Has Molecular and Cellular Imaging Enhanced Drug Discovery and Drug Development?

被引:0
作者
Gang Niu
Xiaoyuan Chen
机构
[1] Stanford University School of Medicine,The Molecular Imaging Program at Stanford (MIPS), Department of Radiology and Bio
来源
Drugs in R & D | 2008年 / 9卷
关键词
Positron Emission Tomography; Single Photon Emission Compute Tomography; Positron Emission Tomography Imaging; Molecular Imaging; HSP90 Inhibitor;
D O I
暂无
中图分类号
学科分类号
摘要
A great many efforts have been made to accelerate the drug discovery and development process, which is extremely time and money consuming. Recently developed molecular imaging has many significant advantages over conventional methods for examining molecular pathways and obtaining pharmacokinetic, pharmacodynamic and mechanistic information. This review briefly summarizes various molecular and cellular imaging techniques and discusses several important applications of molecular and cellular imaging in drug discovery and development, which include: (i) measurement of pharmacodynamic endpoints by imaging metabolism and proliferation, imaging angiogenic parameters, and imaging a particular pathway or downstream target; (ii) evaluation of pharmacokinetics; and (iii) imaging therapeutic gene expression with relevance to gene therapy. Molecular imaging is becoming more widely used as a non-invasive tool for drug discovery and drug screening. Further refinements in imaging techniques, optimization of imaging probes and collaborative efforts will be needed to fully realise the vast potential of molecular imaging techniques in discovering and developing new drugs.
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页码:351 / 368
页数:17
相关论文
共 364 条
[31]  
Chen AK(2001)Molecular imaging Radiology 219 316-85
[32]  
Czupryna J(1990)A review of the optical properties of biological tissues IEEE J 26 2166-51
[33]  
Bulte JW(2004)Near-infrared optical imaging of integrin avb3 in human tumor xenografts Mol Imaging 3 343-87
[34]  
Kraitchman DL(2005)Imaging dose-dependent pharmacokinetics of an RGD-fluorescent dye conjugate targeted to avb3 receptor expressed in Kaposi’s sarcoma Mol Imaging 4 75-71
[35]  
Sipkins DA(2005)Synthesis, in vitro, and in vivo characterization of an integrin avb3-targeted molecular probe for optical imaging of tumor Bioorg Med Chem 13 3763-23
[36]  
Cheresh DA(2006)In vivo near-infrared fluorescence imaging of integrin avb3 in an orthotopic glioblastoma model Mol Imaging Biol 8 315-54
[37]  
Kazemi MR(2007)In vivo imaging of integrin avb3 expression using fluorescence-mediated tomography Eur J Nucl Med Mol Imaging 34 745-60
[38]  
Shapiro EM(1991)Assessment of response to cancer therapy using fluorine-18-fluorodeoxyglucose and positron emission tomography J Nucl Med 32 1655-7
[39]  
Skrtic S(2000)Initial stages of tumor cell-induced angiogenesis: evaluation via skin window chambers in rodent models J Natl Cancer Inst 92 143-9
[40]  
Sharer K(2001)Inhibition of vascular endothelial growth factor receptor signaling leads to reversal of tumor resistance to radiotherapy Cancer Res 61 2413-34