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ATR-FTIR 研究磷脂囊泡与α-FeOOH 和 α-Fe2O3 表面的相互作用。

ATR-FTIR studies of phospholipid vesicle interactions with alpha-FeOOH and alpha-Fe2O3 surfaces.

机构信息

Dipartimento di Valorizzazione e Protezione delle Risorse Agroforestali (Di.Va.P.R.A.), Università degli Studi di Torino, 44 via Leonardo da Vinci, Grugliasco (Torino), Italy I-10095.

出版信息

Colloids Surf B Biointerfaces. 2010 Apr 1;76(2):456-67. doi: 10.1016/j.colsurfb.2009.12.005. Epub 2009 Dec 22.

Abstract

Prior infrared spectroscopic studies of extracellular polymeric substances (EPS) and live bacterial cells have indicated that organic phosphate groups mediate cell adhesion to iron oxides via inner-sphere P-OFe surface complexation. Since cell membrane phospholipids are a potential source of organic phosphate groups, we investigated the adhesion of phospholipidic vesicles to the surfaces of the iron (oxyhydr)oxides goethite (alpha-FeOOH) and hematite (alpha-Fe2O3) using attenuated total reflectance-Fourier transform infrared (ATR-FTIR) spectroscopy. l-alpha-phosphatidylcholine (PC), phosphatidylethanolamine (PE) and phosphatidic acid (PA) were used because they are vesicle forming phospholipids representative of prokaryotic and eukaryotic cell surface membranes. Phospholipid vesicles, formed in aqueous suspension, were characterized by transmission electron microscopy (TEM), multi-angle laser light scattering (MALS) and quasi-elastic light scattering (QELS). Their adhesion to goethite and hematite surfaces was studied with ATR-FTIR at pH 5. Results indicate that PC and PE adsorption is affected by electrostatic interaction and H-bonding (PE). Conversely, adsorption of PA involves phosphate inner-sphere complexes, for both goethite and hematite, via P-OFe bond formation. Biomolecule adsorption at the interface was observed to occur on the scale of minutes to hours. Exponential and linear increases in peak intensity were observed for goethite and hematite, respectively. Our ATR-FTIR results on the PA terminal phosphate are in good agreement with those on EPS reacted with goethite and on bacterial cell adhesion to hematite. These findings suggest that the plasma membrane, and the PA terminal phosphate in particular, may play a role in mediating the interaction between bacteria and iron oxide surfaces during initial stages of biofilm formation.

摘要

先前关于细胞外聚合物 (EPS) 和活细菌细胞的红外光谱研究表明,有机磷酸基团通过内球 P-OFe 表面络合作用介导细胞与氧化铁的附着。由于细胞膜磷脂是有机磷酸基团的潜在来源,我们使用衰减全反射-傅里叶变换红外 (ATR-FTIR) 光谱法研究了磷脂囊泡在针铁矿 (α-FeOOH) 和赤铁矿 (α-Fe2O3) 表面的附着。使用 l-α-磷脂酰胆碱 (PC)、磷脂酰乙醇胺 (PE) 和磷脂酸 (PA) 是因为它们是囊泡形成磷脂,代表原核和真核细胞膜表面。在水悬浮液中形成的磷脂囊泡通过透射电子显微镜 (TEM)、多角度激光散射 (MALS) 和准弹性光散射 (QELS) 进行了表征。在 pH 值为 5 时,使用 ATR-FTIR 研究了它们对针铁矿和赤铁矿表面的附着。结果表明,PC 和 PE 的吸附受静电相互作用和氢键 (PE) 的影响。相反,PA 的吸附涉及通过 P-OFe 键形成与针铁矿和赤铁矿的内球配合物。在界面上观察到生物分子的吸附在几分钟到几小时的范围内发生。观察到针铁矿和赤铁矿的峰强度分别呈指数和线性增加。我们在 PA 末端磷酸上的 ATR-FTIR 结果与与针铁矿反应的 EPS 和细菌细胞对赤铁矿的附着结果非常吻合。这些发现表明,质膜,特别是 PA 末端磷酸,可能在生物膜形成的初始阶段介导细菌与氧化铁表面的相互作用。

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