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Biological activity of dendrimer–methylglyoxal complexes for improved therapeutic efficacy against malignant cells

机译:树枝状聚合物 - 甲基乙二醛复合物的生物活性改善对恶性细胞的治疗疗效

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摘要

The clinical application of methylglyoxal (MG, a normal human metabolite) for cancer therapy is limited by its facile enzymatic degradation. The present investigation was aimed at exploring the potential anticancer therapy of methylglyoxal loaded polyamidoamine (PAMAM) dendrimers with different terminal groups (PAMAM/MG). Uniform PAMAM-NH _(2) /MG with an average particle size of 55 ± 5 nm and high encapsulation efficiencies (EE) of 82 ± 2% have been characterized by transmission electron microscopy (TEM) and spectroscopic techniques. Compared to the free MG, a slow release of MG from the dendrimer complex was ~85 ± 2% after 24 hours, suggesting the potential of the dendrimers as a sustained drug delivery system. PAMAM-NH _(2) /MG possesses biocompatibility with no hemolytic activity and is highly effective in growth inhibition of mice carcinoma and sarcoma cells. PAMAM-NH _(2) /MG selectively reduced cell viability of Hela cells with an IC _(50) value of 0.4 ± 0.15 μg mL ~(?1) while more than 90% of normal fibroblast cells have been found to be viable at a similar dose. Interestingly, even a lower dose of MG (~250 times) in PAMAM-NH _(2) /MG can effectively target Hela cells in comparison to free MG. TEM images demonstrated the ultra structural changes of Hela cells after being treated with PAMAM-NH _(2) /MG and also confirmed cellular uptake. DNA damage as measured by comet assay was found to be dose dependent for mice carcinoma and sarcoma cells but no such genotoxic response was observed in human lymphocytes, after treatment with PAMAM-NH _(2) /MG. Thus, dendrimer encapsulated MG might be an effective strategy to target the cancer cells and further improvements of the surface functionality of dendrimers can be used as a valuable tool for the development of novel therapeutics in nano-oncology.
机译:甲基乙二醛(Mg,正常人代谢物)用于癌症治疗的临床应用受其容易酶促降解的限制。目前的调查旨在探索用不同末端基团(PAMAM / Mg)的甲基甘油载荷的聚酰胺(PAMAM)树枝状体的潜在抗癌治疗。通过透射电子显微镜(TEM)和光谱技术,具有82±2%的平均粒径为55±5nm和高封装效率(EE)的均匀PAMAM-NH _(2)/ mg。与游离Mg相比,24小时后,来自树枝复合物的Mg的缓慢释放为〜85±2%,表明树枝状大分子作为持续的药物输送系统。 PAMAM-NH _(2)/ mg具有无溶血活性的生物相容性,并且在小鼠癌和肉瘤细胞的生长抑制中具有高效。 PAMAM-NH _(2)/ Mg选择性地降低了HeLa细胞的细胞活力,IC _(50)值为0.4±0.15μgml〜(α1),而已发现超过90%的正常成纤维细胞是可行的在类似的剂量。有趣的是,甚至普及 - NH _(2)/ mg的较低剂量的mg(〜250次)可以有效地与游离mg相比靶向HeLa细胞。 TEM图像显示用PAMAM-NH _(2)/ mg处理后HELA细胞的超结构变化,并确认细胞摄取。发现通过彗星测定测量的DNA损伤是依赖于小鼠癌和肉瘤细胞的剂量,但在用PAMAM-NH _(2)/ mg处理后,在人淋巴细胞中没有观察到这种遗传毒性反应。因此,树枝状聚合物包封的Mg可能是靶向癌细胞的有效策略,并且树枝状大分子的表面官能度的进一步改善可以用作纳米肿瘤学中新型治疗性的有价值的工具。

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