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Towards Deep Tissue Imaging of Fluorescence Resonance Energy Transfer Parameters

Towards Deep Tissue Imaging of Fluorescence Resonance Energy Transfer Parameters
荧光共振能量转移参数的深层组织成像
批准号:
0854249
负责人:
Kevin Webb
金额:
$34.45万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-01 至 2015-08-31

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中文摘要
翻译
网络荧光共振能量转移(FRET)已被证明在研究化学物质向细胞内的运输以及因蛋白质错误折叠(可能导致阿尔茨海默病)而引起的疾病的根本原因方面具有巨大的价值。FRET转移对给体荧光的猝灭已被测量,分子内FRET参数(寿命和产额,在柔性连接体的情况下,连接体距离的均值和方差)得到了广泛的应用。然而,由于大量散射的有害影响,FRET成像一直局限于体外或表面显微镜。该项目的目标是展示一种在高散射介质中成像FRET参数的方法,从而为体内深层组织FRET研究提供机会。计划的新工作如下:-开发一种利用ODT成像FRET参数的方法:将开发一种荧光共振能量转移光学扩散层析成像(FRET-ODT)成像方法。这将涉及到分子内FRET参数的求解,其中刚性和柔性连接体都作为未知源合并到供体荧光的扩散方程表示中。将研究FRET对参数空间(调制频率、源-探测器布置、FRET参数、信噪比)的敏感性,并开发适用于散射介质中FRET源实验数据的软件。还将研究掺入受体动力学的优点。以类似的方式,分子间FRET源将在ODT框架中实现。-FRET-ODT实验研究:将构建一个模型组织实验以获得数据,以评估将要开发的FRET-ODT成像方法。将获得允许不同程度的散射、不同的FRET化学浓度、不同的施主-受主距离和距离分布、以及多个调制频率以及不均匀背景的影响的数据。作为体内FRET-ODT的应用,将使用结合了转运动力学信息并模拟药物输送过程的FRET模型来研究靶向药物输送到癌细胞的小鼠模型,以及随后的药物进入和释放。这项研究的信息将有助于开发选择性地输送到癌细胞的靶向药物,从而防止通常在化疗期间发生的对健康细胞的损害(例如,白细胞减少症--白细胞减少、脱发、便秘和高血压)。这项工作将与部门的低层小组一起完成。普渡大学化学系。
英文摘要
0854249WebbFluorescence resonance energy transfer (FRET) has proved to be of immense value in the study of chemical transport into cells and the underlying cause of disease due to, for example, protein misfolding (which may lead to Alzheimer's disease). The quenching of donor fluorescence by FRET transfer has been measured, and the intramolecular FRET parameters (lifetime and yield, and in the case of a flexible linker, the mean and variance of the linker distance) have been widely used. However, FRET imaging has been limited to in vitro or surface microscopy because of the deleterious effects of substantial scatter. The goal of this project is to demonstrate a method for imaging FRET parameters in highly scattering media, thereby providing the opportunity for deep tissue in vivo FRET studies. The new work planned is as follows:- Development on an Approach to Image FRET Parameters with ODT: A fluorescence resonance energy transfer optical diffusion tomography (FRET-ODT) imaging approach will be developed. This will involve a solution for the intramolecular FRET parameters with both rigid and flexible linkers that are incorporated as unknown sources in a diffusion equation representation for the donor fluorescence. The sensitivity to the parameter space (modulation frequencies, source-detector arrangement, FRET parameters, signal to noise ratio) will be studied and software suitable for use with experimental data for FRET sources in a scattering medium will be developed. The merits of incorporating acceptor kinetics will also be investigated. In a similar way, intermolecular FRET sources will be implemented in an ODT framework.- FRET-ODT Experimental Studies: A model tissue experiment will be constructed to obtain data to evaluate the FRET-ODT imaging approach to be developed. Data allowing the influence of varying degrees of scatter, varying FRET chemical concentration, varying donor-acceptor distance and distance distribution, and multiple modulation frequencies, as well as the effect of an inhomogeneous background, will be obtained. As an in vivo FRET-ODT application, a mouse model for targeted drug delivery to cancer cells, with the subsequent drug entry and release, will be studied using a FRET model that incorporates information about the transport kinetics and which emulates the drug delivery process. Information from this study will aid in the development of targeted drugs that are selectively delivered to cancer cells, thereby preventing damage to healthy cells that usually occurs during chemotherapy (for example, leucopenia - a deficiency in white blood cells, alopecia - hair loss, constipation, and hypertension). This work will be done with the Low group in the Dept. of Chemistry at Purdue.
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