|
Sign In to gain access to subscriptions and/or personal tools.
|
Production and Characterization of Monoclonal Antibodies Against Bacteroides forsythus and Wolinella recta
G. Werner-Felmayer
Department of Oral Microbiology and General Immunology, Dental Institute, University of Zurich, Plattenstrasse 11, CH-8028 Zurich, Switzerland
B. Guggenheim
Department of Oral Microbiology and General Immunology, Dental Institute, University of Zurich, Plattenstrasse 11, CH-8028 Zurich, Switzerland
R. Gmür
Department of Oral Microbiology and General Immunology, Dental Institute, University of Zurich, Plattenstrasse 11, CH-8028 Zurich, Switzerland
Hybrid cell lines producing monoclonal antibodies against Bacteroides forsythus or Wolinella recta were generated by fusion of SP2/0 or FO myeloma cells with splenocytes from Balb/c mice immunized with formalinized cells of B. forsythus FDC 331 or W. recta D13a-g, respectively. Enzyme-linked immunosorbent assays and indirect immunofluorescence tests were used to analyze the distribution of the recognized antigens on a panel of 70 strains representing 35 taxa, most of which are members of the oral flora. All monoclonal antibodies-eight against B. forsythus and six against W. recta-proved specific for the immunizing species. Four of the monoclonal antibodies against W. recta recognized antigens expressed by only some of the tested W. recta strains, thus confirming the earlier noted antigenic heterogeneity of this species. Antibody binding patterns consistent with those previously described or distinct for new serogroups could not, however, be observed. Four of the eight anti-B. forsythus monoclonal antibodies bound to only two of the three tested B. forsythus strains. All the remaining monoclonal antibodies detected every strain tested of the respective species against which they were raised. Preliminary results indicated that several of these antibodies should be very useful for the direct identification and quantification of these organisms in subgingival plaque.
REFERENCES
- Badger, S.J. and Tanner, A.C.R. (1981): Serological Studies of Bacteroides gracilis, Campylobacter concisus, Wolinella recta, and Eikenella corrodens, all from Humans with Periodontal Disease, Int J Syst Bacteriol 31:446-451.
- Cleveland, W.L.; Wood, I.; and Erlanger, B.F. (1983): Routine Large-Scale Production of Monoclonal Antibodies in a Protein-free Culture Medium, J Immunol Meth 56:221-234.[CrossRef][Medline]
[Order article via Infotrieve]
- Dzink, J.L.; Tanner, A.C.R.; Haffajee, A.D.; and Socransky, S.S. (1985): Gram Negative Species Associated with Active Destructive Periodontal Lesions, J Clin Periodontol 12:648-659.[CrossRef][Medline]
[Order article via Infotrieve]
- Fazekas De ST Groth, S. and Scheidegger, D. (1980): Production of Monoclonal Antibodies: Strategy and Tactics, J Immunol Meth 35:1-21.[CrossRef][Medline]
[Order article via Infotrieve]
- Gmur, R.; Felmayer, G.; and Guggenheim, B. (1987): Quantitative Monitoring of the Periodontal Pocket Flora with Monoclonal Antibodies, J Dent Res 66:120, Abst. No. 106.
- Gmur, R. and Guggenheim, B. (1983): Antigenic Heterogeneity of Bacteroides intermedius as Recognized by Monoclonal Antibodies, Infect Immun 42:459-470.[Abstract/Free Full Text]
- Gmur, R.; Solter, D.; and Knowles, B.B. (1980): Independent Regulation of H-2K and H-2D Gene Expression in Murine Teratocarcinoma Somatic Cell Hybrids, J Exp Med 151:1349-1359.[Abstract/Free Full Text]
