Factor XIIIA—expressing inflammatory monocytes promote lung squamous cancer through fibrin cross-linking

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作者
Alessandro Porrello
Patrick L. Leslie
Emily B. Harrison
Balachandra K. Gorentla
Sravya Kattula
Subrata K. Ghosh
Salma H. Azam
Alisha Holtzhausen
Yvonne L. Chao
Michele C. Hayward
Trent A. Waugh
Sanggyu Bae
Virginia Godfrey
Scott H. Randell
Cecilia Oderup
Liza Makowski
Jared Weiss
Matthew D. Wilkerson
D. Neil Hayes
H. Shelton Earp
Albert S. Baldwin
Alisa S. Wolberg
Chad V. Pecot
机构
[1] University of North Carolina at Chapel Hill,UNC Lineberger Comprehensive Cancer Center
[2] University of North Carolina at Chapel Hill,Center for Nanotechnology in Drug Delivery, Eshelman School of Pharmacy
[3] University of North Carolina at Chapel Hill,Department of Pathology and Laboratory Medicine
[4] University of North Carolina at Chapel Hill,Curriculum in Genetics and Molecular Biology
[5] University of North Carolina at Chapel Hill,Division of Hematology & Oncology
[6] University of North Carolina at Chapel Hill,Department of Cell Biology and Physiology
[7] Marsico Lung Institute/Cystic Fibrosis Center,Department of Nutrition
[8] University of North Carolina at Chapel Hill,Nutrition Obesity Research Center
[9] Cancer Immunology,Department of Medicine
[10] Pfizer,Department of Anatomy
[11] Inc,Department of Pharmacology
[12] Gillings School of Global Public Health,Department of Biology
[13] University of North Carolina at Chapel Hill,undefined
[14] University of North Carolina at Chapel Hill,undefined
[15] University of North Carolina at Chapel Hill,undefined
[16] Physiology and Genetics,undefined
[17] The American Genome Center,undefined
[18] Collaborative Health Initiative Research Program,undefined
[19] Uniformed Services University,undefined
[20] University of North Carolina at Chapel Hill,undefined
[21] University of North Carolina at Chapel Hill,undefined
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摘要
Lung cancer is the leading cause of cancer-related deaths worldwide, and lung squamous carcinomas (LUSC) represent about 30% of cases. Molecular aberrations in lung adenocarcinomas have allowed for effective targeted treatments, but corresponding therapeutic advances in LUSC have not materialized. However, immune checkpoint inhibitors in sub-populations of LUSC patients have led to exciting responses. Using computational analyses of The Cancer Genome Atlas, we identified a subset of LUSC tumors characterized by dense infiltration of inflammatory monocytes (IMs) and poor survival. With novel, immunocompetent metastasis models, we demonstrated that tumor cell derived CCL2-mediated recruitment of IMs is necessary and sufficient for LUSC metastasis. Pharmacologic inhibition of IM recruitment had substantial anti-metastatic effects. Notably, we show that IMs highly express Factor XIIIA, which promotes fibrin cross-linking to create a scaffold for LUSC cell invasion and metastases. Consistently, human LUSC samples containing extensive cross-linked fibrin in the microenvironment correlated with poor survival.
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