Polysaccharides produced by Actinomyces viscosus may promote adherence of those microorganisms to glycoproteins adsorbed to enamel or exposed root-surfaces. They may inhibit or enhance lectin mediated coaggregation between oral bacteria, and contribute to the bulk of plaque. These polysaccharides can also induce formation of antibodies that may hinder or promote development of dental caries. Although A. viscosus produces several polysaccharides their chemical fine structure remains to be elucidated. Evaluation of their role in the pathogenesis of root surface caries is also lacking, This proposal therefore aims: 1-on the surface of intact A. viscosus cells by quantitative fluorochrome-tagged lectin binding assays which yield information on the nature, number and affinity (Ka) of binding sites; 2- to isolate in purified form, cell wall, cell wall associated and extracellular polysaccharides from T6, T14V and T14Av strains of A. viscosus and characterize their molecular structure by chemical and immunochemical methods; 3- to examine the ability of isolated polysaccharides to serve as antigen inhibit attachment of bacteria to saliva coated hydroxylapatite coated beads and inhibit bacterial coaggregation; 4- to examine the antibody combining site specificity of rat and rabbit polyclonal antibody to isolate A. viscosus polysaccharide antigens; 5- to actively immunize rats with isolated polysaccharide antigens to determine the ability of specific polymers to stimulate suppression or enhancement of disease upon oral infection and 6- to prepare monoclonal rat antibodies against isolated polysaccharide antigens, elucidated their combing site specificity and evaluate the role of specific anti-carbohydrate in modifying implantation and disease in specific pathogen-free rats.

Agency
National Institute of Health (NIH)
Institute
National Institute of Dental & Craniofacial Research (NIDCR)
Type
Specialized Center (P50)
Project #
5P50DE007003-05
Application #
3917216
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
5
Fiscal Year
1988
Total Cost
Indirect Cost
Name
University of Rochester
Department
Type
DUNS #
208469486
City
Rochester
State
NY
Country
United States
Zip Code
14627
Miguel, J C; Bowen, W H; Pearson, S K (1997) Effects of frequency of exposure to iron-sucrose on the incidence of dental caries in desalivated rats. Caries Res 31:238-43
Vacca-Smith, A M; Venkitaraman, A R; Schilling, K M et al. (1996) Characterization of glucosyltransferase of human saliva adsorbed onto hydroxyapatite surfaces. Caries Res 30:354-60
Venkitaraman, A R; Vacca-Smith, A M; Kopec, L K et al. (1995) Characterization of glucosyltransferaseB, GtfC, and GtfD in solution and on the surface of hydroxyapatite. J Dent Res 74:1695-701
Van Wuyckhuyse, B C; Perinpanayagam, H E; Bevacqua, D et al. (1995) Association of free arginine and lysine concentrations in human parotid saliva with caries experience. J Dent Res 74:686-90
Perinpanayagam, H E; Van Wuyckhuyse, B C; Ji, Z S et al. (1995) Characterization of low-molecular-weight peptides in human parotid saliva. J Dent Res 74:345-50
Zhang, G H; Melvin, J E (1994) Nicotine increases [Ca2+]i in rat sublingual mucous acini by stimulating neurotransmitter release from presynaptic terminals. Proc Soc Exp Biol Med 207:292-301
Bowen, W H; Pearson, S K (1994) Residual effects of fluoride on a severe cariogenic challenge in rats. Caries Res 28:246-50
Adair, S M; Leverett, D H; Shaffer, C L (1994) Interexaminer agreement for readings of dip slide tests for salivary mutans streptococci and lactobacilli. Caries Res 28:123-6
Zhang, G H; Melvin, J E (1994) Intracellular Mg2+ movement during muscarinic stimulation. Mg2+ uptake by the intracellular Ca2+ store in rat sublingual mucous acini. J Biol Chem 269:10352-6
O'Connell, A C; Bowen, W H (1994) Composition and flow rate of saliva and caries development in young rats following administration of lithium. Caries Res 28:342-7

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