Abstract:Hydroxyapatite (HAp) was combined with amino-functionalized carbon quantum dots (CQDs) to enhance the optical and surface area properties of HAp. The loading of aminofunctionalized CQDs could enhance the luminescence of HAp and its UV-Vis absorbance. Additionally, surface area of HAp could be increased from 84.16 to 129.94 m 2 /g by loading aminofunctionalized CQDs. The drug release experiment was conducted using acetaminophen. The release happened slowly for amino-functionalized CQDs/HAp, with full release of… Show more
“…In addition, the surface area of HAP can increase from 84.16 m 2 g −1 to 129.94 m 2 g −1 , which is beneficial for drug loading. 89 The study on the synthesis of Mg-HAP samples using the reflux condensation method found that as the concentration of Mg increased, the recombination of charge carriers was blocked, and the photoluminescence intensity increased. 90 The self-luminescent property of Mg-HAP particles, which is because of their surface plasmon, can be used in imaging and drug delivery applications.…”
Section: Preparation Of Hap-based Carriersmentioning
At present, targeted drug delivery is regarded as the most effective means of tumor treatment, overcoming the lack of conventional chemotherapeutics that are difficult to reach or enter into cancer cells.
“…In addition, the surface area of HAP can increase from 84.16 m 2 g −1 to 129.94 m 2 g −1 , which is beneficial for drug loading. 89 The study on the synthesis of Mg-HAP samples using the reflux condensation method found that as the concentration of Mg increased, the recombination of charge carriers was blocked, and the photoluminescence intensity increased. 90 The self-luminescent property of Mg-HAP particles, which is because of their surface plasmon, can be used in imaging and drug delivery applications.…”
Section: Preparation Of Hap-based Carriersmentioning
At present, targeted drug delivery is regarded as the most effective means of tumor treatment, overcoming the lack of conventional chemotherapeutics that are difficult to reach or enter into cancer cells.
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