Rachow J W, Ryan L M
Rheumatology Section, Medical College of Wisconsin, Milwaukee.
Rheum Dis Clin North Am. 1988 Aug;14(2):289-302.
Once thought of as a biosynthetic waste product, over the last 2 decades PPi has become understood as an entity with a variety of biologic roles (see Table 1). Documented roles include participation in intracellular Ca++ traffic, mediation of nucleotide and iron transport, storage of molecules in cellular granules, modification of enzyme function, and modulation of mineralization. Much has been established regarding plasma, urine, and synovial fluid levels (see Fig. 1) and urinary excretion in health and disease. Derangements in intracellular PPi content of skin fibroblasts have been noted in patients with CPPD deposition arthropathy (see Table 2). Mechanisms by which elevated PPi concentration develops in synovial fluid from joints with CPPD deposition and related arthropathies have come under scrutiny. The chondrocyte is now recognized as the probable cellular source of intra-articular extracellular PPi (see Figs. 3 and 4). Special attention has been focused on two basic pathways by which chondrocytes could generate extracellular PPi (see Fig. 2). In the first mechanism, chondrocytes demonstrate a set of ectoenzymes which could work in concert to directly produce extracellular PPi. The second pathway involves the major reactions by which PPi is formed within the cell and how intracellular PPi thus formed could be transported into the extracellular space. Much future research is needed regarding these two pathways and their relative importance in the pathogenesis of CPPD crystal deposition and related arthropathies.
曾经被认为是一种生物合成废物,在过去20年里,焦磷酸(PPi)已被理解为一种具有多种生物学作用的物质(见表1)。已记录的作用包括参与细胞内钙离子运输、介导核苷酸和铁的转运、在细胞颗粒中储存分子、改变酶的功能以及调节矿化作用。关于血浆、尿液和滑液水平(见图1)以及健康和疾病状态下的尿排泄,已经有了很多研究。在焦磷酸钙沉积性关节病患者中,已注意到皮肤成纤维细胞内PPi含量的紊乱(见表2)。来自焦磷酸钙沉积相关关节病关节的滑液中PPi浓度升高的机制已受到审查。软骨细胞现在被认为是关节内细胞外PPi可能的细胞来源(见图3和图4)。特别关注的是软骨细胞产生细胞外PPi的两个基本途径(见图2)。在第一种机制中,软骨细胞展示出一组外切酶,它们可以协同作用直接产生细胞外PPi。第二条途径涉及细胞内形成PPi的主要反应以及由此形成的细胞内PPi如何转运到细胞外空间。关于这两个途径及其在焦磷酸钙晶体沉积和相关关节病发病机制中的相对重要性,未来还需要进行大量研究。