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完整後設資料紀錄
DC 欄位 | 值 | 語言 |
---|---|---|
dc.contributor.advisor | 賈景山 | |
dc.contributor.author | Quan-Hau Zheng | en |
dc.contributor.author | 鄭全皓 | zh_TW |
dc.date.accessioned | 2021-06-13T05:51:48Z | - |
dc.date.available | 2011-08-03 | |
dc.date.copyright | 2006-08-03 | |
dc.date.issued | 2006 | |
dc.date.submitted | 2006-07-05 | |
dc.identifier.citation | 呂適佑,2003年。轉糖鏈球菌在實驗性心內膜炎中,引發細胞 激素的表現。國立台灣大學醫學院微生物學研究所碩士論文
1. Ajdic, D., W. M. McShan, R. E. McLaughlin, G. Savic, J. Chang, M. B. Carson, C. Primeaux, R. Tian, S. Kenton, H. Jia, S. Lin, Y. Qian, S. Li, H. Zhu, F. Najar, H. Lai, J. White, B. A. Roe, and J. J. Ferretti. 2002. Genome sequence of Streptococcus mutans UA159, a cariogenic dental pathogen. Proc. Natl. Acad. Sci. U. S. A .99:14434-9. 2. Allen, B. L., B. Katz, and M. Hook. 2002. Streptococcus anginosus adheres to vascular endothelium basement membrane and purified extracellular matrix proteins. Microb. Pathog.32:191-204. 3. Barbosa, M. S., S. N. Bao, P. F. Andreotti, F. P. de Faria, M. S. Felipe, L. dos Santos Feitosa, M. J. Mendes-Giannini, and C. M. Soares. 2006. Glyceraldehyde-3-phosphate dehydrogenase of Paracoccidioides brasiliensis is a cell surface protein involved in fungal adhesion to extracellular matrix proteins and interaction with cells. Infect. Immun. 74:382-9. 4. Batsford, S. R., S. Mezzano, M. Mihatsch, E. Schiltz, and B. Rodriguez-Iturbe. 2005. Is the nephritogenic antigen in post-streptococcal glomerulonephritis pyrogenic exotoxin B (SPE B) or GAPDH? Kidney Int. 68:1120-9. 5. Beighton, D., R. R. Russell, and H. Hayday. 1981. The isolation of characterization of Streptococcus mutans serotype h from dental plaque of monkeys (Macaca fascicularis). J. Gen. Microbiol. 124:271-9. 6. Berry, A. M., and J. C. Paton. 2000. Additive attenuation of virulence of Streptococcus pneumoniae by mutation of the genes encoding pneumolysin and other putative pneumococcal virulence proteins. Infect. Immun. 68:133-40. 7. Burnette-Curley, D., V. Wells, H. Viscount, C. L. Munro, J. C. Fenno, P. Fives-Taylor, and F. L. Macrina. 1995. FimA, a major virulence factor associated with Streptococcus parasanguis endocarditis. Infect. Immun. 63:4669-74. 8. Carrizosa, J., K. Kaye, and W. Kobasa. 1978. Experimental streptococcal endocarditis. The early vegetation. Arch. Pathol. Lab. Med. 102:518-21. 9. Courtney, H. S., D. L. Hasty, and J. B. Dale. 2006. Anti-phagocytic mechanisms of Streptococcus pyogenes: binding of fibrinogen to M-related protein. Mol. Microbiol. 59:936-47. 10. Danilowicz, D. 1995. Infective endocarditis. Pediatr. Rev. 16:148-54. 11. Dankert, J., J. Krijgsveld, J. van Der Werff, W. Joldersma, and S. A. Zaat. 2001. Platelet microbicidal activity is an important defense factor against viridans streptococcal endocarditis. J. Infect. Dis. 184:597-605. 12. Durack, D. T. 1975. Experimental bacterial endocarditis. IV. Structure and evolution of very early lesions. J. Pathol. 115:81-9. 13. Durack, D. T., and P. B. Beeson. 1972. Experimental bacterial endocarditis. II. Survival of a bacteria in endocardial vegetations. Br. J. Exp. Pathol. 