The Clinical and Genomic Significance of Donor-Specific Antibody–Positive/C4d-Negative and Donor-Specific Antibody–Negative/C4d-Negative Transplant Glomerulopathy

2013 
Summary Background This study investigated the mechanisms involved in development of donor-specific antibody (DSA) and/or C4d-negative transplant glomerulopathy (TGP) by allograft gene expression profiles using microarrays. Design, Setting, Participants, & Measurements This cohort study was conducted in kidney transplant recipients. Patients were eligible for inclusion if they required a clinically indicated biopsy at any time point after their transplant. They were then classified according to their histopathology findings and DSA and C4d results. Eighteen chronic antibody-mediated rejection (CAMR), 14 DSA+/C4d− TGP, 25 DSA−/C4d− TGP, and 47 nonspecific interstitial fibrosis/tubular atrophy (IFTA) biopsy specimens were identified. In a subset of patients from the study population, biopsy specimens in each group and normal transplant kidney specimens were analyzed with Affymetrix Human Gene 1.0 ST Arrays. Results The mean sum score of glomerulitis and peritubular capillaritis increased from 0.28±0.78 in IFTA specimens to 0.75±0.85 in DSA−/C4d− TGP specimens, 1.71±1.49 in DSA+/C4d−/TGP specimens, and 2.11±1.74 in CAMR specimens ( P P =0.01). With use of microarrays, comparison of the gene expression profiles of DSA−/C4d− TGP specimens with glomerulitis + peritubular capillaritis scores > 0 to normal and IFTA biopsy specimens revealed higher expression of quantitative cytotoxic T cell–associated transcripts (QCAT). However, both CAMR and DSA+/C4d− TGP specimens had higher expression of not only QCAT but also IFN-γ and rejection-induced, constitutive macrophage-associated, natural killer cell–associated, and DSA-selective transcripts. Endothelial cell–associated transcript expression was upregulated only in CAMR biopsy specimens. Conclusions These results suggested that DSA+/C4d− TGP biopsy specimens may be classified as CAMR. In contrast, DSA−/C4d− TGP specimens showed increased cytotoxic T cell–associated transcripts, suggesting T cell activation as a mechanism of injury.
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