Department of Environmental Sciences, University of Warwick, Coventry CV4 7AL, England.
Appl Environ Microbiol. 1982 Jul;44(1):184-92. doi: 10.1128/aem.44.1.184-192.1982.
A bubble contact angle method was used to determine interfacial free-energy characteristics of polystyrene substrata in the presence and absence of potential surface-conditioning proteins (bovine glycoprotein, bovine serum albumin, fatty acid-free bovine serum albumin), a bacterial culture supernatant, and a bacterial exopolymer. Clean petri dish substrata gave a contact angle of 90 degrees , but tissue culture dish substrata were more hydrophilic, giving an angle of 29 degrees or less. Bubble contact angles at the surfaces exposed to the macromolecular solutions varied with the composition and concentration of the solution. Modification by pronase enzymes of the conditioning effect of proteins depended on the nature of both the substratum and the protein, as well as the time of addition of the enzyme relative to the conditioning of the substratum. The effects of dissolved and substratum-adsorbed proteins on the attachment of Pseudomonas sp. strain NCMB 2021 to petri dishes and tissue culture dishes were consistent with changes in bubble contact angles (except when proteins were adsorbed to tissue culture dishes before attachment) as were alterations in protein-induced inhibition of bacterial attachment to petri dishes by treatment with pronase. Differences between the attachment of pseudomonads to petri dishes and tissue culture dishes suggested that different mechanisms of adhesion are involved at the surfaces of these two substrata.
采用气泡接触角法,测定了聚苯乙烯基质在潜在的表面调理蛋白(牛血清白蛋白、牛血清球蛋白、无脂肪酸牛血清白蛋白)、细菌培养液上清液和细菌胞外聚合物存在和不存在条件下的界面自由能特性。清洁的培养皿基质的接触角为 90 度,但组织培养皿基质的亲水性更强,接触角小于 29 度。暴露于高分子溶液表面的气泡接触角随溶液的组成和浓度而变化。蛋白酶对蛋白质调理作用的修饰取决于基质和蛋白质的性质,以及酶相对于基质调理的添加时间。溶解蛋白和基质吸附蛋白对假单胞菌 NCMB 2021 菌株在培养皿和组织培养皿上的附着的影响与气泡接触角的变化一致(除了在附着之前蛋白质被吸附到组织培养皿上),蛋白酶处理也改变了蛋白诱导的对假单胞菌附着到培养皿的抑制作用。假单胞菌在培养皿和组织培养皿上的附着差异表明,这两种基质表面涉及不同的粘附机制。