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Recent advances in the realization of individual molecular‐scale devices [1,2] highlight the integration of individual devices into large‐scale functional circuits as the major challenge. DNA‐programmed assembly is a promising avenue in that direction due to the large amount of information that can be coded into the molecules and the ability to translate that information into physical constructs [3]. Large‐scale DNA‐templated electronics require, however, complex manipulation of double‐stranded DNA (dsDNA) molecules, as well as patterning of the electrical properties instilled to them by, e.g., metallization. To that end, sequence‐specific molecular lithography on single DNA molecules has been developed [4]. This was achieved by harnessing the exquisite homologous recombination process of the RecA protein. Sequence‐specific patterning of the metal coating of DNA molecules, localization of arbitrary labeled molecular objects at any desired dsDNA address without prior modifications, and generation of molecularly accurate stable dsDNA‐dsDNA junctions are demonstrated. The information encoded in the DNA molecules directs the lithographic process in analogy to the masks used in conventional microelectronics. The RecA protein provides the assembling capabilities, as well as the resist function. 相似文献
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Abstract The whole DNA of soybean was implanted into four varieties of wheat of Zhongyu5, Huaiyin 9628, Wenyou 1, Jimai 5 respectively via ion-beam mediation. There were 5 plantsobtained whose protein content was higher than 18.5%, the highest one was 21.44%. There were 3plants obtained whose protein content was lower than 11.5%, the lowest one was 10.96%. We cansee that the whole DNA of soybean transformed into wheat via ion beam implantation can inducethe increase in wheat protein content dramatically. The result also shows that the transformationefficiency of different gene types of wheat receptor varies greatly that the implanting time has acertain effect on the efficiency of transformation. 相似文献
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Double-stranded DNA is one of functional polymers, but the large amounts of DNA sources, such as salmon milt and shellfish gonads, have been discarded as industrial wastes. Therefore, conversion of this discarded DNA to be a useful material would be beneficial to utilize the unique property of DNA. These materials including DNA have been prepared by mixing with the organic polymers, such as alginic acid, collagen, and chitosan. However, since these materials have consisted from entirely organic components, these do not have the mechanical strength for a material. So, we prepared the organic-inorganic hybrid materials by mixing DNA with silane coupling reagents bis(trimethoxysilylpropyl)amine or bis[(3-trimethoxysilyl)propyl]ethylenediamine. These hybrid materials with the flexibility were water-insoluble and resistant to hydrolysis by nuclease. In addition, the mechanical strength of this hybrid material was approximately twice as high as that of DNA without mixing with silane coupling reagents. Furthermore, the double-stranded DNA in the hybrid materials has been maintained in a B-form structure in aqueous solution. Thus, we demonstrated the utilization of DNA as a functional material. As a result, this material could selectively accumulate harmful DNA-intercalating compounds with the planar structure, such as dibenzo-p-dioxin, dibenzofuran, and ethidium bromide. Organic-inorganic hybrid material including double-stranded DNA has potential to serve as a useful biomaterial for medical, engineering, and environmental applications. 相似文献
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ElectronmicroscopicobservationsandDNAchainfragmentationstudiesonapoptosisinbonetumorcelsinducedby153SmEDTMPZhuShouPeng,Xia... 相似文献
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药物抗氧化作用对DNA发光动力学行为的影响 总被引:14,自引:0,他引:14
本文应用CuSO4-Phen-Vc-H2O2-DNA化学发光体系观察药物对发光动力学行为的影响,研究了九种药物对DNA损伤的保护作用,并对其药物结构对抗氧化能力的影响进行了分析。发现药物在该系统中的抗氧化作用有三种类型,提示它们可能在体内不同的反应过程中起不同的作用。在该系统中具有抑制DNA损伤发光能力的药物,按其作用强弱依次为阿魏酸、丹参素、芦丁,茶多酚、SOD、、丹参酮Ⅱ-A,丹皮酚,五味子乙 相似文献
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基于纳米材料的电化学生物传感器研究进展 总被引:1,自引:1,他引:0
该文主要从纳米尺寸材料电极的构建以及纳米材料作为生物分子指示剂两部分展开讨论,描述了依赖于阵列纳米管排列的生物分子与电极间的直接电子传递,纳米管、纳米颗粒为基质的纳米电极的构建,以及以金纳米颗粒、DNA量子点和蛋白为基础的多路分析技术与负载于CNT的新的纳米生物标记,特别讨论了纳米电化学方法在检测DNA和免疫传感器领域取得的研究进展. 相似文献
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DNA密码是伴随着DNA计算的研究而出现的密码学新领域。利用DNA合成技术、PCR扩增技术以及DNA数字编码技术,结合传统密码学提出了一种基于DNA技术的加密方案。方案利用引物对于PCR扩增技术的特殊作用,提出要以引物和编码方式为密钥,采用传统的加密方法对明文进行加密预处理,可有效防止可能词作为PCR引物进行攻击。生物学困难问题和密码学计算困难问题为该方案提供了双重的安全保障,安全性分析表明该加密方案具有很强的保密强度。 相似文献