scholarly journals Collagen cross-linking. Effect of D-penicillamine on cross-linking in vitro.

1977 ◽  
Vol 252 (1) ◽  
pp. 254-259
Author(s):  
R C Siegel
1982 ◽  
Vol 108 (4) ◽  
pp. 1546-1550 ◽  
Author(s):  
Robert C. Siegel ◽  
Joseph C.C. Fu ◽  
Norihiko Uto ◽  
Kentaro Horiuchi ◽  
Daisaburo Fujimoto

2012 ◽  
Author(s):  
Liliane Ventura ◽  
Victor A. C. Lincoln ◽  
Marcio M. Mello ◽  
Sidney J. Faria e Sousa

2014 ◽  
Vol 55 (3) ◽  
pp. 1549 ◽  
Author(s):  
Ithar M. Beshtawi ◽  
Riaz Akhtar ◽  
M. Chantal Hillarby ◽  
Clare O'Donnell ◽  
Xuegen Zhao ◽  
...  

2019 ◽  
Vol 48 (5) ◽  
pp. 030006051989130
Author(s):  
Honglin Yang ◽  
Bingqing Xie ◽  
Yue Wang ◽  
Yayun Cui ◽  
Hui Yang ◽  
...  

Objectives Proanthocyanidins (PAs) have been widely used as effective agents for dentin collagen cross-linking to enhance the biomechanics and biostability of dentin in vitro. However, the effects and protective mechanisms of various tea root-derived PA components on dentin remain undefined. This study evaluated the effects of these tea root-derived PA components on dentin biomechanics and biostability. Methods In this study, ethyl acetate and n-butyl alcohol were used to extract PAs with different degrees of polymerization from tea roots; the effects of these PA extracts on dentin were evaluated. Results Dentin was treated with glutaraldehyde, ethyl acetate, n-butyl alcohol, or water. PAs with a high degree of polymerization, extracted using n-butyl alcohol, were able to more effectively improve dentin collagen cross-linking, increase resistance to bacterial collagenase digestion, and enhance dentin elasticity, relative to treatment with glutaraldehyde or PAs with a low degree of polymerization (extracted using ethyl acetate). Additionally, treatment with aqueous extract of tea roots was detrimental to dentin stability and function. Conclusions PAs with a high degree of polymerization were effective for dentin protection and restoration in vitro, suggesting clinical treatment potential for tea root-derived PAs.


2012 ◽  
Vol 35 ◽  
pp. e48
Author(s):  
Ithar M. Beshtawi ◽  
Clare O’Donnell ◽  
Chantal Hillarby ◽  
Arun Brahma ◽  
Fiona Carley ◽  
...  

2017 ◽  
Vol 7 (1) ◽  
Author(s):  
Rabab Sharif ◽  
Jesper Hjortdal ◽  
Henrik Sejersen ◽  
Garett Frank ◽  
Dimitrios Karamichos

Author(s):  
Manasi Kewlani ◽  
Suparna Ganguly Saha ◽  
Anuj Bhardwaj ◽  
Mainak Kanti Saha ◽  
Prashansa Vijaywargiya ◽  
...  

Introduction. This in vitro study aims to evaluate and compare the effect of decontamination protocol - based on sodium hypochlorite - NaOCl, as a decontaminating agent, followed by the application of a collagen cross-linking agent like sodium ascorbate [Na Ascorbate] or Proanthocyanidin [PA]) on the shear bond strength of eighth generation bonding agent to contaminated dentin (saliva, blood and blood followed by hemostatic agent). Methodology. The buccal surfaces of extracted premolars were flattened to expose the dentine. The teeth were then randomly divided into 3 groups based on the contaminant used (saliva, blood and blood followed by hemostatic agent). Decontamination protocol was carried out with sodium hypochlorite followed by application of either of the two collagen cross-linking agents (sodium ascorbate/proanthocyanidin) in each group. FuturaBond DC (eighth generation) bonding agent was used to bond composite to dentin surfaces which was subjected to shear bond strength testing. Data was analyzed by one-way ANOVA and Tukey test. Results All the groups (contaminated with saliva, blood, or hemostatic agent) showed a decrease in shear bond strength of composite resin to dentin. The shear bond strength of composite resin to dentin was least affected by contamination with saliva followed by contamination with blood and was most affected by contamination with a hemostatic agent. The decontamination protocol carried out showed that the combination of NaOCl and Proanthocyanidin improved the shear bond strength of composite to dentin significantly more than the combination of NaOCl and sodium ascorbate or ofsodium hypochlorite used alone.


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