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Tumor-intrinsic IFNα and CXCL10 are critical for immunotherapeutic efficacy by recruiting and activating T lymphocytes in tumor microenvironment
in
CD4 antigen
/ CD8 antigen
/ Cell activation
/ Cell differentiation
/ CXCL10 protein
/ CXCR3 protein
/ Flow cytometry
/ Immunotherapy
/ Interferon regulatory factor 1
/ Leukocyte migration
/ Liver cancer
/ Lymphocytes
/ Lymphocytes T
/ Monocytes
/ PD-L1 protein
/ Signal transduction
/ Splenocytes
/ Stat1 protein
/ Tumor microenvironment
/ Tumors
/ α-Interferon
/ γ-Interferon
2024
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Tumor-intrinsic IFNα and CXCL10 are critical for immunotherapeutic efficacy by recruiting and activating T lymphocytes in tumor microenvironment
by
in
CD4 antigen
/ CD8 antigen
/ Cell activation
/ Cell differentiation
/ CXCL10 protein
/ CXCR3 protein
/ Flow cytometry
/ Immunotherapy
/ Interferon regulatory factor 1
/ Leukocyte migration
/ Liver cancer
/ Lymphocytes
/ Lymphocytes T
/ Monocytes
/ PD-L1 protein
/ Signal transduction
/ Splenocytes
/ Stat1 protein
/ Tumor microenvironment
/ Tumors
/ α-Interferon
/ γ-Interferon
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Tumor-intrinsic IFNα and CXCL10 are critical for immunotherapeutic efficacy by recruiting and activating T lymphocytes in tumor microenvironment
in
CD4 antigen
/ CD8 antigen
/ Cell activation
/ Cell differentiation
/ CXCL10 protein
/ CXCR3 protein
/ Flow cytometry
/ Immunotherapy
/ Interferon regulatory factor 1
/ Leukocyte migration
/ Liver cancer
/ Lymphocytes
/ Lymphocytes T
/ Monocytes
/ PD-L1 protein
/ Signal transduction
/ Splenocytes
/ Stat1 protein
/ Tumor microenvironment
/ Tumors
/ α-Interferon
/ γ-Interferon
2024
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Tumor-intrinsic IFNα and CXCL10 are critical for immunotherapeutic efficacy by recruiting and activating T lymphocytes in tumor microenvironment
Journal Article
Tumor-intrinsic IFNα and CXCL10 are critical for immunotherapeutic efficacy by recruiting and activating T lymphocytes in tumor microenvironment
2024
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Overview
Tumor immunotherapies targeting PD-(L)1 exhibit anti-tumor efficacy in only 10–30% of patients with various cancers. Literature has demonstrated that a “hot tumor” which contains high T lymphocytes in the tumor microenvironment exhibits a better response to immunotherapies than a “cold tumor.” This study aimed to investigate whether tumor-intrinsic IFNα and CXCL10 determine the recruitment and activation of CD8+ T cells to become “hot tumor.” In this study, we found that CXCL10 overexpressed in a variety of tumors including lung, colon, and liver tumors with a correlation with PD-L1. High PD-L1 and CXCL10 are associated with better survival rates in tumor patients receiving immunotherapies. IFNs-downstream transcriptional factor IRF-1 and STAT1 were correlated with PD-L1 and CXCL10 expression. We demonstrated that IRF-1 and STAT1 were both bound with the promoters of PD-L1 and CXCL10, sharing the same signaling pathway and determining IFNs-mediated PD-L1 and CXCL10 expression. In addition, IFNα significantly increased activation marker IFNγ in PBMCs, promoting M1 type monocyte differentiation, CD4+ T, and CD8+ T cell activation. Particularly, we found that CD8+ T lymphocytes abundantly expressed CXCR3, a receptor of CXCL10, by flow cytometry, indicating that tumor-intrinsic CXCL10 potentially recruited CD8+ T in tumor microenvironment. To demonstrate the hypothesis, immunotherapy-sensitive CT26 and immunotherapy-resistant LL/2 were used and we found that CT26 cells exhibited higher IFNα, IFNγ, CXCL10, and PD-L1 levels compared to LL/2, leading to higher IFNγ expression in mouse splenocytes. Moreover, we found that CD8+ T cells were recruited by CXCL10 in vitro, whereas SCH546738, an inhibitor of CXCR3, inhibited T cell migration and splenocytes-mediated anti-tumor effect. We then confirmed that CT26-derived tumor was sensitive to αPD-L1 immunotherapy and LL/2-tumor was resistant, whereas αPD-L1 significantly increased T lymphocyte activation marker CD107a in CT26-derived BALB/c mice. In conclusion, this study revealed that CXCL10 expression is correlated with PD-L1 in tumors, sharing the same signaling pathway and associating with better immunotherapeutic efficacy. Further evidence in the syngeneic tumor models demonstrated that immunotherapy-sensitive CT26 intrinsically exhibited higher IFNα and CXCL10 compared to immunotherapy-resistant LL/2 to recruit and activate CD8+ T cells in the tumor microenvironment, exhibiting “hot tumor” characteristic of sensitizing αPD-L1 immunotherapies.
Publisher
Springer Nature B.V
Subject
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