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A high-loading drug delivery system based on magnetic nanomaterials modified by hyperbranched phenylboronic acid for tumor-targeting treatment with pH response

机译:基于磁性纳米材料改性的高负载药物递送系统,通过超支化苯硼酸进行肿瘤靶向治疗PH反应

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To overcome the limited drug loading capacity of magnetic nanopharmaceuticals arising from the relatively large mass of the metal core, a high-loading drug delivery system based on amino-functionalized Fe3O4 magnetic nanospheres modified by hyperbranched phenylboronic acid (HPBA-Fe3O4) were prepared for the first time. The obtained nanomaterials were characterized by transmission electron microscopy, Fourier transform infrared, zeta potential, elemental analysis, vibrating sample magnetometry and X-ray diffraction analysis, and the results showed that hyperbranched phenylboronic acid (HPBA) were successfully grafted onto the surface of the magnetic nanospheres. The polymerization conditions, adsorption and desorption performance, and tumor-targeting ability of HPBA-Fe3O4 was investigated in detail through chemical and biological experiments. The drug loading amount and capacity of HPBA-Fe3O4 are 271.3 mg/g and 27.13%, respectively, which are 2.26 and 3.27 times greater than those of PBA-Fe3O4 and PEI-Fe3O4, and the thermodynamic fitting results further demonstrate the high drug loading ability of HPBA-Fe3O4. In vitro studies performed in U-87 MG malignant glioma cells and astrocytes via light and fluorescence microscopy analyses, cell counting kit-8 assays, and HPLC tests confirm the pH-sensitive release and tumor-targeted drug delivery capabilities of HPBA-Fe3O4. The facile fabrication of hyperbranched magnetic nanomaterials could be an alternative solution for designing high-loading, tumor cell-targeting and pH-responsive DDSs with high-mass cores.
机译:为了克服由相对大量的金属核心产生的磁性纳米药物的有限药物负载能力,制备了一种基于氨基官能化Fe3O4磁性纳米球的高负载药物递送系统,用于制备由超支化苯硼酸(HPBA-Fe3O4)改性的第一次。通过透射电子显微镜,傅里叶变换红外,Zeta电位,元素分析,振动样品磁体和X射线衍射分析表征了所得纳米材料,结果表明,结果表明,超支化苯基硼酸(HPBA)成功接枝到磁性表面上纳米球。通过化学和生物实验详细研究了HPBA-Fe3O4的聚合条件,吸附和解吸性能和肿瘤靶向能力。 HPBA-Fe3O4的药物负载量和容量分别为271.3mg / g和27.13%,比PBA-Fe3O4和PEI-Fe3O4大的2.26和3.27倍,热力学拟合结果进一步证明了高药物载荷HPBA-FE3O4的能力。在U-87mg恶性胶质瘤细胞和通过光和荧光显微镜分析中进行的体外研究,通过光和荧光显微镜分析,细胞计数试剂盒-8测定和HPLC测试证实了HPBA-Fe3O4的pH敏感释放和肿瘤靶向药物递送能力。超支化磁性纳米材料的容易制造可以是用于设计高负荷,肿瘤细胞靶向和具有高质量核心的pH响应性DDS的替代解决方案。

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