骨细胞
内分泌学
内科学
成骨细胞
脂肪生成
骨钙素
骨重建
脂肪细胞
骨吸收
脂肪组织
化学
脂联素
骨质疏松症
医学
碱性磷酸酶
肥胖
胰岛素抵抗
生物化学
体外
酶
作者
Bingzi Dong,Masahiro Hiasa,Yoshiki Higa,Yukiyo Ohnishi,Itsuro Endo,Takeshi Kondo,Yuichi Takashi,M.K. Tsoumpra,Risa Kainuma,Shun Sawatsubashi,Hiroshi Kiyonari,Go Shioi,Hiroshi Sakaue,Tomoki Nakashima,Shigeaki Kato,Masahiro Abe,Seiji Fukumoto,Toshio Matsumoto
标识
DOI:10.1038/s41467-022-34869-3
摘要
Abstract Exercise results in mechanical loading of the bone and stimulates energy expenditure in the adipose tissue. It is therefore likely that the bone secretes factors to communicate with adipose tissue in response to mechanical loading. Interleukin (IL)−11 is known to be expressed in the bone, it is upregulated by mechanical loading, enhances osteogenesis and suppresses adipogenesis. Here, we show that systemic IL-11 deletion (IL-11 −/− ) results in reduced bone mass, suppressed bone formation response to mechanical loading, enhanced expression of Wnt inhibitors, and suppressed Wnt signaling. At the same time, the enhancement of bone resorption by mechanical unloading was unaffected. Unexpectedly, IL-11 −/− mice have increased systemic adiposity and glucose intolerance. Osteoblast/osteocyte-specific IL-11 deletion in osteocalcin-Cre;IL-11 fl/fl mice have reduced serum IL-11 levels, blunted bone formation under mechanical loading, and increased systemic adiposity similar to IL-11 −/− mice. Adipocyte-specific IL-11 deletion in adiponectin-Cre;IL-11 fl/fl did not exhibit any abnormalities. We demonstrate that osteoblast/osteocyte-derived IL-11 controls both osteogenesis and systemic adiposity in response to mechanical loading, an important insight for our understanding of osteoporosis and metabolic syndromes.
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