Добавил:
kiopkiopkiop18@yandex.ru Вовсе не секретарь, но почту проверяю Опубликованный материал нарушает ваши авторские права? Сообщите нам.
Вуз: Предмет: Файл:

3 курс / Патологическая физиология / АКТИН_МИОЗИНОВОЕ_ВЗАИМОДЕЙСТВИЕ_В_МИОКАРДЕ_В_НОРМЕ_И_ПРИ_ХРОНИЧЕСКОЙ

.pdf
Скачиваний:
0
Добавлен:
24.03.2024
Размер:
1.2 Mб
Скачать

rabbits // Environ. Sci. Pollut. Res.– Environmental Science and Pollution

Research, 2020.– Vol. 27, № 23.– P. 29266–29279.

154.Fatima G., Raza A.M., Hadi N., Nigam N., Mahdi A.A. Cadmium in Human

Diseases: It’s More than Just a Mere Metal // Indian J. Clin. Biochem.–

Springer India, 2019.– Vol. 34, № 4.– P. 371–378.

155.Kopp S.J., Perry Jr.M., Glonek T.H., Erlanger M.A., Perry E.F., Barany M.I. D.L.S. Cardiac physiologic-metabolic changes after chronic low-level heavy metal feeding // Am. J. Physiol. Circ. Physiol.– 1980.– Vol. 239, № 1.– P. H22-30.

156.Vassallo D. V., Lebarch E.C., Moreira C.M., Wiggers G.A., Stefanon I. Lead reduces tension development and the myosin ATPase activity of the rat right ventricular myocardium // Brazilian J. Med. Biol. Res.– 2008.– Vol. 41, № 9.–

P.789–795.

157.Fioresi M., Furieri L.B., Simões M.R., Ribeiro Junior R.F., Meira E.F.,

Fernandes A.A., Stefanon I., Vassallo D. V. Acute exposure to lead increases myocardial contractility independent of hypertension development // Brazilian

J.Med. Biol. Res.– 2013.– Vol. 46, № 2.– P. 178–185.

158.Andjelkovic M., Djordjevic A.B., Antonijevic E., Antonijevic B., Stanic M., Kotur-Stevuljevic J., Spasojevic-Kalimanovska V., Jovanovic M., Boricic N., Wallace D., Bulat Z. Toxic effect of acute cadmium and lead exposure in rat blood, liver, and kidney // Int. J. Environ. Res. Public Health.– 2019.– Vol. 16,

№ 2.

159.Williams B.J., Griffith W.H., Albrecht C.M., Pirch J.H. H.M.R. Effects of Chronic Lead Treatment on Some Cardiovascular Responses to Norepinephrine in the Rat // Toxicol. Appl. Pharmacol.– 1977.– Vol. 40, №

3.– P. 407–413.

160.Markovac J. G.G.W. Picomolar concentration of lead stimulate brain protein kinase C // Nature.– 1988.– Vol. 334, № 6177.– P. 71–73.

161.Mazzei G.J., Girard P.R., Kuo J.F. Environmental pollutant Cd2+ biphasically and differentially regulates myosin light chain kinase and phospholipid/Ca2+-

131

Рекомендовано к изучению сайтом МедУнивер - https://meduniver.com/

dependent protein kinase // FEBS Lett.– 1984.– Vol. 173, № 1.– P. 124–128.

162.Silva M.A.S.C., de Oliveira T.F., Almenara C.C.P., Broseghini-Filho G.B., Vassallo D. V., Padilha A.S., Silveira E.A. Exposure to a Low Lead Concentration Impairs Contractile Machinery in Rat Cardiac Muscle // Biol. Trace Elem. Res.– 2015.– Vol. 167, № 2.– P. 280–287.

163.Protsenko Y.L., Katsnelson B.A., Klinova S.V., Lookin O.N., Balakin A.A., Nikitina L.V., Gerzen O.P., Nabiev S.R., Minigalieva I.A., Privalova L.I., Gurvich V.B., Sutunkova M.P., Katsnelson L.B. Further analysis of rat myocardium contractility changes associated with a subchronic lead intoxication // Food Chem. Toxicol.– 2019.– Vol. 125.– P. 233–241.

164.Protsenko Y.L., Klinova S.V., Gerzen O.P., Privalova L.I., Minigalieva I.A., Balakin A.A., Lookin O.N., Lisin R.V., Butova K.A., Nabiev S.R., Katsnelson L.B., Nikitina L.V., Katsnelson B.A. Changes in rat myocardium contractility under subchronic intoxication with lead and cadmium salts administered alone or in combination // Toxicol. Reports.– 2020.– Vol. 7.– P. 433–442.

