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11.
Off the different types cancers 40% of the population have been observed to be affected by leukemia. Contemporary therapeutics is focusing on generation of new synthetic analogues that can exert maximum positive physiological effect with minimum dosage and negligible deleterious side effects. New generation pharmacists are focusing on such promising effects of Imatinib (a potential anti-cancer drug molecule), Dasatinib, Pelitinib and Nilotinib. The present research study focuses on novel synthesized anilides derivative against BCR-ABL kinase as potential anti-leukemic agent. Validation of the compounds by molecular docking with specific BCR-ABL kinase confirmed their activity. Toxicity prediction of these compounds helped to identify sustainability as therapeutic molecules. The IC50 values were calculated (211 ug, 175 ug, 272ug for compounds A, B, C resp.) and the mode of cell death was gauged by DNA laddering assay. The cells were observed to be induced for programmed cell death. By validating and in-vivo testing of three synthesized compounds, the compound B was observed to be more stable thermodynamically with a potentially vital active site and appears to be a promising anti-leukemic factor. The present research thus lays a preliminary platform in world of pharmaceutics, where these new analogues appear to be efficient, target specific and less toxic molecules.  相似文献   
12.
Aryl alcohol-type or phenolic fluorophores offer diverse opportunities for developing bioimaging agents and fluorescence probes. Due to the inherently acidic hydroxyl functionality, phenolic fluorophores provide pH-dependent emission signals. Therefore, except for developing pH probes, the pH-dependent nature of phenolic fluorophores should be considered in bioimaging applications but has been neglected. Here we show that a simple structural remedy converts conventional phenolic fluorophores into pH-resistant derivatives, which also offer “medium-resistant” emission properties. The structural modification involves a single-step introduction of a hydrogen-bonding acceptor such as morpholine nearby the phenolic hydroxyl group, which also leads to emission bathochromic shift, increased Stokes shift, enhanced photo-stability and stronger emission for several dyes. The strategy greatly expands the current fluorophores’ repertoire for reliable bioimaging applications, as demonstrated here with ratiometric imaging of cells and tissues.  相似文献   
13.
The development of novel selective probes with high sensitivity for the detection of Al3+ is widely considered an important research goal due to the importance of such probes in medicine, living systems and the environment. Here, we describe a new fluorescent probe, N′-(4-diethylamino-2-hydroxybenzylidene)-2-hydroxybenzohydrazide (1), for Al3+. Probe 1 was evaluated in a solution of acetonitrile/water (1:1 v/v). Compared with previously reported probes for Al3+, probe 1 can be synthesized easily and in high yield. A Job plot confirmed that probe 1 is able to complex Al3+ in a 1:1 ratio, and the binding constant was determined to be 4.25×108m−1. Moreover, the detection limit was as low as 6.7×10−9m, suggesting that probe 1 has a high sensitivity. Common coexistent metal ions, such as K+, Co2+, Ca2+, Ba2+, Ni2+, Pb2+, Hg2+, Ce2+, Zn2+, Cd2+, Fe3+, showed little or no interference in the detection of Al3+ in solution, demonstrating the high selectivity of the probe. Finally, the ability of probe 1 to act as a fluorescent probe for Al3+ in living systems was evaluated in Gram-negative bacteria, Escherichia coli, and confocal laser scanning microscopy confirmed its utility. The results of this study suggest that 1 has appropriate properties to be developed for application as a fluorescent probe of Al3+ for use in biological studies.  相似文献   
14.
In this study, we systematically investigate the ? meson and nucleus interaction by analyzing and fitting the cross sections of \begin{document}$ \gamma N $\end{document}\begin{document}$ \rightarrow \phi $\end{document}N reactions near the threshold, where N represents the nucleus. Using the vector meson dominant model, the distribution of the ?-N scattering length is presented as a function of energy, and the results show that there is a slight increase in scattering length with increasing energy. Based on this, the average scattering length of a ?-proton is obtained as\begin{document}$ 0.10\pm0.01 $\end{document} fm by combining experimental data and theoretical models. Moreover, the average scattering length of the ?-deuteron interaction is derived to be \begin{document}$ 0.014\pm0.002 $\end{document} fm for the first time. Furthermore, the effect of the momentum transfer \begin{document}$|t_{{\rm min}}|$\end{document} on the ?-N scattering length at the threshold is discussed. The obtained results not only provide important theoretical information for a more comprehensive and accurate study of the ?-N scattering length, but also a basis for future experimental measurements of ? meson production.  相似文献   
15.
稀土配合物具有较窄的f-f跃迁光谱带、较长的荧光寿命及较大的Stokes位移等独特的发光性质,同时其优异的顺磁性,赋予其在生物检测、疾病诊断及生物学活动研究中的重要应用价值。然而,稀土配合物大多水溶解性差,且荧光容易被环境中水分子O-H键的热振动淬灭等,极大地限制了其在水溶液及生物体系中的应用。近年来有研究表明,将稀土配合物组装成有序的二维或三维纳米材料,能够有效地促进其在水溶液及生物环境中的分散并提高或稳定其发光。综述了近年来稀土配合物在水溶液及生物环境中的自组装及生物成像等应用研究进展,并探讨了基于稀土配合物组装体的应用潜力和相应挑战,为进一步研究稀土配合物在水溶液中的组装行为及生物成像功能提供了理论基础。  相似文献   
16.
