Диссертация (1140110), страница 20
Текст из файла (страница 20)
– 2003. – №27. –Р. 341–349.136. Ogino H., Fujii M., Maezawa K., Hori S., Kiju J. In vivo and in vitro effects offluoroquinolones on lipopolysaccharide-induced pro-inflammatory cytokine production // J.Infect. Chemother. – 2009. – №15. – Р. 168–173.137. Olsen I., Yilmaz Ö. Modulation of inflammasome activity by Porphyromonasgingivalis in periodontitis and associated systemic diseases // J. Oral Microbiol.
– 2016. –№4. – Р. 83–85.138. Ouhara K., Komatsuzawa H., Shibata H., Uchida Y., Kawai T.,Sayama K., Hashimoto K., Taubman M.A., Kurihara H.. Sugai M. Actinobacillusactinomycetemcomitans outer membrane protein 100 triggers innate immunity and107production of beta-defensin and 18-kilodalton cationic antimicrobial protein throughthe fibronectin- integrin pathway in human gingival epithelial cells // Infect Immun. –2006. – №74. – Р. 5211–5220.139.
Ouhara K., Komatsuzawa H., Yamada S., Shiba H., Fujiwara T.,Ohara M., Sayama K., Hashimoto K., Kurihara H., Sugai M. Susceptibilities ofperiodontopathogenic and cariogenic bacteria to antibacterial peptides, -defensins andLL37, produced by human epithelial cells // Antimicrob Agents Chemother. – 2005. –№55. – Р.
888–896.140. Page R.C., Offenbacher S., Schroeder H.E., Seymour G.J., Kornman K.S. Advancesin the pathogenesis of periodontitis: summary of developments, clinical implications andfuture directions // Periodontol 2000. – 1997. – №14. – Р. 216–248.141.
Park O.J., Choi Y., Chung C.P., Kim K.K., Kim M.H., Ku Y., Shin S.Y. Theassociation of osteoprotegerin gene polymorphisms with periodontitis // Oral Dis. – 2008. –Vol. 14, № 5. – P. 440–444.142. Pazgier M., Hoover D.M., Yang D., Lu W., Lubkowski J. Human beta-defensins// Cell Mol Life Sci. – 2006. – №63. – Р. 1294–1313.143. Pomorska-Mol M.., Pejsak Z.
Effects of antibiotics on acquired immunity in vivo– current state of knowledge // Pol.J.Vet.Sci. – 2012. – №15(3). – Р. 583–588.144. Philip N. H., Dillon C. P., Snyder A. G., Fitzgerald P., Wynosky-Dolfi M. A.,Zwack E. E., Brodsky I. E. Caspase-8 mediates caspase-1 processing and innate immunedefense in response to bacterial blockade of NF-κB and MAPK signaling // Proceedings ofthe National Academy of Sciences of the United States of America.
– 2014. – №111(20). –Р. 7385–7390.145. Pulendran B., Kumar P., Cutler C.W., Mohamadzadeh M., Van Dyke T., BanchereauJ.. Lipopolysaccharides from distinct pathogens induce different classes of immune responsesin vivo // J. Immunol 2001. – №167. – Р. 5067–5076.146. Rakoff-Nahoum S., Paglino J., Eslami-Varzaneh F., Edberg S., Medzhitov R..Recognition of commensal microflora by Toll-like receptors is required for intestinalhomeostasis // Cell. – 2004.
–№18. – Р. 229–241.147. Rana R.R., Zhang M., Spear A.M., Atkins H.S., Byrne B.. Bacterial TIRcontaining proteins and host innate immune system evasion // Med Microbiol Immunol. –2013. – №202(1). – Р. 1–10.108148. Reddi D., Bostanci N., Hashim A., Aduse-Opoku J., Curtis M.A., Huges F.G.,Belibasakis G.N. Porphyromonas gingivalis regulates the RANKL-OPG system in bonemarrow stromal cells // Microbes Infect. – 2008.
– Vol. 10, № 14-15. – P. 1459–1468.149.Ren L., Jiang Z.Q., Fu Y., Leung W.K., Jin L.. The interplay of lipo- polysaccharidebinding protein and cytokines in periodontal health and disease // J. Clin Periodontol. – 2009.– №36. – Р. 619–626.150. Ren L., Leung W.K., Darveau R., Jin L.. The expression profile oflipopolysaccharide-binding protein, membrane-bound CD14, and Toll-like receptors 2 and 4in chronic periodontitis // J Periodontol. – 2005.
–№76. – Р. 1950–1959.151.Rollins B.J. Monocyte chemoattractant protein I: a potent regulator of monocyterecruitment in inflammatory dis- ease // Mol. Med. Today. – 1996. – №25. – Р. 198–204.152. Ruwanpura S.M., Noguchi K., Ishikawa I. Prostaglandin E2 regulates interleukin1beta-induced matrix metalloproteinase-3 production in human gingival fibroblasts // J.Dent Res. – 2004. – №83.
– Р. 260–265.153. Sawaki K., Mizukawa N.,Yamaai T., Fukunaga J., Sugahara T. Immunohistochemicalstudy on expression of alpha-defensin and beta-defensin-2 in human buccal epithelia withcandidiasis // Oral Dis. – 2002. – №8. – Р.
37–41.154. Schutte B.C., Mitros J.P., Bartlett J.A., Walters J.D., Jia H.P., Welsh M.J.,Casavant T.L., McCray P.B. Discovery of five conserved beta-defensin gene clustersusing a computational search strategy // Proc Natl Acad Sci U S A. – 2002.