165.Katsnelson B.A., Klinova S. V., Gerzen O.P., Balakin A.A., Lookin O.N., Lisin R. V., Nabiev S.R., Privalova L.I., Minigalieva I.A., Panov V.G., Katsnelson L.B., Nikitina L. V., Kuznetsov D.A., Protsenko Y.L. Forcevelocity characteristics of isolated myocardium preparations from rats exposed to subchronic intoxication with lead and cadmium acting separately or in combination // Food Chem. Toxicol.– Elsevier Ltd, 2020.– Vol. 144.– P. 111641.

166.Shetty A., Shetty P. The Effect Of Micronutriens on Lead ( Pb ) Toxicity.– 2020.– № August.

167.Yu H. tao, Zhen J., Xu J. xiang, Cai L., Leng J. yan, Ji H. lei, Keller B.B. Zinc protects against cadmium-induced toxicity in neonatal murine engineered cardiac tissues via metallothionein-dependent and independent mechanisms // Acta Pharmacol. Sin.– Springer US, 2020.– Vol. 41, № 5.– P. 638–649.

168.Messaoudi I., El Heni J., Hammouda F., Saïd K., Kerkeni A. Protective effects of selenium, zinc, or their combination on cadmium-induced oxidative stress

132

in rat kidney // Biol. Trace Elem. Res.– 2009.– Vol. 130, № 2.– P. 152–161.

169.Alam Z.H., Ujueta F., Arenas I.A., Nigra A.E., Navas acien A., Lamas G.A.

Urinary metal levels after repeated edetate disodium infusions: Preliminary findings // Int. J. Environ. Res. Public Health.– 2020.– Vol. 17, № 13.– P. 1– 9.

170.Abubakar K., Mailafiya M.M., Danmaigoro A., Chiroma S.M., Rahim E.B.A., Zakaria M.Z.A.B. Curcumin attenuates lead-induced cerebellar toxicity in rats via chelating activity and inhibition of oxidative stress // Biomolecules.– 2019.– Vol. 9, № 9.

171.Afshari G., Khorasani M.Z., Dianat M., Sarkaki A., Badavi M. Therapeutic effects of the grape seed extract on lead-induced hypertension and aortic responsiveness in rats // Iran. Hear. J.– 2019.– Vol. 20, № 3.– P. 36–46.

172.Mohamed N.B., Mohamed A.H., Abu-Aita N.A., Nasr S.M., Nassar S.A.,

Ahmed K.A. Prophylactic role of Moringa oleifera leaves’ extract against lead toxicity in rabbits // Adv. Anim. Vet. Sci.– 2020.– Vol. 8, № 11.– P. 1129– 1141.

173.Katsnelson B.A., Privalova L.I., Kuzmin S. V, Degtyareva T.D., Soloboyeva J.I. Biological prophylaxis as one of the ways to proceed from the analytical environmental epidemiology to public health protection (a self-overview) // Eur. epi Marker.– 2008.– Vol. 12, № 3.– P. 1–8.

174.Minigalieva I.A., Katsnelson B.A., Panov V.G., Privalova L.I., Varaksin A.N., Gurvich V.B., Sutunkova M.P., Shur V.Y., Shishkina E. V., Valamina I.E., Zubarev I. V., Makeyev O.H., Meshtcheryakova E.Y., Klinova S. V. In vivo toxicity of copper oxide, lead oxide and zinc oxide nanoparticles acting in different combinations and its attenuation with a complex of innocuous bioprotectors // Toxicology.– Elsevier Ireland Ltd, 2017.– Vol. 380.– P. 72–93.

175.Klinova S. V., Minigalieva I.A., Privalova L.I., Valamina I.E., Makeyev O.H., Shuman E.A., Korotkov A.A., Panov V.G., Sutunkova M.P., Ryabova J. V., Bushueva T. V., Shtin T.N., Gurvich V.B., Katsnelson B.A. Further verification of some postulates of the combined toxicity theory: New animal

133

Рекомендовано к изучению сайтом МедУнивер - https://meduniver.com/

experimental data on separate and joint adverse effects of lead and cadmium //

Food Chem. Toxicol.– Elsevier, 2020.– Vol. 136, № August.– P. 110971.

