Immunophenotype and gene expression profile of mesenchymal stem cells derived from canine adipose tissue and bone marrow
VETERINARY IMMUNOLOGY AND IMMUNOPATHOLOGY
Authors: Screven, Rudell; Kenyon, Elizabeth; Myers, Michael J.; Yancy, Haile F.; Skasko, Mark; Boxer, Lynne; Bigley, Elmer C., III; Borjesson, Dori L.; Zhu, Min
Abstract
Veterinary adult stem cell therapy is an emerging area of basic and clinical research. Like their human counterparts, veterinary mesenchymal stem cells (MSCs) offer many potential therapeutic benefits. The characterization of canine-derived MSCs, however, is poorly defined compared to human MSCs. Furthermore, little consensus exists regarding the expression of canine MSC cell surface markers. To address this issue, this study investigated characteristics of cultured canine MSCs derived from both adipose tissue and bone marrow. The canine MSCs were obtained from donors of various breeds and ages. A panel of cell surface markers for canine MSCs was selected based on current human and canine literature and the availability of canine-reactive antibodies. Using flow cytometry, canine MSCs were defined to be CD90(+)CD44(+)MHCI(+)CD14(-)CD29(-)CD34(-)MHC II-. Canine MSCs were further characterized using real-time RT-PCR as CD105(+)CD73(+)CD14(+)CD29(+)MHC II(+)CD45(-) at the mRNA level. Among these markers, canine MSCs differed from canine peripheral blood mononuclear cells (PBMCs) by the absence of CD45 expression at the mRNA level. A novel high-throughput canine-specific PCR array was developed and used to identify changes in the gene expression profiles of canine MSCs. Genes including PTPRC, TNF, beta M-2, TGF beta 1, and PDGFR beta, were identified as unique to canine MSCs as compared to canine PBMCs. Our findings will facilitate characterization of canine MSCs for use in research and clinical trials. Moreover, the high-throughput PCR array is a novel tool for characterizing canine MSCs isolated from different tissues and potentially from different laboratories. Published by Elsevier B.V.
Systematic review and meta-analysis: pharmacogenetics of anti-TNF treatment response in rheumatoid arthritis
PHARMACOGENOMICS JOURNAL
Authors: Bek, S.; Bojesen, A. B.; Nielsen, J. V.; Sode, J.; Bank, S.; Vogel, U.; Andersen, V.
Abstract
Rheumatoid arthritis (RA) is a chronic inflammatory disease that affects "1% of the Caucasian population. Over the last decades, the availability of biological drugs targeting the proinflammatory cytokine tumour necrosis factor a, anti-TNF drugs, has improved the treatment of patients with RA. However, one-third of the patients do not respond to the treatment. We wanted to evaluate the status of pharmacogenomics of anti-TNF treatment. We performed a PubMed literature search and all studies reporting original data on associations between genetic variants and anti-TNF treatment response in RA patients were included and results evaluated by meta-analysis. In total, 25 single nucleotide polymorphisms were found to be associated with anti-TNF treatment response in RA (19 from genome-wide association studies and 6 from the meta-analyses), and these map to genes involved in T cell function, NFKB and TNF signalling pathways (including CTCN5, TEC, PTPRC, FCGR2A, NFKBIB, FCGR2A, IRAK3). Explorative prediction analyses found that biomarkers for clinical treatment selection are not yet available.