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Thomas Jefferson University

Kimmel Cancer Center Faculty Papers

Inflammation

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Full-Text Articles in Medicine and Health Sciences

The Role Of Interleukin-15 In The Development And Treatment Of Hematological Malignancies, Paola Sindaco, Hritisha Pandey, Colleen Isabelle, Nitin Chakravarti, Jonathan Edward Brammer, Pierluigi Porcu, Anjali Mishra Apr 2023

The Role Of Interleukin-15 In The Development And Treatment Of Hematological Malignancies, Paola Sindaco, Hritisha Pandey, Colleen Isabelle, Nitin Chakravarti, Jonathan Edward Brammer, Pierluigi Porcu, Anjali Mishra

Kimmel Cancer Center Faculty Papers

Cytokines are a vital component of the immune system that controls the activation and growth of blood cells. However, chronic overexpression of cytokines can trigger cellular events leading to malignant transformation. The cytokine interleukin-15 (IL-15) is of particular interest, which has been shown to contribute to the development and progression of various hematological malignancies. This review will provide an overview of the impact of the immunopathogenic function of IL-15 by studying its role in cell survival, proliferation, inflammation, and treatment resistance. We will also review therapeutic approaches for inhibiting IL-15 in blood cancers.


Oncogenes And Inflammation Rewire Host Energy Metabolism In The Tumor Microenvironment: Ras And Nfκb Target Stromal Mct4., Ubaldo E. Martinez-Outshoorn, Md, Joseph Curry, Md, Ying-Hui Ko, Md, Zhao Lin, Md, Madalina Tuluc, Md, David Cognetti, Md, Ruth Birbe, Md, Edmund A. Pribitkin, Md, Alessandro Bombonati, Richard Pestell, Md, Anthony Howell, Federica Sotgia, Michael P. Lisanti, Md Aug 2013

Oncogenes And Inflammation Rewire Host Energy Metabolism In The Tumor Microenvironment: Ras And Nfκb Target Stromal Mct4., Ubaldo E. Martinez-Outshoorn, Md, Joseph Curry, Md, Ying-Hui Ko, Md, Zhao Lin, Md, Madalina Tuluc, Md, David Cognetti, Md, Ruth Birbe, Md, Edmund A. Pribitkin, Md, Alessandro Bombonati, Richard Pestell, Md, Anthony Howell, Federica Sotgia, Michael P. Lisanti, Md

Kimmel Cancer Center Faculty Papers

Here, we developed a model system to evaluate the metabolic effects of oncogene(s) on the host microenvironment. A matched set of "normal" and oncogenically transformed epithelial cell lines were co-cultured with human fibroblasts, to determine the "bystander" effects of oncogenes on stromal cells. ROS production and glucose uptake were measured by FACS analysis. In addition, expression of a panel of metabolic protein biomarkers (Caveolin-1, MCT1, and MCT4) was analyzed in parallel. Interestingly, oncogene activation in cancer cells was sufficient to induce the metabolic reprogramming of cancer-associated fibroblasts toward glycolysis, via oxidative stress. Evidence for "metabolic symbiosis" between oxidative cancer cells …