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首页> 外文期刊>Pharmaceutical research >Arsonoliposomes, a novel class of arsenic-containing liposomes: effect of palmitoyl-arsonolipid-containing liposomes on the viability of cancer and normal cells in culture.
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Arsonoliposomes, a novel class of arsenic-containing liposomes: effect of palmitoyl-arsonolipid-containing liposomes on the viability of cancer and normal cells in culture.

机译:Arsonoliposomes,一类新型的含砷脂质体:含棕榈酰-arsonolipid的脂质体对癌症和培养中正常细胞活力的影响。

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摘要

PURPOSE: Arsonolipid-containing liposomes have been recently prepared. The demonstrated antileukemic action of arsenic trioxide prompted us to study their effect on the viability of several types of cancer cells to investigate the possibility of relevant applications. Five different cell types, three malignant (HL-60, C6. and GH3) and two non-malignant (HUVEC and RAME), were used. METHODS: Liposomes containing the palmitoyl side chain arsonolipid (with different lipid compositions) were incubated with a given number of cells. Cell viability was estimated by the 3-(4,5-dimethylthiazol-2-yl)-2,5-dimethyltetrazolium bromide assay. Morphologic studies were also performed. RESULTS: Our results reveal that arsonoliposomes cause a dose (initiated at 10(-6) M)- and time-dependent inhibition of survival in all three malignant cell lines studied. No significant effect on the survival of the normal cells studied was observed at these, as well as at 10-fold higher. concentrations, although arsenic trioxide was toxic to HUVEC cells at equivalent arsenic concentrations. Microscopy studies reveal that although morphologic changes were initiated in HL-60 and C6 cells after incubation with arsonoliposomes, no changes in HUVEC and RAME cells were observed. CONCLUSIONS: Considering the numerous advantages of liposomal systems in therapeutics, it is concluded that the arsonoliposome system is very interesting and future applications should be exploited by further studies.
机译:用途:最近已制备了含Arsonolipid的脂质体。已证明的三氧化二砷抗白血病作用促使我们研究它们对几种类型癌细胞的生存能力的影响,以研究相关应用的可能性。使用了五种不同的细胞类型,即三种恶性细胞(HL-60,C6和GH3)和两种非恶性细胞(HUVEC和RAME)。方法:将含有棕榈酰侧链砷脂的脂质体(具有不同的脂质组成)与给定数量的细胞一起孵育。细胞存活力通过3-(4,5-二甲基噻唑-2-基)-2,5-二甲基溴化四氮唑测定来评估。还进行了形态学研究。结果:我们的结果表明,在所有研究的三种恶性细胞系中,脂质体均会导致剂量(起始于10(-6)M)和时间依赖性的存活抑制。在这些细胞上以及在其高10倍时,未观察到对研究的正常细胞存活的显着影响。尽管三氧化二砷在等效砷浓度下对HUVEC细胞有毒性,但其浓度仍然很高。显微镜研究表明,尽管与砷脂质体孵育后,HL-60和C6细胞开始发生形态学变化,但未观察到HUVEC和RAME细胞发生变化。结论:考虑到脂质体系统在治疗中的众多优势,可以得出结论,砷脂质体系统非常有趣,未来的应用应通过进一步的研究加以利用。

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