期刊文献+

DNA逻辑计算模型的研究现状与展望 被引量:2

Research status and prospect of DNA-based logic computing models
下载PDF
导出
摘要 DNA计算因其优异的计算能力已经成为当前研究热点,DNA逻辑计算模型是DNA计算体系与运算实现的重要依托。按应用技术将现有DNA逻辑计算模型进行分类:基于链置换的DNA逻辑计算模型、基于核酶的DNA逻辑计算模型、基于G-quadruplex的DNA逻辑计算模型、基于DNA自组装的逻辑计算模型、基于其他分子技术和分子材料的DNA逻辑计算模型。首先阐述了DNA逻辑计算的研究背景和研究目的以及现阶段在生物分子检测、疾病诊断、多因素分析和生物成像等领域的应用并简述其相关概念;然后梳理各DNA逻辑计算模型的研究历史和现状,分析各类逻辑计算模型所应用的分子操控技术和分子材料以及优缺点和应用前景;最后归纳总结了DNA逻辑计算领域当前研究热点和发展前景,为未来提出全新的计算方式奠定基础,也为信息、医疗等领域提供更好的服务。 DNA computing has become a hot topic in current research due to its excellent computing performance,and DNA logic computing models is an important implementation tool for DNA computing system and computing implementation.Existing DNA logic computing models are classified according to application technology:DNA logic computing models based on strand displacement,DNA logic computing models based on nucleic acid enzymes,DNA logic computing models based on G-quadruplex,DNA logic computing models based on self-assembly,DNA logic computing models based on other molecular technologies and molecular materials.Firstly,this paper described the research background and research purposes of DNA logic computing and its applications in biomolecular detection,disease diagnosis,multi-factor analysis and bioimaging.Then,this paper sorted out the research history and current status of various types of DNA logic computing models,and analyzed the molecular manipulation techniques and molecular materials used in various logic computing models,as well as the advantages and disadvantages and application prospects.Finally,this paper summarized the current research hotspots and development prospects in the field of DNA logic computing,laying the foundation for a new calculation method for the future,and providing better services for information science,medical diagnosis and other fields.
作者 赵云彬 周士华 Zhao Yunbin;Zhou Shihua(Key Laboratory of Advanced Design&Intelligent Computing of Ministry of Education,Dalian University,Dalian Liaoning 116622,China)
出处 《计算机应用研究》 CSCD 北大核心 2019年第11期3201-3209,共9页 Application Research of Computers
基金 国家自然科学基金资助项目(61425002,61402067,61772100,61572093,61402066,61672121,61672051) 国家教育部“长江学者和创新团队”发展计划资助项目(IRT_15R07) 辽宁省创新团队支持计划资助项目(LT2015002) 辽宁省教育厅重点实验室基础研究项目(LZ2014049,LZ2015004) 辽宁省高校科学研究基金资助项目(L2015015)
关键词 DNA计算 DNA逻辑计算模型 链置换 核酶 自组装 杂交链反应 DNA computing DNA logic computing models strand displacement nucleic acid enzymes self-assembly hybridization chain reaction
  • 相关文献

参考文献4

二级参考文献78

  • 1Lipton R J. DNA solution of hard computational problems. Science, 1995, 268:542-545.
  • 2Adleman L M. Molecular computation of solutions to combinatorial problems. Science, 1994, 266:1021-1024.
  • 3Ouyang Q, Kaplan P D, Liu S, et al. DNA solution of the maximal clique problem. Science, 1997, 278:446-449.
  • 4Liu Q H, Wang L M, Frutos A G, et al. DNA computing on surfaces. Nature, 2000, 403:175-178.
  • 5Kodama T, Jain A, Goodson K E. Heat conduction through a DNA-gold composite. Nano Lett, 2009, 9:2005-2009.
  • 6Chen X, Wang Y, Liu Q, et al. Construction of molecular logic gates with a DNA-cleaving deoxyribozyme. Angew Chem Int Ed, 2006, 45: 1759-1762.
  • 7Niazov T, Baron R, Katz E, et al. Concatenated logic gates using four coupled biocatalysts operating in series. Proc Natl Acad Sci USA, 2006, 103:17160-17163.
  • 8Privman M, Tam T K, Pita M, et al. Switchable electrode controlled by enzyme logic network system: Approaching physiologically regulated bioelectronics. J Am Chem Soc, 2009, 131:1314-1321.
  • 9Mu L, Shi W, She G, et al. Fluorescent logic gates chemically attached to silicon nanowires. Angew Chem Int Ed, 2009, 48:1-5.
  • 10Amir L, Tam T K, Pita M, et al. Biofuel cell controlled by enzyme logic systems. J Am Chem Soc, 2009, 131:826-832.

共引文献59

同被引文献11

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部