Literature DB >> 32845007

Tumor-associated myeloid cells provide critical support for T-ALL.

Aram Lyu1, Todd A Triplett1,2, Seo Hee Nam1, Zicheng Hu3, Dhivya Arasappan4, Wesley H Godfrey1, Rachel Y Ames1, Adviti Sarang1, Hilary J Selden1, Chang-Han Lee5, George Georgiou5, Terzah M Horton6, Lauren I R Ehrlich1,2.   

Abstract

Despite harboring mutations in oncogenes and tumor suppressors that promote cancer growth, T-cell acute lymphoblastic leukemia (T-ALL) cells require exogenous cells or signals to survive in culture. We previously reported that myeloid cells, particularly dendritic cells, from the thymic tumor microenvironment support the survival and proliferation of primary mouse T-ALL cells in vitro. Thus, we hypothesized that tumor-associated myeloid cells would support T-ALL in vivo. Consistent with this possibility, in vivo depletion of myeloid cells results in a significant reduction in leukemia burden in multiple organs in 2 distinct mouse models of T-ALL and prolongs survival. The impact of the myeloid compartment on T-ALL growth is not dependent on suppression of antitumor T-cell responses. Instead, myeloid cells provide signals that directly support T-ALL cells. Transcriptional profiling, functional assays, and acute in vivo myeloid-depletion experiments identify activation of IGF1R as a critical component of myeloid-mediated T-ALL growth and survival. We identify several myeloid subsets that have the capacity to directly support survival of T-ALL cells. Consistent with mouse models, myeloid cells derived from human peripheral blood monocytes activate IGF1R and directly support survival of primary patient T-ALL cells in vitro. Furthermore, enriched macrophage gene signatures in published clinical samples correlate with inferior outcomes for pediatric T-ALL patients. Collectively, these data reveal that tumor-associated myeloid cells provide signals critical for T-ALL growth in multiple organs in vivo and implicate tumor-associated myeloid cells and associated signals as potential therapeutic targets.
© 2020 by The American Society of Hematology.

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Year:  2020        PMID: 32845007     DOI: 10.1182/blood.2020007145

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  6 in total

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Authors:  Costanza Zanetti; Rahul Kumar; Joscha Ender; Parimala S Godavarthy; Mark Hartmann; Joschka Hey; Kersten Breuer; Eva S Weissenberger; Valentina R Minciacchi; Christina Karantanou; Zhaohui Gu; Kathryn G Roberts; Markus Metzler; Wendy Stock; Charles G Mullighan; Clara D Bloomfield; Natalie Filmann; Katrin Bankov; Sylvia Hartmann; Robert P Hasserjian; Antony F Cousins; Christina Halsey; Christoph Plass; Daniel B Lipka; Daniela S Krause
Journal:  Blood       Date:  2021-11-11       Impact factor: 22.113

2.  A novel and highly effective mitochondrial uncoupling drug in T-cell leukemia.

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Review 3.  Mechanisms of Immune Evasion in Acute Lymphoblastic Leukemia.

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Journal:  Cancers (Basel)       Date:  2021-03-26       Impact factor: 6.639

4.  Phosphoproteomic profiling of T cell acute lymphoblastic leukemia reveals targetable kinases and combination treatment strategies.

Authors:  Valentina Cordo'; Mariska T Meijer; Rico Hagelaar; Richard R de Goeij-de Haas; Vera M Poort; Alex A Henneman; Sander R Piersma; Thang V Pham; Koichi Oshima; Adolfo A Ferrando; Guido J R Zaman; Connie R Jimenez; Jules P P Meijerink
Journal:  Nat Commun       Date:  2022-02-25       Impact factor: 17.694

5.  Prognostic Observational Analysis of BMI, Leptin, and Adiponectin in Children With Acute Lymphocytic Leukemia Undergoing Remission-Induction Chemotherapy.

Authors:  Jing Sun; Ru Zhang; Jianjun Tang; Xuedong Wu; Lu Zhu; Haiying Huang; Huimin Chen; Minhua Xiao; Hongfeng Luo; Haiqing Zheng; Jiaqi Chen
Journal:  Front Pediatr       Date:  2022-03-21       Impact factor: 3.418

6.  Notch-Signaling Deregulation Induces Myeloid-Derived Suppressor Cells in T-Cell Acute Lymphoblastic Leukemia.

Authors:  Paola Grazioli; Andrea Orlando; Nike Giordano; Claudia Noce; Giovanna Peruzzi; Behnaz Abdollahzadeh; Isabella Screpanti; Antonio Francesco Campese
Journal:  Front Immunol       Date:  2022-04-04       Impact factor: 8.786

  6 in total

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