Arid
DOI10.1007/s00125-017-4223-5
Hedgehog signalling in myeloid cells impacts on body weight, adipose tissue inflammation and glucose metabolism
Braune, Julia1; Weyer, Ulrike1; Matz-Soja, Madlen2; Hobusch, Constance1; Kern, Matthias3; Kunath, Anne4; Kloeting, Nora4; Kralisch, Susann5; Blueher, Matthias5; Gebhardt, Rolf2; Zavros, Yana6; Bechmann, Ingo1; Gericke, Martin1
通讯作者Gericke, Martin
来源期刊DIABETOLOGIA
ISSN0012-186X
EISSN1432-0428
出版年2017
卷号60期号:5页码:889-899
英文摘要

Recently, hedgehog (Hh) was identified as a crucial player in adipose tissue development and energy expenditure. Therefore, we tested whether Hh ligands are regulated in obesity. Further, we aimed at identifying potential target cells of Hh signalling and studied the functional impact of Hh signalling on adipose tissue inflammation and glucose metabolism.


Hh ligands and receptors were analysed in adipose tissue or serum from lean and obese mice as well as in humans. To study the impact on adipose tissue inflammation and glucose metabolism, Hh signalling was specifically blocked in myeloid cells using a conditional knockout approach (Lys-Smo (-/-)).


Desert Hh (DHH) and Indian Hh (IHH) are local Hh ligands, whereas Sonic Hh is not expressed in adipose tissue from mice or humans. In mice, obesity leads to a preferential upregulation of Hh ligands (Dhh) and signalling components (Ptch1, Smo and Gli1) in subcutaneous adipose tissue. Further, adipose tissue macrophages are Hh target cells owing to the expression of Hh receptors, such as Patched1 and 2. Conditional knockout of Smo (which encodes Smoothened, a mandatory Hh signalling component) in myeloid cells increases body weight and adipose tissue inflammation and attenuates glucose tolerance, suggesting an anti-inflammatory effect of Hh signalling. In humans, adipose tissue expression of DHH and serum IHH decrease with obesity and type 2 diabetes, which might be explained by the intake of metformin. Interestingly, metformin reduced Dhh and Ihh expression in mouse adipose tissue explants.


Hh signalling in myeloid cells affects adipose tissue inflammation and glucose metabolism and may be a potential target to treat type 2 diabetes.


类型Article
语种英语
国家Germany ; USA
收录类别SCI-E
WOS记录号WOS:000398997400017
WOS关键词INSULIN SENSITIVITY ; ANIMAL DEVELOPMENT ; OBESE MICE ; MACROPHAGES ; FAT ; EXPRESSION ; CANCER ; PALMITOYLATION ; ADIPOGENESIS ; CHOLESTEROL
WOS类目Endocrinology & Metabolism
WOS研究方向Endocrinology & Metabolism
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/198306
作者单位1.Univ Leipzig, Inst Anat, Oststr 25, D-04317 Leipzig, Germany;
2.Univ Leipzig, Fac Med, Inst Biochem, Leipzig, Germany;
3.German Ctr Diabet Res DZD, Leipzig, Germany;
4.Univ Leipzig, IFB Adipos Dis Core Unit, Leipzig, Germany;
5.Univ Leipzig, Dept Med, Leipzig, Germany;
6.Univ Cincinnati, Dept Mol & Cellular Physiol, Cincinnati, OH USA
推荐引用方式
GB/T 7714
Braune, Julia,Weyer, Ulrike,Matz-Soja, Madlen,et al. Hedgehog signalling in myeloid cells impacts on body weight, adipose tissue inflammation and glucose metabolism[J],2017,60(5):889-899.
APA Braune, Julia.,Weyer, Ulrike.,Matz-Soja, Madlen.,Hobusch, Constance.,Kern, Matthias.,...&Gericke, Martin.(2017).Hedgehog signalling in myeloid cells impacts on body weight, adipose tissue inflammation and glucose metabolism.DIABETOLOGIA,60(5),889-899.
MLA Braune, Julia,et al."Hedgehog signalling in myeloid cells impacts on body weight, adipose tissue inflammation and glucose metabolism".DIABETOLOGIA 60.5(2017):889-899.
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