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Paclitaxel-Loaded Folate-Targeted Albumin-Alginate Nanoparticles Crosslinked with Ethylenediamine. Synthesis and In Vitro Characterization

机译:加载紫杉醇的叶酸叶酸含白蛋白 - 藻酸盐纳米粒子与乙二胺交联。合成和体外表征

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摘要

Among the different ways to reduce the secondary effects of antineoplastic drugs in cancer treatment, the use of nanoparticles has demonstrated good results due to the protection of the drug and the possibility of releasing compounds to a specific therapeutic target. The α-isoform of the folate receptor (FR) is overexpressed on a significant number of human cancers; therefore, folate-targeted crosslinked nanoparticles based on BSA and alginate mixtures and loaded with paclitaxel (PTX) have been prepared to maximize the proven antineoplastic activity of the drug against solid tumors. Nanometric-range-sized particles (169 ± 28 nm–296 ± 57 nm), with negative Z-potential values (between −0.12 ± 0.04 and −94.1± 0.4), were synthesized, and the loaded PTX (2.63 ± 0.19–3.56 ±0.13 µg PTX/mg Np) was sustainably released for 23 and 27 h. Three cell lines (MCF-7, MDA-MB-231 and HeLa) were selected to test the efficacy of the folate-targeted PTX-loaded BSA/ALG nanocarriers. The presence of FR on the cell membrane led to a significantly larger uptake of BSA/ALG–Fol nanoparticles compared with the equivalent nanoparticles without folic acid on their surface. The cell viability results demonstrated a cytocompatibility of unloaded nanoparticle–Fol and a gradual decrease in cell viability after treatment with PTX-loaded nanoparticle–Fol due to the sustainable PTX release.
机译:在降低癌症治疗中抗肿瘤药物二次效果的不同方式中,由于保护药物的保护和将化合物释放到特异性治疗靶标的可能性,纳米颗粒的使用表现出良好的结果。叶酸受体(FR)的α-同种型在大量的人类癌症上过表达;因此,已经制备基于BSA和藻酸盐混合物的叶酸靶向交联的纳米颗粒,并加载与紫杉醇(PTX)加载,以使药物的经过验证的抗肿瘤活性对固体瘤的成熟抗肿瘤活性最大化。合成纳米型尺寸颗粒(169±28nm-296±57nm),负载负Z-电位值(-0.12±0.04和-94.1±0.4),加载的PTX(2.63±0.19-3.56 ±0.13μgptx / mg np)可持续释放23和27小时。选择三种细胞系(MCF-7,MDA-MB-231和HELA)以测试叶酸靶​​向PTX负载的BSA / ALG纳米载体的功效。与其表面上没有叶酸的等效纳米颗粒相比,细胞膜上的FR在细胞膜上的存在导致对BSA / ALG-FOL纳米粒子的显着吸收。细胞活力结果表明,由于可持续的PTX释放,用PTX负载的纳米粒子-FeL处理后,卸载的纳米颗粒-FeL的细胞相容性和细胞活力的逐渐降低。

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