يعرض 1 - 4 نتائج من 4 نتيجة بحث عن '"культивируемые клетки"', وقت الاستعلام: 0.35s تنقيح النتائج
  1. 1
    Conference

    المساهمون: Чурин, А. А., Зибарева, Л. Н.

    Relation: Перспективы развития фундаментальных наук : сборник научных трудов XV Международной конференции студентов, аспирантов и молодых ученых, г. Томск, 24-27 апреля 2018 г. Т. 4 : Биология и фундаментальная медицина. — Томск, 2018.; Филонова М. В. Получение каллусной культуры Aconitum barbatum Patr. ex Pers. как источника биологически активных веществ / М. В. Филонова, Е. С. Филоненко; науч. рук. А. А. Чурин, Л. Н. Зибарева // Перспективы развития фундаментальных наук : сборник научных трудов XV Международной конференции студентов, аспирантов и молодых ученых, г. Томск, 24-27 апреля 2018 г. : в 7 т. — Томск : Издательский Дом Томского государственного университета, 2018. — Т. 4 : Биология и фундаментальная медицина. — [С. 158-160].; http://earchive.tpu.ru/handle/11683/50920

  2. 2
    Academic Journal

    المصدر: Vavilov Journal of Genetics and Breeding; Том 23, № 2 (2019); 203-211 ; Вавиловский журнал генетики и селекции; Том 23, № 2 (2019); 203-211 ; 2500-3259 ; 2500-0462

    وصف الملف: application/pdf

    Relation: https://vavilov.elpub.ru/jour/article/view/1937/1201; Akhtar W., de Jong J., Pindyurin A.V., Pagie L., Meuleman W., de Rid- der J., Berns A., Wessels L.F., van Lohuizen M., van Steensel B. Chromatin position effects assayed by thousands of reporters in¬tegrated in parallel. Cell. 2013;154:914-927. DOI 10.1016/j.cell. 2013.07.018.; Akhtar W., Pindyurin A.V., de Jong J., Pagie L., Ten Hoeve J., Berns A., Wessels L.F., van Steensel B., van Lohuizen M. Using TRIP for genome-wide position effect analysis in cultured cells. Nat. Protoc. 2014;9:1255-1281. DOI 10.1038/nprot.2014.072.; Babenko V.N., Makunin I.V., Brusentsova I.V., Belyaeva E.S., Maksi¬mov D.A., Belyakin S.N., Maroy P, Vasil’eva L.A., Zhimulev I.F. Paucity and preferential suppression of transgenes in late replication domains of the D. melanogaster genome. BMC Genomics. 2010;11: 318. DOI 10.1186/1471-2164-11-318.; Babu A., Verma R.S. Chromosome structure: euchromatin and hetero¬chromatin. Int. Rev. Cytol. 1987;108:1-60.; Blundell J.R., Levy S.F. Beyond genome sequencing: lineage tracking with barcodes to study the dynamics of evolution, infection, and can¬cer. Genomics. 2014;104:417-430. DOI 10.1038/nature14279.; Brueckner L., van Arensbergen J., Akhtar W., Pagie L., van Steensel B. High-throughput assessment of context-dependent effects of chro¬matin proteins. Epigenetics Chromatin. 2016;9:43. DOI 10.1186/ s13072-016-0096-y.; Cadinanos J., Bradley A. Generation of an inducible and optimized piggyBac transposon system. Nucleic Acids Res. 2007;35:e87. DOI 10.1093/nar/gkm446.; Chen H.C., Martinez J.P., Zorita E., Meyerhans A., Filion G.J. Position effects influence HIV latency reversal. Nat. Struct. Mol. Biol. 2017; 24:47-54. DOI 10.1038/nsmb.3328.; Chen M., Licon K., Otsuka R., Pillus L., Ideker T. Decoupling epige-netic and genetic effects through systematic analysis of gene posi-tion. Cell Rep. 2013;3:128-137. DOI 10.1016/j.celrep.2012.12.003.; Davidsson M., Diaz-Fernandez