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1.
韩洋  杨维春  王科志 《化学学报》2007,65(21):2382-2386
合成并表征了一个新的Ru(II)配合物[Ru(bpy)2(hedppc)](ClO4)2 {bpy=2,2'-联吡啶, hedppc=二联吡啶[3,2-a: 2',3'-c]吩嗪-11-羧酸(2-羟乙基)酯}. 通过紫外-可见吸收光谱、与溴化乙锭竞争实验、粘度测量和DNA裂解实验研究了配合物与小牛胸腺DNA的相互作用性质. 结果表明配合物以插入模式与DNA键合,键合常数Kb=(6.99±1.34)×106 mol-1•L (s=2.03±0.04)与母体配合物[Ru(bpy)2 (dppz)]2+相近,但光致发光和溶剂变色等光学性质与[Ru(bpy)2 (dppz)]2+有明显的差别.  相似文献   

2.
李月生  李奔强  孙绍发 《化学学报》2013,71(12):1656-1662
通过水热合成法和自组装方法分别合成了CdTe(QDs)量子点与CdTe(QDs)敏化的纳米TiO2复合物,并将CdTe(QDs)/TiO2与TiO2均配成浓度为1×10-2 mol/L的悬浮液. 取一小环大肠杆菌(E. coli)的营养肉汤培养基至5 mL LB培养基中,则E. coli的浓度配成大约1×106 cell/mL的悬浮液以作备用. 在37.0 ℃条件下,利用LKB-2277生物活性检测仪并采用停流法进行检测,研究了CdTe(QDs)/TiO2E. coli的抗菌行为. 通过测定和分析产热功率-时间曲线,获得细胞生长速率常数(k)、最大产热功率(Pm)、传代时间(tG)以及抑制率(I)等热动力学常数. 结果表明:在0~4.0×10-5 mol·L-1浓度范围内,生长速率常数(k)和抑制率(I)均与浓度成一定的线性关系. 生长速率常数(k)和最大产热功率(Pm)随着CdTe(QDs)/TiO2的浓度增加而下降,而传代时间(tG)和抑制率(I)随着CdTe(QDs)/TiO2 的浓度增加而增加;其中,CdTe(QDs)/TiO2的生长速率常数斜率(0.0001)小于TiO2的生长速率常数斜率(0.0005),可以初步判断CdTe(QDs)/TiO2E. coli的代谢影响较TiO2要大. TiO2和CdTe(QDs)/TiO2E. coli代谢活性均有一定的抑制作用. 在相同浓度时,CdTe(QDs)/TiO2的抑制率斜率(0.84)大于TiO2的抑制率斜率(0.26),进一步说明了CdTe(QDs)/TiO2相比TiO2具有对E. coli 更强的细菌抑制作用;结合Hadama荧光显微方法,进一步佐证了CdTe(QDs)/TiO2相对于TiO2表面结构的改变可能是导致其抗菌效果较好的主要原因之一. 从而为深入揭示纳米材料影响微生物生长代谢过程的热动力学规律和细胞损伤机制提供理论支撑.  相似文献   

3.
刘英涛  王鑫  刘翔宇  冀永强 《化学学报》2012,70(9):1131-1134
用密度泛函 B3LYP 方法得到一系列不同管径的氨基-硝基双取代纳米管NH2-(n,0)CNT-NO2 (n=5~10)的几何结构. 用CAM-B3LYP 方法计算了体系的第一超极化率(β0). 研究表明, β0 对管径大小有着极强的依赖性. 特别是对偶数纳米管(n=6, 8 和10), 其β0 (5.5×103~9.8×104 au)是奇数纳米管β0 (1.0×103~2.8×103 au)的5~35 倍.  相似文献   

4.
王凯  张智  郭茜妮  鲍小平  李早英 《化学学报》2007,65(22):2597-2603
以4,4'-二羧酸-2,2'-联吡啶为桥联试剂, 合成了一种含8个阳离子的水溶性桥联双卟啉(PD). 以5,10,15,20-四(4-N-甲基吡啶盐)卟啉(H2TMPyP)为参照物, 使用紫外-可见光谱、荧光光谱、圆二色谱研究了水溶性双卟啉与小牛胸腺DNA (CT DNA)的相互作用, 以溴化乙啶(EB)竞争法测定了PD与CT DNA的表观键合常数(Kapp)为1.2×106 L•mol-1 (H2TMPyP为6.9×106 L•mol-1), 并使用凝胶电泳研究了PD对pBR322质粒DNA的切割能力. 实验结果表明PD与CT DNA的作用方式是插入和外部结合的混合模式.  相似文献   

