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Антифосфолипидный синдром - Насонов Е.Л.

Насонов Е.Л. Антифосфолипидный синдром — М.: Литтерра, 2004. — 440 c.
ISBN 5-98216-010-5
Скачать (прямая ссылка): antisindrom2004.pdf
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18. Andrian MA, Colonna F, Morio F, et al. Comparison of different kits in the detection of autoantibodies to cardiolipin and beta2 glycoprotein 1. Rheumatology (Oxford). 2004; 43:181—185.
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20. Boffa MC, Berard M, Sugi T, et al. Anti-phosphatidulethanolamine antibodies as the only antiphospholipid antibodies detected by ELISA II Kininigen reactivity. J Rheumatol 1996; 23: 1375—1379.
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26. Matsuda J, Saiton N, Gohchi K, et al. Distinguising ?2-glycoprotein I dependent (systemic lupus erithematosus type) and independent (syphilis type) anticardiolipin antibody witch tween 20. Br J Haematol 1993; 85: 799—802.
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28. Cabral AR, Cabiedes J, Alarcon-Segovia D. Tween-20 detaches cardiolipin from ELISA plates and maker anticardiolipin antibodies undetectable regardless of the presence of ?2-gly-coprotein I. J Immunol Methods 1994; 175: 107—114.
29. Hunt JE, McNeil HB, Morgan GJ, et al. A phospholipid-?2-glycoprotein-I complex is an antigen for anticardiolipin antibodies occurring in autoimmune disease but not with infection. Lupus 1992; 1: 75—81.
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31. McNeil HP, Simpson RJ, Chesterman CN, Krilis SA. Antiphospholipid antibodies are directed against a complex antigen that includes a lipid-binding inhibitor of coagulation: ?2-glycoprotein-I (apoliprotein H). Proc Natl Acad Sci USA. 1990; 87: 4120—4124.
32. Roubey RA. Antigenic specifities of antiphos-pholipid antibodies implications for clinical laboratory testing and diagnosis of the antiphospho-lipid syndrome. Lupus 1996; 5: 425—430.
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Насонов Е.Л. Антифосфолипидный синдром.
cofactor in different animal sera. J Clin Lab Anal 1994; 8: 167—171.
34. Matsuura E, Igarashi Y, Yasuda T, Triplett D, Koike T. Anticardiolipin antibodies recognize beta 2-glycoprotein I structure altered by interacting with an oxygen modified solid phase surface. J Exp Med 1994; 179: 457—462.
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36. Roubey RAS, Eisenberg RA., Harper MF, Winfield JB. "Anticardiolipin" autoantibodies recognize beta2-glycoprotein I in the absence of phospholipid. Importance of antigen density and bivalent binding. J Immunol 1995: 154: 954— 960.
37. Hunt J, Krilis S. The fifth domain of beta2-glycoprotein I containes a phosphilipid binding site (cys281-cys288), and region recognised by anti-cardiolipin antibodies. J Immunol 1994;152: 653—659.
38. OhKura N, Magihara Y, Yoshimura T, et al. Plasmin can reduse the function of human ?2-glycoprotein I by clearity domain Vinto a nicked form. Blood 1998; 91: 4173—4179.
39. Arvieux J, Regnault V, Hachulla E, et al. Heterogeneity and immunochemical properties of anti-beta2-glycoprotein-I autoantibodies. Thromb Haemostasis 1998; 80: 393—398.
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41. Forastiero RR, Martinuzzo ME, Cerrato GS, et al. Relationship of anti- 2 -glycoprotein I and antiprothrombin antibodies to thrombosis and pregnancy loss in patients with antiphospholipid antibodies. Thromb Haemost 1997; 78:1008— 1014.
42. Koike T, Matsuura E. Anti-?2-glycoprotein I antibodie: specificity and clinical significance. Lupus 1996; 5: 378—380.
43. Sheng Y, Kandiah DA., Krilis SA. et al. Anti-? 2-glycoprotein I antibodies from patients with the "antiphospholipid" syndrome bind to 2-glycoprotein I witch low affinity dimerization of ?2-glycoprotein I induces a significant increase in
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