Endocrine-Exocrine Signaling Drives Obesity-Associated Pancreatic Ductal Adenocarcinoma

内分泌-外分泌信号传导驱动肥胖相关胰腺导管腺癌

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作者:Katherine Minjee Chung ,Jaffarguriqbal Singh ,Lauren Lawres ,Kimberly Judith Dorans ,Cathy Garcia ,Daniel B Burkhardt ,Rebecca Robbins ,Arjun Bhutkar ,Rebecca Cardone ,Xiaojian Zhao ,Ana Babic ,Sara A Vayrynen ,Andressa Dias Costa ,Jonathan A Nowak ,Daniel T Chang ,Richard F Dunne ,Aram F Hezel ,Albert C Koong ,Joshua J Wilhelm ,Melena D Bellin ,Vibe Nylander ,Anna L Gloyn ,Mark I McCarthy ,Richard G Kibbey ,Smita Krishnaswamy ,Brian M Wolpin ,Tyler Jacks ,Charles S Fuchs ,Mandar Deepak Muzumdar

Abstract

Obesity is a major modifiable risk factor for pancreatic ductal adenocarcinoma (PDAC), yet how and when obesity contributes to PDAC progression is not well understood. Leveraging an autochthonous mouse model, we demonstrate a causal and reversible role for obesity in early PDAC progression, showing that obesity markedly enhances tumorigenesis, while genetic or dietary induction of weight loss intercepts cancer development. Molecular analyses of human and murine samples define microenvironmental consequences of obesity that foster tumorigenesis rather than new driver gene mutations, including significant pancreatic islet cell adaptation in obesity-associated tumors. Specifically, we identify aberrant beta cell expression of the peptide hormone cholecystokinin (Cck) in response to obesity and show that islet Cck promotes oncogenic Kras-driven pancreatic ductal tumorigenesis. Our studies argue that PDAC progression is driven by local obesity-associated changes in the tumor microenvironment and implicate endocrine-exocrine signaling beyond insulin in PDAC development. Keywords: beta cells; cholecystokinin; genetically engineered mouse models; leptin; obesity; pancreatic cancer; pancreatic islets; tumor microenvironment.

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