P., Schwich O.D., Torroba M., Wang G., Bjorklund T. A novel process of viral vector barcoding and library preparation enables high-diversity library generation and recombination-free paired-end sequencing. Sci. Rep. 2016;6:37563. DOI 10.1038/srep37563.; Dickel D.E., Zhu Y., Nord A.S., Wylie J.N., Akiyama J.A., Afzal V., Plajzer-Frick I., Kirkpatrick A., Gottgens B., Bruneau B.G., Visel A., Pennacchio L.A. Function-based identification of mammalian enhancers using site-specific integration. Nat. Methods. 2014;11:566- 571. DOI 10.1038/nmeth.2886.; Elgin S.C., Reuter G. Position-effect variegation, heterochromatin for-mation, and gene silencing in Drosophila. Cold Spring Harb. Per- spect. Biol. 2013;5:a017780. DOI 10.1101/cshperspect.a017780.; Ernst J., Kheradpour P., Mikkelsen T.S., Shoresh N., Ward L.D., Ep-stein C.B., Zhang X., Wang L., Issner R., Coyne M., Ku M., Dur-ham T., Kellis M., Bernstein B.E. Mapping and analysis of chroma¬tin state dynamics in nine human cell types. Nature. 2011;473:43-49. DOI 10.1038/nature09906.; Filion G.J., van Bemmel J.G., Braunschweig U., Talhout W., Kind J., Ward L.D., Brugman W., de Castro I.J., Kerkhoven R.M., Busse- maker H.J., van Steensel B. Systematic protein location mapping re¬veals five principal chromatin types in Drosophila cells. Cell. 2010; 143:212-224. DOI 10.1016/j.cell.2010.09.009.; Gibson D.G., Young L., Chuang R.Y., Venter J.C., Hutchison C.A. 3rd, Smith H.O. Enzymatic assembly of DNA molecules up to several hundred kilobases. Nat. Methods. 2009;6:343-345. DOI 10.1038/ nmeth.1318.; Gierman H.J., Indemans M.H., Koster J., Goetze S., Seppen J., Geerts D., van Driel R., Versteeg R. Domain-wide regulation of gene expression in the human genome. Genome Res. 2007;17:1286-1295. DOI 10.1101/gr.6276007.; Grewal S.I., Moazed D. Heterochromatin and epigenetic control of gene expression. Science. 2003;301:798-802. DOI 10.1126/science. 1086887.; Handler A.M., Harrell R.A. 2nd. Germline transformation of Droso-phila melanogaster with the piggyBac transposon vector. Insect Mol. Biol. 1999;8:449-457. DOI 10.1046/j.1365-2583.1999.00139.x.; Hill A.J., McFaline-Figueroa J.L., Starita L.M., Gasperini M.J., Mat- reyek K.A., Packer J., Jackson D., Shendure J., Trapnell C. On the design of CRISPR-based single-cell molecular screens. Nat. Me-thods. 2018;15:271-274. DOI 10.1038/nmeth.4604.; Huisinga K.L., Brower-Toland B., Elgin S.C. The contradictory defini¬tions of heterochromatin: transcription and silencing. Chromosoma. 2006;115:110-122. DOI 10.1007/s00412-006-0052-x.; Kebschull J.M., Zador A.M. Cellular barcoding: lineage tracing, screen¬ing and beyond. Nat. Methods. 2018;15:871-879. DOI 10.1038/ s41592-018-0185-x.; Kharchenko P.V., Alekseyenko A.A., Schwartz Y.B., Minoda A., Rid-dle N.C., Ernst J., Sabo P.J., Larschan E., Gorchakov A.A., Gu T., Linder-Basso D., Plachetka A., Shanower G., Tolstorukov M.Y., Luquette L.J., Xi R., Jung Y.L., Park R.W., Bishop E.P., Can¬field T.K., Sandstrom R., Thurman R.E., MacAlpine D.M., Stama- toyannopoulos J.A., Kellis M., Elgin S.C., Kuroda M.I., Pirrotta V., Karpen G.H., Park PJ. Comprehensive analysis of the chromatin landscape in Drosophila melanogaster. Nature. 