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Fiscal 2000 survey report. Research on bone-forming dental material capable of reducing plaque adhesion; 2000 nendo shiko fuchaku boshigata hone keisei shika zairyo ni kansuru chosa kenkyu hokokusho

Abstract

Research and development efforts are exerted to produce advanced dental materials equipped with such functions as plaque reduction, bactericidal effect, and early formation of hydroxyapatite (HAP). In the study of fluorine ion implantation for plaque reduction, it is found that in a specimen implanted with fluorine ions the adhesion of carius streptococci is reduced to 1/3-1/10 for the achievement of remarkable improvement. In particular, carious streptococcus multiplication is suppressed when the metal shield layer is replaced with a titanium mesh. For the realization of a thin film formation method for osteoblast multiplication through reforming the material surface in the study of bone-forming dental materials, film formation conditions under which a P/Ca rate which is quite near that of ameloblast are achieved by use of a high frequency magnetron sputtering device. A titanium plate coated with a thus-formed film is annealed for a great increase in its wet contact angle, and then adhesion of bacteria is reduced and an osteoblast multiplication rate is increased by 20% or more, as compared with the case of no treatment in a petri dish. (NEDO)
Authors:
"NONE"
Publication Date:
Mar 01, 2001
Product Type:
Technical Report
Report Number:
JP-NEDO-010016876
Resource Relation:
Other Information: PBD: Mar 2001
Subject:
60 APPLIED LIFE SCIENCES; BONE TISSUES; DENTISTRY; TEETH; STERILIZATION; HYDROGEN COMPOUNDS; APATITES; FLUORINE; STREPTOCOCCUS; TITANIUM; BONE CELLS; BACTERIA; CELL CULTURES
OSTI ID:
20175284
Research Organizations:
New Energy and Industrial Technology Development Organization, Tokyo (Japan)
Country of Origin:
Japan
Language:
Japanese
Other Identifying Numbers:
TRN: JN0140184
Availability:
Available to ETDE participating countries only(see www.etde.org); commercial reproduction prohibited; OSTI as DE20175284
Submitting Site:
NEDO
Size:
112 pages
Announcement Date:

Citation Formats

Fiscal 2000 survey report. Research on bone-forming dental material capable of reducing plaque adhesion; 2000 nendo shiko fuchaku boshigata hone keisei shika zairyo ni kansuru chosa kenkyu hokokusho. Japan: N. p., 2001. Web.
Fiscal 2000 survey report. Research on bone-forming dental material capable of reducing plaque adhesion; 2000 nendo shiko fuchaku boshigata hone keisei shika zairyo ni kansuru chosa kenkyu hokokusho. Japan.
2001. "Fiscal 2000 survey report. Research on bone-forming dental material capable of reducing plaque adhesion; 2000 nendo shiko fuchaku boshigata hone keisei shika zairyo ni kansuru chosa kenkyu hokokusho." Japan.
@misc{etde_20175284,
title = {Fiscal 2000 survey report. Research on bone-forming dental material capable of reducing plaque adhesion; 2000 nendo shiko fuchaku boshigata hone keisei shika zairyo ni kansuru chosa kenkyu hokokusho}
abstractNote = {Research and development efforts are exerted to produce advanced dental materials equipped with such functions as plaque reduction, bactericidal effect, and early formation of hydroxyapatite (HAP). In the study of fluorine ion implantation for plaque reduction, it is found that in a specimen implanted with fluorine ions the adhesion of carius streptococci is reduced to 1/3-1/10 for the achievement of remarkable improvement. In particular, carious streptococcus multiplication is suppressed when the metal shield layer is replaced with a titanium mesh. For the realization of a thin film formation method for osteoblast multiplication through reforming the material surface in the study of bone-forming dental materials, film formation conditions under which a P/Ca rate which is quite near that of ameloblast are achieved by use of a high frequency magnetron sputtering device. A titanium plate coated with a thus-formed film is annealed for a great increase in its wet contact angle, and then adhesion of bacteria is reduced and an osteoblast multiplication rate is increased by 20% or more, as compared with the case of no treatment in a petri dish. (NEDO)}
place = {Japan}
year = {2001}
month = {Mar}
}