apatite surface
Recently Published Documents


TOTAL DOCUMENTS

20
(FIVE YEARS 5)

H-INDEX

6
(FIVE YEARS 0)

ACS Omega ◽  
2022 ◽  
Author(s):  
Vasiliy V. Sergeev ◽  
Olga V. Cheremisina ◽  
Alexander T. Fedorov ◽  
Alexandra A. Gorbacheva ◽  
Daniil A. Balandinsky

Author(s):  
Ying-Cen Chen ◽  
Wei-Hsing Tuan ◽  
Po-Liang Lai

AbstractThe formation of a nano-apatite surface layer is frequently considered a measure of bioactivity, especially for non-phosphate bioceramics. In the present study, strontium-doped calcium sulfate, (Ca,Sr)SO4, was used to verify the feasibility of this measure. The (Ca,Sr)SO4 specimen was prepared by mixing 10% SrSO4 by weight with 90% CaSO4·½H2O powder by weight. A solid solution of (Ca,7.6%Sr)SO4 was then produced by heating the powder mixture at 1100 °C for 1 h. The resulting (Ca,Sr)SO4 specimen was readily degradable in phosphate solution. A newly formed surface layer in the form of flakes was formed within one day of specimen immersion in phosphate solution. Structural and microstructure–compositional analyses indicated that the flakes were composed of octacalcium phosphate (OCP) crystals. An amorphous interface containing OCP nanocrystals was found between the newly formed surface layer and the remaining (Ca,Sr)SO4 specimen. The specimen was also implanted into a rat distal femur bone defect. In addition to new bone, fibrous tissue and inflammatory cells were found to interlace the (Ca,Sr)SO4 specimen. The present study indicated that a more comprehensive evaluation is needed to assess the bioactivity of non-phosphate bioceramics.


2021 ◽  
Vol 74 (3) ◽  
pp. 369-377
Author(s):  
José Jonathan Vallejos Morán ◽  
Carlos Alberto Castañeda Olivera ◽  
Lorgio Valdiviezo Gonzalez ◽  
Antonio G. Merma ◽  
Maurício Leonardo Torem

2020 ◽  
Vol 35 (6) ◽  
pp. 479-490
Author(s):  
Natasha Hussain ◽  
Hina Khalid ◽  
Yara Khalid AlMaimouni ◽  
Samman Ikram ◽  
Maria Khan ◽  
...  

The objectives were to synthesize urethane grafted nano-apatite in shortest possible time duration using the microwave irradiation method and to utilize them for synthesis of experimental dental adhesives. The structural, morphological, thermal, and mechanical behavior of synthesized grafted nano-apatite were investigated. Then, these grafted nano-apatite particles were incorporated in various concentrations that is, 5wt.%, 10wt.%, and 15wt.% into dimethacrylate resins to develop bioactive adhesives. The weight measurement analysis in deionized water and phosphate buffer saline, Knoop micro-hardness, and degree of conversion were evaluated. The bacterial adhesion was investigated with Streptococcus mutans at 6h, 24h, and 48h. Statistical analysis was conducted using one-way ANOVA. The urethane dimethacrylate was successfully grafted on the nano-apatite surface and spectroscopic analysis confirmed the presence of urethane and phosphate peaks. An inverse relationship was found in both media between the concentration of grafted fillers and weight loss. No significant difference was observed in the micro-hardness and degree of conversion among the groups, whereby the degree of conversion for all groups was in the range of 83% to 86%. The mean number of bacterial colonies was significantly lower in the 15wt.% group compared to 5wt.% and 10wt.%. The grafted nano-apatite presented favorable results for adhesive resin incorporation, where 15wt.% group comparatively showed superior results than other groups.


2019 ◽  
Vol 9 (1) ◽  
Author(s):  
Hakim Rabia ◽  
Malek Ould Hamou ◽  
Katarzyna Kasperkiewicz ◽  
Jolanta Brożek ◽  
Maria Augustyniak

Abstract Chemical reagents used in traditional mineral processing can be toxic and hazardous for the environment. Therefore, the use of biotechnological methods is becoming increasingly important. Great hopes are being placed in the use of microorganisms for bio-beneficiation of raw materials. However, assessment of adhesion abilities of bacteria onto minerals surface as well as biosorption of metals are essential steps before designing final process of each ore beneficiation. The main aim of this work was an investigation of biosorption of Cd and Mg, as well as adhesion abilities of five microorganism species with minerals included in the natural mixture of phosphate ore form Djebel Onk, Algeria. The ore, due to its unique composition, created conditions for adhesion of all five tested microbial strains onto apatite surface during incubation at pH 3. Moreover, Rhodococcus erythropolis CD 130, Pseudomonas fluorescens and Escherichia coli adhered distinctly onto apatite surface during incubation at pH 7. Incubation lasting 20 min at pH 4-6 created the most favorable conditions for biosorption of metals by B. subtilis and adhesion of cells. In case of C. albicans, biosorption of metals as well as adhesion of cells onto the mineral surface were more effective after longer time and in a wider pH range.


2017 ◽  
pp. 231-236
Author(s):  
A. Lebugle ◽  
M. Subirade ◽  
V. Delpech
Keyword(s):  

2016 ◽  
Vol 124 (2) ◽  
pp. 195-203 ◽  
Author(s):  
Baba Bista ◽  
Syozi Nakashima ◽  
Toru Nikaido ◽  
Alireza Sadr ◽  
Tomohiro Takagaki ◽  
...  

2014 ◽  
Vol 614 ◽  
pp. 3-6
Author(s):  
Daniel Navarro da Rocha ◽  
Leila Rosa de Oliveira Cruz ◽  
Luciano de Andrade Gobbo ◽  
Marcelo Henrique Prado da Silva

Hydroxyapatite is a bioceramic material of great interest for use as bone substitute because of its similarity with the composition of biological apatite. Cationic and anionic substitutions in the apatite structure have been made in order to optimize the synthesis and accelerate the process of bone repair. In the present study, niobate apatite was synthesized by a patented aqueous precipitation method. The bioactivity of the samples was assessed by X-ray diffraction analyses (XRD), energy dispersive X-ray spectroscopy (EDS) and scanning electron microscopy with field emission gun (FEG-SEM; FEI Quanta FEG 250) in the samples before and after an incubation period in simulated body fluid. The results showed that after 3 days a bone-like apatite coating was formed onto the niobate apatite surface. A peculiar morphology comprised by nanosized wires was also observed on the niobate apatite surface.


Bone ◽  
2011 ◽  
Vol 48 ◽  
pp. S111
Author(s):  
H.-M. Kim ◽  
S. Yang ◽  
Y.-J. Lee ◽  
Y.S. Tian ◽  
F.H. Yu ◽  
...  

Sign in / Sign up

Export Citation Format

Share Document