St. Vincent's Institute, 9 Princes Street, Fitzroy, VIC 3065, Australia.
Calcif Tissue Int. 2010 Mar;86(3):261-70. doi: 10.1007/s00223-010-9337-4. Epub 2010 Feb 16.
Ciliary neurotrophic factor (CNTF) receptor (CNTFR) expression has been described in osteoblast-like cells, suggesting a role for CNTF in bone metabolism. When bound to CNTF, neuropoietin (NP), or cardiotrophin-like-cytokine (CLC), CNTFR forms a signaling complex with gp130 and the leukemia inhibitory factor receptor, which both play critical roles in bone cell biology. This study aimed to determine the role of CNTFR-signaling cytokines in bone. Immunohistochemistry detected CNTF in osteoblasts, osteocytes, osteoclasts, and proliferating chondrocytes. CNTFR mRNA was detected in primary calvarial osteoblasts and was upregulated during osteoblast differentiation. Treatment of osteoblasts with CNTF or CLC, but not NP, significantly inhibited mineralization and osterix mRNA levels. Twelve-week-old male CNTF ( -/- ) mice demonstrated reduced femoral length, cortical thickness, and periosteal circumference; but femoral trabecular bone mineral density (Tb.BMD) and tibial trabecular bone volume (BV/TV) were not significantly different from wild-type, indicating a unique role for CNTF in bone growth in male mice. In contrast, female CNTF ( -/- ) femora were of normal width, but femoral Tb.BMD, tibial BV/TV, trabecular number, and trabecular thickness were all increased. Female CNTF ( -/- ) tibiae also demonstrated high osteoblast number and mineral apposition rate compared to wild-type littermates, and this was intrinsic to the osteoblast lineage. CNTF is expressed locally in bone and plays a unique role in female mice as an inhibitor of trabecular bone formation and in male mice as a stimulus of cortical growth.
睫状神经营养因子 (CNTF) 受体 (CNTFR) 在成骨样细胞中表达,提示 CNTF 在骨代谢中的作用。当与 CNTF、神经细胞因子 (NP) 或心脏营养素样细胞因子 (CLC) 结合时,CNTFR 与 gp130 和白血病抑制因子受体形成信号复合物,这两者在骨细胞生物学中都起着关键作用。本研究旨在确定 CNTFR 信号细胞因子在骨中的作用。免疫组织化学检测到 CNTF 存在于成骨细胞、骨细胞、破骨细胞和增殖的软骨细胞中。原代颅骨成骨细胞中检测到 CNTFR mRNA,并在成骨细胞分化过程中上调。用 CNTF 或 CLC 而非 NP 处理成骨细胞,可显著抑制矿化和osterix mRNA 水平。12 周龄雄性 CNTF (-/-) 小鼠的股骨长度、皮质厚度和骨膜周长减小;但股骨小梁骨密度 (Tb.BMD) 和胫骨小梁骨体积 (BV/TV) 与野生型无显著差异,表明 CNTF 在雄性小鼠骨生长中具有独特作用。相比之下,雌性 CNTF (-/-) 小鼠的股骨宽度正常,但股骨 Tb.BMD、胫骨 BV/TV、小梁数和小梁厚度均增加。雌性 CNTF (-/-) 胫骨也表现出较高的成骨细胞数量和矿化沉积率,与野生型同窝仔鼠相比,这是成骨细胞系内在的。CNTF 在骨中局部表达,在雌性小鼠中作为小梁骨形成的抑制剂,在雄性小鼠中作为皮质生长的刺激剂,发挥独特作用。