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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Grazing Incidence Diffraction and X-ray Reflectivity Studies of the Interactions of Inorganic Mercury Salts with Membrane Lipids in Langmuir Monolayers at the Air/Water Interface
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Grazing Incidence Diffraction and X-ray Reflectivity Studies of the Interactions of Inorganic Mercury Salts with Membrane Lipids in Langmuir Monolayers at the Air/Water Interface

机译:空气/水界面Langmuir单层中无机汞盐与膜脂质相互作用的放牧入射衍射和X射线反射率研究

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The interactions of mercury ions with the membrane phospholipids are considered to be of great importance regarding the toxicity of this metal in living organisms. To obtain deeper insight into this problem, we performed systematic studies applying the Langmuir technique complemented with synchrotron X-ray scattering methods (grazing incidence X-ray diffraction (GIXD) and X-ray reflectivity (XR)). We focused our attention on the interactions of inorganic mercury salts dissolved in the aqueous subphase with lipid monolayers, formed by selected membrane phospholipids, namely, dipalmitoylphosphatidylglicerol (DPPG), dipalmitoylphosphati-dylcholine (DPPC), 1-octadecyl 2-sn-phosphatidylcholine (lyso-PC), and sphingomyelin (SM). Two different inorganic mercury salts, one of a hydracid, HgCl2, and the other of an oxacid, Hg(NO3)2, have been investigated. Our results proved that the elastic properties of phospholipid monolayers are a key factor regarding the interactions with mercury ions. Significant differences in mercury ions complexation are observed with double-chain phospholipids (such as DPPG and DPPC) forming fluid layers of low compressibility and phospholipids forming more compressible films (like SM and lyso-PC). Namely, important changes in the monolayer characteristic were observed only for the latter kind of lipids. This is an important finding taking into account the accumulation of mercury in the central nervous system and its neurotoxic effects. SM is one of the most abundant lipids in neurons shells and therefore can be considered as a target lipid complexing mercury ions.
机译:关于该金属在活生物体中的毒性,汞离子与膜磷脂的相互作用被认为非常重要。为了更深入地了解此问题,我们使用Langmuir技术与同步加速器X射线散射方法(掠入射X射线衍射(GIXD)和X射线反射率(XR))进行了系统的研究。我们将注意力集中在溶解于水亚相中的无机汞盐与脂质单层的相互作用,该脂质单层是由选定的膜磷脂(即二棕榈酰磷脂酰胆碱(DPPG),二棕榈酰磷脂酰二氯胆碱(DPPC),1-十八烷基2-sn-磷脂酰胆碱(溶血磷脂)形成的-PC)和鞘磷脂(SM)。已经研究了两种不同的无机汞盐,一种为水合酸HgCl2,另一种为草酸Hg(NO3)2。我们的结果证明,磷脂单层的弹性特性是与汞离子相互作用的关键因素。在形成低可压缩性的流体层的双链磷脂(例如DPPG和DPPC)和形成可压缩性更高的膜(例如SM和溶血PC)的磷脂中观察到汞离子络合的显着差异。即,仅对于后一种脂质观察到单层特性的重要变化。考虑到汞在中枢神经系统中的蓄积及其神经毒性作用,这是一个重要发现。 SM是神经元壳中最丰富的脂质之一,因此可以认为是络合汞离子的目标脂质。

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