Bantroch S, Bühler T, Lam J S
Canadian Bacterial Diseases Network, University of Guelph, Ontario, Canada.
Clin Diagn Lab Immunol. 1994 Jan;1(1):55-62. doi: 10.1128/cdli.1.1.55-62.1994.
Smooth, rough, and neutral forms of lipopolysaccharide (LPS) from Pseudomonas aeruginosa were used to assess the appropriate conditions for effective enzyme-linked immunosorbent assay (ELISA) of LPS. Each of these forms of well-defined LPS was tested for the efficiency of antigen coating by various methods as well as to identify an appropriate type of microtiter plate to use. For smooth LPS, the standard carbonate-bicarbonate buffer method was as efficient as the other sensitivity-enhancing plate-coating methods compared. The rough LPS, which has an overall hydrophobic characteristic, was shown to adhere effectively, regardless of the coating method used, to only one type of microtiter plate, CovaLink. This type of plate has secondary amine groups attached on its polystyrene surface by carbon chain spacers, which likely favors hydrophobic interactions between the rough LPS and the well surfaces. Dehydration methods were effective for coating microtiter plates with the neutral LPS examined, which is composed predominantly of a D-rhamnan. For the two dehydration procedures, LPS suspended in water or the organic solvent chloroform-ethanol was added directly to the wells, and the solvent was allowed to dehydrate or evaporate overnight. Precoating of plates with either polymyxin or poly-L-lysine did not give any major improvement in coating with the various forms of LPS. The possibility of using proteinase K- and sodium dodecyl sulfate-treated LPS preparations for ELISAs was also investigated. Smooth LPS prepared by this method was as effective in ELISA as LPS prepared by the hot water-phenol method, while the rough and neutral LPSs prepared this way were not satisfactory for ELISA.
使用来自铜绿假单胞菌的光滑型、粗糙型和中性型脂多糖(LPS)来评估进行LPS有效酶联免疫吸附测定(ELISA)的合适条件。对这些明确的LPS每种形式通过各种方法测试抗原包被效率,并确定合适的微量滴定板类型。对于光滑型LPS,标准的碳酸盐 - 碳酸氢盐缓冲液方法与其他增强灵敏度的板包被方法一样有效。粗糙型LPS具有整体疏水特性,结果表明,无论使用何种包被方法,它仅能有效地粘附于一种类型的微量滴定板CovaLink。这种类型的板在其聚苯乙烯表面通过碳链间隔物连接有仲胺基团,这可能有利于粗糙型LPS与孔表面之间的疏水相互作用。脱水方法对于用所检测的主要由D - 鼠李聚糖组成的中性LPS包被微量滴定板是有效的。对于两种脱水程序,将悬浮于水或有机溶剂氯仿 - 乙醇中的LPS直接加入孔中,并让溶剂过夜脱水或蒸发。用多粘菌素或聚 - L - 赖氨酸预包被板在用各种形式的LPS包被时并没有带来任何显著改善。还研究了使用蛋白酶K和十二烷基硫酸钠处理的LPS制剂进行ELISA的可能性。通过这种方法制备的光滑型LPS在ELISA中与通过热水 - 苯酚法制备的LPS一样有效,而通过这种方式制备的粗糙型和中性型LPS用于ELISA并不令人满意。