Literature DB >> 22728769

The balance between leptin and adiponectin in the control of carcinogenesis - focus on mammary tumorigenesis.

Michael E Grossmann1, Margot P Cleary.   

Abstract

A number of studies indicate that a growing list of cancers may be influenced by obesity. In obese individuals these cancers can be more frequent and more aggressive resulting in reduced survival. One of the most prominent and well characterized cancers in this regard is breast cancer. Obesity plays a complex role in breast cancer and is associated with increased inflammation, angiogenesis and alterations in serum levels of potential growth factors such as insulin, adiponectin, leptin and estrogen. Reduced levels of serum adiponectin have been reported in breast cancer patients compared to healthy controls, particularly in postmenopausal women and the level of adiponectin has been shown to be inversely associated with insulin resistance. The role of serum leptin levels in breast cancer appears to be more complex. Some studies have shown leptin to be increased in women with breast cancer but other studies have found leptin to be decreased or unchanged. This may be due to a number of confounding issues. We and others propose that it may be the levels of adiponectin and leptin as well as the balance of adiponectin and leptin that are the critical factors in breast and other obesity related cancer tumorigenesis. This review will focus on the current understanding of the interplay between obesity and the functions of leptin and adiponectin. It will then examine what is known about their potential roles in cancer particularly as pertains to breast cancer and how the ratio of adiponectin to leptin may play a role in tumorigenesis.
Copyright © 2012 Elsevier Masson SAS. All rights reserved.

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Year:  2012        PMID: 22728769      PMCID: PMC4296518          DOI: 10.1016/j.biochi.2012.06.013

Source DB:  PubMed          Journal:  Biochimie        ISSN: 0300-9084            Impact factor:   4.079


  127 in total

1.  Tissue leptin levels in patients with breast cancer.

Authors:  M Karaduman; A Bilici; A Ozet; A Sengul; U Musabak; M Alomeroglu
Journal:  J BUON       Date:  2010 Apr-Jun       Impact factor: 2.533

2.  Plasma adiponectin concentrations in relation to endometrial cancer: a case-control study in Greece.

Authors:  Eleni Petridou; Christos Mantzoros; Nick Dessypris; Panagiotis Koukoulomatis; Carol Addy; Zannis Voulgaris; George Chrousos; Dimitrios Trichopoulos
Journal:  J Clin Endocrinol Metab       Date:  2003-03       Impact factor: 5.958

3.  Paradoxical decrease of an adipose-specific protein, adiponectin, in obesity.

Authors:  Y Arita; S Kihara; N Ouchi; M Takahashi; K Maeda; J Miyagawa; K Hotta; I Shimomura; T Nakamura; K Miyaoka; H Kuriyama; M Nishida; S Yamashita; K Okubo; K Matsubara; M Muraguchi; Y Ohmoto; T Funahashi; Y Matsuzawa
Journal:  Biochem Biophys Res Commun       Date:  1999-04-02       Impact factor: 3.575

4.  Susceptibility of lean and obese Zucker rats to tumorigenesis induced by N-methyl-N-nitrosourea.

Authors:  W M Lee; S Lu; A Medline; M C Archer
Journal:  Cancer Lett       Date:  2001-01-26       Impact factor: 8.679

5.  Body size, physical activity, and breast cancer hormone receptor status: results from two case-control studies.

Authors:  S M Enger; R K Ross; A Paganini-Hill; C L Carpenter; L Bernstein
Journal:  Cancer Epidemiol Biomarkers Prev       Date:  2000-07       Impact factor: 4.254

6.  Adiponectin induces growth arrest and apoptosis of MDA-MB-231 breast cancer cell.

Authors:  Jee Hyun Kang; Yoon Young Lee; Byung Yeon Yu; Beom-Seok Yang; Kyung-Hwan Cho; Do Kyoung Yoon; Yong Kyun Roh
Journal:  Arch Pharm Res       Date:  2005-11       Impact factor: 4.946

7.  Resistance to diet-induced obesity: food intake, pancreatic sympathetic tone, and insulin.

Authors:  B E Levin; J Triscari; S Hogan; A C Sullivan
Journal:  Am J Physiol       Date:  1987-03

8.  Serum insulin-like growth factor-I and mammary tumor development in ad libitum-fed, chronic calorie-restricted, and intermittent calorie-restricted MMTV-TGF-alpha mice.

