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首页> 外文期刊>Nitric oxide: Biology and chemistry >Cytotoxicity, cellular uptake, and subcellular localization of a nitrogen oxide and aminopropyl-beta-lactose derivative ruthenium complex used as nitric oxide delivery agent
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Cytotoxicity, cellular uptake, and subcellular localization of a nitrogen oxide and aminopropyl-beta-lactose derivative ruthenium complex used as nitric oxide delivery agent

机译:氮氧化物和氨基丙基 - β-乳糖衍生钌配合物用作一氧化氮递送剂的细胞毒性,细胞吸收和亚细胞定位

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摘要

This work investigates how the luminescent ruthenium-nitrite complexes cis-(Ru(PY-bodipy)(dcbpy)(2)(NO2)] (PF6) (I) and cis-(Ru(py-bodipy)(dcbpy-aminopropyl-beta-lactose)(2)(NO2)](PF6) (II) behave toward the melanoma cancer cell line B16F10. The chemical structure and purity of the synthesized complexes were analyzed by UV-Visible and FTIR spectroscopy, MALDI, HPLC, and H-1 NMR. Spectrofluorescence helped to determine the fluorescence quantum yields and lifetimes of each of these complexes. In vitro MTT cell viability assay on B16F10 cancer cells revealed that the complexes possibly have a tumoricidal role. The metal-nitrite complexes evidenced the dichotomous NO nature: at high concentration, NO exerted a tumoricidal effect, whereas cancer cells grew at low NO concentration. Flow cytometry or fluorescence microscopy aided cellular uptake calculation. Cell staining followed by fluorescence microscopy associated with organelle markers such as DAPI and Rhodamine 123 detected preferential intracellular localization of the ruthenium-nitrite py-bodipy and aminopropyl lactose derivative ruthenium complex in mitochondria. Thus, the cytotoxicity of compounds (I) and (II) against B16F10 cancer cell line show concentration-dependent results. The present studies suggest that nitric oxide ruthenium derivative compounds could be new potential chemotherapeutic agents against cytotoxic cells.
机译:这项工作研究了发光钌 - 亚硝酸盐复合物顺式 - (ru(py-bodipy)(dcbpy)(2)(2)(no2)](pf6)和cis-(ru(py-bodipy)(dcbpy-氨基丙基 - β-乳糖)(2)(2)(NO 2)](PF6)(II)表现为黑色素瘤癌细胞系B16F10。通过UV可见和FTIR光谱,MALDI,HPLC和FTIR光谱分析合成复合物的化学结构和纯度H-1 NMR。光谱荧光有助于确定每种复合物中的每一个的荧光量子产量和寿命。在B16F10癌细胞上的体外MTT细胞活力测定显示,复合物可能具有肿瘤作用。金属 - 亚硝酸盐复合物证明了二分没有自然:高浓度,不施加肿瘤作用,而癌细胞以低浓度增长。流式细胞术或荧光显微镜辅助蜂窝摄取计算。细胞染色随后与细胞器标记相关的荧光显微镜,如DAPI和Rhodamine 123检测到优惠线粒体中钌 - 亚硝酸盐钙钙盐和氨基丙基乳糖衍生钌络合物的细胞内定位。因此,化合物(I)和(II)对B16F10癌细胞系的细胞毒性显示浓度依赖性结果。本研究表明,一氧化氮钌衍生物化合物可以是针对细胞毒性细胞的新潜在的化学治疗剂。

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