YIELD OPTIMISATION AND MOLECULAR CHARACTERISATION OF UNCULTURED CD271(+) MESENCHYMAL STEM CELLS IN THE REAMER IRRIGATOR ASPIRATOR WASTE BAG
EUROPEAN CELLS & MATERIALS
Authors: Churchman, Sarah M.; Kouroupis, Dimitrios; Boxall, Sally A.; Roshdy, Tarek; Tan, Hiang B.; McGonagle, Dennis; Giannoudis, Peter V.; Jones, Elena A.
Abstract
Bone reconstruction requires the use of autografts from patients' iliac crest (IC); for large-volume defects bone void fillers and autologous mesenchymal stem cells (MSCs) are often added. The Reamer/Irrigator/Aspirator (RIA) device provides the means of harvesting large amounts of autograft and additionally yields a waste bag containing MSCs, which is currently discarded. The aim of this study was to enumerate and characterise native MSCs from RIA waste bag and compare them to 'gold-standard' donormatched MSCs from IC bone marrow (BM). IC-BM from age matched trauma patients was used as control. In RIA waste bags the median MSC yield established using a colony-forming fibroblast assay was 314333 (range 5 x 10(4)-1.4 x 10(6)), equivalent to approximately one litre of IC-BM aspirate. CD271(+) cells were present at high levels in RIA waste bags, had MSC surface phenotype (CD90(+) CD73(+) CD105(+) CD34-CD61-CD19-CD31-CD33(-)) and expressed genes associated with multipotentiality, osteogenesis, adipogenesis and angiogenic support. RIACD271(+) MSCs were transcriptionally similar to donormatched IC-CD271(+) MSCs (76 % transcripts); with the majority of bone-related and Wnt pathway molecules being expressed at comparable levels. Lower-level expression of MCAM/CD146 and 5/13 hypoxia-related molecules was found in RIA-CD271(+) MSCs, potentially reflecting their native residence in a more hypoxic environment of the endosteum and bone cortex. These data suggest that long bones contain very large numbers of MSCs, transcriptionally-similar to IC-BM MSCs; they can be procured by reaming using the RIA device and used, following concentration, as autologous and potentially allogeneic bone repair therapy.
Therapeutic targeting of soluble CD146/MCAM with the M2J-1 monoclonal antibody prevents metastasis development and procoagulant activity in CD146-positive invasive tumors
INTERNATIONAL JOURNAL OF CANCER
Authors: Stalin, Jimmy; Traboulsi, Wael; Vivancos-Stalin, Lucie; Nollet, Marie; Joshkon, Ahmad; Bachelier, Richard; Guillet, Benjamin; Lacroix, Romaric; Foucault-Bertaud, Alexandrine; Leroyer, Aurelie S.; Dignat-George, Francoise; Bardin, Nathalie; Blot-Chabaud, Marcel
Abstract
Initially discovered in human melanoma, CD146/MCAM is expressed on many tumors and is correlated with cancer progression and metastasis. However, targeting CD146 remains challenging since it is also expressed on other cell types, as vessel cells, where it displays important physiological functions. We previously demonstrated that CD146 is shed as a soluble form (sCD146) that vectorizes the effects of membrane CD146 on tumor angiogenesis, growth and survival. We thus generated a novel monoclonal antibody, the M2J-1 mAb, which specifically targets sCD146, but not membrane CD146, and counteracts these effects. In our study, we analyzed the effects of sCD146 on the dissemination and the associated procoagulant phenotype in two highly invasive human CD146-positive cancer cell lines (ovarian and melanoma). Results show that sCD146 induced epithelial to mesenchymal transition, favored the generation of cancer stem cells and increased the membrane expression of tissue factor. Treatment of cancer cells with sCD146 in two experimental models (subcutaneous xenografting and intracardiac injection of cancer cells in nude mice) led to increased tumor dissemination and procoagulant activity. The M2J-1 mAb drastically reduced metastasis but also procoagulant activity, in particular by decreasing the number of circulating tumor microparticles, and blocked the relevant signaling pathways as demonstrated by RNA expression profiling experiments. Thus, our findings demonstrate that sCD146 mediates important pro-metastatic and procoagulant effects in two CD146-positive tumors. Targeting sCD146 with the newly generated M2J-1 mAb could constitute an innovative strategy for preventing dissemination and thromboembolism in many CD146-positive tumors.