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Biology subjects

Kabir, A. U.

Publications and source records attributed to Kabir, A. U..

2 recordsLinked to original sources

Interleukin-1α and Leukemia Inhibitory Factor Promote Extramedullary Hematopoiesis

Extramedullary hematopoiesis (EMH) expands hematopoietic capacity outside of the bone marrow in response to inflammatory conditions, including infections and cancer. Because of its inducible nature, EMH offers a unique opportunity to study the interaction between hematopoietic stem and progenitor cells (HSPCs) and their niche. In cancer patients, the spleen frequently serves as an EMH organ and provides myeloid cells that may worsen pathology. Here, we examined the relationship between HSPCs and their splenic niche in EMH secondary to solid tumor. We identify an inflammatory gene signature characterized by TNF expression in HSPCs. We show a role for IL-1 in producing this gene signature and TNF expression in HSPCs in activating splenic niche activity. We also demonstrate that tumor-derived Leukemia Inhibitory Factor (LIF) induces proliferation of splenic niche cells. IL-1 and LIF display cooperative effects in activating EMH and are both upregulated in some human cancers. Together, these data expand avenues for developing niche-directed therapies and further exploring EMH accompanying inflammatory pathologies like cancer.

immunology↗

Conserved angio-immune subtypes of the cancer microenvironment predict response to immune checkpoint blockade therapy

Tumor microenvironment (TME) shapes the tumor progression and therapy outcome. Particularly, tumor angiogenesis and immunity impact the effect of immune checkpoint blockade (ICB) therapy. Here, we analyzed the transcriptome from 11,069 patients from The Cancer Genome Atlas (TCGA) to assess 91 functional gene sets corresponding to endothelial and T-cell activity. Intriguingly, TME across 30 non-hematological tumors can be classified into three distinct conserved angio-immune subtypes: high angiogenesis with low immune activity, low angiogenesis with high immune activity, and the one in-between. Remarkably, patients displaying TME with poor angiogenic activity with corresponding high immune activity show the most significant responses to ICB therapy in many cancer types. Notably, re-evaluation of the Javelin Renal 101, renal cell carcinoma clinical trial, provided compelling evidence that the baseline angiogenic state is critical in determining responses to checkpoint blockade. This study offers a clear rationale for incorporating baseline angiogenic state for ICB treatment decision-making.

cancer biology↗