durapatite has been researched along with epigallocatechin gallate in 8 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 1 (12.50) | 18.2507 |
2000's | 1 (12.50) | 29.6817 |
2010's | 2 (25.00) | 24.3611 |
2020's | 4 (50.00) | 2.80 |
Authors | Studies |
---|---|
Hirasawa, M; Kuroki, T; Makimura, M; Nishihara, Y; Otake, S | 1 |
Arnebrant, T; Elofsson, UM; Joiner, A; Muller, D | 1 |
Ishikawa, K; Kimura, T; Matsuo, T; Shibata, S; Suge, T | 1 |
Chu, C; Deng, J; Man, Y; Qu, Y | 1 |
Lam, ATW; Wang, Y | 1 |
Chen, H; He, J; Hu, X; Li, K; Li, S; Lu, C; Qiao, L; Wang, Z; Xiong, C; Yang, H; Zhang, X; Zheng, Q | 1 |
Chen, H; Guo, J; Jin, S; Qin, T; Yao, D | 1 |
Bose, S; Kushram, P; Majumdar, U | 1 |
8 other study(ies) available for durapatite and epigallocatechin gallate
Article | Year |
---|---|
Anticaries effects of polyphenolic compounds from Japanese green tea.
Topics: Adsorption; Animals; Bacterial Adhesion; Dental Caries; Durapatite; Flavonoids; Glucans; Glucosyltransferases; Hydroxyapatites; Japan; Phenols; Polymers; Polyphenols; Polysaccharides, Bacterial; Rats; Rats, Inbred Strains; Specific Pathogen-Free Organisms; Streptococcus mutans; Tea | 1991 |
Ellipsometry analysis of the in vitro adsorption of tea polyphenols onto salivary pellicles.
Topics: Adsorption; Adult; Antioxidants; Biflavonoids; Buffers; Catechin; Dental Pellicle; Detergents; Durapatite; Flavonoids; Humans; Male; Phenols; Polyphenols; Refractometry; Salivary Proteins and Peptides; Sodium Dodecyl Sulfate; Tannins; Tea; Urokinase-Type Plasminogen Activator | 2004 |
Antibacterial activity of ammonium hexafluorosilicate solution with antimicrobial agents for the prevention of dentin caries.
Topics: Acid Etching, Dental; Anti-Bacterial Agents; Anti-Infective Agents, Local; Bacterial Adhesion; Bacterial Load; Biofilms; Cariostatic Agents; Catechin; Cetylpyridinium; Chlorhexidine; Dental Caries; Dentin; Durapatite; Fluorides; Humans; Materials Testing; Microscopy, Electron, Scanning; Phenols; Phosphoric Acids; Silicic Acid; Silver Compounds; Streptococcus mutans; Wettability | 2012 |
Evaluation of nanohydroxyapaptite (nano-HA) coated epigallocatechin-3-gallate (EGCG) cross-linked collagen membranes.
Topics: Animals; Bone Regeneration; Catechin; Collagen; Durapatite; Membranes, Artificial; Osteogenesis; Rats | 2017 |
Epigallocatechin gallate and gallic acid affect colonization of abiotic surfaces by oral bacteria.
Topics: Actinomyces; Bacterial Adhesion; Biofilms; Catechin; Durapatite; Gallic Acid; Glass; Stainless Steel; Streptococcus mutans | 2020 |
3D printed PCLA scaffold with nano-hydroxyapatite coating doped green tea EGCG promotes bone growth and inhibits multidrug-resistant bacteria colonization.
Topics: Anti-Bacterial Agents; Bone Regeneration; Caproates; Catechin; Dioxanes; Durapatite; Lactones; Methicillin-Resistant Staphylococcus aureus; Osteogenesis; Polymerization; Polyphenols; Printing, Three-Dimensional; Tea; Tissue Engineering; Tissue Scaffolds; Water | 2022 |
Effect of Alleviating Fibrosis with EGCG-Modified Bone Graft in Murine Model Depended on Less Accumulation of Inflammatory Macrophage.
Topics: Animals; Bone Regeneration; Capsules; Catechin; Disease Models, Animal; Durapatite; Macrophages; Mice; Osteogenesis | 2023 |
Hydroxyapatite coated titanium with curcumin and epigallocatechin gallate for orthopedic and dental applications.
Topics: Anti-Bacterial Agents; Bone Neoplasms; Curcumin; Durapatite; Humans; Osteosarcoma; Titanium | 2023 |