Authors:  Olga P Rogozina; Melissa J L Bonorden; Joseph P Grande; Margot P Cleary
Journal:  Cancer Prev Res (Phila)       Date:  2009-08-03

9.  Leptin receptor-deficient MMTV-TGF-alpha/Lepr(db)Lepr(db) female mice do not develop oncogene-induced mammary tumors.

Authors:  Margot P Cleary; Subhash C Juneja; Frederick C Phillips; Xin Hu; Joseph P Grande; Nita J Maihle
Journal:  Exp Biol Med (Maywood)       Date:  2004-02

10.  Effects of leptin on human breast cancer cell lines in relationship to estrogen receptor and HER2 status.

Authors:  Amitabha Ray; Katai J Nkhata; Margot P Cleary
Journal:  Int J Oncol       Date:  2007-06       Impact factor: 5.650

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  24 in total

1.  Leptin-STAT3-G9a Signaling Promotes Obesity-Mediated Breast Cancer Progression.

Authors:  Chao-Ching Chang; Meng-Ju Wu; Jer-Yen Yang; Ignacio G Camarillo; Chun-Ju Chang
Journal:  Cancer Res       Date:  2015-04-03       Impact factor: 12.701

Review 2.  Multifaceted roles of adiponectin in cancer.

Authors:  Lionel Hebbard; Barbara Ranscht
Journal:  Best Pract Res Clin Endocrinol Metab       Date:  2013-11-22       Impact factor: 4.690

3.  Excess weight gain accelerates 1-methyl-1-nitrosourea-induced mammary carcinogenesis in a rat model of premenopausal breast cancer.

Authors:  Shawna B Matthews; Zongjian Zhu; Weiqin Jiang; John N McGinley; Elizabeth S Neil; Henry J Thompson
Journal:  Cancer Prev Res (Phila)       Date:  2014-01-17

4.  Energy homeostasis genes and breast cancer risk: The influence of ancestry, body size, and menopausal status, the breast cancer health disparities study.

Authors:  Martha L Slattery; Abbie Lundgreen; Lisa Hines; Roger K Wolff; Gabriella Torres-Mejia; Kathy N Baumgartner; Esther M John
Journal:  Cancer Epidemiol       Date:  2015-09-26       Impact factor: 2.984

Review 5.  A weighty problem: metabolic perturbations and the obesity-cancer link.

Authors:  Ciara H O'Flanagan; Laura W Bowers; Stephen D Hursting
Journal:  Horm Mol Biol Clin Investig       Date:  2015-08

6.  Analysis of circulating adipokines in patients newly diagnosed with solid cancer: Associations with measures of adiposity and tumor characteristics.

Authors:  Nehad Ayoub; Mohammad Alkhatatbeh; Malak Jibreel; Mera Ababneh
Journal:  Oncol Lett       Date:  2017-02-01       Impact factor: 2.967

7.  Obesity, insulin resistance, adipocytokines and breast cancer: New biomarkers and attractive therapeutic targets.

Authors:  Maria Dalamaga
Journal:  World J Exp Med       Date:  2013-08-20

8.  Interplay of adipokines and myokines in cancer pathophysiology: Emerging therapeutic implications.

Authors:  Maria Dalamaga
Journal:  World J Exp Med       Date:  2013-08-20

Review 9.  Leptin and adiponectin: emerging therapeutic targets in breast cancer.

Authors:  Eva Surmacz
Journal:  J Mammary Gland Biol Neoplasia       Date:  2013-10-18       Impact factor: 2.673

Review 10.  Leptin's role in lipodystrophic and nonlipodystrophic insulin-resistant and diabetic individuals.

Authors:  Hyun-Seuk Moon; Maria Dalamaga; Sang-Yong Kim; Stergios A Polyzos; Ole-Petter Hamnvik; Faidon Magkos; Jason Paruthi; Christos S Mantzoros
Journal:  Endocr Rev       Date:  2013-03-08       Impact factor: 19.871

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