2011;471:480-485. DOI 10.1038/nature09725.; Kinde I., Wu J., Papadopoulos N., Kinzler K.W., Vogelstein B. Detec-tion and quantification of rare mutations with massively parallel sequencing. Proc. Natl. Acad. Sci. USA. 2011;108:9530-9535. DOI 10.1073/pnas.1105422108.; Lehtonen S.I., Taskinen B., Ojala E., Kukkurainen S., Rahikainen R., Riihimaki T.A., Laitinen O.H., Kulomaa M.S., Hytonen V.P. Effi-cient preparation of shuffled DNA libraries through recombination (Gateway) cloning. Protein Eng. Des. Sel. 2015;28:23-28. DOI 10.1093/protein/gzu050.; Melnikov A., Murugan A., Zhang X., Tesileanu T., Wang L., Rogov P., Feizi S., Gnirke A., Callan C.G., Jr., Kinney J.B., Kellis M., Lan¬der E.S., Mikkelsen T.S. Systematic dissection and optimization of inducible enhancers in human cells using a massively parallel reporter assay. Nat. Biotechnol. 2012;30:271-277. DOI 10.1038/nbt. 2137.; Morrison S.L. Transformation of E. coli by electroporation. Curr. Pro- toc. Immunol. 2001;21(1):A.3N.1-A.3N.4. DOI 10.1002/0471142735. ima03ns21.; Patwardhan R.P., Hiatt J.B., Witten D.M., Kim M.J., Smith R.P., May D., Lee C., Andrie J.M., Lee S.I., Cooper G.M., Ahituv N., Pennacchio L.A., Shendure J. Massively parallel functional dissec-tion of mammalian enhancers in vivo. Nat. Biotechnol. 2012;30:265- 270. DOI 10.1038/nbt.2136.; Patwardhan R.P., Lee C., Litvin O., Young D.L., Pe’er D., Shendure J. High-resolution analysis of DNA regulatory elements by synthetic saturation mutagenesis. Nat. Biotechnol. 2009;27:1173-1175. DOI 10.1038/nbt.1589.; Quail M.A., Smith M., Jackson D., Leonard S., Skelly T., Swerd- low H.P., Gu Y., Ellis P. SASI-Seq: sample assurance Spike-Ins, and highly differentiating 384 barcoding for Illumina sequencing. BMC Genomics. 2014;15:110. DOI 10.1186/1471-2164-15-110.; Riddle N.C., Minoda A., Kharchenko P.V., Alekseyenko A.A., Schwartz Y.B., Tolstorukov M.Y., Gorchakov A.A., Jaffe J.D., Ken¬nedy C., Linder-Basso D., Peach S.E., Shanower G., Zheng H., Ku- roda M.I., Pirrotta V, Park P.J., Elgin S.C., Karpen G.H. Plasticity in patterns of histone modifications and chromosomal proteins in Drosophila heterochromatin. Genome Res. 2011;21:147-163. DOI 10.1101/gr.110098.110.; Ruf S., Symmons O., Uslu V.V., Dolle D., Hot C., Ettwiller L., Spitz F. Large-scale analysis of the regulatory architecture of the mouse genome with a transposon-associated sensor. Nat. Genet. 2011;43: 379-386. DOI 10.1038/ng.790.; Seguin-Orlando A., Schubert M., Clary J., Stagegaard J., Alberdi M.T., Prado J.L., Prieto A., Willerslev E., Orlando L. Ligation bias in Il- lumina next-generation DNA libraries: implications for sequencing ancient genomes. PLoS One. 2013;8:e78575. DOI 10.1371/journal. pone.0078575.; Vvedenskaya I.O., Zhang Y., Goldman S.R., Valenti A., Visone V., Taylor D.M., Ebright R.H., Nickels B.E. Massively Systematic Transcript End Readout, “MASTER”: transcription start site selec-tion, transcriptional slippage, and transcript yields. Mol. Cell. 2015; 60:953-965. DOI 10.1016/j.molcel.2015.10.029.; Wong A.S., Choi G.C., Cui C.H., Pregernig G., Milani P., Adam M., Perli S.D., Kazer S.W., Gaillard A., Hermann M., Shalek A.K., Fraenkel