Barron Melissa L, Rybchyn Mark S, Ramesh Sutharshani, Mason Rebecca S, Fiona Bonar S, Stalley Paul, Khosla Sundeep, Hudson Bernie, Arthur Christopher, Kim Edward, Clifton-Bligh Roderick J, Clifton-Bligh Phillip B
Department of Physiology, School of Medical Sciences, Bosch Institute, University of Sydney , Sydney 2006, New South Wales, Australia.
Douglas HanlyMoir Pathology , Macquarie Park 2113, New South Wales, Australia.
Bone Res. 2017 Mar 14;5:16057. doi: 10.1038/boneres.2016.57. eCollection 2017.
Fibrogenesis imperfecta ossium is a rare disorder of bone usually characterized by marked osteopenia and associated with variable osteoporosis and osteosclerosis, changing over time. Histological examination shows that newly formed collagen is abnormal, lacking birefringence when examined by polarized light. The case presented demonstrates these features and, in addition, a previously undocumented finding of a persistent marked reduction of the serum C3 and C4. Osteoblasts established in culture from a bone biopsy showed abnormal morphology on electron microscopy and increased proliferation when cultured with benzoylbenzoyl-ATP and 1,25-dihydroxyvitamin D, contrasting with findings in normal osteoblasts in culture. A gene microarray study showed marked upregulation of the messenger RNA (mRNA) for G-protein-coupled receptor 128 (GPR 128), an orphan receptor of unknown function and also of osteoprotegerin in the patient's osteoblasts in culture. When normal osteoblasts were cultured with the patient's serum, there was marked upregulation of the mRNA for aquaporin 1. A single pathogenetic factor to account for the features of this disorder has not been defined, but the unique findings described here may facilitate more definitive investigation of the abnormal bone cell function.
骨纤维生成不全是一种罕见的骨骼疾病,通常表现为明显的骨质减少,并伴有随时间变化的骨质疏松和骨质硬化。组织学检查显示新形成的胶原蛋白异常,在偏振光下检查时缺乏双折射。本文报道的病例展示了这些特征,此外,还发现了血清C3和C4持续显著降低这一此前未记录的现象。从骨活检组织培养的成骨细胞在电子显微镜下显示形态异常,在用苯甲酰苯甲酰 - ATP和1,25 - 二羟基维生素D培养时增殖增加,这与培养的正常成骨细胞的结果形成对比。基因芯片研究显示,在培养的患者成骨细胞中,G蛋白偶联受体128(GPR 128,一种功能未知的孤儿受体)以及骨保护素的信使核糖核酸(mRNA)显著上调。当正常成骨细胞与患者血清一起培养时,水通道蛋白1的mRNA显著上调。目前尚未确定导致该疾病特征的单一致病因素,但此处描述的独特发现可能有助于更明确地研究异常骨细胞功能。