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The implantation study for repairing critical radius defects showed that the scaffold of g-HAP/PLGA exhibited rapid and strong mineralization and osteoconductivity, and the incorporation of BMP-2 could enhance the osteogenic process of the composite implant.
Notably, AgI/BiOIO3 shows a universal photocatalytic activity for treating diverse antibiotics and phenols, including tetracycline hydrochloride, chlortetracycline hydrochloride, 2,4-dichlorophenol (2,4-DCP), phenol and bisphenol A (BPA), and the strong mineralization ability of AgI/BiOIO3 was also demonstrated.
AOS and COS parameters increased to be positive, suggesting that strong mineralization occurred and highly oxidized intermediates are generated.
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In our study, culture of bMSC with high concentration of ascorbic acid (0.1 mM) resulted in higher OC mRNA levels and ALPL activity, and stronger mineralization of the matrix compared to lower concentration (0.001 mM).
This finding may indicate that the SL-PLUS stem induces a stronger bone mineralization response than the BC stem.
These results were corroborated by Von Kossa test results, which showed strong formation of mineralization nodules during the same time period.
The loading of PC2 resembles the Raman spectrum of hydroxyapatite (HA) [62], which containes a sharp peak at 958 cm-1 assigned to PO3 − symmetric stretching and represents a strong indication of mineralization.
Recalcitrant organic groundwater contaminants, such as 1,4-dioxane, may require strong oxidants for complete mineralization.
Our results suggest that specific soil characteristics often related to land-use and/or land-management decisions may be strong predictors of glucose mineralization rates across a landscape.
Thus the PGA/β-TCP composite scaffold, especially weight ratio 1 3, exhibited a strong ability for osteogenesis, mineralization and biodegradation for bone replacement.
Micro-CT tomography showed the BCP/PCL + Si + FN scaffolds were almost replaced by newly grown bone within 12 weeks after surgery, suggesting that they have an especially strong capacity for osteogenesis, mineralization, and biodegradation for bone replacement.
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