Goswami Jaya, Hernández-Santos Nydiaris, Zuniga Luis A, Gaffen Sarah L
Department of Microbiology and Immunology, University at Buffalo, SUNY, Buffalo, NY, USA.
Eur J Immunol. 2009 Oct;39(10):2831-9. doi: 10.1002/eji.200939670.
Post-menopausal osteoporosis is considered to be an inflammatory process, in which numerous pro-inflammatory and T-cell-derived cytokines play a bone-destructive role. IL-17A is the signature cytokine of the pro-inflammatory Th17 population and plays dichotomous roles in diseases that affect bone turnover. Although IL-17A promotes bone loss in rheumatoid arthritis, it is protective against pathogen-induced bone destruction in a periodontal disease model. We used a model of ovariectomy-induced osteoporosis (OVX) in IL-17 receptor (IL-17RA)(-/-) mice to evaluate the role of the IL-17A in bone loss caused by estrogen deficiency. Unexpectedly, IL-17RA(-/-) mice were consistently and markedly more susceptible to OVX-induced bone loss than controls. There were no changes in prototypical Th1, Th2 or Th17 cytokines in serum that could account for increased bone loss. However, IL-17RA(-/-) mice exhibited constitutively elevated leptin, which further increased following OVX. Consistently, IL-17A and IL-17F treatment of 3T3-L1 pre-adipocytes inhibited adipogenesis, leading to reduced production of leptin. In addition to its role in regulating metabolism and satiety, leptin can regulate bone turnover. Accordingly, these data show that IL-17A negatively regulates adipogenesis and subsequent leptin expression, which correlates with increased bone destruction during OVX.
绝经后骨质疏松症被认为是一种炎症过程,其中众多促炎细胞因子和T细胞衍生的细胞因子发挥着骨破坏作用。白细胞介素-17A(IL-17A)是促炎Th17细胞群体的标志性细胞因子,在影响骨转换的疾病中发挥着双重作用。虽然IL-17A在类风湿性关节炎中促进骨质流失,但在牙周疾病模型中它对病原体诱导的骨破坏具有保护作用。我们使用白细胞介素-17受体(IL-17RA)基因敲除小鼠的卵巢切除诱导骨质疏松症(OVX)模型,来评估IL-17A在雌激素缺乏引起的骨质流失中的作用。出乎意料的是,与对照组相比,IL-17RA基因敲除小鼠始终明显更易受OVX诱导的骨质流失影响。血清中典型的Th1、Th2或Th17细胞因子没有变化,无法解释骨质流失增加的原因。然而,IL-17RA基因敲除小鼠的瘦素持续升高,卵巢切除后进一步增加。同样,用IL-17A和IL-17F处理3T3-L1前脂肪细胞可抑制脂肪生成,导致瘦素产生减少。除了在调节代谢和饱腹感方面的作用外,瘦素还可以调节骨转换。因此,这些数据表明,IL-17A负向调节脂肪生成和随后的瘦素表达,这与卵巢切除期间骨破坏增加相关。