A rapid solid-phase fluorimetric assay for measuring bacterial adherence, using DNA-binding stains.
暂无分享,去创建一个
[1] E. D. de Geus,et al. Salivary MUC5B-Mediated Adherence (Ex Vivo) of Helicobacter pylori During Acute Stress , 2000, Psychosomatic medicine.
[2] S. Fisher,et al. Quantifying the Strength of Bacterial Adhesive Interactions with Salivary Glycoproteins , 1995, Journal of dental research.
[3] T. Osaki,et al. Reduced inhibition of Candida albicans adhesion by saliva from patients receiving oral cancer therapy , 1995, Journal of clinical microbiology.
[4] M. Navazesh,et al. Methods for Collecting Saliva , 1993, Annals of the New York Academy of Sciences.
[5] E. Veerman,et al. Influence of saliva on aggregation and adherence of Streptococcus gordonii HG 222 , 1992, Infection and immunity.
[6] J. C. Williamson,et al. A fluorometric microtiter assay for the rapid enumeration of adherent bacteria. , 1991, BioTechniques.
[7] R. Gregory,et al. Function of anti-Streptococcus mutans antibodies: inhibition of virulence factors and enzyme neutralization. , 1990, Oral microbiology and immunology.
[8] J. C. Williamson,et al. Rapid analysis of bacterial adhesion in a microplate assay. , 1990, BioTechniques.
[9] C. Mcnulty,et al. Evaluation of a new selective medium forCampylobacter pylori , 1988, European Journal of Clinical Microbiology and Infectious Diseases.
[10] R. Gibbons,et al. Albumin as a blocking agent in studies of streptococcal adsorption to experimental salivary pellicles , 1985, Infection and immunity.
[11] D. Malamud,et al. Enhanced saliva-mediated bacterial aggregation and decreased bacterial adhesion in caries-resistant versus caries-susceptible individuals , 1982, Infection and immunity.
[12] D. Goldman,et al. Lectins activate lymphocyte pyruvate dehydrogenase by a mechanism sensitive to protease inhibitors. , 1981, Proceedings of the National Academy of Sciences of the United States of America.
[13] D S Young,et al. Biological and analytic components of variation in long-term studies of serum constituents in normal subjects. IV. Results of a study designed to eliminate long-term analytic deviations. , 1970, Clinical chemistry.
[14] George Z. Williams,et al. Biological and Analytic Components of Variation in Long-Term Studies of Serum Constituents in Normal Subjects I. Objectives, Subject Selection, Laboratory Procedures, and Estimation of Analytic Deviation , 1970 .
[15] B. Appelmelk,et al. Sulfated glycans on oral mucin as receptors for Helicobacter pylori. , 1997, Glycobiology.
[16] J. Rudney. Does variability in salivary protein concentrations influence oral microbial ecology and oral health? , 1995, Critical reviews in oral biology and medicine : an official publication of the American Association of Oral Biologists.
[17] F. Scannapieco. Saliva-bacterium interactions in oral microbial ecology. , 1994, Critical reviews in oral biology and medicine : an official publication of the American Association of Oral Biologists.
[18] C G Fraser,et al. Generation and application of data on biological variation in clinical chemistry. , 1989, Critical reviews in clinical laboratory sciences.