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首页> 外文期刊>Human and Experimental Toxicology >Folic acid-conjugated polyethylene glycol-coated magnetic nanoparticles for doxorubicin delivery in cancer chemotherapy: Preparation, characterization and cytotoxicity on HeLa cell line
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Folic acid-conjugated polyethylene glycol-coated magnetic nanoparticles for doxorubicin delivery in cancer chemotherapy: Preparation, characterization and cytotoxicity on HeLa cell line

机译:用于癌症化疗中的多柔比星递送的叶酸 - 缀合的聚乙二醇涂覆的磁性纳米粒子:Hear Cell系的制备,表征和细胞毒性

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摘要

Conventional chemotherapy is the most valid method to cope with cancer; however, it has serious drawbacks such as decrease in production of blood cells or inflammation of the lining of the digestive tract. These side effects occur since generally the drugs used in chemotherapy are distributed evenly within the body of the patient and cannot distinguish the cancer cells from the healthy ones. In this study, folic acid (FA)-conjugated, polyethylene-coated magnetic nanoparticles (FA-MNPs), and doxorubicin (Dox)-loaded formulation (Dox-FA-MNPs) were prepared. The cytotoxicity of these nanoparticles on HeLa and Dox-resistant HeLa cells was investigated. Magnetic nanoparticles (MNPs), polyethylene glycol (PEG)-coated MNPs (PEG-MNPs), and FA-MNPs were successfully synthesized and characterized by several methods. Dox loading of FA-MNPs and release profile of Dox from the nanoparticles were studied. Cytotoxic effects of FA-MNPs and Dox-FA-MNPs on HeLa cells were analyzed. MNPs, PEG-MNPs, and FA-MNPs all had small sizes and supermagnetic behavior. High amounts of Dox could be loded onto the nanoparticles (290 gmL(-1)). In 24 h, 15.7% of Dox was released from the Dox-FA-MNPs. The release was increased in acidic conditions (pH 4.1). Internalization studies showed that FA-MNPs and Dox-FA-MNPs were taken up efficiently by HeLa cells. The investigation of cytotoxicity of the particles indicated that 38-500 gmL(-1) Dox-FA-MNPs significantly decreased the proliferation of HeLa cells compared to FA-MNPs. Due to their size, magnetic properties, internalization, drug release, and cytotoxicity characteristics, the MNPs prepared in this study may have potential application as a drug delivery system in cancer chemotherapy.
机译:常规化疗是应对癌症的最有效的方法;然而,它具有严重的缺点,例如血细胞的生产减少或消化道衬里的衬里炎症。这些副作用发生,因此通常在化疗中使用的药物均匀地分布在患者体内,不能将癌细胞与健康的药物区分开。在该研究中,制备叶酸(Fa) - 缀合的聚乙烯涂覆的聚乙烯涂覆的磁性纳米颗粒(FA-MNP)和多柔比星(DOX) - 加载的制剂(DOX-FA-MNP)。研究了这些纳米颗粒对HeLa和Dox抗性HeLa细胞的细胞毒性。成功合成磁性纳米颗粒(MNP),聚乙二醇(PEG) - 涂覆的MNPS(PEG-MNP)和FA-MNP,其特征在于几种方法。研究了来自纳米颗粒的FA-MNP和DOX释放曲线的DOX加载。分析了FA-MNP和DOX-FA-MNP对HeLa细胞的细胞毒性效应。 MNP,PEG-MNP和FA-MNPS都具有小的尺寸和超磁性行为。可以将大量的DOX涂覆到纳米颗粒上(290 gml(-1))。在24小时内,15.7%的Dox从Dox-Fa-Mnps释放。酸性条件(pH 4.1)中释放增加。内化研究表明,HeLa细胞有效地吸收了FA-MNP和DOX-FA-MNP。与FA-MNP相比,颗粒的细胞毒性的调查表明38-500 GML(-1)DOX-FA-MNP显着降低了HELA细胞的增殖。由于其尺寸,磁性,内化,药物释放和细胞毒性特征,本研究中制备的MNP可能具有潜在的应用作为癌症化疗中的药物递送系统。

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