176.Lasagna-Reeves C., Gonzalez-Romero D., Barria M.A., Olmedo I., Clos A., Sadagopa Ramanujam V.M., Urayama A., Vergara L., Kogan M.J., Soto C. Bioaccumulation and toxicity of gold nanoparticles after repeated administration in mice // Biochem. Biophys. Res. Commun.– Elsevier Inc., 2010.– Vol. 393, № 4.– P. 649–655.

177.Katsnelson, B.A., Makeyev, O.H., Kochneva, N.I., Privalova, L.I., Degtyareva, T.D., Bukhantsev, V.A., Minin, V.V., Beresneva, O.Y., Slyshkina, T.V., Kostyukova S.V. Testing a set of bioprotectors against the genotoxic effect of a combination of ecotoxicants // Cent. Eur. J. Occup. Environ. Med.– 2007.– Vol. 13, № 3–4.– P. 256–264.

178.Katsnelson, B.A., Privalova, L.I., Kuzmin, S.V., Degtyareva, T.D., Soloboyeva J.I. Biological prophylaxis of adverse health effects caused by environmental and occupational impacts–theoretical premises, experimental and field testing, practical realization // Cent. Eur. J. Occup. Environ. Med.– 2009.– Vol. 15, № 1–2.– P. 35–51.

179.Privalova, L.I., Katsnelson, B.A., Sutunkova, M.P., Valamina, I.E., Beresneva, O.Y., Degtyareva, T.D., Yeremenko O.S. Attenuation of some adverse health e ects of chrysotile asbestos with a bioprotective complex in animal experiments // Cent. Eur. J. Occup. Environ. Med.– 2007.– Vol. 13, № 3–4.– P. 256–276.

180.Privalova L.I., Katsnelson B.A., Loginova N. V., Gurvich V.B., Shur V.Y., Valamina I.E., Makeyev O.H., Sutunkova M.P., Minigalieva I.A., Kireyeva E.P., Rusakov V.O., Tyurnina A.E., Kozin R. V., Meshtcheryakova E.Y., Korotkov A. V., Shuman E.A., Zvereva A.E., Kostykova S. V. Subchronic toxicity of copper oxide nanoparticles and its attenuation with the help of a combination of bioprotectors // Int. J. Mol. Sci.– 2014.– Vol. 15, № 7.– P. 12379–12406.

181.Katsnelson B.A., Privalova L.I., Gurvich V.B., Makeyev O.H., Shur V.Y.,

134

Beikin Y.B., Sutunkova M.P., Kireyeva E.P., Minigalieva I.A., Loginova N. V., Vasilyeva M.S., Korotkov A. V., Shuman E.A., Vlasova L.A., Shishkina E. V., Tyurnina A.E., Kozin R. V., Valamina I.E., Pichugova S. V., Tulakina L.G. Comparative in vivo assessment of some adverse bioeffects of equidimensional gold and silver nanoparticles and the attenuation of nanosilver’s effects with a complex of innocuous bioprotectors // Int. J. Mol. Sci.– 2013.– Vol. 14, № 2.– P. 2449–2483.

182.Chen A., Kim S.S., Chung E., Dietrich K.N. Thyroid hormones in relation to lead, mercury, and cadmium exposure in the national health and nutrition examination survey, 2007-2008 // Environ. Health Perspect.– 2013.– Vol. 121,

№ 2.– P. 181–186.

183.Gaertner R.R.W., Hollebone B.R. The in vitro inhibition of hepatic ferrochelatase by divalent lead and other soft metal ions // Can. J. Biochem. Cell Biol.– 1983.– Vol. 61, № 4.– P. 214–222.

184.DiNicolantonio J.J., O’Keefe J.H., Wilson W. Subclinical magnesium deficiency: A principal driver of cardiovascular disease and a public health crisis // Open Hear.– 2018.– Vol. 5, № 1.

185.Kieboom B.C.T., Niemeijer M.N., Leening M.J.G., van den Berg M.E., Franco O.H., Deckers J.W., Hofman A., Zietse R., Stricker B.H., Hoorn E.J. Serum magnesium and the risk of death from coronary heart disease and sudden cardiac death // J. Am. Heart Assoc.– 2016.– Vol. 5, № 1.– P. 1–11.

186.Pardee, J.D. and Spudich, J.A. Purification of muscle actin. InMethods in cell biology // Methods Cell Biol.– 1982.– Vol. 24.– P. 271–289.

187.Potter J.D. Preparation of troponin and its subnits // Methods Enzymol.– 1982.– Vol. 85.– P. 241–263.