53:50-3. 14. Foster, T. J., and D. McDevitt. 1994. Surface-associated proteins of Staphylococcus aureus: their possible roles in virulence. FEMS Microbiol. Lett. 118:199-205. 15. Garcia, P., M. P. Gonzalez, E. Garcia, R. Lopez, and J. L. Garcia. 1999. LytB, a novel pneumococcal murein hydrolase essential for cell separation. Mol. Microbiol. 31:1275-7. 16. Gozalbo, D., I. Gil-Navarro, I. Azorin, J. Renau-Piqueras, J. P. Martinez, and M. L. Gil. 1998. The cell wall-associated glyceraldehyde-3-phosphate dehydrogenase of Candida albicans is also a fibronectin and laminin binding protein. Infect. Immun. 66:2052-9. 17. Hamill, R. J. 1987. Role of fibronectin in infective endocarditis. Rev. Infect. Dis. 9 Suppl 4:S360-71. 18. Hanada, N., and H. K. Kuramitsu. 1989. Isolation and characterization of the Streptococcus mutans gtfD gene, coding for primer-dependent soluble glucan synthesis. Infect. Immun.57:2079-85. 19. Heilmann, C., J. Hartleib, M. S. Hussain, and G. Peters. 2005. The multifunctional Staphylococcus aureus autolysin aaa mediates adherence to immobilized fibrinogen and fibronectin. Infect. Immun. 73:4793-802. 20. Heilmann, C., G. Thumm, G. S. Chhatwal, J. Hartleib, A. Uekotter, and G. Peters. 2003. Identification and characterization of a novel autolysin (Aae) with adhesive properties from Staphylococcus epidermidis. Microbiology 149:2769-78. 21. Herzberg, M. C. 1996. Platelet-streptococcal interactions in endocarditis. Crit. Rev. Oral. Biol. Med. 7:222-36. 22. Hogevik, H., L. Olaison, R. Andersson, J. Lindberg, and K. Alestig. 1995. Epidemiologic aspects of infective endocarditis in an urban population. A 5-year prospective study. Medicine (Baltimore) 74:324-39. 23. J.K., C. 1924. On the bacterial factor in the aetiology of dental caries. J.Exp.Pathol. 5:141-47. 24. Jett, B. D., and M. S. Gilmore. 2002. Internalization of Staphylococcus aureus by human corneal epithelial cells: role of bacterial fibronectin-binding protein and host cell factors. Infect. Immun. 70:4697-700. 25. Jin, H., Y. P. Song, G. Boel, J. Kochar, and V. Pancholi. 2005. Group A streptococcal surface GAPDH, SDH, recognizes uPAR/CD87 as its receptor on the human pharyngeal cell and mediates bacterial adherence to host cells. J. Mol. Biol.350:27-41. 26. Kitten, T., C. L. Munro, A. Wang, and F. L. Macrina. 2002. Vaccination with FimA from Streptococcus parasanguis protects rats from endocarditis caused by other viridans streptococci. Infect. Immun. 70:422-5. 27. Lepidi, H., D. T. Durack, and D. Raoult. 2002. Diagnostic methods current best practices and guidelines for histologic evaluation in infective endocarditis. Infect. Dis. Clin. North Am. 16:339-61, ix. 28. Lowrance, J. H., L. M. Baddour, and W. A. Simpson. 1990. The role of fibronectin binding in the rat model of experimental endocarditis caused by Streptococcus sanguis. J. Clin. Invest. 86:7-13. 29. Maeda, K., H. Nagata, M. Kuboniwa, K. Kataoka, N. Nishida, M. Tanaka, and S. Shizukuishi. 2004. Characterization of binding of Streptococcus oralis glyceraldehyde-3-phosphate dehydrogenase to Porphyromonas gingivalis major fimbriae. Infect. Immun. 72:5475-7. 