Effects of Fluoride and Chlorhexidine on the Microflora of Dental Root Surfaces and Progression of Root-surface Caries

1991 ◽  
Vol 70 (2) ◽  
pp. 150-153 ◽  
Author(s):  
M.J.M. Schaeken ◽  
H.M.A.M. Keltjens ◽  
J.S. Van Der Hoeven
1990 ◽  
Vol 69 (8) ◽  
pp. 1463-1468 ◽  
Author(s):  
J. Van Houte ◽  
H.V. Jordan ◽  
R. Laraway ◽  
R. Kent ◽  
P.M. Soparkar ◽  
...  

Dental plaque was obtained from one or two sound root surfaces of subjects with different degrees of root-surface caries experience. From subjects with root-surface caries, plaque samples were also obtained from either one incipient or one more advanced lesion. Proportions of the total flora were determined for total streptococci and different streptococcal species, total and different Actinomyces species, and lactobacilli. A sample of saliva was obtained from about one-third of the subjects for determination of the concentrations of mutans streptococci and lactobacilli. The main observations were: (1) Subjects without root-surface caries or restorations (group I), as compared with subjects with root-surface caries with or without restorations (group II), were characterized by having a lower prevalence and proportion of mutans streptococci and a higher prevalence and proportion of A. naeslundii in plaque on sound root surfaces; (2) subjects in group I also tended to have a lower salivary concentration of mutans streptococci and lactobacilli than subjects in group II; (3) dental plaque on sound surfaces in group II subjects contained a lower proportion of mutans streptococci than plaque associated with incipient or advanced lesions; and (4) the prevalence and proportion of lactobacilli in plaque associated with sound as well as carious root surfaces were very low. The data reinforce findings from other studies and indicate that, as for coronal caries, the plaque and saliva populations of mutans streptococci specifically are correlated positively with the presence of root-surface caries.


Plants ◽  
2021 ◽  
Vol 10 (3) ◽  
pp. 508
Author(s):  
Stefano Rosatto ◽  
Mauro Mariotti ◽  
Sara Romeo ◽  
Enrica Roccotiello

The soil–root interface is the micro-ecosystem where roots uptake metals. However, less than 10% of hyperaccumulators’ rhizosphere has been examined. The present study evaluated the root and shoot response to nickel in hyperaccumulator and non-hyperaccumulator species, through the analysis of root surface and biomass and the ecophysiological response of the related aboveground biomass. Ni-hyperaccumulators Alyssoides utriculata (L.) Medik. and Noccaea caerulescens (J. Presl and C. Presl) F.K. Mey. and non-hyperaccumulators Alyssum montanum L. and Thlaspi arvense L. were grown in pot on Ni-spiked soil (0–1000 mg Ni kg−1, total). Development of root surfaces was analysed with ImageJ; fresh and dry root biomass was determined. Photosynthetic efficiency was performed by analysing the fluorescence of chlorophyll a to estimate the plants’ physiological conditions at the end of the treatment. Hyperaccumulators did not show a Ni-dependent decrease in root surfaces and biomass (except Ni 1000 mg kg−1 for N. caerulescens). The non-hyperaccumulator A. montanum suffers metal stress which threatens plant development, while the excluder T. arvense exhibits a positive ecophysiological response to Ni. The analysis of the root system, as a component of the rhizosphere, help to clarify the response to soil nickel and plant development under metal stress for bioremediation purposes.


1974 ◽  
Vol 8 (3) ◽  
pp. 249-255 ◽  
Author(s):  
John L. Westbrook ◽  
Arthur S. Miller ◽  
Neal W. Chilton ◽  
Frank L. Williams ◽  
Richard D. Mumma, jr.

1988 ◽  
Vol 67 (1) ◽  
pp. 44-45 ◽  
Author(s):  
A.R. Firestone ◽  
F.F. Feagin ◽  
C.N. Graves ◽  
G.K. Stookey ◽  
C. Rodlun ◽  
...  

2018 ◽  
Vol 46 (6) ◽  
pp. 535-544 ◽  
Author(s):  
Ninuk Hariyani ◽  
A. John Spencer ◽  
Liana Luzzi ◽  
Loc Giang Do

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