5.
光催化氧化法测定地表水化学需氧量的研究   总被引:14,自引:0,他引:14  
用溶胶-凝胶法在石英管上制备了纳米TiO2膜, 并采用光催化氧化法建立了一种测定地表水化学需氧量(COD)的新方法. 以Ce(IV)作为纳米TiO2光生电子的接受体, 从而减少了纳米TiO2光生电子和光生空穴的复合, 提高纳米TiO2的光催化氧化能力. 以测定Ce(IV)的紫外吸收为手段探讨了光催化氧化测定COD的机理, 考察了测定COD的最佳反应条件. 实验结果表明, 该方法条件温和, 不会造成二次污染, 能够实现地表水等低COD值水样的快速准确测定. 在该实验所选择的条件下, 可准确地测定1.0~12 mg?L-1之间的COD值, 检测限为0.4 mg?L-1.  相似文献   

6.
以商用TiO2P25为催化剂,分别在TiO2/UV/O2和TiO2/UV/N2两种体系下进行降解对氯硝基苯(pCNB)试验.采用ESR对两种体系下光催化反应形成的·OH进行测定,利用LC-MS对两种体系下反应形成的中间产物进行了定性和定量分析,最后对pCNB降解过程中氯和硝基的存在形式进行了研究.结果表明:TiO2/UV/O2体系的催化降解效果要明显优于TiO2/UV/N2体系;两种反应体系都有·OH产生,并且TiO2/UV/O2体系产生的·OH的量多于TiO2/UV/N2体系产生的·OH的量;TiO2/UV/O2体系形成的中间产物的种类要多于TiO2/UV/N2体系形成的,苯环上的氢、氯、硝基均可被·OH取代形成对硝基酚(pNP)、5-氯-2-硝基酚(5-C-2-PN)等酚类物质;两种体系下均有Cl-和NO2-存在,其中Cl-生成势与pCNB的去除势一致,只有TiO2/UV/O2体系中存在NO3-.  相似文献   

7.
氮掺杂碳纳米管修饰电极的电化学行为   总被引:1,自引:0,他引:1  
董俊萍  曲晓敏  王利军  王田霖 《化学学报》2007,65(21):2405-2410
制备了氮掺杂改性的碳纳米管, 并用循环伏安法(CV)测定了多巴胺(DA)和抗坏血酸(AA)在不同氮含量的碳纳米管修饰电极上的电化学行为. 结果表明, 氮掺杂碳纳米管修饰电极对AA和DA有不同的电催化行为, 其中高氮含量修饰电极对AA的催化作用强, 而低氮含量修饰电极对DA的催化作用强. 微分脉冲伏安法(DPV)的结果显示, DA的氧化峰电流与其浓度在5.0×10-6~2.0×10-4 mol/L范围内呈良好的线性关系, 检出限达1.64×10-6 mol/L (S/N=3); AA氧化峰电流与其浓度在3.0×10-5~1.0×10-2 mol/L范围内呈良好的线性关系, 检出限达3.26×10-6 mol/L (S/N=3). 该修饰电极在AA大量存在(AA浓度为DA浓度两万倍)时可选择性地实现多巴胺的测定而不造成干扰.  相似文献   

8.
合成了双(烷氧-亚胺芳氧)基钛(IV)配合物, 通过IR, 1H NMR和元素分析对其进行表征, X射线单晶衍射测定了其晶体结构. 单晶结构分析表明, 该晶体属于三斜晶系, 空间群为P , a=14.294(9) Å, b=16.206(10) Å, c=18.458(12) Å, V=3911(4) Å3, Dc=1.098 g•cm-3, μ=0.262 mm-1, F(000)=1589, Z=2, R1=0.081, wR2=0.240. 实验结果表明该配合物在130 ℃以上能引发D,L-丙交酯单体开环聚合, 可得数均分子量(Mn)为8.8×104 g/mol的聚(D,L-乳酸)(PDLLA). 动力学研究表明该聚合反应对D,L-丙交酯单体浓度和催化剂浓度分别呈2级和1级, 表观活化能和频率因子分别为76.63 kJ/mol和2.91×1011. 通过苄基封端聚合物1H NMR谱的研究, 表明钛配合物引发D,L-丙交酯开环聚合是基于以Ti-O键为活性中心引发D,L-丙交酯单体酰氧键断裂开环聚合的“配位-插入”机理.  相似文献   

9.
介绍了一种将TiO2光催化剂担载在新型载体上的光催化电极.新型载体是用炭质材料和聚四氟乙烯制备的,它具有电合成H2O2的功能.在电流密度为15mA/cm2时,光催化电极不仅具有高达80%的电合成H2O2的电流效率,而且该电极的电位处在0.02V(SCE)左右,使载体表面的TiO2光催化剂获得了约+0.47V的阳极偏压(相对平带电势),对增加TiO2光催化反应效率十分有益.在具有新型光催化电极的光反应体系中,水中的有机分子受到来自溶液中大量·OH自由基(H2O2被紫外光分解的中间产物)的均相氧化(即光化学氧化),以及来自TiO2表面光生空穴的复相氧化(即光催化氧化).在光化学氧化和光催化氧化的联合作用下,有机分子的矿物化反应速度显著提高.  相似文献   