30. Mani, N., L. M. Baddour, D. Q. Offutt, U. Vijaranakul, M. J. Nadakavukaren, and R. K. Jayaswal. 1994. Autolysis-defective mutant of Staphylococcus aureus: pathological considerations, genetic mapping, and electron microscopic studies. Infect. Immun. 62:1406-9. 31. Massey, R. C., M. N. Kantzanou, T. Fowler, N. P. Day, K. Schofield, E. R. Wann, A. R. Berendt, M. Hook, and S. J. Peacock. 2001. Fibronectin-binding protein A of Staphylococcus aureus has multiple, substituting, binding regions that mediate adherence to fibronectin and invasion of endothelial cells. Cell Microbiol. 3:839-51. 32. Menzies, B. E. 2003. The role of fibronectin binding proteins in the pathogenesis of Staphylococcus aureus infections. Curr. Opin. Infect. Dis. 16:225-9. 33. Milohanic, E., R. Jonquieres, P. Cossart, P. Berche, and J. L. Gaillard. 2001. The autolysin Ami contributes to the adhesion of Listeria monocytogenes to eukaryotic cells via its cell wall anchor. Mol. Microbiol. 39:1212-24. 34. Moreillon, P., Y. A. Que, and A. S. Bayer. 2002. Pathogenesis of streptococcal and staphylococcal endocarditis. Infect. Dis. Clin. North Am. 16:297-318. 35. Mosesson, M. W. 2005. Fibrinogen and fibrin structure and functions. J. Thromb. Haemost.3:1894-904. 36. Mosesson, M. W., K. R. Siebenlist, and D. A. Meh. 2001. The structure and biological features of fibrinogen and fibrin. Ann. N. Y. Acad. Sci. 936:11-30. 37. Nitsche, D. P., H. M. Johansson, I. M. Frick, and M. Morgelin. 2006. Streptococcal protein FOG, a novel matrix adhesin interacting with collagen I in vivo. J. Biol. Chem. 281:1670-9. 38. O'Brien, L., S. W. Kerrigan, G. Kaw, M. Hogan, J. Penades, D. Litt, D. J. Fitzgerald, T. J. Foster, and D. Cox. 2002. Multiple mechanisms for the activation of human platelet aggregation by Staphylococcus aureus: roles for the clumping factors ClfA and ClfB, the serine-aspartate repeat protein SdrE and protein A. Mol. Microbiol. 44:1033-44. 39. Pancholi, V., and V. A. Fischetti. 1992. A major surface protein on group A streptococci is a glyceraldehyde-3-phosphate-dehydrogenase with multiple binding activity. J. Exp. Med. 176:415-26. 40. Pancholi, V., and V. A. Fischetti. 1993. Glyceraldehyde-3-phosphate dehydrogenase on the surface of group A streptococci is also an ADP-ribosylating enzyme. Proc. Natl. Acad. Sci. U. S.A. 90:8154-8. 41. Pancholi, V., and V. A. Fischetti. 1997. Regulation of the phosphorylation of human pharyngeal cell proteins by group A streptococcal surface dehydrogenase: signal transduction between streptococci and pharyngeal cells. J. Exp. Med. 186:1633-43. 42. Que, Y. A., P. Francois, J. A. Haefliger, J. M. Entenza, P. Vaudaux, and P. Moreillon. 2001. Reassessing the role of Staphylococcus aureus clumping factor and fibronectin-binding protein by expression in Lactococcus lactis. Infect. Immun. 69:6296-302. 43. Que, Y. A., J. A. Haefliger, P. Francioli, and P. Moreillon. 2000. Expression of Staphylococcus aureus clumping factor A in Lactococcus lactis subsp. cremoris using a new shuttle vector. Infect. Immun. 68:3516-22. 44. Que, Y. A., J. A. Haefliger, L. Piroth, P. Francois, E. Widmer, J. M. Entenza, B. Sinha, M. Herrmann, P. Francioli, P. Vaudaux, and P. Moreillon. 