Primary T-cell acute lymphoblastic leukemia (T-ALL) cells require stromal-derived signals to survive. Although many studies have identified cell-intrinsic alterations in signaling pathways that promote T-ALL growth, the identity of endogenous stromal cells and their associated signals in the tumor microenvironment that support T-ALL remains unknown. By examining the thymic tumor microenvironments in multiple murine T-ALL models and primary patient samples, we discovered the emergence of prominent epithelial-free regions, enriched for proliferating tumor cells and dendritic cells (DCs). Systematic evaluation of the functional capacity of tumor-associated stromal cells revealed that myeloid cells, primarily DCs, are necessary and sufficient to support T-ALL survival ex vivo. DCs support T-ALL growth both in primary thymic tumors and at secondary tumor sites. To identify a molecular mechanism by which DCs support T-ALL growth, we first performed gene expression profiling, which revealed up-regulation of platelet-derived growth factor receptor beta (Pdgfrb) and insulin-like growth factor I receptor (Igf1r) on T-ALL cells, with concomitant expression of their ligands by tumor-associated DCs. Both Pdgfrb and Igf1r were activated in ex vivo T-ALL cells, and coculture with tumor-associated, but not normal thymic DCs, sustained IGF1R activation. Furthermore, IGF1R signaling was necessary for DC-mediated T-ALL survival. Collectively, these studies provide the first evidence that endogenous tumor-associated DCs supply signals driving T-ALL growth, and implicate tumor-associated DCs and their mitogenic signals as auspicious therapeutic targets.
Endogenous dendritic cells from the tumor microenvironment support T-ALL growth via IGF1R activation.
肿瘤微环境中的内源性树突状细胞通过 IGF1R 激活支持 T-ALL 的生长
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作者:Triplett Todd A, Cardenas Kim T, Lancaster Jessica N, Hu Zicheng, Selden Hilary J, Jasso Guadalupe J, Balasubramanyam Sadhana, Chan Kathy, Li LiQi, Chen Xi, Marcogliese Andrea N, Davé Utpal P, Love Paul E, Ehrlich Lauren I R
| 期刊: | Proceedings of the National Academy of Sciences of the United States of America | 影响因子: | 9.100 |
| 时间: | 2016 | 起止号: | 2016 Feb 23; 113(8):E1016-25 |
| doi: | 10.1073/pnas.1520245113 | 研究方向: | 细胞生物学、肿瘤 |
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