Диссертация (1139911), страница 22
Текст из файла (страница 22)
– 2007. – V.217. – P.186-205.292. Talan M.I., Latini R. Myocardial infarction: cardioprotection byerythropoietin // Methods Mol Biol. – 2013. – V. 982. – P. 265-302.293. Taniguchi N., Nakamura T., Sawada T., Matsubara K., Furukawa K.,Hadase M., Nakahara Y., Nakamura T., Matsubara H.Erythropoietinprevention trial of coronary restenosis and cardiac remodeling after STelevated acute myocardial infarction (EPOC-AMI): a pilot, randomized,placebo-controlled study // Circ J.
– 2010. – V. 74. – P. 2365-2371.294. Theoharides T.C., Enakuaa S., Sismanopoulos N., Asadi S., PapadimasE.C., Angelidou A., Alysandratos K.D. Contribution of stress to asthmaworsening through mast cell activation // Ann Allergy Asthma Immunol. –2012. – V. 109(1). – P. 14-19.295. Theoharides T.C., Zhang B., Kempuraj D., Tagen M., Vasiadi M.,Angelidou A., Alysandratos K.D., Kalogeromitros D., Asadi S., StavrianeasN., Peterson E., Leeman S., Conti P. IL-33 augments substance P-inducedVEGF secretion from human mast cells and is increased in psoriatic skin //Proc Natl Acad Sci U S A. – 2010. – V.107(9).
– P.4448-4453.296. Trimmer P.A., Schwartz K.M., Borland M.K., De Taboada L., StreeterJ., Oron U. Reduced axonal transport in Parkinson's disease cybrid neurites isrestored by light therapy // Mol Neurodegener. – 2009. – V.4. – P.26. – doi:10.1186/1750-1326-4-26.297. Trivedi N.H., Guentzel M.N., Rodriguez A.R., Yu J.J., Forsthuber T.G.,Arulanandam BP. Mast cells: multitalented facilitators of protection against141bacterial pathogens // Expert Rev Clin Immunol. – 2013. – V. 9(2). – P.
12938.298. Tuby H., Hertzberg E., Maltz L., Oron U. Long-term safety of lowlevel laser therapy at different power densities and single or multipleapplications to the bone marrow in mice // Photomed Laser Surg. – 2013. – V.31(6). – P. 269-273.299. Tuby H., Maltz L., Oron U. Implantation of low-level laser irradiatedmesenchymal stem cells into the infarcted rat heart is associated withreduction in infarct size and enhanced angiogenesis // Photomed Laser Surg.
–2009. – V. 27(2). – P. 227-33.300. Tuby H., Maltz L., Oron U. Induction of autologous mesenchymal stemcells in the bone marrow by low-level laser therapyhas profound beneficialeffects on the infarcted rat heart // Lasers Surg Med. – 2011. – V. 43(5). – P.401-409.301. Tuby H., Maltz L., Oron U. Low-level laser irradiation (LLLI)promotes proliferation of mesenchymal and cardiac stem cells in culture //Lasers Surg Med. – 2007.
– V. 39(4). – P. 373-378.302. Tuby H., Maltz L., Oron U. Modulations of VEGF and iNOS in the ratheart by low level laser therapy are associated with cardioprotection andenhanced angiogenesis // Lasers Surg Med. – 2006. – V. 38(7). – P. 682-688.303. Tuby H., Yaakobi T., Maltz L., Delarea Y., Sagi-Assif O., Oron U.Effect of autologous mesenchymal stem cells induced by low level lasertherapy on cardiogenesis in the infarcted area following myocardial infarctionin rats // Journal of Biomedical Science and Engineering. – 2013.
– V.6. –P.24-31.304. TyagiS.Temporalexpressionofextracellularmatrixmetalloproteinases and tissue plasminogen activator in the development ofcollateral vessels in the canine model of coronary occlusion / S.Tyagi, S.Kumar, S. Cassatt // Can. J. Physiol. Pharmacol.
– 1996. – V.74. – P.983-995.142305. Uemoto L., Nascimento de Azevedo R., Almeida Alfaya T., NunesJardim Reis R., Depes de Gouvêa C.V., Cavalcanti Garcia M.A. Myofascialtrigger point therapy: laser therapy and dry needling // Curr Pain HeadacheRep. – 2013. – V.17(9). – P. 357.306. Vacek A. Increase in the capacity of bone marrow exposed to He-Nelaser radiation for growth of GM-CFC colonies in vitro / A. Vacek,A. Bartonícková, D. Rotkovská // Folia Biol (Praha).
