Preparation and physicochemical assessment of hydroxyapatite-gelatin nanoscaffold containing vanilla

S. Dizaj, Masumeh Mokhtarpour, S. Z. Vahed, Simin Sharifi
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Abstract

Background: Scaffolds are one of the key components of tissue engineering that play an important role in the cell growth. The aim of the present study was to prepare hydroxyapatite-gelatin nanoscaffolds containing vanilla. Method: In this in vitro examination, the scaffolds were prepared using precipitation method. Then, vanilla was loaded into the prepared structures. Dynamic light scattering (DLS) and scanning electron microscopy (SEM) were used to evaluate the size and morphology of the scaffold. The surface charge of the scaffold (zeta potential) was also assessed by means of zeta sizer. The loading of vanilla was evaluated via ultraviolet–visible spectrophotometry in 372 nm. Results: The results showed that the scaffold was well prepared and had good physicochemical properties including appropriate particle size (110.23±0.42 nm), good particle distribution, high drug loading (65.03± 0.25%) and acceptable suspension stability (zeta potential equal to 36.42±0.80 mV). Descriptive statistics (mean ± SD) were used to report the results. Conclusion: Based on the obtained results of the current study, we suggested that the prepared scaffolds can be used for in vitro and in vivo applications in future studies for tissue engineering. More investigations are needed to test the usefulness of this scaffolds.
含香草羟基磷灰石-明胶纳米支架的制备及理化评价
背景:支架是组织工程的关键组成部分之一,在细胞生长中起着重要作用。本研究的目的是制备含有香草的羟基磷灰石-明胶纳米支架。方法:体外实验采用沉淀法制备支架。然后,香草被装入准备好的结构中。采用动态光散射(DLS)和扫描电镜(SEM)对支架的大小和形态进行了评价。用zeta分级仪测定支架的表面电荷(zeta电位)。采用372 nm紫外可见分光光度法测定香草的负载。结果:制备的支架具有粒径适宜(110.23±0.42 nm)、颗粒分布良好、载药量高(65.03±0.25%)、悬浮稳定性良好(zeta电位为36.42±0.80 mV)等理化性能。采用描述性统计(mean±SD)报告结果。结论:根据目前的研究结果,我们认为所制备的支架在未来的组织工程研究中可用于体外和体内应用。需要更多的研究来测试这种支架的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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