– №99. –Р. 2129–2133.155. Shaddox L.M., Gonçalves P.F., Vovk A. LPS-induced inflammatory responseafter therapy of aggressive periodontitis // J. Dent Res. – 2013 – №92(8). – P. 702–708.156. Shalit I., Horev-Azaria L., Fabian I., Blau H., Karív N., Shechtman I., AlterazH., Kletter Y. Immunomodulatory and protective effects of moxifloxacin against Candidaalbicans-induced bronchopneumonia in mice injected with cyclophosphamide // Antimicrob.Agents Chemother. – 2002. – №46.
– Р. 2442–2449.157. Shibata Y., Clin. J.// Analysis of loci required for determination of serotypeantigenicity in Streptococcus mutans and its clinical utilization // Microbiol. – 2003. – Vol.41. № 9. – Р. 4107–4112.158. Smith M., Seymour G.J., Cullinan M.P.. Histopathological features of chronicand aggressive periodontitis // Period- ontol 2000. – 2010. – №53. – Р. 45–54.109159.
Stevens D.L.; Ma Y.; Salmi D.B.; McIndoo E.; Wallace R.J.; Bryant A.E. Impactof antibiotics on expression of virulence-associated exotoxin genes in methicillin-resistantStaphylococcus aureus // J. Infect. Dis. – 2007. – Р.195, 202–211.160. Sugawara Y., Uehara A., Fujimoto Y., Kusumoto S., Fukase K., Shibata K.,Sugawara S., Sasano T., Takada H. Toll-like receptors, NOD1 and NOD2 in oral epithelialcells // J. Dent Res.
– 2006. – №85. – Р. 524–529.161. Taguchi Y., Imai H. Expression of beta-defensin-2 in human gingival epithelialcells in response to challenge with Porphyromonas gingivalis in vitro // J. Periodont Res. –2006. – №41. – Р. 334–339.162. Takeda K., Akira S. Toll-like receptors in innate immunity // Int Immunol.
–2005. – №17. – Р. 1–14.163. Takeuchi O.; Akira S. Pattern recognition receptors and inflammation // Cell. –2010. – №140. – Р. 805–820.164. Trevani A.S., Chorny A., Salamone G., Vermeulen M., Gamberale R., SchettiniJ., Raiden S., Geffner J. Bacterial DNA activates human neutrophils by a CpG-independentpathway // Eur J Immunol. – 2003. – №33.
– Р. 3164–3174.165. Vankeerberghen A., Nuytten H., Dierickx K., Quirynen M., Cassiman J.J.,Cuppens H. Differential induction of human beta-defensin expression by periodontalcommensals and pathogens in periodontal pocket epithelial cells // J.
Periodontol. – 2005. –№76. – Р. 1293–1303.166. Vardar-Sengul S., Demirci T., Seng B.H., Erkizan V., Kurulgan E., Baylas H..Human β-defensin-1 and -2 expression in the gingival of patients with specific periodontaldiseases // J. Periodontal Res. – 2007. – №42. – Р.
429–437.167. Wahl S.M., Costa G.L., Mizel D.E., Allen J.B., Skaleric U., Mangan D.F. Roleof transforming growth factor beta in the pathophysiology of chronic inflammation // J.Periodontol. – 1993. – №64(5). – Р. 450–455.168. Weinberg A., Krisanaprakornkit S., Dale B.A. Epithelial antimicrobial peptides:review and significance for oral applications // Crit. Rev.
Oral. Biol. Med. – 1998. – №9. – Р.399–414.169. Weinberg A., Quinones-Mateu M.E., Lederman M.M. Role of human betadefensins in HIV infection // Adv. Dent. Res. – 2006. – №19. – Р. 42–48.110170. Yang D., Chertov O., Bykovskaia S.N., Chen Q., Buffo M.J., Shogan J., AndersonM., Schro¨der J.M., Wang J.M., Howard O.M., Oppenheim J.J. Beta-defensins: linking innateand adaptive immunity through dendritic and T cell CCR6 // Science.
– 1999. – №286. –Р. 525–528.171. Yoshimura A., Kaneko T., Kato Y., Golenbock D.T., Hara Y. Lipopolysaccharidesfrom periodontopathic bacteria Porphyromonas gingivalis and Capnocytophaga ochracea areantagonists for human toll-like receptor 4 // Infect Immun. – 2002. – №70. – Р. 218–225.172. Yoshimura A., Wakabayashi Y/, Mori T. Cellular and molecular basis for theregulation of inflammation by TGF-b // The Journal of Biochemistry.
– 2010. – vol.147. –№6. – Р. 781–792.173. Zadeh H.H., Kreutzer D.L. Evidence for involvement of superantigens in humanperiodontal diseases: skewed expression of T cell receptor variable regions by gingival Tcells // Oral Microbiological Immunology. – 2006. – №11(2). – Р. 88–95.174. Zelkha S.A., Freilich R.W., Amar S. Periodontal Innate Immune MechanismsRelevant to Atherosclerosis and Obesity // Periodontol-2000. – 2011. – №54(1). –Р. 207–211.175. Zhou J., Zou S., Zhao W., Zhao Y.. Prostaglandin E2 level in gingival crevicularfluid and its relation to the periodontal pocket depth in patients with periodontitis // J.
Chin.Med. Sci. – 1994. – №9. – Р. 52–55.176. Здравоохранение в России, 2017 г. Статистический сборник. – М., 2017 г. –48 с..















