Neuropeptide Y inhibits cholangiocarcinoma cell growth and invasion

Author:

DeMorrow Sharon12,Onori Paolo3,Venter Julie2,Invernizzi Pietro4,Frampton Gabriel2,White Mellanie2,Franchitto Antonio5,Kopriva Shelley2,Bernuzzi Francesca4,Francis Heather6,Coufal Monique6,Glaser Shannon12,Fava Giammarco7,Meng Fanyin6,Alvaro Domenico8,Carpino Guido9,Gaudio Eugenio5,Alpini Gianfranco1012

Affiliation:

1. Scott & White Digestive Disease Research Center, Scott & White,

2. Department of Medicine, Division Gastroenterology, Texas A&M Health Science Center, College of Medicine, Temple, Texas;

3. Experimental Medicine, University of L'Aquila, L'Aquila, Italy;

4. Center for Autoimmune Liver Diseases, Division of Internal Medicine, Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS), Istituto Clinico Humanitas, Rozzano, Milan, Italy;

5. Department of Human Anatomy, University of Rome “La Sapienza,” Rome, Italy;

6. Division of Research and Education, Scott & White;

7. Division of Gastroenterology, “Ospedali Riuniti,” Ancona, Italy;

8. Gastroenterology, Sapienza University of Rome, Italy; and

9. Department of Health Science, University of Rome “Foro Italico,” Rome, Italy

10. Research, Central Texas Veterans Health Care System;

Abstract

No information exists on the role of neuropeptide Y (NPY) in cholangiocarcinoma growth. Therefore, we evaluated the expression and secretion of NPY and its subsequent effects on cholangiocarcinoma growth and invasion. Cholangiocarcinoma cell lines and nonmalignant cholangiocytes were used to assess NPY mRNA expression and protein secretion. NPY expression was assessed by immunohistochemistry in human liver biopsies. Cell proliferation and migration were evaluated in vitro by MTS assays and matrigel invasion chambers, respectively, after treatment with NPY or a neutralizing NPY antibody. The effect of NPY or NPY depletion on tumor growth was assessed in vivo after treatment with NPY or the neutralizing NPY antibody in a xenograft model of cholangiocarcinoma. NPY secretion was upregulated in cholangiocarcinoma compared with normal cholangiocytes. Administration of exogenous NPY decreased proliferation and cell invasion in all cholangiocarcinoma cell lines studied and reduced tumor cell growth in vivo. In vitro, the effects of NPY on proliferation were blocked by specific inhibitors for NPY receptor Y2, but not Y1 or Y5, and were associated with an increase in intracellular d- myo-inositol 1,4,5-trisphosphate and PKCα activation. Blocking of NPY activity using a neutralizing antibody promoted cholangiocarcinoma growth in vitro and in vivo and increased the invasiveness of cholangiocarcinoma in vitro. Increased NPY immunoreactivity in human tumor tissue occurred predominantly in the center of the tumor, with less expression toward the invasion front of the tumor. We demonstrated that NPY expression is upregulated in cholangiocarcinoma, which exerts local control on tumor cell proliferation and invasion. Modulation of NPY secretion may be important for the management of cholangiocarcinoma.

Publisher

American Physiological Society

Subject

Cell Biology,Physiology

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