E., Lu T.K. Multiplexed barcoded CRISPR-Cas9 screening enabled by CombiGEM. Proc. Natl. Acad. Sci. USA. 2016;113:2544- 2549. DOI 10.1073/pnas.1517883113.; Woodruff L.B.A., Gorochowski T.E., Roehner N., Mikkelsen T.S., Densmore D., Gordon D.B., Nicol R., Voigt C.A. Registry in a tube: multiplexed pools of retrievable parts for genetic design space exploration. Nucleic Acids Res. 2017;45:1553-1565. DOI 10.1093/ nar/gkw1226.; Yankulov K. Dynamics and stability: epigenetic conversions in position effect variegation. Biochem. Cell Biol. 2013;91:6-13. DOI 10.1139/ bcb-2012-0048.; https://vavilov.elpub.ru/jour/article/view/1937

  3. 3
    Academic Journal

    المصدر: Vestnik Moskovskogo universiteta. Seriya 16. Biologiya; № 1 (2014); 13-18 ; Вестник Московского университета. Серия 16. Биология; № 1 (2014); 13-18 ; 0137-0952

    وصف الملف: application/pdf

    Relation: https://vestnik-bio-msu.elpub.ru/jour/article/view/77/79; Hayflick L. Progress in cytogerontology // Mech. Ageing Dev. 1979. Vol. 9. N 5—6. P. 393—408.; Хохлов А.Н. Пролиферация и старение // Итоги науки и техники ВИНИТИ АН СССР, серия “Общие проблемы физико-химической биологии”. Т. 9. М.: ВИНИТИ, 1988. 176 с.; Хохлов А.Н. Итоги и перспективы цитогеронтологических исследований на современном этапе // Цитология. 2002. Т. 44. № 12. С. 1143—1148.; Khokhlov A.N. Cytogerontology at the beginning of the third millennium: from “correlative” to “gist” models // Russ. J. Dev. Biol. 2003. Vol. 34. N 5. P. 321—326.; Хохлов А.Н. Геронтологические исследования на клеточных культурах: от организма к клетке и обратно // Пробл. старения и долголетия. 2008. Т. 17. № 4. С. 451—456.; Хохлов А.Н. Тестирование геропротекторов в экспериментах на клеточных культурах: за и против // Пробл. старения и долголетия. 2009. Т. 18. № 1. С. 32—36.; Khokhlov A.N. Does aging need its own program, or is the program of development quite sufficient for it? Stationary cell cultures as a tool to search for anti-aging factors // Curr. Aging Sci. 2013. Vol. 6. N 1. P. 14—20.; Hayflick L., Moorhead P.S. The serial cultivation of human diploid cell strains // Exp. Cell Res. 1961. Vol. 25. N 3. P. 585—621.; Hayflick L. The limited in vitro lifetime of human diploid cell strains // Exp. Cell Res. 1965. Vol. 37. N 3. P. 614—636.; Rattan S.I.S. “Just a fellow who did his job.”, an interview with Leonard Hayflick // Biogerontology. 2000. Vol. 1. N 1. P. 79—87.; Campisi J. Cellular senescence: putting the paradoxes in perspective // Curr. Opin. Genet. Dev. 2011. Vol. 21. N 1. P. 107—112.; Sikora E., Arendt T., Bennett M., Narita M. Impact of cellular senescence signature on ageing research // Ageing Res. Rev. 2011. Vol. 10. N 1. P. 146—152.; Campisi J. Aging, cellular senescence, and cancer // Annu. Rev. Physiol. 2013. Vol. 75. P. 685—705.; Оловников А.М. Редумера как недостающее звено в понимании старения человека // Клин. геронтол. 