Hyperacute lung rejection in a pig-to-human transplant model - The role of anti-pig antibody and complement

被引:44
|
作者
Pierson, RN
KasperKonig, W
Tew, DN
Young, VK
Dunning, JJ
Horsley, J
Carey, NRB
Wallwork, J
White, DJG
机构
[1] PAPWORTH HOSP,TRANSPLANT UNIT,PAPWORTH EVRARD,ENGLAND
[2] IMUTRAN LTD,CAMBRIDGE,ENGLAND
[3] UNIV CAMBRIDGE,NEW ADDENBROOKES HOSP,DEPT SURG,CAMBRIDGE CB2 1TN,ENGLAND
[4] UNIV CAMBRIDGE,NEW ADDENBROOKES HOSP,DEPT ANESTHESIA,CAMBRIDGE CB2 1TN,ENGLAND
[5] MASSACHUSETTS GEN HOSP,DEPT SURG,BOSTON,MA 02114
关键词
D O I
10.1097/00007890-199702270-00019
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Background. The physiology of hyperacute rejection of pig lung by human blood and the role of antispecies antibody and complement in this phenomenon have not previously been characterized, Methods. Human blood was perfused through an ex vivo pig heart-lung preparation. In the treatment groups, blood was either unmodified or modified to deplete alternative pathway complement (heat treatment), anti-pig antibody, or both, Control experiments were performed with unmodified and heat-treated pig blood, Physiologic parameters, organ survival, and immunohistology were the primary outcome measures assessed. Results. Pig lung was consistently damaged by human blood within 45 min (median 20 min), as evidenced by elevated pulmonary vascular resistance and parenchymal injury, Immunohistologic studies of perfused lungs showed prominent deposition of IgM and classical pathway component, C4, and weaker deposition of alternative pathway component, properdin, Heat treatment did not impede the rise in pulmonary vascular resistance or significantly prolong survival, Depletion of anti-pig antibody prolonged survival (median 90 min) and attenuated the rise in pulmonary vascular resistance, Antibody absorption, combined with heat treatment of plasma, prevented the elevation in pulmonary vascular resistance and yielded median graft survival (210 min) similar to pig blood perfusion (similar to 240 min). Conclusions. These results show that elevated pulmonary vascular resistance and pulmonary parenchymal injury are mediated at least in part by antispecies antibody and heat-sensitive pathways. They are consistent with the hypothesis that complement activation contributes significantly to acute lung damage in the pig-to-human species combination.
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页码:594 / 603
页数:10
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