2005. Fibrinogen and fibronectin binding cooperate for valve infection and invasion in Staphylococcus aureus experimental endocarditis. J. Exp. Med. 201:1627-35. 45. Quivey, R. G., W. L. Kuhnert, and K. Hahn. 2001. Genetics of acid adaptation in oral streptococci. Crit. Rev. Oral. Biol. Med. 12:301-14. 46. Ringdahl, U., H. G. Svensson, H. Kotarsky, M. Gustafsson, M. Weineisen, and U. Sjobring. 2000. A role for the fibrinogen-binding regions of streptococcal M proteins in phagocytosis resistance. Mol .Microbiol.37:1318-26. 47. Roche, F. M., R. Downer, F. Keane, P. Speziale, P. W. Park, and T. J. Foster. 2004. The N-terminal A domain of fibronectin-binding proteins A and B promotes adhesion of Staphylococcus aureus to elastin. J. Biol. Chem. 279:38433-40. 48. Rupp, M. E., P. D. Fey, C. Heilmann, and F. Gotz. 2001. Characterization of the importance of Staphylococcus epidermidis autolysin and polysaccharide intercellular adhesin in the pathogenesis of intravascular catheter-associated infection in a rat model. J. Infect. Dis. 183:1038-42. 49. Shankar, N., C. V. Lockatell, A. S. Baghdayan, C. Drachenberg, M. S. Gilmore, and D. E. Johnson. 2001. Role of Enterococcus faecalis surface protein Esp in the pathogenesis of ascending urinary tract infection. Infect. Immun. 69:4366-72. 50. Shibata, Y., M. Kawada, Y. Nakano, K. Toyoshima, and Y. Yamashita. 2005. Identification and characterization of an autolysin-encoding gene of Streptococcus mutans. Infect. Immun. 73:3512-20. 51. Tanzer, J. M., J. Livingston, and A. M. Thompson. 2001. The microbiology of primary dental caries in humans. J. Dent. Educ. 65:1028-37. 52. van der Meer, J. T., J. Thompson, H. A. Valkenburg, and M. F. Michel. 1992. Epidemiology of bacterial endocarditis in The Netherlands. I. Patient characteristics. Arch. Intern. Med. 152:1863-8. 53. Walsh, E. J., L. M. O'Brien, X. Liang, M. Hook, and T. J. Foster. 2004. Clumping factor B, a fibrinogen-binding MSCRAMM (microbial surface components recognizing adhesive matrix molecules) adhesin of Staphylococcus aureus, also binds to the tail region of type I cytokeratin 10. J. Biol. Chem. 279:50691-9. 54. Westerlund, B., and T. K. Korhonen. 1993. Bacterial proteins binding to the mammalian extracellular matrix. Mol. Microbiol. 9:687-94. 55. Williams, R. J., B. Henderson, and S. P. Nair. 2002. Staphylococcus aureus fibronectin binding proteins A and B possess a second fibronectin binding region that may have biological relevance to bone tissues. Calcif. Tissue Int. 70:416-21. 56. Yamakami, K., N. Yoshizawa, K. Wakabayashi, A. Takeuchi, T. Tadakuma, and M. D. Boyle. 2000. The potential role for nephritis-associated plasmin receptor in acute poststreptococcal glomerulonephritis. Methods 21:185-97. | |
dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/34020 | - |
dc.description.abstract | 感染性心內膜炎是一種高致死率高復發率的心血管感染疾病,轉糖鏈球菌屬於會造成伺機性感染性心內膜炎感染的草綠色鏈球菌之其中一員,而血漿中的成分以及細菌的表面蛋白之間的交互作用在贅疣的形成中扮演著很重要的角色,因此我們使用已建立好的感染性心內膜炎的動物模型,來研究轉糖鏈球菌的表面蛋白在動物體內中形成贅疣的重要性。結果顯示了當使用乳膠小珠(latex beads)來攜帶轉糖鏈球菌表面的相關蛋白時,確實會造成贅疣的形成;反之,攜帶牛血清蛋白的乳膠小珠則不會造成贅疣的產生;另外我們使用了電子顯微鏡及螢光染色的方式在贅疣中觀察到乳膠小珠的存在。而在細菌的表面蛋白中,纖維蛋白原以及纖維結合素的結合蛋白,在抵抗白血球的吞噬作用以及促使細菌黏附到心臟瓣膜上,都佔有相當重要的功能,也因此我們可藉由動物實驗,來研究轉糖鏈球菌其中一個具有纖維蛋白原以及纖維結合素結合蛋白的表面蛋白,Fngb。當和野生株GS5相比較時,fngb的突變株會造成比較輕微的感染性心內膜炎,此外贅疣也比較小且分離出的細菌也較少,這些結果證實了細菌的表面蛋白在贅疣形成確實扮演了重要的角色。 | zh_TW |