10.
史娟兰  汪庆祥  陈建平  郑梅霞  高飞 《化学学报》2011,69(17):2015-2020
以富勒烯C60, L-苏氨酸及对苯二甲醛为原料, 在氮气保护下反应得到含醛基官能团的2-(4-醛基苯基)-5-(1-羟乙基)富勒烯吡咯烷衍生物(C60-CHO). 将该材料修饰于玻碳电极表面, 并利用醛基与氨基之间温和、高效的缩合反应, 将5-氨基修饰的寡聚核苷酸共价固定到了C60-CHO修饰的玻碳电极表面, 构建了一种新型的电化学DNA传感器. 以[Fe(CN)6]3−/4−为电活性探针, 采用电化学阻抗法对转基因植物CaMV35S启动子基因特征片段进行检测. 实验结果表明, 杂交前后的电子传递电阻差值(DRet)与目标序列浓度对数(lg CS2)在1.0×10-13~1.0×10-9 mol/L浓度范围内呈良好的线性关系, 线性回归方程为DRet/(103 Ω)=3.471 lg (CS2/mol/L)+50.425 (r=0.9977), 检测限为1.5×10−14 mol/L. 杂交特异性实验进一步表明该传感器对完全互补、碱基错配和非互补序列具有良好的识别能力.  相似文献   

11.
Many cells have the ability to recognize and eliminate damage to their DNA, particularly thymine dimers formed by UV light. The elimination of this damage may be achieved by enzymatic, light-dependent cleavage of the dimers into the monomers (photoreactivation) or more frequently by dark repair, in which the damaged part is completely removed from the, DNA. In this repair process, the DNA is incised by an endonuclease in the immediate vicinity of the thymine dimers. Oligonucleotides containing the thymine dimer are removed hydrolytically from the DNA by the 5→3′ exonuclease activity of DNA polymerase I (Kornberg enzyme). The resulting gaps are immediately closed by a de novo synthesis with the aid of the same DNA polymerase I, the complementary strand serving as a template (excision repair). The final step is the formation of the phosphodiester bond between the newly synthesized DNA fragment and the old DNA strand by a DNA ligase. Xeroderma pigmentosum patients lack the endonuclease as a result of a genetic defect; they therefore cannot eliminate thymine dimers from their DNA, and are extremely sensitive to sunlight. All information so far suggests that genetic recombination and DNA repair are performed by the same enzyme system.  相似文献   

12.
13.
Biaryl derivatives that consist of one DNA‐intercalating unit and a sterically demanding component exhibit a specific behavior towards abasic site‐containing DNA (AP‐DNA) as determined by thermal DNA denaturation experiments, spectrometric titrations and CD spectroscopic analysis. Specifically, these ligands strongly stabilize AP‐DNA towards dissociation, whereas they do not or only marginally affect the melting temperature of regular duplex DNA.  相似文献   

14.
The oxidative DNA lesion, FaPydG rapidly anomerizes to form a mixture of the alpha and beta anomer. To investigate the mutagenic potential of both forms, we prepared stabilized bioisosteric analogues of both configurational isomers and incorporated them into oligonucleotides. These were subsequently used for thermodynamic melting-point studies and for primer-extension experiments. While the beta compound, in agreement with earlier data, prefers cytidine as the pairing partner, the alpha compound is not able form a stable base pair with any natural base. In primer-extension studies with the high-fidelity polymerase Bst Pol I, the polymerase was able to read through the lesion. The beta compound showed no strong mutagenic potential. The alpha compound, in contrast, strongly destabilized DNA duplexes and also blocked all of the tested DNA polymerases, including two low-fidelity polymerases of the Y-family.  相似文献   

15.
With silicon-based microelectronic technology pushed to its limit,scientists hunt to exploit biomolecules to power the bio-computer as substitutes.As a typical biomolecule,DNA now has been employed as a tool to create computing systems because of its superior parallel computing ability and outstanding data storage capability.However,the key challenges in this area lie in the human intervention during the computation process and the lack of platforms for central processor.DNA nanotechnology has created hundreds of complex and hierarchical DNA nanostructures with highly controllable motions by exploiting the unparalleled self-recognition properties of DNA molecule.These DNA nanostructures can provide platforms for central processor and reduce the human intervention during the computation process,which can offer unprecedented opportunities for biocomputing.In this review,recent advances in DNA nanotechnology are briefly summarized and the newly emerging concept of biocomputing with DNA nanostructures is introduced.  相似文献   

