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脂多糖 A-二磷酸胶体晶体的类液体有序排列:Ca2+、Mg2+、Na+和K+对脂多糖 A-二磷酸在水溶液中胶体悬浮液有序排列的影响。

The liquidlike ordering of lipid A-diphosphate colloidal crystals: the influence of Ca2+, Mg2+, Na+, and K+ on the ordering of colloidal suspensions of lipid A-diphosphate in aqueous solutions.

作者信息

Faunce C A, Reichelt H, Paradies H H, Quitschau P, Zimmermann K

机构信息

The University of Salford, Joule Physics Laboratory, Institute for Materials Science Research, Salford M5 4WT, United Kingdom.

出版信息

J Chem Phys. 2005 Jun 1;122(21):214727. doi: 10.1063/1.1913477.

Abstract

A comprehensive study was performed on electrostatically stabilized aqueous dispersion of lipid A-diphosphate in the presence of bound Ca2+, Mg2+, K+, and Na+ ions at low ionic strength (0.10-10.0-mM NaCl, 25 degrees C) over a range of volume fraction of 1.0 x 10(-4)< or =phi< or =4.95 x 10(-4). These suspensions were characterized by light scattering (LS), quasielastic light scattering, small-angle x-ray scattering, transmission electron microscopy, scanning electron microscopy, conductivity measurements, and acid-base titrations. LS and electron microscopy yielded similar values for particle sizes, particle size distributions, and polydispersity. The measured static structure factor, S(Q), of lipid A-diphosphate was seen to be heavily dependent on the nature and concentration of the counterions, e.g., Ca2+ at 5.0 nM, Mg2+ at 15.0 microM, and K+ at 100.0 microM (25 degrees C). The magnitude and position of the S(Q) peaks depend not only on the divalent ion concentration (Ca2+ and Mg2+) but also on the order of addition of the counterions to the lipid A-diphosphate suspension in the presence of 0.1-microM NaCl. Significant changes in the rms radii of gyration (R2G) 1/2 of the lipid A-diphosphate particles were observed in the presence of Ca2+ (24.8+/-0.8 nm), Mg2+ (28.5+/-0.7 nm), and K+ (25.2+/-0.6 nm), whereas the Na+ salt (29.1+/-0.8 nm) has a value similar to the one found for the de-ionized lipid A-diphosphate suspensions (29.2+/-0.8 nm). Effective particle charges were determined by fits of the integral equation calculations of the polydisperse static structure factor, S(Q), to the light-scattering data and they were found to be in the range of Z*=700-750 for the lipid A-diphosphate salts under investigation. The light-scattering data indicated that only a small fraction of the ionizable surface sites (phosphate) of the lipid A-diphosphate was partly dissociated (approximately 30%). It was also discovered that a given amount of Ca2+ (1.0-5.0 nM) or K+ (100 microM) influenced the structure much more than Na+ (0.1-10.0-mM NaCl) or Mg2+ (50 microM). By comparing the heights and positions of the structure factor peaks S(Q) for lipid A-diphosphate-Na+ and lipid A-diphosphate-Ca2+, it was concluded that the structure factor does not depend simply on ionic strength but more importantly on the internal structural arrangements of the lipid A-diphosphate assembly in the presence of the bound cations. The liquidlike interactions revealed a considerable degree of ordering in solution accounting for the primary S(Q) peak and also the secondary minimum at large particle separation. The ordering of lipid A-diphosphate-Ca2+ colloidal crystals in suspension showed six to seven discrete diffraction peaks and revealed a face-centered-cubic (fcc) lattice type (a=56.3 nm) at a volume fraction of 3.2 x 10(-4)< or =phi< or =3.9 x 10(-4). The K+ salt also exhibited a fcc lattice (a=55.92 nm) at the same volume fractions, but reveals a different peak intensity distribution, as seen for the lipid A-diphosphate-Ca2+ salt. However, the Mg2+ and the Na+ salts of lipid A-diphosphate showed body-centered-cubic (bcc) lattices with a=45.50 nm and a=41.50 nm, respectively (3.2 x 10(-4)< or =phi< or =3.9 x 10(-4)), displaying the same intensity distribution with the exception of the (220) diffraction peaks, which differ in intensity for both salts of lipid A-diphosphate.

摘要

在低离子强度(0.10 - 10.0 mM NaCl,25℃)下,对结合有Ca2 +、Mg2 +、K +和Na +离子的脂质A - 二磷酸静电稳定水分散体进行了全面研究,体积分数范围为1.0×10(-4) ≤ φ ≤ 4.95×10(-4)。这些悬浮液通过光散射(LS)、准弹性光散射、小角X射线散射、透射电子显微镜、扫描电子显微镜、电导率测量和酸碱滴定进行表征。LS和电子显微镜在颗粒尺寸、粒度分布和多分散性方面给出了相似的值。观察到脂质A - 二磷酸的测量静态结构因子S(Q) 强烈依赖于抗衡离子的性质和浓度,例如25℃时5.0 nM的Ca2 +、15.0 μM的Mg2 +和100.0 μM的K +。S(Q) 峰的大小和位置不仅取决于二价离子浓度(Ca2 +和Mg2 +),还取决于在0.1 μM NaCl存在下向脂质A - 二磷酸悬浮液中添加抗衡离子的顺序。在存在Ca2 +(24.8±0.8 nm)、Mg2 +(28.5±0.7 nm)和K +(25.2±0.6 nm)的情况下,观察到脂质A - 二磷酸颗粒的均方根回转半径(R2G)1/2有显著变化,而钠盐(29.1±0.8 nm)的值与去离子脂质A - 二磷酸悬浮液(29.2±0.8 nm)的值相似。通过将多分散静态结构因子S(Q) 的积分方程计算拟合到光散射数据来确定有效颗粒电荷,发现所研究的脂质A - 二磷酸盐的有效颗粒电荷在Z* = 700 - 750范围内。光散射数据表明,脂质A - 二磷酸的可电离表面位点(磷酸盐)中只有一小部分部分解离(约30%)。还发现给定数量的Ca2 +(1.0 - 5.0 nM)或K +(100 μM)对结构的影响比Na +(0.1 - 10.0 mM NaCl)或Mg2 +(50 μM)大得多。通过比较脂质A - 二磷酸 - Na +和脂质A - 二磷酸 - Ca2 +的结构因子峰S(Q) 的高度和位置,得出结构因子不仅简单地取决于离子强度,更重要的是取决于在结合阳离子存在下脂质A - 二磷酸聚集体的内部结构排列。类液体相互作用揭示了溶液中相当程度的有序性,这解释了主要的S(Q) 峰以及大颗粒间距处的次要最小值。悬浮液中脂质A - 二磷酸 - Ca2 +胶体晶体的有序性显示出六到七个离散衍射峰,并在体积分数为3.2×10(-4) ≤ φ ≤ 3.9×10(-4) 时揭示了面心立方(fcc)晶格类型(a = 56.3 nm)。K +盐在相同体积分数下也表现出fcc晶格(a = 55.92 nm),但显示出与脂质A - 二磷酸 - Ca +盐不同的峰强度分布。然而,脂质A - 二磷酸的Mg2 +和Na +盐分别显示体心立方(bcc)晶格,a = 45.50 nm和a = 41.50 nm(3.2×10(-4) ≤ φ ≤ 3.9×10(-4)),除了(220)衍射峰强度不同外,两种脂质A - 二磷酸盐的强度分布相同。

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