2005. Т. 11. № 1. С. 50—69.; Olovnikov A.M. Hypothesis: lifespan is regulated by chronomere DNA of the hypothalamus // J. Alzheimer’s Dis. 2007. Vol. 11. N 2. P. 241—252.; Olovnikov A.M. Role of paragenome in development // Russ. J. Dev. Biol. 2007. Vol. 38. N 2. P. 104—123.; Khokhlov A.N. Does aging need an own program or the existing development program is more than enough? // Russ. J. Gen. Chem. 2010. Vol. 80. N 7. P. 1507—1513.; Khokhlov A.N. From Carrel to Hayflick and back, or what we got from the 100-year cytogerontological studies // Biophysics. 2010. Vol. 55. N 5. P. 859—864.; Macieira-Coelho A. Cell division and aging of the organism // Biogerontology. 2011. Vol. 12. N 6. P. 503—515.; Khokhlov A.N., Wei L., Li Y., He J. Teaching cytogerontology in Russia and China // Adv. Gerontol. 2012. Vol. 25. N 3. P. 513—516.; Wei L., Li Y., He J., Khokhlov A.N. Teaching the cell biology of aging at the Harbin Institute of Technology and Moscow State University // Moscow Univ. Biol. Sci. Bull. 2012. Vol. 67. N 1. P. 13—16.; Оловников А.М. Принцип маргинотомии в матричном синтезе полинуклеотидов // Докл. АН СССР. 1971. Т. 201. № 6. С. 1496—1499.; Olovnikov A.M. A theory of marginotomy. The incomplete copying of template margin in enzymic synthesis of polynucleotides and biological significance of the phenomenon // J. Theor. Biol. 1973. Vol. 41. N 1. P. 181—190.; Olovnikov A.M. Telomeres, telomerase, and aging: origin of the theory // Exp. Gerontol. 1996. Vol. 31. N 4. P. 443—448.; Mikhelson V.M. Replicative mosaicism might explain the seeming contradictions in the telomere theory of aging // Mech. Ageing Dev. 2001. Vol. 122. N 13. P. 1361—1365.; Vilenchik M.M., Khokhlov A.N., Grinberg K.N. Study of spontaneous DNA lesions and DNA repair in human diploid fibroblasts aged in vitro and in vivo // Studia biophysica. 1981. Vol. 85. N 1. P. 53—54.; Khokhlov A.N. Stationary cell cultures as a tool for gerontological studies // Ann. N.Y. Acad. Sci. 1992. Vol. 663. P. 475—476.; Khokhlov A.N. Cell proliferation restriction: is it the primary cause of aging? // Ann. N.Y. Acad. Sci. 1998. Vol. 854. P. 519.; Akimov S.S., Khokhlov A.N. Study of “stationary phase aging” of cultured cells under various types of proliferation restriction // Ann. N.Y. Acad. Sci. 1998. Vol. 854. P. 520.; Alinkina E.S., Vorobyova A.K., Misharina T.A., Fatkullina L.D., Burlakova E.B., Khokhlov A.N. Cytogerontological studies of biological activity of oregano essential oil // Moscow Univ. Biol. Sci. Bull. 2012. Vol. 67. N 2. P. 52—57.; Yablonskaya O.I., Ryndina T.S., Voeikov V.L., Khokhlov A.N. A paradoxical effect of hydrated C60-fullerene at an ultralow concentration on the viability and aging of cultured Chinese hamster cells // Moscow Univ. Biol. Sci. Bull. 2013. Vol. 68. N 2. P. 63—68.; Kapitanov A.B., Aksenov M.Y. Ageing of procaryotes. Acholeplasma laidlawii as an object for cell ageing studies: a brief note // Mech. Ageing Dev. 1990. Vol. 54. N 3. P. 249—258.; Хохлов А.Н., Ушаков В.Л., Капитанов А.Б., Наджарян Т.