In this study, one mononuclear zinc(II) complex with 1,2-bis CAP ((5-chlorosalicylidene amino)-phenylene): C22C13N2035Znl5 H0125 (Zn-CAP) was synthesized. The binding properties of Zn-CAP with G-quadruplex DN...In this study, one mononuclear zinc(II) complex with 1,2-bis CAP ((5-chlorosalicylidene amino)-phenylene): C22C13N2035Znl5 H0125 (Zn-CAP) was synthesized. The binding properties of Zn-CAP with G-quadruplex DNA and ctDNA (calf thymus DNA) were examined by fluorescence, CD (circular dichroism) spectroscopic and FRET (fluorescence resonance energy transfer) assay. In the fluorescence emission spectral analysis, the addition of three series of G-quadruplex DNA (G4-HTG21, G4-Pu27 and G4-c-kit-l) into the Zn-CAP solution induced moderate or add hypochromicity with total quenching ratios of 10.73%, 15.07% and 8.59% in the presence of K+ were achieved, respectively. While the addition of ctDNA under same condition only caused 7.08% quenching on the fluorescence emission of Zn-CAP. In the CD spectral analysis, the interaction with Zn-CAP could induce significant spectral changes on the CD absorption of G4-HTG21, G4-Pu27 and G4-c-kit-1, with 106.00%, 93.06%, 113.47% increment at 232 nm absorption, along with a 81.11%, 92.80%, 83.72% decrement at 295 nm or 270 nm absorption, which demonstrated that the antiparallel structure of G-quadruplex DNA is more stable in the presence of Zn-CAP. Comparatively, the addition of Zn-CAP could induce significant spectral changes on the CD absorption of double helix ctDNA, with 64.17% decrement on the positive peak absorption, along with a 90.91% increment on the negative peak absorption. On the other hand, in the FRET-melting assay analysis, it was clear that Zn-CAP at 0.5 equivalences could raise the melting temperature of G-quadruplex (F2 IT or FPul 8T) by 3.45℃ and 15.85℃, indicating an obvious stabilization effect of Zn-CAP on G-quadruplex in Pu27. All the results indicated that Zn-CAP exhibited higher binding affinity and binding intensity to G-quadruplex DNA than ctDNA, especially G-quadruplex Pu27.展开更多
以三巯基丙酸(MPA)为表面修饰剂,采用水相合成法制备了稳定且具有良好光学性质的Mn掺杂Zn S量子点。在p H 7.4的磷酸缓冲液中,盐酸异丙嗪的加入使MPA包裹的Mn掺杂Zn S量子点的室温磷光发生明显猝灭,据此建立了一种检测盐酸异丙嗪的新...以三巯基丙酸(MPA)为表面修饰剂,采用水相合成法制备了稳定且具有良好光学性质的Mn掺杂Zn S量子点。在p H 7.4的磷酸缓冲液中,盐酸异丙嗪的加入使MPA包裹的Mn掺杂Zn S量子点的室温磷光发生明显猝灭,据此建立了一种检测盐酸异丙嗪的新方法。磷光猝灭强度(ΔRTP)与盐酸异丙嗪浓度呈良好线性,其线性范围为3.2~32μmol/L与32~160μmol/L,相关系数分别为0.998与0.999,检出限为0.553μmol/L。将该方法用于人血清与尿液中盐酸异丙嗪的检测,加标回收率为96.4%~103.1%,结果满意。展开更多
Ag^+ -doped ZnS nanocrystals surface-capped with thiourea (expressed as ZnS: Ag/thiourea) were synthesized through sol-gel method with thiourea as a surface modifier and characterized by X-ray diffraction(XRD), ...Ag^+ -doped ZnS nanocrystals surface-capped with thiourea (expressed as ZnS: Ag/thiourea) were synthesized through sol-gel method with thiourea as a surface modifier and characterized by X-ray diffraction(XRD), transmission electron microscope(TEM), X-ray fluorescence spectrum(XRF), infrared spectrum (IR), UV-Vis absorption spectrum( UV-Vis), and photoluminescence spectrum(PL). The results show that Ag^+ ions are doped in ZnS nanocrystals, and the sulfur atoms in thiourea molecules coordinate with metal ions on the surface of the nanocrystals. The spherical ZnS: Ag/thiourea nanocrystals with an average diameter of 5 nm have good fluorescent characteristics, and therefore have great potential for use in molecular assembly and novel luminescence materials.展开更多
