Assessing Angiogenesis by Near-Infrared Imaging
Assessing Angiogenesis by Near-Infrared Imaging
批准号:
6895518
负责人:
CHUN LI
金额:
$33.75万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-08-01 至 2008-05-31
关键词:
CD antigensangiogenesisautoradiographybioimaging /biomedical imagingbiomarkerblood vesselsclinical researchconfocal scanning microscopydiagnosis design /evaluationdrug /agentflow cytometryfluorescent dye /probehuman tissueimaging /visualization /scanningimmunocytochemistryinfrared spectrometryintegrinslaboratory mousenoninvasive diagnosispharmacokineticsreceptor bindingreceptor expressiontechnology /technique development
中文摘要
描述(申请人提供)这项研究的长期目标是开发针对血管新生血管的近红外(NIR)可激发荧光造影剂,并使用无害的光线对抗血管生成治疗进行非侵入性评估。然而,为了取得成功,造影剂必须提供显著的对比度增强。我们推测,来自体内噬菌体展示技术的RGD4C和CNGRC多肽可以用来在血管新生肿瘤血管中分别与αvβ3整合素和CD13受体结合近红外荧光。我们进一步提出,使用水溶性树枝状聚合物,在聚合物链的末端连接多个归巢多肽,将显著增加配体的结合亲和力,并增强肿瘤与正常组织之间的对比度。为了验证这些假设,我们将合成携带有吲哚青绿的星形L-谷氨酸。RGD-4C和CNGRC多肽将被特异性地偶联到聚合物的末端。连接方案、聚合物载体和配体将发生变化,以实现荧光性能、受体结合和近红外检测的最优化。为了确定新合成的近红外造影剂在血管新生血管的近红外成像中的应用,用频域光子迁移ICCD相机对荷人肿瘤的裸鼠进行成像,获得其荧光强度随时间的变化关系,并获得每种造影剂静脉注射后在肿瘤和正常组织中的药代动力学参数。此外,聚合物造影剂将被标记为In-I 11,用于同时进行光学和核成像和比较。将评估造影剂在肿瘤中的空间分布,以确定针对血管床的特异性靶向。最后,选定的针对Alphavbeta3和CD13受体的近红外造影剂将用于评估抗Alphavbeta3和抗CD13治疗的疗效。将尝试将来自光学成像的对比度增强和药代动力学参数与治疗结果、微血管密度计数以及在免疫组织化学研究中测量的肿瘤血管中mvg3和CD13受体的表达水平相关联。建议的研究将有助于确定近红外造影剂的关键设计特征,从而成功地利用近红外成像肿瘤血管。
英文摘要
DESCRIPTION (provided by applicant) The long-term goal of this research is to develop near-infrared (NIR) excitable fluorescent contrast agents that target angiogenic blood vessels and enable noninvasive assessment of antiangiogenic therapy using harmless light. To be successful, however, contrast agents must provide significant contrast enhancement. We hypothesize that the RGD4C and CNGRC peptides derived from in vivo phage-displaying technology can be used to home NIR fluorochromes to alpha v beta 3 integrin and CD13 receptors, respectively, in angiogenic tumor blood vessels. We further propose that use of water-soluble dendritic polymers with multiple homing peptides attached to the tips of polymer chains will significantly increase the ligand's binding affinity and enhance the contrast between tumor and normal tissues. To test these hypotheses, star-shaped poly(L-glutamic acid) carrying fluorochrome indocyanine green will be synthesized. RGD-4C and CNGRC peptides will be coupled to the end of the polymers site-specifically. The conjugation scheme, polymeric carriers, and ligands will be varied to enable optimization of fluorescent properties, receptor binding, and NIR detection. To establish the utility of newly synthesized NIR contrast agents in the NIR imaging of angiogenic blood vessels, nude mice bearing human tumors will be imaged using a frequency-domain photon migration ICCD camera to acquire fluorescent intensity as a function of time and obtain pharmacokinetic parameters in tumor and normal tissues following intravenous injection of each contrast agent. In addition, polymeric contrast agent will be labeled with In-I 11 for simultaneous optical and nuclear imaging and comparison. The spacial distribution of the contrast agents in the tumors will be evaluated to confirm the specific targeting to vascular beds. Finally, selected NIR contrast agents targeted to alphavbeta3 and CD13 receptors will be used to evaluate treatment responses to anti-alphavbeta3 and anti-CD13 therapy. Attempts will be made to correlate contrast enhancement and pharmacokinetic parameters derived from optical imaging with treatment outcome, microvessel density counts, and levels of expression ofmvg3 and CD13 receptors in tumor vasculature measured in immunohistochemical studies. The proposed studies will help define critical design features of NIR contrast agents for successfullv imaging tumor vasculature using NIR.
期刊论文(5)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1002/cmmi.431
发表时间:
2011-07
期刊:
CONTRAST MEDIA & MOLECULAR IMAGING
影响因子:
--
作者:
[Tian, Mei, Wen, Xiaoxia, Jackson, Edward F., Ng, Chaan, Uthamanthil, Rajesh, Liang, Dong, Gelovani, Juri G., Li, Chun]
通讯作者:
Li, Chun
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