Л. Влияние геропротектора хлоргидрата 2-этил-6-метил-3-оксипиридина на пролиферацию клеток Acholeplasma laidlawii // Докл. АН СССР. 1984. Т. 274. № 4. С. 930—933.; Khokhlov A.N. Can cancer cells age? Stationary cell culture approach to the problem solution // Visualizing of senescent cells in vitro and in vivo. Programme and abstracts. Warsaw, Poland, 15—16 December 2012. Warsaw, 2012. P. 48—49.; Khokhlov A.N., Prokhorov L.Yu., Ivanov A.S., Archakov A.I. Effects of cholesterol- or 7-ketocholesterol-containing liposomes on colony-forming ability of cultured cells // FEBS Lett. 1991. Vol. 290. N 1—2. P. 171—172.; Maier A.B., Maier I.L., van Heemst D., Westendorp R.G.J. Colony formation and colony size do not reflect the onset of replicative senescence in human fibroblasts // J. Gerontol. A Biol. Sci. Med. Sci. 2008. Vol. 63. N 7. P. 655—659.; Хохлов А.Н., Чиркова Е.Ю., Наджарян Т.Л. Деградация ДНК в покоящихся культивируемых клетках китайского хомячка // Цитология. 1984. Т. 26. № 8. С. 965—968.; Хохлов А.Н., Чиркова Е.Ю., Чеботарев А.Н. Изменения уровня сестринских хроматидных обменов в культивируемых клетках китайского хомячка при ограничении их пролиферации // Цитология и генетика. 1985. Т. 19. № 2. С. 90—92.; Khokhlov A.N., Chirkova E.Yu., Gorin A.I. Strengthening of the DNA-protein complex during stationary phase aging of cell cultures // Bull. Exp. Biol. Med. 1986. Vol. 101. N 4. P. 437—440.; Хохлов А.Н., Чиркова Е.Ю., Чеботарев А.Н. Изменения уровня сестринских хроматидных обменов в культивируемых клетках китайского хомячка при ограничении их пролиферации. Дополнительные исследования // Цитология и генетика. 1987. Т. 21. № 3. С. 186—190.; Хохлов А.Н., Кирнос М.Д., Ванюшин Б.Ф. Уровень метилирования ДНК и “стационарное старение” культивируемых клеток // Изв. АН СССР. Сер. биол. 1988. № 3. С. 476—478.; Prokhorov L.Yu., Petushkova N.A., Khokhlov A.N. Cytochrome P-450 and “stationary phase aging” of cultured cells // Age. 1994. Vol. 17. N 4. P. 162.; Shram S.I., Shilovskii G.A., Khokhlov A.N. Poly(ADP-ribose)-polymerase-1 and aging: experimental study of possible relationship on stationary cell cultures // Bull. Exp. Biol. Med. 2006. Vol. 141. N 5. P. 628—632.; Есипов Д.С., Горбачева Т.А., Хайруллина Г.А., Клебанов А.А., Нгуен Тхи Нгок Ту, Хохлов А.Н. Изучение накопления 8-оксо-2ў-дезоксигуанозина в ДНК при “стационарном старении” культивируемых клеток // Усп. геронтол. 2008. Т. 21. № 3. С. 485—487.; Vladimirova I.V., Shilovsky G.A., Khokhlov A.N., Shram S.I. “Age-related” changes of the poly(ADP-ribosyl)ation system in cultured Сhinese hamster cells // Visualizing of senescent cells in vitro and in vivo. Programme and abstracts. Warsaw, Poland, 15—16 December 2012. Warsaw, 2012. P. 108—109.; Khokhlov A.N. Evolutionary cytogerontology as a new branch of experimental gerontology // Age. 1994. Vol. 17. N 4. P. 159.; Khokhlov A. N. The cell kinetics model for determination of organism biological age and for geroprotectors or geropromoters studies // Biomarkers of aging: expression and regulation. Proceeding / Eds. F. Licastro, C.M. Caldarera. Bologna: CLUEB, 1992. P. 209—216.; Carrel A. Artificial activation of the growth in vitro of connective tissue // J. Exp. Med. 1912. Vol. 17. N 1. P. 14—19.; Carrel A. Contributions to the study of the mechanism of the growth of connective tissue // J. Exp. Med. 1913. Vol. 18. N 3. P. 287—289.; https://vestnik-bio-msu.elpub.ru/jour/article/view/77

  4. 4
    Academic Journal

    المصدر: Vestnik Moskovskogo universiteta. Seriya 16. Biologiya; № 1 (2015); 9-13 ; Вестник Московского университета. Серия 16. Биология; № 1 (2015); 9-13 ; 0137-0952

