Коллоидно-химические свойства смесей лизоцим-ПАВ в системе водный раствор-октан (1105578), страница 20
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2003.V.19. N.7. P.2673-2682.92.Jung J.M., Zeynel Gunes D., Mezzenga R. Interfacial activity and interfacial shearrheology of native β-lactoglobulin monomers and their heat-induced fibers // Langmuir. 2010. V.26. N.19. P.15366-15375.93.Maldonado-Valderrama J., Fainerman V.B., Galvez-Ruiz M.J., Martin-Rodriguez A.,Cabrerizo-Vilchez M.A., Miller R. Dilatational rheology of β-casein adsorbed layersat liquid-fluid interfaces // J.
Phys. Chem. B. 2005. V.109. P.17608-17616.94.Cascao Pereira L.G., Theodoly O., Blanch H.W., Radke C.J. Dilatational rheology ofBSA conformers at the air/water interface // Langmuir. 2003. V.19. N.6.P.2349-2356.95.Rodriguez Nino M.R., Wilde P.J., Clark D.C., Husband F.A., Rodriguez Patino J.M.Rheokinetic analysis of protein films at the air-aqueous subphase interface.
2. Bovineserum albumin adsorption from sucrose aqueous solutions // J. Agric. Food Chem.1997. V.45. N.8. P.3016-3021.96.Noskov B.A., Mikhailovskaya A.A., Lin S.Y., Loglio G., Miller R. Bovine serumalbumin unfolding at the air/water interface as studied by dilational surface rheology // Langmuir. 2010. V.26. N.22. P.17225-17231.97.Malcolm A.S., Dexter A.F., Middelberg A.P.J. Mechanical properties of interfacialfilms formed by lysozyme self-assembly at the air-water interface // Langmuir. 2006.V.22. N.21. P.8897-8905.98.Roberts S.A., Kellaway I.W., Taylor K.M.G., Warburton B, Peters K. Combined surface pressure-interfacial shear rheology study of the effect of pH on the adsorption ofproteins at the air-water interface // Langmuir.
2005. V.21. N.16. P.7342-7348.99.Mikhailovskaya A.A., Noskov B.A., Lin S.Y., Loglio G., Miller R. Formation of protein/surfactant adsorption layer at the air/water interface as studied by dilational surface rheology // J. Phys. Chem. B. 2011. V.115. N.33. P.9971-9979.119100. Maestro A., Kotsmar C., Javadi A., Miller R., Ortega F., Rubio R.G. Adsorptionof β-casein-surfactant mixed layers at the air-water interface evaluated by interfacialrheology // J. Phys. Chem. B. 2012.
V.116. N.16. P.4898-4907.101. Kotsmar C., Kragel J., Kovalchuk V.I., Aksenenko E.V., Fainerman V.B., MillerR. Dilation and shear rheology of mixed beta-casein/surfactant adsorption layers // J.Phys. Chem. B. 2009. V.113. N.1. P.103-113.102. Kotsmar C., Kragel J., Kovalchuk V. I., Aksenenko E. V., Fainerman V. B., Miller R. Dilation and Shear Rheology of Mixed β-Casein/Surfactant Adsorption Layers // J. Phys. Chem. B.
2009. V.113. N.1. P.103-113.103. Pradines V., Kragel J., Fainerman V. B., Miller R. Interfacial Properties ofMixed β-Lactoglobulin-SDS Layers at the Water/Air and Water/Oil Interface // J.Phys. Chem. B. 2009. V.113. N.3. P.745-751.104. Pradines V., Fainerman V.B., Aksenenko E.V., Kragel J., Wustneck R., Miller R.Adsorption of protein-surfactant complexes at the water/oil interface // Langmuir.2011.
V.27. N.3. P.965-971.105. Kotsmar C., Aksenenko E.V., Fainerman V.B.,Pradines V., Kragel J., Miller R.Equilibrium and dynamics of adsorption of mixed β-casein/surfactant solutions at thewater/hexane interface // Colloids and Surfaces A. 2010. V.354. N.1-3. P.210-217.106. Mackie A.R., Gunning A.P., Wilde P.J., Morris V.J. Orogenic displacement ofprotein from the oil/water interface // Langmuir. 2000.
