Диссертация (1102418), страница 24
Текст из файла (страница 24)
ГенераловЕ.А.Структураирадиопротекторныесвойстванетоксичного полисахарида из Helianthus Tuberosus L // Биофизика. 2014. - Т. 59. - № 3. - С. 439-445.2. Генералов Е.А. Спектральные характеристики и моносахаридныйсостав противовирусного полисахаридного индуктора интерферона изHelianthus Tuberosus L. // Биофизика.
- 2015. - Т. 60. - № 1. - С. 65-72.3. Генералов Е.А. Водно-растворимый полисахаридtuberosusL.:радиозащитная,изHelianthusколониестимулирующаяииммуномодулирующая активность // Биофизика. - 2015. - Т. 60. - № 1. С. 73-79.4. Генералов Е.А., Афремова А.И.
Молекулярный механизм действияполисахарида из Helianthus tuberosus L. // Биофизика. - 2016. - Т. 61. № 4. - С. 660-668.5. Генералов Е.А., Левашова Н.Т., Сидорова А.Э., Чумаков П.М.,Яковенко Л.В. Автоволновая модель бифуркационного поведениятрансформированныхклетокподдействиемполисахарида//Биофизика. - 2017. - Т. 62. - № 5. - С. 876-881.ПУБЛИКАЦИИ АВТОРА В РЕЦЕНЗИРУЕМЫХ НАУЧНЫХИЗДАНИЯХ ПО ТЕМЕ ДИССЕРТАЦИИ1. Генералов Е.
А. Физико-химические подходы к анализу природныхполисахаридов // AUDITORIUM. - 2015. - Т. 4. - №. 8. - С. 1-17.2. Generalov E.A. Antimetastatic and tumor growth inhibition activity ofpolysaccharide from Helianthus Tuberosus L. // International journal ofcancer prevention research. - 2015. - V. 1. - № 1. - P. 5-10.157ТЕЗИСЫ ДОКЛАДОВ НА НАУЧНЫХ КОНФЕРЕНЦИЯХ1. Генералов Е.А. Стимуляция антителообразующих клеток природнымполисахаридом из Helianthus Tuberosus L. // СПСРФФ. Тезисыконференции.
- 2015. - С. 146-148.2. Генералов Е.А., Генералова Л.В. Влияние полисахарида из Helianthustuberosus L. на число клеток линии RAW 264.7 и синтез TNF-α. // VIIIМеждународная Научная Конференция SCIENCE4HEALTH2017.Тезисы конференции. - 2017. - С. 270.МОНОГРАФИЯ1. Генералов Е.А. Природные полисахариды – Германия: LAP LambertPublishing, 2014. - 87 с.158СПИСОК ЛИТЕРАТУРЫ1.Ju T., Otto V.I., Cummings R.D. The Tn antigen-structural simplicity andbiological complexity // Angew. Chem. Int. Ed. Engl. - 2011. - V. 50.
- № 8.- P. 1770-1791.2.Wennekes T., van den Berg R.J., Boot R.G., et al. Glycosphingolipids –nature, function, and pharmacological modulation // Angew. Chem. Int. Ed.Engl. - 2009. - V. 48. - № 47. - P. 8848-69.3.Somerville C. Cellulose synthesis in higher plants // Annu Rev Cell DevBiol. - 2006. - V. 22. - P. 53-78.4.Weinbaum S., Tarbell J.M., Damiano E.R. The structure and function ofendothelial glycocalix layer // Annu. Rev.
Biomed. Eng. - 2007. - V. 9. - P.121-167.5.Fischer E., Bergmann M. Untersuchungen uber Kohlenhydrate undFermente // J. Springer. - 1909.6.Bertozzi C.R., Kiessling L.L. Chemical glycobiology // Science. - 2001. - V.291. - P. 2357–2364.7.Dennis J.W., Nabi I.R., Demetriou M. Metabolism, cell surface organization,and disease // Cell. - 2009. - V. 139. - P. 1229–1241.8.Parker R.B., Kohler J.J.
