Zhao Yaobo, Salman Ullah, Bao Kaiyan, et al. Allogeneic lung transplantation in miniature pigs and postoperative monitoringJ. ORGAN TRANSPLANTATION, 2026, 17(1): 95-105. DOI: 10.12464/j.issn.1674-7445.2025256
Citation: Zhao Yaobo, Salman Ullah, Bao Kaiyan, et al. Allogeneic lung transplantation in miniature pigs and postoperative monitoringJ. ORGAN TRANSPLANTATION, 2026, 17(1): 95-105. DOI: 10.12464/j.issn.1674-7445.2025256

Allogeneic lung transplantation in miniature pigs and postoperative monitoring

  • Objective  To explore the feasibility and reference value of allogeneic lung transplantation and postoperative monitoring in miniature pigs for lung transplantation research.
    Methods  Two miniature pigs (R1 and R2) underwent left lung allogeneic transplantation. Complement-dependent cytotoxicity tests and blood cross-matching were performed before surgery. The main operative times and partial pressure of arterial oxygen (PaO2) after opening the pulmonary artery were recorded during surgery. Postoperatively, routine blood tests, biochemical blood indicators and inflammatory factors were detected, and pathological examinations of multiple organs were conducted.
    Results  The complement-dependent cytotoxicity test showed that the survival rate of lymphocytes between donors and recipients was 42.5%-47.3%, and no agglutination reaction occurred in the cross-matching. The first warm ischemia times of D1 and D2 were 17 min and 10 min, respectively, and the cold ischemia times were 246 min and 216 min, respectively. Ultimately, R1 and R2 survived for 1.5 h and 104 h, respectively. Postoperatively, in R1, albumin (ALB) and globulin (GLB) decreased, and alanine aminotransferase increased; in R2, ALB, GLB and aspartate aminotransferase all increased. Urea nitrogen and serum creatinine increased in both recipients. Pathological results showed that in R1, the transplanted lung had partial consolidation with inflammatory cell infiltration, and multiple organs were congested and damaged. In R2, the transplanted lung had severe necrosis with fibrosis, and multiple organs had mild to moderate damage. The expression levels of interleukin-1β and interleukin-6 increased in the transplanted lungs.
    Conclusions  The allogeneic lung transplantation model in miniature pigs may systematically evaluate immunological compatibility, intraoperative function and postoperative organ damage. The data obtained may provide technical references for subsequent lung transplantation research.
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