Xu Y, Cruz T, Cheng P T, Pritzker K P
Department of Pathology, Mount Sinai Hospital, Toronto, ON, Canada.
J Rheumatol. 1991 Jan;18(1):66-71.
Understanding the dissolution mechanisms involved in calcium pyrophosphate dihydrate (CPPD) crystals may prove important for the development of therapy for CPPD arthropathy. We demonstrate that yeast pyrophosphatase effectively dissolved CPPD crystals in solutions. Maximum enzymatic dissolution of CPPD crystals was achieved at neutral pH and when the enzyme had access to the crystal surface. The enzymatic dissolution of CPPD crystals was highly dependent on ambient [Mg++] and [Ca++]. The stimulating effects of Mg++ on crystal dissolution in the presence of the enzyme is due to stimulation of pyrophosphatase activity and to enhanced direct release of pyrophosphate ions from the crystal surface. The inhibiting effect of Ca++ on crystal dissolution by the enzyme is mainly due to the suppression of pyrophosphatase activity.
了解焦磷酸钙二水合物(CPPD)晶体的溶解机制可能对CPPD关节病治疗方法的开发具有重要意义。我们证明酵母焦磷酸酶能有效溶解溶液中的CPPD晶体。在中性pH值且酶能够接触晶体表面时,可实现CPPD晶体的最大酶促溶解。CPPD晶体的酶促溶解高度依赖于环境中的[Mg++]和[Ca++]。Mg++在酶存在时对晶体溶解的刺激作用是由于对焦磷酸酶活性的刺激以及从晶体表面增强直接释放焦磷酸离子。Ca++对酶介导的晶体溶解的抑制作用主要是由于焦磷酸酶活性的抑制。