Interleukin-33 inhibits glucose uptake in human adipocytes and its expression in adipose tissue is elevated in insulin resistance and type 2 diabetes

被引:7
作者
Pereira, Maria J. [1 ,4 ]
Azim, Ayesha [1 ]
Hetty, Susanne [1 ]
Jui, Bipasha Nandi [1 ]
Kullberg, Joel [2 ,3 ]
Lundqvist, Martin H. [1 ]
Eriksson, Jan W. [1 ]
机构
[1] Uppsala Univ, Dept Med Sci, Clin Diabet & Metab, Uppsala, Sweden
[2] Uppsala Univ, Dept Surg Sci, Sect Radiol, Uppsala, Sweden
[3] Antaros Med, Molndal, Sweden
[4] Uppsala Univ, Dept Med Sci, Rudbecklaboratoriet hus R3,vining 2 Dag Hammarskjo, S-75185 Uppsala, Sweden
基金
欧盟地平线“2020”;
关键词
IL-33; Type; 2; diabetes; Adipose tissue; Glucose uptake; Inflammation; NF-KAPPA-B; OBESITY; INFLAMMATION; IL-33; CYTOKINE; LINKING; SYSTEM; CELLS; ST2;
D O I
10.1016/j.cyto.2022.156080
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Objective: Interleukin-33 (IL-33) is associated with obesity-related inflammation. We aim to investigate IL-33 expression in subcutaneous adipose tissue (SAT) in type 2 diabetes (T2D) subjects and its effects on human adipocyte glucose uptake.Methods: Expression of IL-33 was analysed in SAT from cohort studies including subjects with and without obesity and T2D and correlated with insulin resistance and obesity markers. Magnetic resonance imaging (MRI) of tissue fat volumes was performed. We investigated the effects of IL-33 treatment on ex vivo adipocyte glucose uptake.Results: T2D subjects had higher IL-33 gene and protein expression in SAT than the control subjects. IL-33 mRNA expression was positively correlated with markers of dysglycemia (e.g. HbA1c), insulin resistance (e.g. HOMA-IR) and adiposity (BMI, visceral adipose tissue volume, liver and pancreas fat %). In multiple linear regression analyses, insulin resistance and T2D status were the strongest predictors of IL-33, independent of BMI. IL-33 mRNA expression was negatively correlated with expression of genes regulating adipocyte glucose uptake, lipid storage, and adipogenesis (e.g.glucose transporter 1 and 4 (GLUT1/4), fatty acid binding protein 4 (FABP4), and PPARG). Additionally, incubation of SAT with IL-33 reduced adipocyte glucose uptake and GLUT4 gene and protein expression.Conclusions: Our findings suggest that T2D subjects have higher IL-33 gene and protein expression in SAT than control subjects, which is associated with insulin resistance and reduced gene expression of lipid storage and adipogenesis markers. IL-33 may reduce adipocyte glucose uptake. This opens up a potential pharmacological route for reversing insulin resistance in T2D and prediabetes.
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页数:10
相关论文
共 40 条
  • [1] Role of Estrogen and Its Receptors in Adipose Tissue Glucose Metabolism in Pre- and Postmenopausal Women
    Ahmed, Fozia
    Kamble, Prasad G.
    Hetty, Susanne
    Fanni, Giovanni
    Vranic, Milica
    Sarsenbayeva, Assel
    Kristofi, Robin
    Almby, Kristina
    Svensson, Maria K.
    Pereira, Maria J.
    Eriksson, Jan W.
    [J]. JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2022, 107 (05) : E1879 - E1889
  • [2] The IL-33/ST2 pathway, inflammation and atherosclerosis: Trigger and target?
    Aimo, Alberto
    Migliorini, Paola
    Vergaro, Giuseppe
    Franzini, Maria
    Passino, Claudio
    Maisel, Alan
    Emdin, Michele
    [J]. INTERNATIONAL JOURNAL OF CARDIOLOGY, 2018, 267 : 188 - 192
  • [3] The Dual Function Cytokine IL-33 Interacts with the Transcription Factor NF-κB To Dampen NF-κB-Stimulated Gene Transcription
    Ali, Shafaqat
    Mohs, Antje
    Thomas, Meike
    Klare, Jan
    Ross, Ralf
    Schmitz, Michael Lienhard
    Martin, Michael Uwe
    [J]. JOURNAL OF IMMUNOLOGY, 2011, 187 (04) : 1609 - 1616
  • [4] IL-33 in obesity: where do we go from here?
    Andrade de Oliveira, Marcos Felipe
    Talvani, Andre
    Rocha-Vieira, Etel
    [J]. INFLAMMATION RESEARCH, 2019, 68 (03) : 185 - 194
  • [5] Group 2 innate lymphoid cells promote beiging of white adipose tissue and limit obesity
    Brestoff, Jonathan R.
    Kim, Brian S.
    Saenz, Steven A.
    Stine, Rachel R.
    Monticelli, Laurel A.
    Sonnenberg, Gregory F.
    Thome, Joseph J.
    Farber, Donna L.
    Lutfy, Kabirullah
    Seale, Patrick
    Artis, David
    [J]. NATURE, 2015, 519 (7542) : 242 - +
  • [6] Therapeutic Strategies for Targeting IL-33/ST2 Signalling for the Treatment of Inflammatory Diseases
    Chen, Wei-Yu
    Tsai, Tzu-Hsien
    Yang, Jenq-Lin
    Li, Lung-Chih
    [J]. CELLULAR PHYSIOLOGY AND BIOCHEMISTRY, 2018, 49 (01) : 349 - 358
  • [7] Dempsey LA, 2019, NAT IMMUNOL, V20, P776, DOI 10.1038/s41590-019-0439-5
  • [8] Modulation of the IL-33/IL-13 Axis in Obesity by IL-13Rα2
    Duffen, Jennifer
    Zhang, Melvin
    Masek-Hammerman, Katherine
    Nunez, Angela
    Brennan, Agnes
    Jones, Jessica E. C.
    Morin, Jeffrey
    Nocka, Karl
    Kasaian, Marion
    [J]. JOURNAL OF IMMUNOLOGY, 2018, 200 (04) : 1347 - 1359
  • [9] Obesity and inflammation: the linking mechanism and the complications
    Ellulu, Mohammed S.
    Patimah, Ismail
    Khaza'ai, Huzwah
    Rahmat, Asmah
    Abed, Yehia
    [J]. ARCHIVES OF MEDICAL SCIENCE, 2017, 13 (04) : 851 - 863
  • [10] Microdialysis and proteomics of subcutaneous interstitial fluid reveals increased galectin-1 in type 2 diabetes patients
    Fryk, Emanuel
    Sundelin, Jeanna Perman
    Strindberg, Lena
    Pereira, Maria J.
    Federici, Massimo
    Marx, Nikolaus
    Nystrom, Fredrik H.
    Schmelz, Martin
    Svensson, Per-Arne
    Eriksson, Jan W.
    Boren, Jan
    Jansson, Per-Anders
    [J]. METABOLISM-CLINICAL AND EXPERIMENTAL, 2016, 65 (07): : 998 - 1006