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A pathogenesis-based transcript signature in donor-specific antibody-positive kidney transplant patients with normal biopsies.


ABSTRACT: Affymetrix Human Gene 1.0-ST arrays were used to assess the gene expression profiles of kidney transplant patients who presented with donor-specific antibodies (DSAs) but showed normal biopsy histopathology and did not develop antibody-mediated rejection (AMR). Biopsy and whole-blood profiles for these DSA-positive, AMR-negative (DSA +/AMR-) patients were compared to both DSA-positive, AMR-positive (DSA +/AMR +) patients as well as DSA-negative (DSA -) controls. While individual gene expression changes across sample groups were relatively subtle, gene-set enrichment analysis using previously identified pathogenesis-based transcripts (PBTs) identified a clear molecular signature involving increased rejection-associated transcripts in AMR - patients. Results from this study have been published in Kidney International (Hayde et al., 2014 [1]) and the associated data have been deposited in the GEO archive and are accessible via the following link: http://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE50084.

SUBMITTER: O Broin P 

PROVIDER: S-EPMC4536051 | biostudies-literature | 2014 Dec

REPOSITORIES: biostudies-literature

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A pathogenesis-based transcript signature in donor-specific antibody-positive kidney transplant patients with normal biopsies.

Ó Broin P P   Hayde N N   Bao Y Y   Ye B B   Calder R B RB   de Boccardo G G   Lubetzky M M   Ajaimy M M   Pullman J J   Colovai A A   Akalin E E   Golden A A  

Genomics data 20141012


Affymetrix Human Gene 1.0-ST arrays were used to assess the gene expression profiles of kidney transplant patients who presented with donor-specific antibodies (DSAs) but showed normal biopsy histopathology and did not develop antibody-mediated rejection (AMR). Biopsy and whole-blood profiles for these DSA-positive, AMR-negative (DSA +/AMR-) patients were compared to both DSA-positive, AMR-positive (DSA +/AMR +) patients as well as DSA-negative (DSA -) controls. While individual gene expression  ...[more]

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