Mitokorrektine stimulates angiogenesis in vitro
Harmanchuk LV1, Makarenko OM1, Khranovs'ka NM2, Nikolaienko TV2, Nikulina VV3, Nepyĭvoda KhD3, Ostapchenko LI1, Morozov SH4, Kositsyn MS4
- NSC «Institute of Biology,» Kyiv National Taras ShevchenkoUniversity, Kyiv, Ukraine
- National Cancer Institute, Kyiv, Ukraine
- The Institute of Higher Nervous Activity andNeurophysiology RAS, Moscow, Russia
- Institute of General Pathology and Pathophysiology RAS,Moscow, Russia
DOI: https://doi.org/10.15407/fz59.02.052
Abstract
The effect of mitokorrectine (complex native oligopeptides isolated from neonatal pig brain) on endothelial cells in culture was investigated. It was revealed that the drug concentration-dependently induces angiogenesis in vitro. Mitogen effect of Mitokorrectine was shown by MTT-test and routine cell count in concentration diapason (0.1-1 mg/ml) which means an increased number of cells by 25 +/- 5% and cell subpopulation of proliferative pool (G2/M+S) 1,8 times in concentration diapason mitokorrectine (0.01-0.05 mg/ml) in comparison with control. In 3-D culture and in stationary phase we detected induction of differentiation of endothelial cells, a decrease the level of NO production and enhancement of glucose metabolism and stimulation of formation of capillary-like tubes.
Keywords:
mitokorrectin, angiogenesis, endothelial cells.
References
- Vilenskii B.S. Oslozhnenie insul'ta: profilaktika i lechenie. S.-P.:Foliant, 2000. C. 128.
- Garmanchuk L.V. Modelyuvannya angiogenezu in vitro z vikoristannyam 3D-kul'tur endotelial'nih klitin . Fizika zhivogo. 2010. N 3.P.55-57.
- Garmanchuk L.V., Hranovskaya N.N., Makarenko A.N., Mazur O.V., Skachkova O.V., Nepiivoda H.D., Lavrova E.V., Perepelitsina E.M., Senchilo N.V., Vasil'eva I.G., Ostapchenko L.I. Kompleksnoe issledovanie immunomoduliruyushchego vliyaniya preparatov s nootropnim mehanizmom deistviya na immunokompetentnie kletki . Zhurn. NAMN Ukraini. 2011. 17, N 3. P. 218-226.
- Garmanchuk L.V., Perepelitsina O.M., Grinyuk I.I., Priluts'ka S.V., Matishevs'ka O.P., Sidorenko M.V. Vpliv fulereniv S60 na adgezivni vlastivosti klitin raku molochnoi zalozi . Dop. NAN Ukraini. 2009. N 4. P. 164-167.
- Ivashkin V.T., Drapkina O.M. Klinicheskoe znachenie oksida azota i belkov teplovogo shoka. M.:GEOTAR Media. 2001. p. 177.
- Pat. N 2008136321/15 RF. Lekarstvennii preparat dlya lecheniya gipoksicheskih i toksicheskih mitohondrial'nih narushenii i sposob ego polucheniya . Makarenko A.N., Morozov S.G., Kul'chikov A.E., Shirobokova L.P., Bozhko A.M. Opubl. 20.03.2010, Byul. N 8.
- Makarenko A.M., Shirobokova L.P., Shayahmetova A.M. Sostoyanie biohimicheskih pokazatelei pecheni i gazoobmena u eksperimental'nih zhivotnih v usloviyah ostroi nitrobenzol'noi intoksikatsii i korrektsii novim intraorganoidnim sredstvom mito-hondrinom . Toks. vestn. 2003. N 2. P.6-9.
- Asahara T., Murohara T., Sullivan A., Silver M, Van Der Z.R., Li T., Witzenbichler B. Isolation of putative progenitor endothelial cells for angiogenesis . Science. 1997. 275. P.964-967.
CrossRef
PubMed
- Guide for the Care and Use of Laboratory Animals. W.: National Academy of Press, 1996. P. 140.
- Folkman J., D'amore P.A. Blood vessel formation: What is its molecular basis? . Cell. 1996. 87. P. 1153-1155.
CrossRef
- Mosmann T. Rapid colorimetric assay for cellular growth and survival: application to proliferation and cytotoxic assayas . J. Immunol. Methods. 1983. 65. R.55-63.12. Nepyyvoda K., Lavrova. K., Garmanchuk L., Ostapchenko L. EGF and herceptin influence on proliferation, adgesion and glucose consumption of tumor cells MCF-7 . Abstracts VIII Parnas conference. Warsaw, Poland, 2009. P7.10. R.59.
- Nicoletti I., Migliorati G., Pagliacci M.C., Grignani F., Riccardi C. A rapid and simple method for measuring thymocyte apoptosis by propidium iodide staining and flow cytometry . J.Immunol. Methods. 1991. 139. P. 271-280.
CrossRef
- Pauly R.R., Passaniti A., Crow M., Kinsella J.L., Papadopoulos N., Monticone R., Lakatta E.G., Martin G.R. Experimental models that mimic the differentiation and dedifferentiation of vascular cells . Circullation. 1992. 86. P. 11168-11173.
- Risau W. Differentiation of endothelium . FASED. J. 1995. 9. P. 926-933.
- Wei-Lan Yeh, Chun-Jung Lin, Wen-Mei Fu. Enhancement of glucose transporter expression of brain endothelial cells by vascular endothelial growth factor derived from glioma exposed to hypoxia . Mol.Pharm. 2008. 73, N 1. P. 170-177.
- Zhu W.H., Guo X., Villaschi S., Nicosia R.F. Regulation of vascular growth and regression by matrix metalloproteinases in the rat aorta model of angiogenesis . Lab. Invest. 2000. 80. P. 545-555.
CrossRef
PubMed
- Ziche M., Morbidelli L., Masini E., S. Amerini, H.J. Granger, C.A. Maggi, P. Geppetti. Nitric oxide mediates angiogenesis in vivo and endothelial cell growth and migration in vitro promoted by substance P. J. Clin. Invest. 1994. 94. P. 2036-2044.
CrossRef
PubMed PubMedCentral
|