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    Relation: https://vestnik-bio-msu.elpub.ru/jour/article/view/109/110; Yoshizawa Y., Tanojo H., Kim S.J., Maibach H.I. Sea water or its components alter experimental irritant dermatitis in man // Skin Res. Technol. 2001. Vol. 7. P. 36—39.; Kimata H., Tai H., Nakagawa K., Yokoyama Y., Nakajima H., Ikegami Y. Improvement of skin symptoms and mineral imbalance by drinking deep sea water in patients with atopic eczema/dermatitis syndrome (AEDS) // Acta Medica (Hradec Kralove). 2002. Vol. 45. N 2. P. 83—84.; Yoshioka S., Hamada A., Cui T., Yokota J., Yamamoto S., Kusunose M., Miyamura M., Kyotani S., Kaneda R., Tsutsui Y., Odani K., Odani I., Nishioka Y. Pharmacological activity of deep-sea water: examination of hyperlipemia prevention and medical treatment effect // Biol. Pharm. Bull. 2003. Vol. 26. N 11. P. 1552—1559.; Tabary O., Muselet C., Miesch M.C., Yvin J.C., Clйment A., Jacquot J. Reduction of chemokine IL-8 and RANTES expression in human bronchial epithelial cells by a sea-water derived saline through inhibited nuclear factor-kB activation // Biochem. Biophys. Res. Commun. 2003. Vol. 309. N 2. P. 310—316.; Miyamura M., Yoshioka S., Hamada A., Takuma D., Yokota J., Kusunose M., Kyotani S., Kawakita H., Odani K., Tsutsui Y., Nishioka Y. Difference between deep seawater and surface seawater in the preventive effect of atherosclerosis // Biol. Pharm. Bull. 2004. Vol. 27. N 11. P. 1784—1787.; Hataguchi Y., Tai H., Nakajima H., Kimata H. Drinking deep-sea water restores mineral imbalance in atopic eczema/dermatitis syndrome // Eur. J. Clin. Nutr. 2005. Vol. 59. P. 1093—1096.; Slapak I., Skoupб J., Strnad P., HornнkP.Efficacy of isotonic nasal wash (seawater) in the treatment and prevention of rhinitis in children // Arch. Otolaryngol. Head Neck Surg. 2008. Vol. 134. N 1. P. 67—74.; Original Quinton [Электронный ресурс]. 2010. (URL: http://www.originalquinton.com/ (дата обращения: 04.09.2014).; Alberola J., Coll F. Marine therapy and its healing properties // Curr. Aging Sci. 2013. Vol. 6. N 1. P. 63—75.; Martнnez-Peinado P., Maseres-Javaloy P., Martнnez-Lуpez J.E., Garcнa-Irles M., Sempere-Ortells J.M. In vitro and in vivo studies to evaluate a potential activity of Quinton Solution on the immune system // International Immunology Meeting Abstracts (Suppl. 1. Pt. 3). Oxford: Oxford University Press, 2010. P. iii93.; Хохлов А.Н. Пролиферация и старение // Итоги науки и техники ВИНИТИ АН СССР. Сер. Общие проблемы физико-химической биологии. Т. 9. М.: ВИНИТИ, 1988. 176 с.; Khokhlov A.N. Stationary cell cultures as a tool for gerontological studies // Ann. N.Y. Acad. Sci. 1992. Vol. 663. P. 475—476.; Khokhlov A.N. Cell proliferation restriction: is it the primary cause of aging? // Ann. N.Y. Acad. Sci. 1998. Vol. 854. P. 519.; Khokhlov A.N. Does aging need its own program, or is the program of development quite sufficient for it? Stationary cell cultures as a tool to search for anti-aging factors // Curr. Aging Sci. 2013. Vol. 6. N 1. P. 14—20.; Khokhlov A.N. Decline in regeneration during aging: appropriateness or stochastics? // Russ. J. Dev. Biol. 2013. Vol. 44 . N 6. P. 336—341.; Khokhlov A.N. Impairment of regeneration in aging: appropriateness or stochastics? // Biogerontology. 