Regulation of intracellular signaling byextracellular glycan remodeling // ACS Chem. Biol. - 2010. - V. 5. - P. 35–46.9.Cummings R.D. The repertoire of glycan determinants in the humanglycome // Mol. Biosyst. - 2009. - V. 5. - P. 1087–1104.10.Muthana S.M., Campbell C.T., Gildersleeve J.C. Muthana, S. M.Modificationsofglycans:biologicalsignificanceandtherapeuticopportunities // ACS Chem.
Biol. - 2012. - V. 7. - P. 31-43.11.van Kooyk V., Rabinovich G.A. Protein-glycan interactions in the control ofinnate and adaptive immune responses // Nat. Immunol. - 2008. - V. 9. - P.593-601.15912.Ohtsubo K., Marth J.D. Glycosylation in cellular mechanisms of health anddisease // Cell. - 2006. - V. 126. - P. 855-867.13.Lepenies B., Yin J., Seeberger P.H. Applications of synthetic carbohydratesto chemical biology // Curr.
Opin. Chem. Biol. - 2010. - V. 14. - P. 404-411.14.Laughlin S.T., Bertozzi C.R. Imaging the glycome // Proc. Natl. Acad. Sci.USA. - 2009. - V. 106. - P. 12-17.15.Alley W.R., Mann B.F., Novotny M.V. High-sensitivity analytical approachesfor the structural characterization of glycoproteins // Chem.
Rev. - 2013. - V.113. - P. 2668-2732.16.Laurienzo P. Marine polysaccharides in pharmaceutical applications: anoverview // Marine Drugs. - 2010. - V. 8. - №. 9. - P. 2435-2465.17.Venkatesan J., Lowe B., Anil S., et al. Seaweed polysaccharides and theirpotential biomedical applications // Starch—Stärke. - 2015. - V. 67. - № 5-6.- P. 381-390.18.Valente J.F.A., Valente T.A.M., Alves P., et al. Alginate based scaffolds forbone tissue engineering // Materials Science and Engineering: C. - 2012. - V.32. - № 8. - P. 2596–2603.19.Silva T.H., Alves A., Popa E.G., et al.
Marine algae sulfated polysaccharidesfor tissue engineering and drug delivery approaches // Biomatter. - 2012. V. 2. - № 4. - P. 278–289.20.Popa E.G., Reis R.L., Gomes M.E. Seaweed polysaccharide-based hydrogelsused for the regeneration of articular cartilage // Critical Reviews inBiotechnology. - 2014. - P. 1–14.21.Adriana A., Concetta G., Giovanna S., et al. An exopolysaccharide producedby Geobacillus thermodenitrificans strain B3-72: Antiviral activity onimmunocompetent cells // Immunology Leters. - 2009. - V. 123.
- №. 2. - P.132-137.22.Smith T.F., Aelvoet L., Morrison D.C. The effect of bacteriallipopolysaccharide (LPS) on histamine release from human basophils. I.160enhancement of immunologic release by LPS // Clinical Immunology.Immunopathology. - 1985. - V. 34. - №. 3. - P. 355-365.23.Harkins A.L., Duri S., Kloth L.C., Tran C.D. Harkins, A. L. Chitosancellulose composite for wound dressing material. Part 2. Antimicrobialactivity, blood absorption ability, and biocompatibility // Journal ofbiomedical materials research. Part B, Applied biomaterials.
- 2014. - V.102. - №. 6. - P. 1199-1206.24.Carrow D.J. Beta 1,3 glucan as a primary immune activator // Townsendletter for doctors and patients. - 1996. - V. 156. - P. 86-91.25.Srivastava H.C., Adams G.A. Preparation and properties of polysaccharidelipid complexes from Serratia marcescens // Can. J.
Chem. - 1962. - V. 40. P. 905-918.26.Thornton B.P., Pitman M., Goldman R.C., Ross G.D. Analysis of the sugarspecifity and molecular location of the β-glucan binding lectin site ofcomplement receptor type 3 (CD11b/CD18) // J. Immunol. - 1996. - V. 156.- №. 3.
- P. 1235-1246.27.Ross G.D., Vetvicka V., Yan J., Y. Xia, J. Vetvickova Therapeuticinterventionwithcomplementandβ-glucanincancer//J.Immunopharmacol. - 1999. - V. 42. - P. 61-74.28.Underhill D.M., Ozinsky A., Hajjar A.M., et al. The Toll-like receptor 2 isrecruited to macrophage phagosomes and discriminates between pathogens// Nature. - 1999.