16.
The ability to precisely measure and monitor temperature at high resolution at the nanoscale is an important task for better understanding the thermodynamic properties of functional entities at the nanoscale in complex systems, or at the level of a single cell. However, the development of high‐resolution and robust thermal nanosensors is challenging. The design, assembly, and characterization of a group of thermal‐responsive deoxyribonucleic acid (DNA) joints, consisting of two interlocked double‐stranded DNA (dsDNA) rings, is described. The DNA nanojoints reversibly switch between the static and mobile state at different temperatures without a special annealing process. The temperature response range of the DNA nanojoint can be easily tuned by changing the length or the sequence of the hybridized region in its structure, and because of its interlocked structure the temperature response range of the DNA nanojoint is largely unaffected by its own concentration; this contrasts with systems that consist of separated components.  相似文献   

17.
We describe the synthesis of the phosphoramidite building blocks of alpha-tricyclo-DNA (alpha-tc-DNA) covering all four natural bases, starting from the already known corresponding alpha-tc-nucleosides. These building blocks were used for the preparation of three alpha-tc-oligonucleotide 10-mers representing a homopurine, a homopyrimidine, and a mixed purine/pyrimidine base sequence. The base-pairing properties with complementary parallel and antiparallel oriented DNA and RNA were studied by UV-melting analysis and CD spectroscopy. We found that alpha-tc-DNA binds preferentially to parallel nucleic acid complements through Watson-Crick duplex formation, with a preference for RNA over DNA. In comparison with natural DNA, alpha-tc-DNA shows equal to enhanced affinity to RNA and also pairs to antiparallel DNA or RNA complements, although with much lower affinity. In the mixed-base sequence these antiparallel duplexes are of the reversed Watson-Crick type, while in the homopurine/homopyrimidine sequences Hoogsteen and/or reversed Hoogsteen pairing is observed. Antiparallel duplex formation of two alpha-tc-oligonucleotides was also observed, although the thermal stability of this duplex was surprisingly low. The base-pairing properties of alpha-tc-DNA are discussed in the context of alpha-DNA, alpha-RNA, and alpha-LNA.  相似文献   

18.
In this study, we have developed a PCR multiplex that can be used to assess DNA degradation and at the same time monitor for inhibition: primers have been designed to amplify human, pig, and rabbit DNA, allowing pig and rabbit to be used as experimental models for taphonomic research, but also enabling studies on human DNA persistence in forensic evidence. Internal amplified controls have been added to monitor for inhibition, allowing the effects of degradation and inhibition to be differentiated. Sequence data for single‐copy nuclear recombination activation gene (RAG‐1) from human, pig, and rabbit were aligned to identify conserved regions and primers were designed that targeted amplicons of 70, 194, 305, and 384 bp. Robust amplification in all three species was possible using as little as 0.3 ng of template DNA. These have been combined with primers that will amplify a bacterial DNA template within the PCR. The multiplex has been evaluated in a series of experiments to gain more knowledge of DNA persistence in soft tissues, which can be important when assessing what material to collect following events such as mass disasters or conflict, when muscle or bone material can be used to aid with the identification of human remains. The experiments used pigs as a model species. When whole pig bodies were exposed to the environment in Northwest England, DNA in muscle tissue persisted for over 24 days in the summer and over 77 days in the winter, with full profiles generated from these samples. In addition to time, accumulated degree days (ADD) were also used as a measure that combines both time and temperature—24 days was in summer equivalent to 295 ADD whereas 77 days in winter was equivalent to 494 ADD.  相似文献   

19.
Monodentate DNA binding of [PtCl(dien)]+ (dien=diethylenetriamine) complexes may considerably affect the biophysical properties of DNA and consequently downstream cellular processes as a result of a large increase in the bulkiness of the nonleaving ligand by multiple methylation (see illustration).

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20.
Efficient DNA nick sealing catalyzed by T4 DNA ligase was carried out on a modified DNA template in which an intercalator such as azobenzene had been introduced. The intercalator was attached to a D-threoninol linker inserted into the DNA backbone. Although the structure of the template at the point of ligation was completely different from that of native DNA, two ODNs could be connected with yields higher than 90% in most cases. A systematic study of sequence dependence demonstrated that the ligation efficiency varied greatly with the base pairs adjacent to the azobenzene moiety. Interestingly, when the introduced azobenzene was photoisomerized to the cis form on subjection to UV light (320-380 nm), the rates of ligation were greatly accelerated for all sequences investigated. These unexpected ligations might provide a new approach for the introduction of functional molecules into long DNA strands in cases in which direct PCR cannot be used because of blockage of DNA synthesis by the introduced functional molecule. The biological significance of this unexpected enzymatic action is also discussed on the basis of kinetic analysis.  相似文献   

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