バセドウ病
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^ a b c d 森昌朋、甲状腺診療のガイドライン 『日本内科学会雑誌』 2011年 100巻 3号 p.712-716, doi:10.2169/naika.100.712
^ a b c d Nagata K, Kumata K, Nakayama Y, Satoh Y, Sugihara H, Hara S, Matsushita M, Kuwamoto S, Kato M, Murakami I, Hayashi K (2017). "Epstein-Barr Virus Lytic Reactivation Activates B Cells Polyclonally and Induces Activation-Induced Cytidine Deaminase Expression: A Mechanism Underlying Autoimmunity and Its Contribution to Graves' Disease". Viral Immunology. 30 (3): 240-249., PMC 5393416, .mw-parser-output cite.citation{font-style:inherit;word-wrap:break-word}.mw-parser-output .citation q{quotes:"\"""\"""'""'"}.mw-parser-output .citation.cs-ja1 q,.mw-parser-output .citation.cs-ja2 q{quotes:"「""」""『""』"}.mw-parser-output .citation:target{background-color:rgba(0,127,255,0.133)}.mw-parser-output .id-lock-free a,.mw-parser-output .citation .cs1-lock-free a{background:url("//upload.wikimedia.org/wikipedia/commons/6/65/Lock-green.svg")right 0.1em center/9px no-repeat}.mw-parser-output .id-lock-limited a,.mw-parser-output .id-lock-registration a,.mw-parser-output .citation .cs1-lock-limited a,.mw-parser-output .citation .cs1-lock-registration a{background:url("//upload.wikimedia.org/wikipedia/commons/d/d6/Lock-gray-alt-2.svg")right 0.1em center/9px no-repeat}.mw-parser-output .id-lock-subscription a,.mw-parser-output .citation .cs1-lock-subscription a{background:url("//upload.wikimedia.org/wikipedia/commons/a/aa/Lock-red-alt-2.svg")right 0.1em center/9px no-repeat}.mw-parser-output .cs1-ws-icon a{background:url("//upload.wikimedia.org/wikipedia/commons/4/4c/Wikisource-logo.svg")right 0.1em center/12px no-repeat}.mw-parser-output .cs1-code{color:inherit;background:inherit;border:none;padding:inherit}.mw-parser-output .cs1-hidden-error{display:none;color:#d33}.mw-parser-output .cs1-visible-error{color:#d33}.mw-parser-output .cs1-maint{display:none;color:#3a3;margin-left:0.3em}.mw-parser-output .cs1-format{font-size:95%}.mw-parser-output .cs1-kern-left{padding-left:0.2em}.mw-parser-output .cs1-kern-right{padding-right:0.2em}.mw-parser-output .citation .mw-selflink{font-weight:inherit}PMID 2833576, doi:10.1089/vim.2016.0179
^ a b c 長田佳子、林一彦 ⇒「EBウイルスはバセドウ病の発症や憎悪の最終因子となる」臨床免疫・アレルギー科 = Clinical immunology & allergology. 66 (3), 261-266, 2016-09. 科学評論社
^ 長田佳子、林一彦、 ⇒臨床免疫・アレルギー科 第66巻第3号(2016年9月発行) 出版:科学評論社 , ISSN 1881-1930, NAID 40020953161
^ a b Nagata K, Fukata S, Kanai K, Satoh Y, Segawa T, Kuwamoto S, Sugihara H, Kato M, Murakami I, Hayashi K, Sairenji T (2011). "The influence of Epstein-Barr virus reactivation in patients with Graves' disease". Viral Immunology. 24 (2): 143-9., PMID 21449724, doi:10.1089/vim.2010.0072.
^ a b Nagata K, Higaki K, Nakayama Y, Miyauchi H, Kiritani Y, Kanai K, Matsushita M, Iwasaki T, Sugihara H, Kuwamoto S, Kato M, Murakami I, Nanba E, Kimura H, Hayashi K (2015). "Presence of Epstein-Barr virus-infected B lymphocytes with thyrotropin receptor antibodies on their surface in Graves' disease patients and in healthy individuals". Autoimmunity. 47 (3):193-200., PMC 5351790, PMID 24467196, doi:10.3109/08916934.2013.8798.
