FLEX TM MICROPET/SPECT/CT TO SUPPORT CANCER RES AT HARVARD MED:HEI: CANCER
FLEX TM MICROPET/SPECT/CT TO SUPPORT CANCER RES AT HARVARD MED:HEI: CANCER
批准号:
7335325
负责人:
John V Frangioni
金额:
$46.91万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-08-01 至 2007-07-31
中文摘要
该子项目是利用由NIH/NCRR资助的共享仪器赠款提供的资源的许多研究子项目之一。子项目和研究者(PI)可能从另一个NIH来源获得主要资金,因此可以在其他CRISP条目中表示。列出的机构是用于资助的,不一定是研究者的机构。描述(由申请人提供):哈佛医学院(HMS)的朗伍德医疗区(LMA)设有贝丝以色列女执事医疗中心(BIDMC),丹娜-法伯癌症研究所(DFCI),布里格姆妇女医院(BWH)和波士顿儿童医院(CHB),所有这些都在步行距离内。在这些机构中,有数百名Pis致力于现代癌症研究。然而,目前,在LMA中没有单个小动物正电子发射断层扫描(PET)扫描仪,并且唯一的小动物单光子发射计算机断层扫描(SPECT)扫描仪的可用性有限,并且没有计算机断层扫描(CT)功能。如果没有microPET/CT和microSPECT/CT,现在就不可能筛选转基因动物的肿瘤形成和生长,不可能开发复制人类癌症的小鼠模型,也不可能在同一动物体内和纵向跟踪治疗效果。在这项高端仪器资助中,我们展示了如何购买一台三模态microPET/SPECT/CT(FLEX?)Gamma Medica Ideas公司的扫描仪,连同BIDMC承诺的110万美元,将能够满足LMA癌症研究人员的需求。将该仪器放置在BIDMC的中心且易于访问的位置,使NIH能够进行重大投资,这将使多个机构的许多NIH资助的研究项目受益。我们认为这不仅是一个机会,使最好的资源,我们的研究领域,但也作为一个机会,以促进更大的互动之间的研究人员本身。特别是,该仪器将服务于刘易斯C博士的计划项目赠款。Cantley(BIDMC)与罗纳德A. De Pinho(DFCI)开发了基于磷脂信号转导的新型转基因癌症模型。目前,这些动物只能在尸检时筛查肿瘤形成,这大大减缓了进展。随着FLEX扫描仪的安装,Cantley和De Pinho博士将能够精确定位活体动物的肿瘤位置,并跟踪它们对治疗的反应。William R. Sellers(DFCI)已经开发了几种前列腺癌的动物模型,这些模型可能会复制人类中观察到的成骨细胞增多症,并且使用FLEX扫描仪,将能够对这种表型进行高通量筛选。布鲁斯博士R. Zetter(CHB)是血管生成和肿瘤细胞归巢方面的专家,他最终将有一种方法来监测新血管形成并量化他的动物模型中的转移扩散。Yolonda L.博士Colson(BWH)在她对移植过程中宿主细胞耐受性的研究中,将能够在体内跟踪白色血细胞数天至数周。因此,对人口密集的LMA的这一单一投资将通过“对生物医学/行为研究产生重大影响并有助于促进人类健康”来实现PAR-05-124的目标。"
英文摘要
This subproject is one of many research subprojects utilizing the resources provided by a Shared Instrumentation Grant funded by NIH/NCRR. The subproject and investigator (PI) may have received primary funding from another NIH source, and thus could be represented in other CRISP entries. The institution listed is for the grant, which is not necessarily the institution for the investigator. DESCRIPTION (provided by applicant): The Longwood Medical Area (LMA) of Harvard Medical School (HMS) houses the Beth Israel Deaconess Medical Center (BIDMC), Dana-Farber Cancer Institute (DFCI), Brigham and Women's Hospital (BWH), and Children's Hospital Boston (CHB), all within walking distance. Within these institutions are hundreds of Pis dedicated to modern cancer research. At the present time, however, there isn't a single small animal positron emission tomography (PET) scanner in the LMA, and the only small animal single photon emission computed tomography (SPECT) scanner has limited availability and no computed tomography (CT) capabilities. Without microPET/CT and microSPECT/CT, it is now impossible to screen transgenic animals for tumor formation and growth, to develop mouse models that replicate human cancer, or to follow therapeutic efficacy in vivo and longitudinally in the same animal. In this High-End Instrumentation Grant, we demonstrate how the purchase of a single trimodality microPET/SPECT/CT (FLEX?) scanner from Gamma Medica Ideas, Inc., in conjunction with a $1.1 M+ commitment from the BIDMC, will be able to service the needs of cancer researchers of the LMA. Siting this instrument in a central and easily accessible location at the BIDMC enables the NIH to make a significant investment that will benefit numerous NIH-funded research projects across multiple institutions. We see this as an opportunity not only to bring the best resources to our research area, but also as an opportunity to foster greater interaction among the investigators themselves. In particular, this instrument will service the Program Project Grant of Dr. Lewis C. Cantley (BIDMC), who in collaboration with Dr. Ronald A. De Pinho (DFCI), has developed novel transgenic models of cancer based on phospholipid signal transduction. Currently, these animals can only be screened at necropsy for tumor formation, which has greatly slowed progress. With the installation of the FLEX scanner, Drs. Cantley and De Pinho will be able to pinpoint the location of tumors in living animals, and follow their responses to treatment. Dr. William R. Sellers (DFCI) has developed several animal models of prostate cancer that could potentially replicate the osteoblastosis seen in humans, and with the FLEX scanner, would be able to perform high-throughput screening for this phenotype. Dr. Bruce R. Zetter (CHB), an expert on angiogenesis and tumor cell homing, would finally have a methodology to monitor neovascularization and to quantify metastatic spread in his animal models. Dr. Yolonda L. Colson (BWH), in her studies on host cell tolerance during transplantation, would be able to follow white blood cells over days to weeks in vivo. Thus, this single investment in the densely-populated LMA would fulfill the goal of PAR-05-124 by having a "significant impact on biomedical/behavioral research and contribute to the advancement of human health."
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