biphasic calcium phosphate
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Gels ◽  
2022 ◽  
Vol 8 (1) ◽  
pp. 28
Author(s):  
Helena Herrada-Manchón ◽  
David Rodríguez-González ◽  
Manuel Alejandro Fernández ◽  
Nathan William Kucko ◽  
Florence Barrère-de Groot ◽  
...  

The production of patient-specific bone substitutes with an exact fit through 3D printing is emerging as an alternative to autologous bone grafting. To the success of tissue regeneration, the material characteristics such as porosity, stiffness, and surface topography have a strong influence on the cell–material interaction and require significant attention. Printing a soft hydrocolloid-based hydrogel reinforced with irregularly-shaped microporous biphasic calcium phosphate (BCP) particles (150–500 µm) is an alternative strategy for the acquisition of a complex network with good mechanical properties that could fulfill the needs of cell proliferation and regeneration. Three well-known hydrocolloids (sodium alginate, xanthan gum, and gelatin) have been combined with BCP particles to generate stable, homogenous, and printable solid dispersions. Through rheological assessment, it was determined that the crosslinking time, printing process parameters (infill density percentage and infill pattern), as well as BCP particle size and concentration all influence the stiffness of the printed matrices. Additionally, the swelling behavior on fresh and dehydrated 3D-printed structures was investigated, where it was observed that the BCP particle characteristics influenced the constructs’ water absorption, particle diffusion out of the matrix and degradability.


Author(s):  
Thomas Fusco ◽  
Katherine Sage ◽  
Stasia Rush ◽  
Felicia Blom ◽  
Kyle Colvin

2021 ◽  
Vol 5 (4) ◽  
pp. 88
Author(s):  
Thamonwan Tattanon ◽  
Premjit Arpornmaeklong ◽  
Sarute Ummartyotin ◽  
Thirawudh Pongprayoon

The motivation of this research work is to develop novel medical material from cuttlebone (calcium source) by L-rhamnose monohydrate (biosurfactant) for aged people. The process can be synthesized biphasic calcium phosphate which is eco-friendly to environment. One of the most important aspects for this work is to use cuttlebone as a naturally occurring calcium source from a local beach in Thailand. It usually contains 90% calcium carbonate. The objective of this research work is to synthesize the biphasic calcium phosphate by hydrothermal reaction. Critical micelle concentrations (CMCs) of 10, 20, 100, 500 and 1000 of L-rhamnose monohydrate were used to control particle size and shape. XRD revealed a mixture of β-tricalcium phosphate and hydroxyapatite powder. SEM reported that the size of particles can be effectively controlled by the addition of L-rhamnose monohydrate, and with the addition of surfactant, size uniformity was achieved. The cytotoxicity test was reported to be in the range of 70–75%. It was remarkable to note that biphasic calcium phosphate synthesized from cuttlebone with the aid of L-rhamnose monohydrate will be considered an excellent candidate as a scaffold material.


2021 ◽  
Vol 25 ◽  
pp. 101225
Author(s):  
Teliang Lu ◽  
Xinyuan Yuan ◽  
Luhui Zhang ◽  
Fupo He ◽  
Xiaolan Wang ◽  
...  

2021 ◽  
Vol 127 (12) ◽  
Author(s):  
Mostafa Mabrouk ◽  
Sahar M. Mousa ◽  
W. A. Abd ElGhany ◽  
Mahmoud T. Abo-elfadl ◽  
Gehan T. El-Bassyouni

2021 ◽  
pp. 131182
Author(s):  
Lei Nie ◽  
Xingchen Li ◽  
Pengbo Chang ◽  
Shuang Liu ◽  
Qianqian Wei ◽  
...  

2021 ◽  
pp. 131152
Author(s):  
Lei Nie ◽  
Xingchen Li ◽  
Pengbo Chang ◽  
Shuang Liu ◽  
Qianqian Wei ◽  
...  

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