2013. Vol. 14. N 6. P. 703—708.; Khokhlov A.N. Evolution of the term “cellular senescence” and its impact on the current cytogerontological research // Moscow Univ. Biol. Sci. Bull. 2013. Vol. 68. N 4. P. 158—161.; Khokhlov A.N. What will happen to molecular and cellular biomarkers of aging in case its program is canceled (provided such a program does exist)? // Adv. Gerontol. 2014. Vol. 4. N 2. P. 150—154.; Khokhlov A.N., Klebanov A.A., Karmushakov A.F., Shilovsky G.A., Nasonov M.M., Morgunova G.V. Testing of geroprotectors in experiments on cell cultures: choosing the correct model system // Moscow Univ. Biol. Sci. Bull. 2014. Vol. 69. N 1. P. 10—14.; Khokhlov A.N. From Carrel to Hayflick and back, or what we got from the 100-year cytogerontological studies // Biophysics. 2010. Vol. 55. N 5. P. 859—864.; Alinkina E.S., Vorobyova A.K., Misharina T.A., Fatkullina L.D., Burlakova E.B., Khokhlov A.N. Cytogerontological studies of biological activity of oregano essential oil // Moscow Univ. Biol. Sci. Bull. 2012. Vol. 67. N 2. P. 52—57.; Yablonskaya O.I., Ryndina T.S., Voeikov V.L., Khokhlov A.N. A paradoxical effect of hydrated C60-fullerene at an ultralow concentration on the viability and aging of cultured Chinese hamster cells // Moscow Univ. Biol. Sci. Bull. 2013. Vol. 68. N 2. P. 63—68.; Khokhlov A.N. Can cancer cells age? Stationary cell culture approach to the problem solution // Visualizing of senescent cells in vitro and in vivo. Programme and abstracts (Warsaw, Poland, 15—16 December 2012). Warsaw, 2012. P. 48—49.; Lewis M.R. Sea water as a medium for tissue cultures // Anat. Rec. 1916. Vol. 10. N 4. P. 287—299.; Berges J.A, Franklin D.J., Harrison P.J. Evolution of an artificial seawater medium: improvements in enriched seawater, artificial water over the last two decades // J. Phycol. 2001. Vol. 37. N 6. P. 1138—1145.; Khokhlov A.N., Wei L., Li Y., He J. Teaching cytogerontology in Russia and China // Adv. Gerontol. 2012. Vol. 25. N 3. P. 513—516.; Wei L., Li Y., He J., Khokhlov A.N. Teaching the cell biology of aging at the Harbin Institute of Technology and Moscow State University // Moscow Univ. Biol. Sci. Bull. 2012. Vol. 67. N 1. P. 13—16.; Khokhlov A.N. The cell kinetics model for determination of organism biological age and for geroprotectors or geropromoters studies // Biomarkers of aging: expression and regulation. Proceeding / Eds. F. Licastro, C.M. Caldarera. Bologna: CLUEB, 1992. P. 209—216.; Moldaver M.V., Yegorov Y.E. Sparse plating increases the heterogeneity of proliferative potential of fibroblasts // Mech. Ageing Dev. 2009. Vol. 130. N 5. P. 337—342.; Бурнаевский Н.С., Вишнякова Х.С., Сафенина А.В., Рыбалко Д.В., Попов К.В., Егоров Е.Е. Влияние парциального давления кислорода на эффективность колониеобразования и дифференцировки мезенхимальных стромальных клеток человека, полученных из различных источников // Клеточная трансплантология и тканевая инженерия. 2010. Т. 5. № 4. С. 24—30.; https://vestnik-bio-msu.elpub.ru/jour/article/view/109