文摘In this study, one mononuclear zinc(II) complex with 1,2-bis CAP ((5-chlorosalicylidene amino)-phenylene): C22C13N2035Znl5 H0125 (Zn-CAP) was synthesized. The binding properties of Zn-CAP with G-quadruplex DNA and ctDNA (calf thymus DNA) were examined by fluorescence, CD (circular dichroism) spectroscopic and FRET (fluorescence resonance energy transfer) assay. In the fluorescence emission spectral analysis, the addition of three series of G-quadruplex DNA (G4-HTG21, G4-Pu27 and G4-c-kit-l) into the Zn-CAP solution induced moderate or add hypochromicity with total quenching ratios of 10.73%, 15.07% and 8.59% in the presence of K+ were achieved, respectively. While the addition of ctDNA under same condition only caused 7.08% quenching on the fluorescence emission of Zn-CAP. In the CD spectral analysis, the interaction with Zn-CAP could induce significant spectral changes on the CD absorption of G4-HTG21, G4-Pu27 and G4-c-kit-1, with 106.00%, 93.06%, 113.47% increment at 232 nm absorption, along with a 81.11%, 92.80%, 83.72% decrement at 295 nm or 270 nm absorption, which demonstrated that the antiparallel structure of G-quadruplex DNA is more stable in the presence of Zn-CAP. Comparatively, the addition of Zn-CAP could induce significant spectral changes on the CD absorption of double helix ctDNA, with 64.17% decrement on the positive peak absorption, along with a 90.91% increment on the negative peak absorption. On the other hand, in the FRET-melting assay analysis, it was clear that Zn-CAP at 0.5 equivalences could raise the melting temperature of G-quadruplex (F2 IT or FPul 8T) by 3.45℃ and 15.85℃, indicating an obvious stabilization effect of Zn-CAP on G-quadruplex in Pu27. All the results indicated that Zn-CAP exhibited higher binding affinity and binding intensity to G-quadruplex DNA than ctDNA, especially G-quadruplex Pu27.
文摘以三巯基丙酸(MPA)为表面修饰剂,采用水相合成法制备了稳定且具有良好光学性质的Mn掺杂Zn S量子点。在p H 7.4的磷酸缓冲液中,盐酸异丙嗪的加入使MPA包裹的Mn掺杂Zn S量子点的室温磷光发生明显猝灭,据此建立了一种检测盐酸异丙嗪的新方法。磷光猝灭强度(ΔRTP)与盐酸异丙嗪浓度呈良好线性,其线性范围为3.2~32μmol/L与32~160μmol/L,相关系数分别为0.998与0.999,检出限为0.553μmol/L。将该方法用于人血清与尿液中盐酸异丙嗪的检测,加标回收率为96.4%~103.1%,结果满意。
基金Supported by the Science Foundation of Education Department of Fujian Province(JA03043)the Science Foundation ofDepartment of Science and Technology of Fujian Province(2005 K011).
文摘Ag^+ -doped ZnS nanocrystals surface-capped with thiourea (expressed as ZnS: Ag/thiourea) were synthesized through sol-gel method with thiourea as a surface modifier and characterized by X-ray diffraction(XRD), transmission electron microscope(TEM), X-ray fluorescence spectrum(XRF), infrared spectrum (IR), UV-Vis absorption spectrum( UV-Vis), and photoluminescence spectrum(PL). The results show that Ag^+ ions are doped in ZnS nanocrystals, and the sulfur atoms in thiourea molecules coordinate with metal ions on the surface of the nanocrystals. The spherical ZnS: Ag/thiourea nanocrystals with an average diameter of 5 nm have good fluorescent characteristics, and therefore have great potential for use in molecular assembly and novel luminescence materials.