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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Encapsulation of platinum(II)-based DNA intercalators within cucurbit[6,7,8]urils
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Encapsulation of platinum(II)-based DNA intercalators within cucurbit[6,7,8]urils

机译:基于铂(II)的DNA嵌入剂在葫芦[6,7,8]小孔中的包裹

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The partial encapsulation of platinum(II)-based DNA intercalators of the type [Pt(5-Cl-phen)(ancillary ligand)](2+), where 5-Cl-phen is 5-chloro-1,10-phenanthroline and the ancillary ligand is ethylenediamine, (1S,2S)-diaminocyclohexane (S,S-dach) or (1R,2R)-diaminocyclohexane, within cucurbit[n]uril (CB[n], where n is 6, 7 or 8) has been examined by H-1 and Pt-195 NMR and mass spectrometry. For CB[7], the molecule encapsulates over the ancillary ligand of all metal complexes, whether this is ethylenediamine or diaminocyclohexane. For CB[8], encapsulation occurs over the sides of the 5-Cl-phen ligand at low [Pt(5-Cl-phen)(S,S-dach)](2+) (5CLSS) to CB[8] ratios (i.e. 0.25:1) but over the ancillary ligand at higher ratios (i.e. 2:1). For CB[6] binding, 5CLSS exhibits both portal and cavity binding, with the ancillary ligand displaying chemical shifts consistent with fast exchange kinetics on the NMR timescale for portal binding and slow exchange kinetics for cavity binding. Binding constants could not be determined using UV-vis, circular dichroism or fluorescence spectrophotometry, but a binding constant for binding of 5CLSS to CB[6] of approximately 10(5) M-1 was determined using H-1 NMR. Finally, the effect of CB[n] encapsulation on the cytotoxicity of the metal complexes was examined using L1210 murine leukaemia cells in vitro growth inhibition assays. The cytotoxicity is highly dependent on both the metal complex and the CB[n] size, and whilst CB[7] and CB[8] generally decreased cytotoxicity, it was found that CB[6] increased the cyotoxicity of 5CLSS up to 2.5-fold.
机译:[Pt(5-Cl-phen)(辅助配体)](2+)类型的基于铂(II)的DNA嵌入剂的部分包封,其中5-Cl-phen是5-氯-1,10-菲咯啉并且辅助配体是在葫芦[n] uril(CB [n]中,n为6、7或8的乙二胺,(1S,2S)-二氨基环己烷(S,S-dach)或(1R,2R)-二氨基环己烷)已通过H-1和Pt-195 NMR和质谱法检查。对于CB [7],该分子封装在所有金属配合物的辅助配体上,无论是乙二胺还是二氨基环己烷。对于CB [8],对CB [8]的[Pt(5-Cl-phen)(S,S-dach)](2+)(5CLSS)低处在5-Cl-phen配体的侧面进行包封。比率(即0.25:1),但以较高的比率(即2:1)超过辅助配体。对于CB [6]结合,5CLSS既显示门结合又与腔结合,辅助配体显示出与门结合的NMR时间尺度上的快速交换动力学和与腔结合的慢交换动力学一致的化学位移。结合常数无法使用紫外可见光谱,圆二色性或荧光分光光度法测定,但5CLSS与CB [6]的结合常数约为10(5)M-1,而H-1 NMR则可确定。最后,使用L1210鼠白血病细胞体外生长抑制测定法检查了CB [n]封装对金属配合物的细胞毒性的影响。细胞毒性高度依赖于金属络合物和CB [n]的大小,虽然CB [7]和CB [8]通常会降低细胞毒性,但发现CB [6]将5CLSS的细胞毒性提高至2.5-折。

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