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In Vitro Biocompatibility of Surface-Modified Porous Alumina Particles for HepG2 Tumor Cells: Toward Early Diagnosis and Targeted Treatment

机译:表面修饰的多孔氧化铝颗粒对HepG2肿瘤细胞的体外生物相容性:早期诊断和靶向治疗。

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Porous alumina photoluminescence-inherent particles are produced and proposed for the development of biomarkers detectors and localized treatment of HepG2 cells. Nanoporous alumina particles (NPAPs) are amorphous, consist of hexagonally ordered nanometric pores in an alumina matrix, have high chemical stability in physiological pH, and exhibit a high inherent photoluminescence in the visible spectrum independently of their size, selectable from nanometers to tens of micrometers. The surface of NPAPs is chemically modified using two different functionalization methods, a multistep method with (3-aminopropyl)triethoxysilane (APTES) and glutaraldehyde (GLTA) and a novel simplified-step method with silane-PEG-NHS. Fourier Transform infrared spectroscopy analysis confirmed the proper surface modification of the particles for both functionalization methods. HepG2 cells were cultured during different times with growing concentrations of particles. The analysis of cytotoxicity and cell viability of HepG2 cells confirmed the good biocompatibility of NPAPs in all culture conditions. The results prove the suitability of NPAPs for developing new label-free biomarker detectors and advantageous carriers for localized drug delivery.
机译:产生了多孔的氧化铝光致发光固有颗粒,并被提议用于生物标志物检测器的开发和HepG2细胞的局部处理。纳米多孔氧化铝颗粒(NPAP)是无定形的,由氧化铝基质中的六角形有序纳米孔组成,在生理pH中具有高化学稳定性,并且在可见光谱中显示出高固有的光致发光,而与它们的大小无关,可从纳米到数十微米进行选择。使用两种不同的功能化方法对NPAP的表面进行化学修饰,一种是使用(3-氨基丙基)三乙氧基硅烷(APTES)和戊二醛(GLTA)的多步方法,另一种是使用硅烷-PEG-NHS的新型简化步骤。傅里叶变换红外光谱分析证实了两种功能化方法均能对颗粒进行适当的表面改性。 HepG2细胞在不同时间以浓度不断增加的颗粒进行培养。对HepG2细胞的细胞毒性和细胞活力的分析证实了NPAP在所有培养条件下均具有良好的生物相容性。结果证明了NPAP适用于开发新型无标记生物标记检测器和有利于局部药物递送的载体。

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