Organic materials with multiple emissions tunable by external stimuli represent a great challenge. TTPyr, crystallizing in different polymorphs, shows a very rich photophyisics comprising excitation-dependent fluorescence and phosphorescence at ambient conditions, and mechanochromic and thermochromic behavior. Transformation among the different species has been followed by thermal and X-ray diffraction analyses and the emissive features interpreted through structural results and DFT/TDDFT calculations. Particularly intriguing is the polymorph TTPyr(HT), serendipitously obtained at high temperature but stable also at room temperature, whose non-centrosymmetric structure guarantees an SHG efficiency 10 times higher than that of standard urea. Its crystal packing, where only the TT units are strongly rigidified by π-π stacking interactions while the Pyr moieties possess partial conformational freedom, is responsible for the observed dual fluorescence. The potentialities of TTPyr for bioimaging have been successfully established.  相似文献   
17.
为了开发较高能量密度的超级电容器,我们通过简单的溶剂热反应合成了一种三维的钴基金属有机框架(MOF)化合物([KCo7(OH)3(ip)6(H2O)4]·12H2O,Co?ip;ip=间苯二甲酸根),并考察了其作为超级电容器电极材料的性能。Co?ip电极显示出高比电容、良好的循环稳定性和优良的倍率性能。在1 mol·L^-1 KOH溶液中,电流密度为1 A·g^-1时,其最大比电容为1660 F·g^-1。在电流密度为2 A·g^-1条件下,循环3000次后,其比电容的保持率为82.7%。优异的超级电容性能可归因于Co?ip具有纳米尺寸颗粒和三维的多孔结构。  相似文献   
18.
合成了3个不同结构的吡啶?2?甲醛缩对氯苯氧乙酰腙(HL)与镉的配合物。通过X射线单晶衍射、红外光谱、紫外光谱、荧光光谱以及热重等分析,对其进行晶体结构和性质的研究。单晶衍射结构解析表明:配合物1属单斜晶系,C2/c空间群,是一个通过氯离子桥联的二聚体,分子式为[Cd(HL)Cl2]2;配合物2属单斜晶系,P21/c空间群,是一个含2个有机配体、蝴蝶状的单核分子,其分子式为[Cd(HL)2Br2];配合物3属三斜晶系,P1空间群,配合物中只含有一个有机配体,其分子式为[Cd(HL)I2]。固体荧光分析表明:配体和配合物均有很强的荧光性,且发绿光。  相似文献   
19.
该文以4-乙烯基吡啶和甲基丙烯酸酯为原料制备了一种可用于检测奥卡西平(OXC)的磁性分子印迹 电化学传感器(MNPs-MIP/MCPE)。首先,依据密度泛函数理论(DFT/B3LYP/6-31 + G)计算,实验成功地 筛选和构建出 OXC与功能单体的最佳组合及比例。随后,基于沉淀聚合法合成了能够识别 OXC的磁性分子 印迹膜(MNPs-MIP),将MNPs-MIP覆于碳糊电极(MCPE)表面制成MNPs-MIP/MCPE。采用差分脉冲伏安 法(DPV)将 MNPs-MIP/MCPE 传感器用于不同浓度 OXC 的测定。结果显示,传感器的峰电流信号随 OXC 浓 度的增大而增大,且OXC分别在5 × 10-8 ~3 × 10-6 mol/L和3 × 10-6 ~1. 5 × 10-4 mol/L浓度范围内与其峰电流 信号呈线性关系,其线性方程分别为:Ip (μA)= 1. 755 + 1. 097c(μmol/L),相关系数(r)= 0. 999 7 和 Ip (μA)= 0. 131 + 5. 177c(μmol/L),r = 0. 999 6。OXC的检出限(LOD = 3S/m)为2. 06 × 10-8 mol/L。该传感器成 功用于实际样品中OXC含量的检测,其回收率为99. 4%~101%,相对标准偏差(RSD)为1. 5%~2. 5%。  相似文献   
20.
以氧化琼脂糖(AG)和四甲氧基硅烷(TMOS)为前驱体,通过溶胶-凝胶法制备 AG/SiO2整体柱,利 用酰胺化反应对整体柱进行酰胺基团修饰。通过X射线光电子能谱(XPS)、傅里叶变换红外光谱(FTIR)、N2 吸附-脱附和扫描电镜(SEM)等表征手段对所制备材料的结构和形貌进行分析。结果显示酰胺基团被成功修 饰至整体柱,该材料具有良好的通透性及较大的比表面积。以其为固相微萃取介质对羊肉中的莱克多巴胺进 行萃取富集,在优化的样品前处理条件下,采用基质添加标准曲线法,结合高效液相色谱-紫外(HPLC- UV)检测,建立了羊肉中痕量莱克多巴胺的分析方法。该方法在 1. 94~1 170 ng/g范围内线性良好,相关系 数(r 2 )为 0. 993 1,检出限(LOD)和定量下限(LOQ)分别为0. 618、1. 94 ng/g,3个不同加标水平下样品的平均回 收率为86. 6%~103%,相对标准偏差(RSD,n = 5)为4. 8%~7. 3%。该方法具有检出限低、回收率高、样品用 量少等特点,可用于羊肉中痕量莱克多巴胺的灵敏检测。  相似文献   
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