– 1990. – V.36(1). –P.65-70.307. van den Akker F., de Jager S.C., Sluijter J.P. Mesenchymal stem celltherapy for cardiac inflammation: immunomodulatory properties and theinfluence of toll-like receptors // Mediators Inflamm. – 2013. – V. 2013. – P.181020. – doi: 10.1155/2013/181020.308. Vogt C., Pentz S., Rich I.N: A role for the macrophage in normalhematopoiesis: III. In vitro and in vivo erythropoietin gene expression inmacrophages detected by in situ hybridization // Exp Hematol. – 1989. - V.17.– P.391-397.309. Voituron N., Jeton F., Cholley Y., et.al. Catalyzing role oferythropoietin on the nitric oxide central pathway during the ventilatoryresponses to hypoxia // Physiol Rep.
– 2014. – V. 2(2). – P. e00223.310. Vrtovec B., Poglajen G., Lezaic L., et.al. Effects of intracoronaryCD34+ stem cell transplantation in nonischemic dilated cardiomyopathypatients: 5-year follow-up // Circ Res. 2013. – V. 112(1). – P. 165-173.311. Wang Y., Luther K. Genetically manipulated progenitor/stem cellsrestore function to the infarcted heart via the SDF-1α/CXCR4 signalingpathway // Prog Mol Biol Transl Sci. - 2012. – V.111. – P.265-284.312. Weller C.L., Collington S.J., Williams T., Lamb J.R. Mast cells inhealth and disease // Clin Sci (Lond). – 2011.
– V. 120(11). – P. 473-84.313. Weller K., Foitzik K., Paus R., Syska W., Maurer M. Mast cells arerequired for normal healing of skin wounds in mice // FASEB J. – 2006. – V.20. – P. 2366–2368.143314. Wiedenmann T., Ehrhardt S., Cerny D., Hildebrand D., Klein S., HeegK., Kubatzky K.F. Erythropoietin acts as an anti-inflammatory signal onmurine mast cells // Mol Immunol. – 2015. – V.65(1). – P.68-76.315. Wulff B.C., Wilgus T.A.
Mast cell activity in the healing wound: morethan meets the eye? // Experimental Dermatology. – 2013. – V.22. – P. 507–510.316. Xue J., Du G., Shi J., et.al.. Combined treatment with erythropoietinand granulocyte colony-stimulating factor enhances neovascularization andimproves cardiac function after myocardial infarction // Chin Med J (Engl). –2014.
– V.127(9). – P. 1677-1683.317. Yang Y., Chen Q.H., Liu A.R. ..Synergism of MSC-secreted HGFand VEGF in stabilising endothelial barrier function upon lipopolysaccharidestimulation via the Rac1 pathway.//Stem Cell Res Ther. 2015 Dec16;6(1):250. doi: 10.1186/s13287-015-0257-0.318. Yang Z., Wu Y., Zhang H., Jin P., Wang W., Hou J., Wei Y., Hu S.Low–level laser irradiation alters cardial cytokine expression following acutemyocardial infraction: a potential mechanism for laser therapy //Photomed.Laser Surg. – 2011. – 29. – P. 391–398.319.
Yong L.C. The mast cell: origin, morfology, distribution, and function// Exp Toxicol Pathol. – 1997. – V.49(6). – P.409-433.320. Yousefi-Nooraie R., Schonstein E., Heidari K. et.al. Low level lasertherapy for nonspecific low-back pain // Cochrane Database Syst Rev.
–2007. – N.2. – P. CD005107. – doi:10.1002/14651858.CD005107.pub4.321. Zafiriou M.P., Noack C., Unsöld B., et.al. Erythropoietin responsivecardiomyogenic cells contribute to heart repair post myocardial infarction //Stem Cells. – 2014. – V. 32(9). – P. 2480-2491.322. Zhang J, Li X, Xu J, Ernst E. Laser acupuncture for the treatment ofasthma in children: a systematic review of randomized controlled trial // JAsthma. – 2012.
– V. 49(7). – P. 773-7.144323. Zhang R., Yasushi M., Pratt P.F., et al. Near infrared light protectscardiomyocytes from hypoxia and reoxygenation injury by a nitric oxidedependent mechanism // J. Mol. Cell Cardiol. – 2009. – V.46. – P.4–14.145.















