4.6 Article

Melatonin exerts by an autocrine loop antiproliferative effects in cholangiocarcinoma; its synthesis is reduced favoring cholangiocarcinoma growth

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpgi.00118.2011

关键词

biliary epithelium; biliary neoplasm; neuroendocrine regulation

资金

  1. Dr. Nicholas C. Hightower, Centennial Chair of Gastroenterology from Scott White
  2. Veterans Affairs Research Career Scientist Award
  3. Veterans Affairs Merit award
  4. National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK) [DK58411, DK76898, DK078532]
  5. University of Rome La Sapienza
  6. Ministero dell'Istruzione dell'Universita e della Ricerca Italia [2007HPT7BA_001]
  7. Clonit S.r.l., Milan, Italy

向作者/读者索取更多资源

Han Y, DeMorrow S, Invernizzi P, Jing Q, Glaser S, Renzi A, Meng F, Venter J, Bernuzzi F, White M, Francis H, Lleo A, Marzioni M, Onori P, Alvaro D, Torzilli G, Gaudio E, Alpini G. Melatonin exerts by an autocrine loop antiproliferative effects in cholangiocarcinoma; its synthesis is reduced favoring cholangiocarcinoma growth. Am J Physiol Gastrointest Liver Physiol 301: G623-G633, 2011. First published July 21, 2011; doi: 10.1152/ajpgi.00118.2011.-Cholangiocarcinoma (CCA) is a devastating biliary cancer. Melatonin is synthesized in the pineal gland and peripheral organs from serotonin by two enzymes, serotonin N-acetyltransferase (AANAT) and acetylserotonin O-methyltransferase (ASMT). Cholangiocytes secrete neuroendocrine factors, including serotonin-regulating CCA growth by autocrine mechanisms. Melatonin exerts its effects by interaction with melatonin receptor type 1A/1B (MT1/MT2) receptors. We propose that 1) in CCA, there is decreased expression of AANAT and ASMT and secretion of melatonin, changes that stimulate CCA growth; and 2) in vitro overexpression of AANAT decreases CCA growth. We evaluated the 1) expression of AANAT, ASMT, melatonin, and MT1/MT2 in human nonmalignant and CCA lines and control and CCA biopsy samples; 2) melatonin levels in nonmalignant and CCA lines, and bile and serum from controls and patients with intrahepatic CCA; 3) effect of melatonin on the growth and expression of AANAT/ASMT and MT1/MT2 in CCA lines implanted into nude mice; and 4) effect of AANAT overexpression on the proliferation, apoptosis, and expression of MT1/MT2 in Mz-ChA-1 cells. The expression of AANAT, ASMT, and melatonin decreased, whereas MT1/MT2 expression increased in CCA lines and biopsy samples. Melatonin secretion decreased in the supernatant of CCA lines and bile of CCA patients. Melatonin decreased xenograft CCA tumor growth in nude mice by increased AANAT/ASMT and melatonin, along with reduced MT1/MT2 expression. Overexpression of AANAT in Mz-ChA-1 cells inhibited proliferation and MT1/MT2 expression and increased apoptosis. There is dysregulation of the AANAT/ASMT/melatonin -> melatonin receptor axis in CCA, which inhibited melatonin secretion and subsequently enhanced CCA growth.

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