Collaborative Research: Enhanced Circular Dichroism Sensing of Biomolecules Using Nanoparticles
Collaborative Research: Enhanced Circular Dichroism Sensing of Biomolecules Using Nanoparticles
批准号:
1403226
负责人:
Sergei Dzyuba
金额:
$8.09万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-08-01 至 2017-07-31
中文摘要
提议:1403947/1403226PI:Balaz,米兰/Dzyuba,Sergei合作研究:使用纳米粒子增强生物分子的圆二向色性传感技术术语:拟议的项目旨在利用非手性金属或半导体纳米颗粒(NPs)来增强和调制手性生物分子的圆二向色性(CD)信号。CD是检测和分析手性化合物及其相互作用的首选技术。CD光谱灵敏度的显著提高,加上将CD信号转换到更长波长的能力,将允许在生物相关浓度下检查生物分子结构以及超分子生物识别现象,并最大限度地减少不必要的重叠。由于非手性纳米粒子与其附近的手性分子之间的电子耦合,增强的灵敏度和模块化有望提高。我们将制备手性分子功能化的非手性纳米粒子,并研究其结构和实验CD特性。我们将进行CD光谱的理论模拟,以获得关于手性生物分子覆盖的金属和半导体纳米粒子中诱导CD的详细结构和机理的见解。这是非手性金属和半导体纳米粒子首次被设计和优化以特定地增强手性分子的CD。该项目将进一步加深我们对非手性金属和半导体纳米粒子诱导手性活性起源的理解,并将对生物传感和手性纳米材料领域产生直接影响。莱曼术语:圆二色谱(CD)可以检测手性生物分子并研究它们之间的相互作用。该项目将开发新的方法,通过利用纳米尺寸的金属或半导体颗粒作为Cd信号的强大放大器来提高Cd检测的灵敏度和分辨率。增强的信号检测将极大地有利于对低浓度、复杂的生物活性分子混合物的检测和研究,这些都是目前方法难以探索的。
英文摘要
Proposal: 1403947/1403226PI: Balaz, Milan/Dzyuba, SergeiCollaborative Research: Enhanced Circular Dichroism Sensing of Biomolecules Using NanoparticlesTechnical terms: The proposed project aims to utilize achiral metallic or semiconductor nanoparticles (NPs) to enhance and modulate circular dichroism (CD) signal of chiral biomolecules. CD is the preferred technique for detection and analysis of chiral compounds and their interactions. Significant enhancement of the sensitivity of CD spectroscopy coupled with the ability to shift CD signals to longer wavelengths will allow examining structures of biological molecules as well as supramolecular biorecognition phenomena at biologically relevant concentrations with minimal amount of unwanted overlaps. The enhanced sensitivity and modularity is anticipated to rise from the electronic coupling between achiral NPs and chiral molecules in their proximity. We will prepare achiral NPs functionalized with chiral molecules and study their structure and experimental CD characteristics. We will perform theoretical simulations of CD spectra to gain detailed structural and mechanistic insights into the origins of induced CD in metallic and semiconductor NPs capped with chiral biomolecules. This is the first time that the achiral metallic and semiconductor NPs will be designed and optimized to specifically enhance CD of chiral molecules. The project will further enhance our understanding of the origin of induced chiroptical activity in achiral metallic and semiconductor NPs and will have an immediate impact on the fields of biosensing and chiroptical nanomaterials.Layman terms: Circular dichroism (CD) spectroscopy allows to detect chiral biomolecules and study their interactions. The project will develop novel methods that enhance the sensitivity and resolution of CD detection by utilizing metallic or semiconductor particles of nanometer size as potent amplifiers of CD signal. Enhanced signal detection will be strongly beneficial for the detection and study of low concentration and complex mixture of biologically active molecules that are difficult to explore by current methods.
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批准号:1126710
-
项目类别:Standard Grant
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资助金额:$12.49万
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财政年份:2011
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负责人:Sergei Dzyuba
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依托单位:
国内基金
海外基金
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