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Surface-functionalized cockle shell–based calcium carbonate aragonite polymorph as a drug nanocarrier

机译:表面功能化的贝壳壳基碳酸钙文石多晶型物作为药物纳米载体

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摘要

Calcium carbonate aragonite polymorph nanoparticles derived from cockle shells were prepared using surface functionalization method followed by purification steps. Size, morphology, and surface properties of the nanoparticles were characterized using transmission electron microscopy, field emission scanning electron microscopy, dynamic light scattering, zetasizer, X-ray powder diffraction, and Fourier transform infrared spectrometry techniques. The potential of surface-functionalized calcium carbonate aragonite polymorph nanoparticle as a drug-delivery agent were assessed through in vitro drug-loading test and drug-release test. Transmission electron microscopy, field emission scanning electron microscopy, and particle size distribution analyses revealed that size, morphology, and surface characterization had been improved after surface functionalization process. Zeta potential of the nanoparticles was found to be increased, thereby demonstrating better dispersion among the nanoparticles. Purification techniques showed a further improvement in the overall distribution of nanoparticles toward more refined size ranges <100 nm, which specifically favored drug-delivery applications. The purity of the aragonite phase and their chemical analyses were verified by X-ray powder diffraction and Fourier transform infrared spectrometry studies. In vitro biological response of hFOB 1.19 osteoblast cells showed that surface functionalization could improve the cytotoxicity of cockle shell–based calcium carbonate aragonite nanocarrier. The sample was also sensitive to pH changes and demonstrated good abilities to load and sustain in vitro drug. This study thus indicates that calcium carbonate aragonite polymorph nanoparticles derived from cockle shells, a natural biomaterial, with modified surface characteristics are promising and can be applied as efficient carriers for drug delivery.
机译:使用表面功能化方法,然后进行纯化步骤,制备了来自蛤壳的碳酸钙文石多晶型物纳米颗粒。使用透射电子显微镜,场发射扫描电子显微镜,动态光散射,zetasizer,X射线粉末衍射和傅里叶变换红外光谱技术表征了纳米颗粒的尺寸,形态和表面性质。通过体外载药试验和药物释放试验评估了表面官能化碳酸钙文石多晶型物纳米颗粒作为药物传递剂的潜力。透射电子显微镜,场发射扫描电子显微镜和粒度分布分析表明,经过表面功能化处理后,尺寸,形态和表面特性得到了改善。发现纳米颗粒的ζ电势增加,从而证明了在纳米颗粒之间更好的分散。纯化技术显示,纳米颗粒的总体分布朝着更精细的尺寸范围<100 nm的进一步改善,这特别有利于药物递送应用。文石相的纯度及其化学分析通过X射线粉末衍射和傅里叶变换红外光谱研究进行了验证。 hFOB 1.19成骨细胞的体外生物学反应表明,表面功能化可以改善基于蛤壳的碳酸钙文石纳米载体的细胞毒性。该样品还对pH值变化敏感,并显示出良好的负载和维持体外药物的能力。因此,这项研究表明,源自天然鸟蛤壳的碳酸钙文石多晶型物纳米粒子具有改良的表面特性,是一种天然生物材料,具有广阔的应用前景,可以用作药物输送的有效载体。

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