dc.description.abstract | Infective endocarditis (IE) is an infectious disease of the cardiovascular system, and carries a high recurrence and mortality rate. Streptococcus mutans, a member of viridans streptococci, is one of the major opportunistic pathogens for causing IE. The interactions of plasma components with bacterial surface proteins play important roles in vegetation formation. Using experimental infective endocarditis rat model, we investigated the role of bacterial surface proteins in vegetation formation in vivo. Latex beads coated with cell-wall assaciated proteins of S. mutans could induce vegetaion formation directly; in contrast latex beads coated with bovine serum albumin could not. The beads could be detected in vegetation by transmisson electron microscope and immunofluorescent staining. Among bacterial surface proteins, fibrinogen and fibronetin binding proteins are important for bacteria escaping from leukocyte phagocytosis and attachment to heart valve. Fngb, one of S. mutans fibrinogen (fibronectin) binding proteins, was also studied in vivo. When compared with wild type strain, the fngb mutant caused milder infective endocarditis. Vegetation in smaller size and less number of bacteria colonized was isolated from fngb null mutant induced vegetation. These results demonstrated bacterial surface protein play an important role in vegetation formation in vivo. | en |
dc.description.provenance | Made available in DSpace on 2021-06-13T05:51:48Z (GMT). No. of bitstreams: 1 ntu-95-R93450010-1.pdf: 3609078 bytes, checksum: 3ae39b621393b33e62042c83d15a5267 (MD5) Previous issue date: 2006 | en |
dc.description.tableofcontents | 中文摘要………………………………………………………………6
英文摘要………………………………………………………………7 壹、緒論 一、轉糖鏈球菌介紹………………………………………………8 二、感染性心內膜炎 1.感染性心內膜炎的產生及相關臨床症狀………………11 2.致病機轉…………………………………………………13 3.血小板活化………………………………………………15 三、細菌引起心內膜炎之相關毒力因子……………………16 1.纖維蛋白原…………………………………………………18 2.細菌纖維蛋白原結合蛋白…………………………………19 3.纖維結合素…………………………………………………20 4.細菌的纖維結合素結合蛋白………………………………21 5.甘油-3磷酸去氫酶…………………………………………22 6.乙醯基溶菌酶………………………………………………23 四、研究目的及實驗設計……………………………………………24 貳、實驗材料與方法…………………………………………………26 參、結果………………………………………………………………36 肆、討論………………………………………………………………42 圖表……………………………………………………………………47 伍、參考文獻…………………………………………………………61 | |
dc.language.iso | zh-TW | |
dc.title | 轉糖鏈球菌表面蛋白在感染性心內膜炎中贅疣形成之角色 | zh_TW |
dc.title | Role of Streptococcus mutans surface proteins in vegetation formation during infective endocarditis | en |
dc.type | Thesis | |
dc.date.schoolyear | 94-2 | |
dc.description.degree | 碩士 | |
dc.contributor.oralexamcommittee | 郭彥彬,張百恩,樓國隆 | |
dc.subject.keyword | 心內膜炎, | zh_TW |
dc.subject.keyword | infective endocarditis, | en |
dc.relation.page | 66 | |
dc.rights.note | 有償授權 | |
dc.date.accepted | 2006-07-05 | |
dc.contributor.author-college | 醫學院 | zh_TW |
dc.contributor.author-dept | 口腔生物科學研究所 | zh_TW |
顯示於系所單位: | 口腔生物科學研究所 |
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