- V. 401. - P. 811-815.29.Brown G.D. Dectin-1: A signaling non-TLR pattern-recognition receptor //Nat. Rev. Immunol. - 2006. - V. 6. - P. 33-44.30.Brown G.D., Gordon S. Fungal β-glucans and mammalian immunity //Immunity. - 2003. - V. 19. - P. 311-315.31.Singh V., Kumar P., Sanghi R. Use of microwave irradiation in the graftingmodification of the polysaccharides–A review // Progress in PolymerScience. - 2012. - V.37. - P. 340-364.16132.Cosgrove D.J. Growth of the plant cell wall // Nature reviews molecular cellbiology.
- 2005. - V. 6. - №. 11. - P. 850-861.33.Ebringerová A., Hromádková Z., Hřı́balová V. et al. Norway sprucegalactoglucomannans exhibiting immunomodulating and radical scavengingactivities / // International Journal of Biological Macromolecules. - 2008. V. 42. - P. 1-5.34.Zhao H.X., Li Y., Wang Y.Z.
et al. Antitumor and immunostimulatoryactivity of a polysaccharide-protein complex from Scolopendra subspinipesmutilans L. Koch in tumor-bearing mice // Food and Chemical Toxicology. 2012. - V. 50. - P. 2648-2655.35.Schepetkin I.A., Quinn M.T. Botanical polysaccharides: Macrophageimmunomodulationandtherapeuticpotential//InternationalImmunopharmacology. - 2006. - V.
6. - P. 317-333.36.Smiderle F.R., Alquini G., Tadra-Sfeir M.Z., et al. Agaricus bisporus andAgaricus brasiliensis (1→6)-β-D-glucans show immunostimulatory activityon human THP-1 derived macrophages / // Carbohydrate Polymers. - 2013. V. 94. - P. 91-99.37.Yang L., L.-M.M. Zhang Chemical structural and chain conformationalcharacterization of some bioactive polysaccharides isolated from naturalsources // Carbohydrate Polymers. - 2009. - V. 76. - P. 349-361.38.Delattre C., Fenoradosoa T.A., Michaud P.
Galactans: an overview of theirmost important sourcing and applications as natural polysaccharides //Brazilian Archives of Biology and Technology. - 2011. - V. 54. - №. 6. - P.1075-1092.39.Хелдт Г.-В. Биохимия растений – М.: Бином. Лаборатория знаний,2011. - 471 c.40.Iguchi C., Nio Y., Takeda H., et al. Plant polysaccharide PSK: cytostaticeffects on growth and invasion; modulating effect on the expression of HLAand adhesion molecules on human gastric and colonic tumor cell surface //Anticancer Research. - 2000. - V.
21. - №. 2A. - P. 1007-1013.16241.Cai W., Xie L., Chen Y., Zhang H. Purification, characterization andanticoagulant activity of the polysaccharides from green tea // CarbohydratePolymers. - 2013. - V. 92. - №. 2. - P. 1086-1090.42.Xie J.H., Shen M.Y., Xie M.Y., et al. Ultrasonic-assisted extraction,antimicrobial and antioxidant activities of Cyclocarya paliurus Batal.Iljinskaja polysaccharides / // Carbohydrate Polymers. - 2012. - V. 89. - P.177-184.43.Yang B., Zhao M., Prasad K.N., et al. Effect of methylation on the structureand radical scavenging activity of polysaccharides from longan Dimocarpuslongan Lour.
fruit pericarp // Food Chem. - 2010. - V. 118. - P. 364-368.44.Simpson R., Morris G.A. The anti-diabetic potential of polysaccharidesextracted from members of the cucurbit family: A review // BioactiveCarbohydrates and Dietary Fibre. - 2014. - V. 3. - P. 106-114.45.Lee J.G., Hsieh W.T., Chen S.U., Chiang B.H. Hematopoietic andmyeloprotective activities of an acidic Angelica sinensis polysaccharide onhuman CD34+ stem cells // Journal of Ethnopharmacology. - 2012. - V.















