Takema Y., Imokawa G. Neprilysin is identical to skin fibroblast elastase: its role in skin aging and UV responses // J. Biol. Chem. 2010. Vol. 285. № 51. P. 39819–27.
  15. Russell K.C., Tucker H.A., Bunnell B.A., Andreeff M., Schober W., Gaynor A.S., Strickler K.L., Lin S., Lacey M.R., O'Connor K.C. Cell-surface expression of neuron-glial antigen 2 (NG2) and melanoma cell adhesion molecule (CD146) in heterogeneous cultures of marrow-derived mesenchymal stem cells // Tissue Eng. Part A. 2013. Vol. 19. № 19–20. P. 2253–66.
  16. Kozanoglu I., Boga C., Ozdogu H., Sozer O., Maytalman E., Yazici A.C., Sahin F.I. Human bone marrow mesenchymal cells express NG2: possible increase in discriminative ability of flow cytometry during mesenchymal stromal cell identification // Cytotherapy. 2009. Vol. 11. № 5. P. 527–33.
  17. White A.J., Smith R.R., Matsushita S., Chakravarty T., Czer L.S., Burton K., Schwarz E.R., Davis D.R., Wang Q., Reinsmoen N.L., Forrester J.S., Marbán E., Makkar R. Intrinsic cardiac origin of human cardiosphere-derived cells // Eur. Heart J. 2013. Vol. 34. № 1. P. 68–75.
  18. Di Meglio F., Castaldo C., Nurzynska D., Romano V., Miraglia R., Bancone C., Langella G., Vosa C., Montagnani S. Epithelial-mesenchymal transition of epicardial mesothelium is a source of cardiac CD117-positive stem cells in adult human heart // J. Mol.Cell Cardiol. 2010. Vol. 49. № 5. P. 719–27.