- Gmur, R. and Wyss, C. (1985): Monoclonal Antibodies to Characterize the Antigenic Heterogeneity of Bacteroides intermedius. In: Monoclonal Antibodies Against Bacteria, Vol. I, A.J.L. Macario and E. Conway de Macario, Eds., New York: Academic Press, pp. 91-119.
- Guggenheim, B. and Schroeder, H.E. (1974): Reactions in the Periodontium to Continuous Antigenic Stimulation in Sensitized Gnotobiotic Rats, Infect Immun 10:565-577.[Abstract/Free Full Text]
- Mansheim, B.J. and Kasper, D.L. (1977): Purification and Immunochemical Characterization of the Outer Membrane Complex of Bacteroides melaninogenicus subspecies asaccharolyticus, J Infect Dis 135:787-799.[Medline]
[Order article via Infotrieve]
- Ohta, K.; Makinen, K.; and Loesche, W.J. (1986): Purification and Characterisation of an Enzyme Produced by Treponema denticola Capable of Hydrolyzing Synthetic Trypsin Substrates, Infect Immun 53:213-220.[Abstract/Free Full Text]
- Sundqvist, G. (1976): Bacteriological Studies of Necrotic Dental Pulps, PhD Thesis, University of Umeå, Sweden.
- Tanner, A.C.R. (1986): Characterization of Wolinella spp., Campylobacter concisus, Bacteroides gracilis, and Eikenella corrodens by Polyacrylamide Gel Electrophoresis, J Clin Microbiol 24:562-565.
- Tanner, A.C.R.; Badger, S.; Lai, C.-H.; Listgarten, M.A.; Visconti, R.A.; and Socransky, S.S. (1981): Wolinella gen. nov., Wolinella succinogenes (Vibrio succinogenes Wolin et al.) comb. nov., and Description of Bacteroides gracilis sp. nov., Wolinella recta sp. nov., Campylobacter concisus sp. nov., and Eikenella corrodens from Humans with Periodontal Disease, Int J Syst Bacteriol 31:432-445.
- Tanner, A.C.R.; Listgarten, M.A.; and Ebersole, J.L. (1984a): Wolinella curva sp. nov.: "Vibrio succinogenes" of Human Origin, Int J Syst Bacteriol 34:275-282.[Abstract/Free Full Text]
- Tanner, A.C.R.; Listgarten, M.A.; Ebersole, J.L.; and Strzempko, M.N. (1986): Bacteroides forsythus sp. nov., a Slow-growing, Fusiform Bacteroides sp. from the Human Oral Cavity, Int J Syst Bacteriol 36:213-221.[Abstract/Free Full Text]
- Tanner, A.C.R.; Socransky, S.S.; and Goodson, J.M. (1984b): Microbiota of Periodontal Pockets Losing Crestal Alveolar Bone, J Periodont Res 19:279-291.[CrossRef][Medline]
[Order article via Infotrieve]
- Tanner, A.C.R.; Visconti, R.A.; Holdeman, L.V.; Sundqvist, G.; and Socransky, S.S. (1982): Similarity of Wolinella recta Strains from Periodontal Pockets and Root Canals, J Endodont 8:294-300.[Medline]
[Order article via Infotrieve]
Journal of Dental Research, Vol. 67, No. 3,
548-553 (1988)
DOI: 10.1177/00220345880670030501

CiteULike Complore Connotea Del.icio.us Digg Reddit Technorati Twitter What's this?
This article has been cited by other articles:

|
 |

|
 |
 
J. Zuger, H. Luthi-Schaller, and R. Gmur
Uncultivated Tannerella BU045 and BU063 are slim segmented filamentous rods of high prevalence but low abundance in inflammatory disease-associated dental plaques
Microbiology,
November 1, 2007;
153(11):
3809 - 3816.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
R. Gmur, T. Thumheer, and B. Guggenheim
Dominant Cross-reactive Antibodies Generated during the Response to a Variety of Oral Bacterial Species Detect Phosphorylcholine
Journal of Dental Research,
January 1, 1999;
78(1):
77 - 85.
[Abstract]
[PDF]
|
 |
|

|
 |

|
 |
 
R. Gmur and B. Guggenheim
Interdental Supragingival Plaque--A Natural Habitat of Actinobacillus actinomycetemcomitans, Bacteroides forsythus, Campylobacter rectus, and Prevotella nigrescens
Journal of Dental Research,
August 1, 1994;
73(8):
1421 - 1428.
[Abstract]
[PDF]
|
 |
|
|
|