Effective in situ repair and bacteriostatic material of tooth enamel based on salivary acquired pellicle inspired oligomeric procyanidins
Literature Information
Shuhui Zhang, Libang He, Yinxin Yang, Bo Yang, Yixue Liao, Xinyuan Xu, Jiyao Li, Xiao Yang, Jianshu Li
Remineralization and reduction of cariogenic bacteria at the tooth surface are effective ways to treat dental caries. In this work, a type of in situ repair and bacteriostatic material, i.e., salivary acquired pellicle inspired oligomeric procyanidins (SAP-OPC), was prepared for tooth enamel. Oligomeric procyanidins (OPC), as the active ingredient of grape seed extract, has good remineralization ability and bacteriostatic effects. The peptide sequence DDDEEKC, which has strong adsorption ability on hydroxyapatite (HA), is inspired by the sequence of statherin in the salivary acquired pellicle (SAP). Thus, SAP-OPC has the capability to tightly adsorb on the enamel surface, then repair the tooth decay and inhibit the growth of biofilm of cariogenic bacteria. We mainly explored the relationship between the remineralization property and aggregation morphology of SAP-OPC, and evaluate the anti-bacterial adhesion ability of the SAP-OPC coating. The acid-etched enamel was treated by SAP-OPC and SAP-OPC/Fe(III) and then incubated in artificial saliva. After 2 weeks, the HA mineralized layer was regenerated significantly on the surface of acid-etched enamel samples, and the hardness of the samples recovered to 61.6% and 76.8%, respectively. Also, SAP-OPC exhibited good antibacterial adhesive effects in the bacteriological test. In summary, SAP-OPC has good performance as restorative biomaterials to resist bacteria and also induce the remineralization of tooth enamel.
Recommended Journals
Related Literature
Dependence of the nascent vibrational distribution of NO(v) on the photolysis wavelength of NO2 in the range λ = 266–327 nm measured by time-resolved Fourier transform infrared emission
C. Brooks, G. Hancock, M. Saunders
DOI: 10.1039/B710594K
Frequency-dependent response properties and excitation energies from one-electron density matrix functionals
Jerzy Cioslowski
DOI: 10.1039/B704797E
Intracule functional models: I. Angle-corrected correlation kernels
Elise E. Dumont, Deborah L. Crittenden, Peter M. W. Gill
DOI: 10.1039/B709513A
Chlorine–benzene complexes—the reliability of density functionals for non-covalent radical complexes‡
A. K. Croft, H. M. Howard-Jones
DOI: 10.1039/B704966H
Silica-supported chromium oxide: colloids as building blocks‡
Ive Hermans, Eric Breynaert, Hilde Poelman, Roger De Gryse, Duoduo Liang, Gustaaf Van Tendeloo, André Maes, Jozef Peeters, Pierre Jacobs
DOI: 10.1039/B706601E
Acid/base equilibria in clusters and their role in proton exchange membranes: computational insight
Vassiliki-Alexandra Glezakou, Michel Dupuis, Christopher J. Mundy
DOI: 10.1039/B709752B
Coverage dependent structures of oligopyridine adlayers on (111) oriented Ag films
Matthias Roos, Harry E. Hoster, Achim Breitruck, R. Jürgen Behm
DOI: 10.1039/B708578H
Single-wall carbon nanotubes and peapods investigated by EPR
B. Corzilius, K.-P. Dinse, K. Hata
DOI: 10.1039/B707936M
You might also like
What is 1-(2,4,6-Trifluorophenyl)ethanol (CAS: 1250113-83-7)?
1-(2,4,6-Trifluorophenyl)ethanol is an organic compound with the CAS number 1250...
Is 1-(2,4-Dimethoxybenzyl)-4-(hydroxymethyl)-2-pyrrolidinone (CAS: 919111-34-5) safe?
1-(2,4-Dimethoxybenzyl)-4-(hydroxymethyl)-2-pyrrolidinone (CAS: 919111-34-5) is ...
What are the physical and chemical properties of (7S,15R)-6β,15-Diacetoxy-7α,20-epoxy-7-hydroxykaura-2,16-dien-1-one (CAS: 51419-51-3)?
(7S,15R)-6β,15-Diacetoxy-7α,20-epoxy-7-hydroxykaura-2,16-dien-1-one is a crystal...
What regulatory guidelines apply to rac-ethyl (1r,4r)-4-hydroxycyclohexane-1-carboxylate, trans (CAS: 3618-04-0)?
The compound rac-ethyl (1r,4r)-4-hydroxycyclohexane-1-carboxylate, trans (CAS: 3...
What is the market or research trend for 2-(2,4-Difluorophenoxy)-3-nitropyridine (CAS: 175135-62-3)?
The market for 2-(2,4-Difluorophenoxy)-3-nitropyridine (CAS: 175135-62-3) is cur...
What are the main uses of 6-Diazo-5-oxo-L-norleucine (CAS: 157-03-9)?
The main uses of 6-Diazo-5-oxo-L-norleucine (CAS: 157-03-9) include research in ...
What precautions should be taken when handling 2-Aminoethyl-mono-amide-DOTA-tris(tBu ester) (CAS: 173308-19-5)?
When handling 2-Aminoethyl-mono-amide-DOTA-tris(tBu ester) (CAS: 173308-19-5), i...
How is 5-Methylimidazo[1,2-a]pyridine-3-carbaldehyde (CAS: 178488-37-4) typically synthesized?
5-Methylimidazo[1,2-a]pyridine-3-carbaldehyde (CAS: 178488-37-4) can be synthesi...
Are there alternatives to 2,4,6-Trihydroxyisophthalaldehyde (CAS: 4396-13-8) in synthesis?
There are alternative reagents that can be used in the synthesis of 2,4,6-Trihyd...
What is (2Z)-3-(5-Fluoro-1H-indol-3-yl)-2-sulfanylacrylic acid (CAS: 179461-52-0)?
(2Z)-3-(5-Fluoro-1H-indol-3-yl)-2-sulfanylacrylic acid is a chemical compound wi...
Source Journal
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.














