Department of Chemistry, University of Florida, Gainesville, Florida 32611-7200, USA.
Langmuir. 2010 Apr 6;26(7):4925-32. doi: 10.1021/la903574v.
Urinary stones are commonly composed of an inorganic component, calcium oxalate, or calcium phosphate and an organic matrix of lipids, carbohydrates, and proteinaceous matter. Of interest is the role that the organic matrix elements may play as catalysts for the heterogeneous nucleation of the calcium salts, and a number of studies have examined the role of lipids in calcium oxalate monohydrate (COM) formation. In this study, products of lipid hydrolysis from phospholipase A(2) (PLA(2)) are examined for their effect on COM formation using Langmuir monolayers as model lipid membrane assemblies. The enzyme PLA(2) hydrolyzes DPPC monolayers in the presence of a supersaturated calcium oxalate subphase, inducing the rapid and plentiful nucleation of calcium oxalate at the lipid interface. To investigate the cause of increased crystal formation in the presence of the enzyme, Langmuir monolayers modeling the hydrolysis products were investigated. Calcium oxalate crystal growth at a ternary monolayer of dipalmitoylphosphatidylcholine (DPPC), palmitic acid (PA), and a 22-carbon chain lysophospholipid (22:0 Lyso PC) dramatically increases relative to monolayers of just DPPC. Binary monolayers of DPPC with either PA or the 22:0 Lyso PC and single-component monolayers of PA were also studied. It is demonstrated that the fatty acid generated during lipid hydrolysis causes a significant increase in the extent of heterogeneous nucleation of calcium oxalate from supersaturated solutions. The results imply a possible link between increased phospholipase activity, which is associated with hyperoxaluria, and calcium oxalate precipitation.
尿结石通常由无机成分(草酸钙或磷酸钙)和有机基质(脂质、碳水化合物和蛋白质物质)组成。有趣的是,有机基质元素可能作为钙盐异质成核的催化剂发挥作用,许多研究都研究了脂质在一水合草酸钙(COM)形成中的作用。在这项研究中,使用 Langmuir 单层作为模型脂质膜组件,研究了来自磷脂酶 A2(PLA2)的脂质水解产物对 COM 形成的影响。该酶 PLA2 在过饱和草酸钙亚相中水解 DPPC 单层,在脂质界面迅速大量诱导草酸钙成核。为了研究在存在酶的情况下增加晶体形成的原因,研究了模拟水解产物的 Langmuir 单层。与仅 DPPC 的单层相比,在二棕榈酰磷脂酰胆碱(DPPC)、棕榈酸(PA)和 22 碳链溶血磷脂(22:0 Lyso PC)的三元单层中,草酸钙晶体生长急剧增加。还研究了 DPPC 与 PA 或 22:0 Lyso PC 的二元单层以及 PA 的单一组分单层。结果表明,在脂质水解过程中产生的脂肪酸导致过饱和溶液中草酸钙异质成核的程度显著增加。结果表明,与高草酸尿症相关的磷脂酶活性增加与草酸钙沉淀之间可能存在联系。