188.Matyushenko A.M., Artemova N. V., Shchepkin D. V., Kopylova G. V., Bershitsky S.Y., Tsaturyan A.K., Sluchanko N.N., Levitsky D.I. Structural and functional effects of two stabilizing substitutions, D137L and G126R, in the middle part of α-tropomyosin molecule // FEBS J.– 2014.– Vol. 281, № 8.– P. 2004–2016.

135

Рекомендовано к изучению сайтом МедУнивер - https://meduniver.com/

189.Laemmli U.K. Cleavage of structural proteins during the assembly of the head of bacteriophage T4 // Nature.– 1970.– Vol. 227, № 5259.– P. 680–685.

190.Spiess M., Steinmetz M.O., Mandinova A., Wolpensinger B., Aebi U., Atar D. Isolation, electron microscopic imaging, and 3-D visualization of native cardiac thin myofilaments // J. Struct. Biol.– 1999.– Vol. 126, № 2.– P. 98– 104.

191.Reiser, P.J. and Kline W.O. Electrophoretic separation and quantitation of cardiac myosin heavy chain isoforms in eight mammalian species // Am. J. Physiol. Circ. Physiol.– 1998.– Vol. 274, № 3.– P. H1048–H1053.

192.Aimo A., Januzzi J.L., Vergaro G.G.V., Ripoli A., Latini R., Masson S., Magnoli M., Anand I.S., Cohn J.N., Tavazzi L., Tognoni G., Gravning J., Ueland T., Nymo S.H., Brunner-La Rocca H.P., Genis A.B., Lupón J., De Boer

R.A., Yoshihisa A., Takeishi Y., Egstrup M., Gustafsson I., Gaggin H.K., Eggers K.M., Huber K., Tentzeris I., Tang W.H.W., Grodin J., Passino C., Emdin M. Prognostic value of high-sensitivity troponin T in chronic heart failure an individual patient data meta-analysis // Circulation.– 2018.– Vol.

137, № 3.– P. 286–297.

193.Vandekerckhove J., Bugaisky G., Buckingham M. Simultaneous expression of skeletal muscle and heart actin proteins in various striated muscle tissues and cells. A quantitative determination of the two actin isoforms // J. Biol. Chem.– 1986.– Vol. 261, № 4.– P. 1838–1843.

194.Gupta M.P. Factors controlling cardiac myosin-isoform shift during hypertrophy and heart failure // J Mol Cell Cardiol.– 2007.– Vol. 43, № 4.– P. 388–403.

195.Lund M.N., Luxford C., Skibsted L.H., Davies M.J. Oxidation of myosin by haem proteins generates myosin radicals and protein cross-links // Biochem. J.– 2008.– Vol. 410, № 3.– P. 565–574.

196.Kopylova G., Nabiev S., Shchepkin D., Bershitsky S. Carbonylation of atrial myosin prolongs its interaction with actin // Eur. Biophys. J.– 2018.– Vol. 47,

№ 1.– P. 11–18.

136

197.Park K.C., Gaze D.C., Collinson P.O., Marber M.S. Cardiac troponins: From myocardial infarction to chronic disease // Cardiovasc. Res.– 2017.– Vol. 113,

№ 14.– P. 1708–1718.

198.S. Joseph, S. Kumar, Z. Ahamed S.L. Cardiac Troponin-T as a Marker of Myocardial Dysfunction in Term Neonates with Perinatal Asphyxia // Indian J. Pediatr.– The Indian Journal of Pediatrics, 2018.– Vol. 86, № 8.– P. 766– 767.

199.An H.C., Sung J.H., Lee J., Sim C.S., Kim S.H., Kim Y. The association between cadmium and lead exposure and blood pressure among workers of a smelting industry: A cross-sectional study // Ann. Occup. Environ. Med.– Annals of Occupational and Environmental Medicine, 2017.– Vol. 29, № 1.–

P. 1–8.

200.Chen C.Y., Zhang S.L., Liu Z.Y., Tian Y., Sun Q. Cadmium toxicity induces ER stress and apoptosis via impairing energy homoeostasis in cardiomyocytes // Biosci. Rep.– 2015.– Vol. 35, № 3.– P. 1–8.

201.Wang L., Xing L., Sun J., Yang L. Combined Toxicity of Copper , Cadmium and Lead Toward Daphnia magna : Recommendation for Bioassay-Based Whole Effluent Toxicity ( WET ) Testing in China.– 2020.

137

Рекомендовано к изучению сайтом МедУнивер - https://meduniver.com/