Home LiteratureArticle Details
PMID: 21774820 Published · epublish English Journal Article

Targeting AMP-activated protein kinase in adipocytes to modulate obesity-related adipokine production associated with insulin resistance and breast cancer cell proliferation.

Diabetology & metabolic syndrome ·Vol. 3 ·2011-07-20 ·Pages 16

Grisouard J, Dembinski K, Mayer D, Keller U, Müller B, Christ-Crain M

Abstract

Adipokines, e.g. TNFα, IL-6 and leptin increase insulin resistance, and consequent hyperinsulinaemia influences breast cancer progression. Beside its mitogenic effects, insulin may influence adipokine production from adipocyte stromal cells and paracrine enhancement of breast cancer cell growth. In contrast, adiponectin, another adipokine is protective against breast cancer cell proliferation and insulin resistance.AMP-activated protein kinase (AMPK) activity has been found decreased in visceral adipose tissue of insulin-resistant patients. Lipopolysaccharides (LPS) link systemic inflammation to high fat diet-induced insulin resistance. Modulation of LPS-induced adipokine production by metformin and AMPK activation might represent an alternative way to treat both, insulin resistance and breast cancer. Human preadipocytes obtained from surgical biopsies were expanded and differentiated in vitro into adipocytes, and incubated with siRNA targeting AMPKalpha1 (72 h), LPS (24 h, 100 μg/ml) and/or metformin (24 h, 1 mM) followed by mRNA extraction and analyses. Additionally, the supernatant of preadipocytes or derived-adipocytes in culture for 24 h was used as conditioned media to evaluate MCF-7 breast cancer cell proliferation. Conditioned media from preadipocyte-derived adipocytes, but not from undifferentiated preadipocytes, increased MCF-7 cell proliferation (p < 0.01). Induction of IL-6 mRNA by LPS was reduced by metformin (p < 0.01), while the LPS-induced mRNA expression of the naturally occurring anti-inflammatory cytokine interleukin 1 receptor antagonist was increased (p < 0.01). Silencing of AMPKalpha1 enhanced LPS-induced IL-6 and IL-8 mRNA expression (p < 0.05). Adipocyte-secreted factors enhance breast cancer cell proliferation, while AMPK and metformin improve the LPS-induced adipokine imbalance. Possibly, AMPK activation may provide a new way not only to improve the obesity-related adipokine profile and insulin resistance, but also to prevent obesity-related breast cancer development and progression.

Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Grisouard Jean
Department of Biomedicine, University Hospital Basel, Basel, CH-4031, Switzerland. [email protected].
Dembinski Kaethi
Mayer Doris
Keller Ulrich
Müller Beat
Christ-Crain Mirjam
References (27)
27 references, click to expand
  1. Diabetes mellitus and risk of breast cancer: a meta-analysis.
    Int J Cancer. 2007 Aug 15;121(4):856-62 PMID: 17397032
  2. Adiponectin and AdipoR1 regulate PGC-1alpha and mitochondria by Ca(2+) and AMPK/SIRT1.
    Nature. 2010 Apr 29;464(7293):1313-9 PMID: 20357764
  3. Effects of sitagliptin or metformin added to pioglitazone monotherapy in poorly controlled type 2 diabetes mellitus patients.
    Metabolism. 2010 Jun;59(6):887-95 PMID: 20015525
  4. Causes of cancer in the world: comparative risk assessment of nine behavioural and environmental risk factors.
    Lancet. 2005 Nov 19;366(9499):1784-93 PMID: 16298215
  5. Overweight, obesity and cancer: epidemiological evidence and proposed mechanisms.
    Nat Rev Cancer. 2004 Aug;4(8):579-91 PMID: 15286738
  6. Diabetes and cancer.
    Endocr Relat Cancer. 2009 Dec;16(4):1103-23 PMID: 19620249
  7. Both inflammatory and classical lipolytic pathways are involved in lipopolysaccharide-induced lipolysis in human adipocytes.
    Innate Immun. 2012 Feb;18(1):25-34 PMID: 21088047
  8. Metabolic endotoxemia initiates obesity and insulin resistance.
    Diabetes. 2007 Jul;56(7):1761-72 PMID: 17456850
  9. Metformin--the gold standard in type 2 diabetes: what does the evidence tell us?
    Diabetes Obes Metab. 2009 May;11 Suppl 2:3-8 PMID: 19385978
  10. Obesity and prognosis of breast cancer.
    Obes Rev. 2006 Nov;7(4):333-40 PMID: 17038127
  11. Adipose tissue as an endocrine organ.
    J Clin Endocrinol Metab. 2004 Jun;89(6):2548-56 PMID: 15181022
  12. Functions of AMP-activated protein kinase in adipose tissue.
    J Physiol. 2006 Jul 1;574(Pt 1):55-62 PMID: 16709632
  13. Prevalence of obesity, diabetes, and obesity-related health risk factors, 2001.
    JAMA. 2003 Jan 1;289(1):76-9 PMID: 12503980
  14. AMP-activated protein kinase mediates glucocorticoid-induced metabolic changes: a novel mechanism in Cushing's syndrome.
    FASEB J. 2008 Jun;22(6):1672-83 PMID: 18198220
  15. Leptin concentrations in patients with polycystic ovary syndrome before and after met-formin treatment depending on insulin resistance, body mass index and androgen con-centrations--introductory report.
    Folia Histochem Cytobiol. 2009;47(2):323-8 PMID: 19995720
  16. Insulin and insulin-like growth factor signalling in neoplasia.
    Nat Rev Cancer. 2008 Dec;8(12):915-28 PMID: 19029956
  17. Analysis of signaling pathways related to cell proliferation stimulated by insulin analogs in human mammary epithelial cell lines.
    Endocr Relat Cancer. 2009 Jun;16(2):429-41 PMID: 19153208
  18. Mechanisms of metformin action on glucose transport and metabolism in human adipocytes.
    Biochem Pharmacol. 2010 Dec 1;80(11):1736-45 PMID: 20816671
  19. A high-fat meal induces low-grade endotoxemia: evidence of a novel mechanism of postprandial inflammation.
    Am J Clin Nutr. 2007 Nov;86(5):1286-92 PMID: 17991637
  20. Adipose tissue as target organ in the treatment of hormone-dependent breast cancer: new therapeutic perspectives.
    Obes Rev. 2009 Nov;10(6):660-70 PMID: 19460113
  21. Plasma cytokines in obese women with polycystic ovary syndrome, before and after metformin treatment.
    Gynecol Endocrinol. 2008 Jul;24(7):378-84 PMID: 18645710
  22. AMPK as a mediator of hormonal signalling.
    J Mol Endocrinol. 2010 Feb;44(2):87-97 PMID: 19625456
  23. Metformin inhibits TNF-alpha-induced IkappaB kinase phosphorylation, IkappaB-alpha degradation and IL-6 production in endothelial cells through PI3K-dependent AMPK phosphorylation.
    Int J Cardiol. 2009 May 15;134(2):169-75 PMID: 18597869
  24. Molecular links between obesity and breast cancer.
    Endocr Relat Cancer. 2006 Jun;13(2):279-92 PMID: 16728564
  25. Inflammation, stress, and diabetes.
    J Clin Invest. 2005 May;115(5):1111-9 PMID: 15864338
  26. Autocrine/paracrine role of inflammation-mediated calcitonin gene-related peptide and adrenomedullin expression in human adipose tissue.
    Endocrinology. 2005 Jun;146(6):2699-708 PMID: 15761041
  27. LKB1 is required for adiponectin-mediated modulation of AMPK-S6K axis and inhibition of migration and invasion of breast cancer cells.
    Oncogene. 2009 Jul 23;28(29):2621-33 PMID: 19483724
Article Info
Journal
Diabetology & metabolic syndrome
Abbr.
Diabetol Metab Syndr
ISSN
1758-5996
Published
2011-07-20
Epub
2011-00-20
Pages
16
Language
English
Region
England
NLM ID
101488958
PMCID
PMC3158545
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]