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CAREER: Amplification-Coupled Solid-State Nanopore Digital Counting based a Versatile Platform for Point-of-Care Nucleic Acid Testing

CAREER: Amplification-Coupled Solid-State Nanopore Digital Counting based a Versatile Platform for Point-of-Care Nucleic Acid Testing
职业:基于扩增耦合固态纳米孔数字计数的多功能平台,用于即时核酸检测
批准号:
2045169
负责人:
Weihua Guan
金额:
$50.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2021
资助国家:
美国
项目状态:
未结题
起止时间:
2021-06-01 至 2026-05-31

项目摘要

项目成果

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中文摘要
翻译
这一职业项目支持一种综合研究和教育方法,以解决基于固态纳米孔的单分子计数平台向完全集成的护理点核酸检测方面的基本和应用挑战。该项目的动机是,从传染病、食品安全到国土安全,对分散式核酸测试的需求日益增长。认识到使用纳米孔就像使用单分子计数器一样简单,并且在扩增反应期间可以灵敏地和特定地复制目标核酸的事实,该项目试图开发一种基于固态纳米孔的护理点核酸测试设备,其中完全集成了样品制备。拟议的研究活动将与教育活动相结合,提供以实践为基础的教育,以激励和培训未来的STEM领导人,并提高公众对生物传感设备及其社会影响的认识。这项建议的总体研究目标是探索一种用于护理点式核酸测试的高灵敏度纳米孔数字计数范例。由于其最小化和集成化的潜力,固态纳米孔传感是一个快速发展的领域。已经做出了相当大的努力来开发各种应用程序。然而,与DNA测序中采用的生物传感器相比,将固态纳米孔传感器转化为实际环境的进展有限,主要是因为在可重复大小控制、引入特异性、在低分析物浓度下延长检测时间以及缺乏完整的样品制备方面存在挑战。拟议的工作旨在解决这些问题,并探索一种完全整合的固态纳米孔数字计数范例,以便在需要时进行核酸测试。研究活动将涉及传感动力学、纳米孔制造、药筒和系统集成以及验证的四个研究目标。这项研究本质上是多学科的,涵盖了从基础研究到应用研究的范围,包括低风险和高风险部分。他们共同构成了一个促进和转化固态纳米孔传感器的完整研究计划。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
This CAREER project supports an integrated research and education approach to address the fundamental and applied challenges in solid-state nanopore-based single molecule counting platform towards the fully integrated point-of-care nucleic acid testing. This project is motivated by a growing demand for decentralized nucleic acid testing for applications ranging from infectious disease, food safety to homeland security. In recognition of using nanopore as simple as a single molecule counter and the fact that target nucleic acids can be sensitively and specifically replicated in numbers during the amplification reaction, this project seeks to develop a solid-state nanopore-based point of care nucleic acid testing device in which sample preparation is fully integrated. The proposed research activities will be synergistically integrated with educational activities to provide hands-on based education to inspire and train future STEM leaders and to increase public awareness of biosensing devices and their societal impacts.The overall research objective of this proposal is to explore a highly sensitive nanopore digital counting paradigm for point-of-care nucleic acid testing. Due to its potential for minimization and integration, solid-state nanopore sensing is a rapidly evolving field. Considerable effort has been made for developing various applications. However, translating solid-state nanopore sensors to practical settings has seen limited progress as compared to their biological counterparts adopted in the DNA sequencing, mainly due to the challenges in reproducible size control, introducing specificity, prolonged sensing time at low analyte concentrations, and the lack of integrated sample preparation. The proposed work aims to address these issues and explore a fully integrated solid-state nanopore digital counting paradigm towards nucleic acid testing at the point of need. The research activity will address four research aims regarding the sensing kinetics, nanopore fabrication, cartridge and system integration, and validation. This research is multidisciplinary in nature and spans the range from fundamental to applied research, with low- and high-risk components. Together, they constitute a complete research program to advance and translating the solid-state nanopore sensors.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(20)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1016/j.trac.2023.116917
发表时间: 2023-01
期刊: Trends in analytical chemistry : TRAC
影响因子: --
作者: [Anthony J Politza;Reza Nouri;W. Guan]
通讯作者: Anthony J Politza;Reza Nouri;W. Guan
Programmable Magnetic Robot (ProMagBot) For Fully Automated Nucleic Acid Sample Preparation at The Point of Need
可编程磁性机器人 (ProMagBot) 用于在需要时全自动制备核酸样品
DOI: --
发表时间: 2022
期刊: Hilton Head Workshop
影响因子: --
作者: [A. J. Politza, T. Liu]
通讯作者: A. J. Politza, T. Liu
DOI: 10.1016/j.bios.2023.115866
发表时间: 2023-11
期刊: Biosensors & bioelectronics
影响因子: 12.6
作者: [Md. Ahasan Ahamed;Muhammad Asad Ullah Khalid;Ming Dong;Anthony J Politza;Zhikun Zhang;Aneesh Kshirsagar;Tianyi Liu;W. Guan]
通讯作者: Md. Ahasan Ahamed;Muhammad Asad Ullah Khalid;Ming Dong;Anthony J Politza;Zhikun Zhang;Aneesh Kshirsagar;Tianyi Liu;W. Guan
DOI: 10.1063/5.0167402
发表时间: 2023-10
期刊: Applied Physics Letters
影响因子: 4
作者: [Ming Dong;Zifan Tang;W. Guan]
通讯作者: Ming Dong;Zifan Tang;W. Guan
共 15 条
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