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VentX expression in tumor-associated macrophages promotes phagocytosis and immunity against pancreatic cancers
Yi Le, Hong Gao, William Richards, Lei Zhao, Ronald Bleday, Thomas Clancy, Zhenglun Zhu
Yi Le, Hong Gao, William Richards, Lei Zhao, Ronald Bleday, Thomas Clancy, Zhenglun Zhu
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Research Article Immunology

VentX expression in tumor-associated macrophages promotes phagocytosis and immunity against pancreatic cancers

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Abstract

Pancreatic ductal adenocarcinoma (PDA) is a lethal malignancy that has no effective treatment. The tumor microenvironment (TME) of PDA employs a multitude of immune derangement strategies to protect PDA from immune elimination. Tumor-associated macrophages (TAMs) have been implicated in the pathogenesis of immune suppression of the PDA TME; however, its underlying mechanisms remained largely unknown. Using primary patient samples, our studies showed that, in comparison with macrophages isolated from normal pancreatic tissues, the phagocytosis activity of the PDA TAMs was significantly reduced. We found that the expression of homeobox protein VentX, a master regulator of macrophage plasticity, was significantly decreased in the PDA TAMs. We demonstrated that VentX was required for phagocytosis and that restoration of VentX expression in PDA TAMs promoted phagocytosis through the regulation of the signaling cascades involved in the process. Using an ex vivo culture model of primary human PDA, we showed that VentX-modulated TAMs transformed the PDA TME from a protumor milieu to an antitumor microenvironment by rectifying differentiation, proliferation, and activation of PDA-infiltrating immune cells. Using NSG-PDX models of primary human PDAs, we showed that VentX-modulated TAMs exerted strong inhibition on PDA tumorigenesis in vivo. Taken together, our data revealed a central mechanism underlying immune evasion of PDA and a potential novel venue to improve PDA prognosis.

Authors

Yi Le, Hong Gao, William Richards, Lei Zhao, Ronald Bleday, Thomas Clancy, Zhenglun Zhu

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Figure 4

Effects of VentX on the expression of cell surface receptors and signaling molecules implicated in phagocytosis.

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Effects of VentX on the expression of cell surface receptors and signali...
(A) Effects of VentX on the expression of TLRs and signaling molecules. Pancreatic TAMs were transfected with plasmids encoding GFP control and GFP-VentX. The expression of indicated TLRs and signaling molecules was determined by qRT-PCR. Data are shown as the mean ± SD of 5 different experiments. *P < 0.05, **P < 0.01, paired Student’s t test. (B) FACS analysis of SIRPα receptor expression on TAMs transfected with plasmids encoding GFP or GFP-VentX. (C) Western blot analysis of phosphorylation state as well as total protein of the intracellular signaling molecules SHP-1, SHP-2, and FAK in GFP- and GFP-VentX–transfected TAMs. (D) Requirement of VentX for LPS stimulation of TAM phagocytosis. TAMs were isolated and transfected with morpholino oligo against VentX or control morpholino (MO) and then subjected to LPS stimulation. The effects of the treatment on phagocytosis were determined by flow cytometry.

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