V.16. N.5. P.2242-2247.107. Kinugasa T., Tanahashi S., Takeuchi H. Extraction of lysozyme using reversedmicellar solution: distribution equilibrium and extraction rates // Ind. Eng. Chem.Res. 1991.V.30. N.11. P.2470-2476.108. Mackie A.R. Structure of adsorbed layers of mixtures of proteins and surfactants // Current Opinion in Colloid & Interface Science. 2004.
V.9. N.5. P.357-361.109. Lu J.R., Swann M.J., Peel L.L., Freeman N.J. Lysozyme adsorption studies at thesilica/water interface using dual polarization interferometry // Langmuir. 2004. V.20.N.5. P.1827-1832.110. Perriman A.W., White J.W. Kinetics of adsorption of lysozyme at the air-waterinterface and the role of protein charge // Physica.
B. 2006. V.385-386. P.716-718.111. Engelhardt K., Lexis M., Gochev G., Konnerth C., Miller R., Willenbacher N.,Peukert W., Braunschweig B. pH effects on the molecular structure ofβ-lactoglobulin modified air-water interfaces and its impact on foam rheology //Langmuir. 2013. V.29. N.37.
P.11646-11655.112. Arnebrant T., Wahlgren M.C. Proteins at Interfaces II // ACS Symposium Series.1995. V.602.113. Liu G., Craig V.S. Improved cleaning of hydrophilic protein-coated surfaces using the combination of nanobubbles and SDS // ACS Appl. Mater Interfaces. 2009.V.1. N.2. P.481-487.120114. Yang F., Liu Y., Gao L., Sun J.
pH-sensitive highly dispersed reduced grapheneoxide solution using lysozyme via an in situ reduction method // J. Phys. Chem. C.2010. V.114. N.50. P.22085-22091.115. Mehan S., Chinchalikar A.J., Kumar S., Aswal V.K., Schweins R. Small-angleneutron scattering study of structure and interaction of nanoparticle, protein, and surfactant complexes // Langmuir. 2013. V.29.
N.36. P.11290-11299.116. Sariri P.R., Toosi A.E. Lecithin treatment to prevent protein adsorption onto contact lenses // Russian Journal of Organic Chemistry. 2003. V.39. N.4. P.471-474.117. Lin S.Y., Krochta J.M. Whey protein coating efficiency on surfactant-modifiedhydrophobic surfaces // J. Agric. Food Chem. 2005. V.53. N.12. P.5018-5023.118. Bastrzyk A., Polowczyk I., Szeląg E., Sadowski Z., The effect of protein surfactant interaction on magnesite rock flotation // Physicochemical Problems of MineralProcessing.
2008. V.42. N.42. P.261-269.119. Daly S.M., Przybycien T.M., Tilton R.D. Coverage-dependent orientation of lysozyme adsorbed on silica // Langmuir. 2003. V.19. N.9. P.3848-3857.120. Green R.J., Su T.J., Lu J.R. The displacement of preadsorbed protein with a cationic surfactant at the hydrophilic SiO2-water interface // J. Phys. Chem. B. 2001.V.105. N.38. P.9331-9338.121. Green R.J., Su T.J., Lu J.R. The interaction between SDS and lysozyme at thehydrophilic solid-water interface // J. Phys. Chem.
B. 2001. V.105. N.8. P.1594-1602.122. Lu J.R., Su T.J., Thomas R.K., Penfold J. Binding of sodium dodecyl sulfate tobovine serum albumin layers adsorbed at the silica−water interface // Langmuir.1998. V.14. N.21. P.6261-6268.123. Lu J.R., Su T.J. Binding of surfactants onto preadsorbed layers of Bovine SerumAlbumin at the silica-water interface // J. Phys. Chem. B. 1998. V.102. N.50.P.10307-10315.124.
Zhang X.L., Penfold J., Thomas R.K., Tucker I.M., Petkov J.T., Bent J., Cox A.,Campbell R.A. Adsorption behavior of hydrophobin and hydrophobin/surfactant mixtures at the air-water interface // Langmuir. 2011. V.27. N.18. P.11316-11323.125. Froberg J.C., Blomberg E., Claesson P.M. Desorption of lysozyme layers by sodium dodecyl sulfate studied with the surface force technique // Langmuir. 1999.V.15. N.14. P.1410-1417.126.
