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TGF-? mediates homing of bone marrow-derived human mesenchymal stem cells to glioma stem cells.


ABSTRACT: Although studies have suggested that bone marrow human mesenchymal stem cells (BM-hMSC) may be used as delivery vehicles for cancer therapy, it remains unclear whether BM-hMSCs are capable of targeting cancer stem cells, including glioma stem cells (GSC), which are the tumor-initiating cells responsible for treatment failures. Using standard glioma models, we identify TGF-? as a tumor factor that attracts BM-hMSCs via TGF-? receptors (TGF?R) on BM-hMSCs. Using human and rat GSCs, we then show for the first time that intravascularly administered BM-hMSCs home to GSC-xenografts that express TGF-?. In therapeutic studies, we show that BM-hMSCs carrying the oncolytic adenovirus Delta-24-RGD prolonged the survival of TGF-?-secreting GSC xenografts and that the efficacy of this strategy can be abrogated by inhibition of TGF?R on BM-hMSCs. These findings reveal the TGF-?/TGF?R axis as a mediator of the tropism of BM-hMSCs for GSCs and suggest that TGF-? predicts patients in whom BM-hMSC delivery will be effective.

SUBMITTER: Shinojima N 

PROVIDER: S-EPMC3644948 | biostudies-literature | 2013 Apr

REPOSITORIES: biostudies-literature

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TGF-β mediates homing of bone marrow-derived human mesenchymal stem cells to glioma stem cells.

Shinojima Naoki N   Hossain Anwar A   Takezaki Tatsuya T   Fueyo Juan J   Gumin Joy J   Gao Feng F   Nwajei Felix F   Marini Frank C FC   Andreeff Michael M   Kuratsu Jun-Ichi J   Lang Frederick F FF  

Cancer research 20130130 7


Although studies have suggested that bone marrow human mesenchymal stem cells (BM-hMSC) may be used as delivery vehicles for cancer therapy, it remains unclear whether BM-hMSCs are capable of targeting cancer stem cells, including glioma stem cells (GSC), which are the tumor-initiating cells responsible for treatment failures. Using standard glioma models, we identify TGF-β as a tumor factor that attracts BM-hMSCs via TGF-β receptors (TGFβR) on BM-hMSCs. Using human and rat GSCs, we then show fo  ...[more]

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