^ a b Nagata K, Nakayama Y, Higaki K, Ochi M, Kanai K, Matsushita M, Kuwamoto S, Kato M, Murakami I, Iwasaki T, Nanba E, Kimura H, Hayashi K (2015). "Reactivation of persistent Epstein-Barr virus (EBV) causes secretion of thyrotropin receptor antibodies (TRAbs) in EBV-infected B lymphocytes with TRAbs on their surface". Autoimmunity. 48 (5): 328-35., PMID 25759125, doi:10.3109/08916934.2015.1022163
^ a b Nagata K, Okuno K, Ochi M, Kumata K, Sano H, Yoneda N, Ueyama J, Matsushita M, Kuwamoto S, Kato M, Murakami I, Kanzaki S, Hayashi K (2015). "Production of thyrotropin receptor antibodies in acute phase of infectious mononucleosis due to Epstein-Barr virus primary infection: a case report of a child". Springerplus. 27; 4: 456., PMC 4549369, PMID 26322262, doi:10.1186/s40064-015-1236-8
^ a b Kumata K, Nagata K, Matsushita M, Kuwamoto S, Kato M, Murakami I, Fukata S, Hayashi K (2016). "Thyrotropin Receptor Antibody (TRAb)-IgM Levels Are Markedly Higher Than TRAb-IgG Levels in Graves' Disease Patients and Controls, and TRAb-IgM Production Is Related to Epstein-Barr Virus Reactivation". Viral Immunology. 29 (8): 459-463., PMID 27529807, doi:10.1089/vim.2016.0043
^ Takeshima, Ken; Inaba, Hidefumi; Furukawa, Yasushi; Nishi, Masahiro; Yamaoka, Hiroyuki; Miyamoto, Waka; Ota, Takayuki; Doi, Asako et al. (2014-4). “Elevated serum immunoglobulin G4 levels in patients with Graves' disease and their clinical implications”. Thyroid: Official Journal of the American Thyroid Association 24 (4): 736?743. doi:10.1089/thy.2013.0448. ISSN 1557-9077. PMID 24256421. https://www.ncbi.nlm.nih.gov/pubmed/24256421. 
^ Aalberse, R. C.; Stapel, S. O.; Schuurman, J.; Rispens, T. (2009-4). “Immunoglobulin G4: an odd antibody”. Clinical and Experimental Allergy: Journal of the British Society for Allergy and Clinical Immunology 39 (4): 469?477. doi:10.1111/j.1365-2222.2009.03207.x. ISSN 1365-2222. PMID 19222496. https://www.ncbi.nlm.nih.gov/pubmed/19222496. 
^ Nirula, Ajay; Glaser, Scott M.; Kalled, Susan L.; Taylor, Frederick R.; Taylora, Frederick R. (2011-1). “What is IgG4? A review of the biology of a unique immunoglobulin subtype”. Current Opinion in Rheumatology 23 (1): 119?124. doi:10.1097/BOR.0b013e3283412fd4. ISSN 1531-6963. PMID 21124094. https://www.ncbi.nlm.nih.gov/pubmed/21124094. 
^ Henle, W.; Henle, G. E.; Horwitz, C. A. (1974-9). “Epstein-Barr virus specific diagnostic tests in infectious mononucleosis”. Human Pathology 5 (5): 551?565. ISSN 0046-8177. PMID 4368691. https://www.ncbi.nlm.nih.gov/pubmed/4368691. 
^ Samanta, M.; Iwakiri, D.; Takada, K. (2008-07-10). “Epstein-Barr virus-encoded small RNA induces IL-10 through RIG-I-mediated IRF-3 signaling”. Oncogene 27 (30): 4150?4160. doi:10.1038/onc.2008.75. ISSN 1476-5594. PMID 18362887. https://www.ncbi.nlm.nih.gov/pubmed/18362887. 
^ Manz, R. A.; Thiel, A.; Radbruch, A. (1997-07-10). “Lifetime of plasma cells in the bone marrow”. Nature 388 (6638): 133?134. doi:10.1038/40540. ISSN 0028-0836. PMID 9217150. https://www.ncbi.nlm.nih.gov/pubmed/9217150. 
^ 1950-, Parham, Peter, (2009). The immune system. Janeway, Charles. (3rd ed ed.). London: Garland Science. ISBN 9780815341468. OCLC 240989634. https://www.worldcat.org/oclc/240989634 
^ Canfield, S. M.; Morrison, S. L. (1991-06-01). “The binding affinity of human IgG for its high affinity Fc receptor is determined by multiple amino acids in the CH2 domain and is modulated by the hinge region”. The Journal of Experimental Medicine 173 (6): 1483?1491. ISSN 0022-1007. PMC 2190830. PMID 1827828. https://www.ncbi.nlm.nih.gov/pubmed/1827828. 
^ van der Neut Kolfschoten, Marijn; Schuurman, Janine; Losen, Mario; Bleeker, Wim K.; Martinez-Martinez, Pilar; Vermeulen, Ellen; den Bleker, Tamara H.; Wiegman, Luus et al. (2007-09-14). “Anti-inflammatory activity of human IgG4 antibodies by dynamic Fab arm exchange”. Science (New York, N.Y.) 317 (5844): 1554?1557. doi:10.1126/science.1144603. ISSN 1095-9203. PMID 17872445. https://www.ncbi.nlm.nih.gov/pubmed/17872445. 
^ Tao, M. H.; Smith, R. I.; Morrison, S. L. (1993-08-01). “Structural features of human immunoglobulin G that determine isotype-specific differences in complement activation”. The Journal of Experimental Medicine 178 (2): 661?667. ISSN 0022-1007. PMC 2191116. PMID 8340761. https://www.ncbi.nlm.nih.gov/pubmed/8340761. 

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