Tilton R.D., Blomberg E., Claesson P.M. Effect of anionic surfactant on interactions between lysozyme layers adsorbed on mica // Langmuir. 1993. V.9. N.8.P.2102-2108.127. Gunning A.P., Mackie A.R., Wilde P.J., Morris V.J. In situ observation of thesurfactant-induced displacement of protein from a graphite surface by atomic forcemicroscopy // Langmuir. 1999. V.15.
P.4636-4640.128. Беловодский Л.Ф., Гаевой В.К., Гришмановский В.И. Тритий. М., 1985.248 C.129. Feinendegen L.E. Tritium-labeled molecules in biology and medicine. Acad.press. NY London. 1967. P.429.130. Graham D.E., Philips M.C. Protein at liquid interface. I. Kinetics of adsorptionand surface denaturation // J. Colloid and Interface Sci. 1979. V.70. N.3.
P.403-414.121131. Graham D.E., Philips M.C. Protein at liquid interface. II. Adsorption isotherms //J. Colloid and Interface Sci. 1979. V.70. N.3. P.414-426.132. Wang R., Schlenoff J.B. Adsorption of a radiolabeled random hydrophilic/hydrophobic copolymer at the liquid/liquid interface: kinetics, isotherms, andself-exchange// Macromolecules. 1998. V.31 . N.2. P.494-500.133. Damodaran S., Sengupta T. // Dynamics of competitive adsorption of β-caseinand α-casein at planar triolein-water interface: evidence for incompatibility of mixingin the interfacial film // J. Agric.
Food Chem. 2003. V.51. N.6. P.1658-1665.134. Anand K., Damodaran S. Dynamics of exchange between αS1-casein and β-caseinduring adsorption at air-water interface // J. Agric. Food Chem. 1996. V.44. N.4.P.1022-1028.135. Sengupta T., Razumovsky L., and Damodaran S. Energetics of protein-interfaceinteractions and its effect on protein adsorption // Langmuir.
1999. V.15. N.20.P.6991-7001.136. Sengupta T., Damodaran S. Role of dispersion interactions in the adsorption ofproteins at oil-water and air-water interfaces // Langmuir. 1998. V.14. P.6457-6469.137. Graham D.E., Chatergoon L., Phillips M.C. A technique for measuring interfacialconcentrations of surfactants at the oil-water interface // J. Phys. E: Intsrum.
1975.V.8. N.8. P.696-699.138. Бадун Г.А. Меченные тритием соединения. Методическое руководство ккурсу «Методы получения меченых органических соединений». М.: 2008. 38 c.139. Graham D.E., Phillips M.C. Proteins at liquid interfaces // J. Colloid and InterfaceSci. 1979. V. 70. N.3. P.415-426.140. Алентьев А.Ю. Филатов Э.С. Радиометрический метод исследования межфазных границ двух несмешивающихся жидкостей // Радиохимия. 1991. T.54.N.6. С.80-87.141. Алентьев А.Ю. Измайлова В.Н., Ямпольская Г.П.
Распределение сывороточного альбумина в системе вода - межфазный адсорбционный слой - углеводород // Коллоид. журн. 1992.Т. 54. С. 14-20.142. Пелех В.В., Алентьев А.Ю., Ямпольская Г.П., Измайлова В.Н. Влияние хлоридов щелочных металлов на распределение сывороточного альбумина в системе вода-межфазный адсорбционный слой-толуол. 2. Влияние солей на равновесное распределение белка в системе // Коллоидн. журн. 1998. Т.60. N.2.С.239-244.143.Бадун Г.А., Чернышева М.Г., Тясто З.А., Федосеев В.М. Жидкостная сцинтилляционная спектрометрия трития в исследовании адсорбции веществ намежфазной границе вода-неполярная жидкость // Вестник Моск. ун-та.
Сер.2.Химия. 2009. Т.50. N.5. С.355-362.122144. Чернышева М.Г. Определение состава и строения поверхностных слоев молекулярных систем с помощью атомарного трития и меченых тритием соединений. Дисс … к.х.н. Москва. 2008.145. Badun G.A., Pozdnyakova V.Yu., Chemysheva M.G., Shchepina N.E., FedoseevV.M. Determination of hydrophobicity and surface activity of substances in systemtoluene - water with help of tritium labeled compounds // Proc. of 8th Int. Sci. Conf."Physical and Chemical Processes on Selection of Atoms and Molecules".Zvenigorod.