课题基金 / 基金详情

Endoscopic Theranostics System

Endoscopic Theranostics System
内窥镜治疗诊断系统
批准号:
7943071
负责人:
ATSUSHI MIZOGUCHI
金额:
$48.47万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-30 至 2012-07-31

项目摘要

项目成果

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中文摘要
翻译
描述(申请人提供):每年有超过一百万人被诊断为消化系统疾病,如炎症性肠病和结直肠癌。通过内窥镜可以直接进入消化道进行诊断和治疗。然而,目前的成像技术不能提供足够的分辨率和对比度,细胞和组织特异性治疗方法由于缺乏足够的图像引导系统而受到阻碍。本项目的主要挑战是开发一种内窥镜光学图像引导的静止细胞治疗系统,该系统能够在微观水平上对消化道疾病进行无创性的在体诊断,并能够同时进行组织特异性和细胞特异性的生物治疗。如果胃肠道干细胞可供使用,该系统也将被用来在消化道内准确地重建它们。这个项目是具有胃肠道病理学、细胞工程和成像专业知识的多学科团队之间的密切合作。第一个具体目标是开发一种基于光学频域成像(OFDI)和共聚焦荧光显微镜的新型高分辨率内窥镜成像系统。该系统将进行优化,以便在细胞水平上对小鼠结肠进行全面成像。第二个具体目标是开发针对消化道疾病的细胞特异性和组织特异性生物治疗系统。胎儿成纤维细胞将被改造成分泌细胞特异性治疗性细胞因子,表达细胞特异性绿色荧光蛋白等造影剂,并采用自杀基因系统来控制组织中治疗性细胞因子的表达。我们相信,这个为期两年的项目的影响是显著的,因为它将开发出用于改进体内诊断的新的成像技术,设计出一种有效的固定细胞系,具有可控制的治疗和成像造影剂的分泌,并测试了内窥镜图像引导的固定细胞(潜在的干细胞)输送的可行性,以治疗与结直肠肿瘤发生相关的肠炎。 公共卫生相关性:这项挑战拨款旨在开发一种新的内窥镜系统,该系统可以通过机器的眼睛对消化道疾病进行组织学级别的诊断,并可以同时执行组织特定和细胞特定的生物治疗。我们相信,这项研究不仅将为开发一种新的治疗系统来改善消化系统疾病患者的生活提供重要的干预措施,而且将为进一步推进粘膜生物学和一些消化系统疾病的基础和临床研究提供有用的工具。
英文摘要
DESCRIPTION (provided by applicant): Over one million patients each year are newly diagnosed with digestive diseases, such as inflammatory bowel diseases and colorectal cancer. Digestive tracts are directly accessible by endoscopy for the diagnosis and therapy. However, current imaging techniques do not provide sufficient resolution and contrast, and cell- and tissue-specific therapeutic approaches have been hampered by the lack of adequate image-guided systems. The major challenge of this project is to develop an endoscopic optical image- guided immobile-cell therapy system that can non-invasively make an in vivo diagnosis of digestive tract diseases at the microscopic level and can simultaneously perform the tissue-specific and cell-specific biological therapy. In the event that gastrointestinal stem cells are available for use, this system will also be utilized to accurately reconstitute them within the digestive tract. This project is a close collaboration between multidisciplinary teams with expertise in gastrointestinal pathology, cell engineering, and imaging. The first specific aim is to develop a novel high-resolution endomicroscopy imaging system based on optical frequency-domain imaging (OFDI) and confocal fluorescence microscopy. The system will be optimized for comprehensive imaging of the mouse colon at the cellular level. The second specific aim is to develop cell- specific and tissue-specific biological therapy system for digestive tract diseases. Prenatal fibroblast cells will be engineered to secrete cell-specific therapeutic cytokines, to express contrast agents such as cell- specific green fluorescence proteins, and to employ a suicide gene system for controlling the expression of therapeutic cytokines in the tissue. We believe that the impact of this 2-year project is significantly high, as it will have developed novel imaging techniques for the improved in vivo diagnosis, engineered an effective immobile cell line with controllable secretion of therapeutic and imaging-contrast agents, and tested the feasibility of endoscopic image-guided delivery of immobile cells (potentially stem cells) to treat intestinal inflammation associated with colorectal tumorigenesis. PUBLIC HEALTH RELEVANCE: This challenge grant is designed to develop a novel endoscopy system that can make a histological grade diagnosis of digestive tract diseases through the machine's eye and can simultaneously perform a tissue- specific and cell-specific biological treatment. We believe that the study proposed would provide not only important intervention to develop a novel therapy system for improving the lives of patients with digestive diseases but also a useful tool to further advance the basic and clinical research in the fields of mucosal biology and some digestive diseases.
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