生物发光成像的特点及应用

杨丽平 赵敬湘 裴雪涛

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生物发光成像的特点及应用

    通讯作者: 裴雪涛, peixt@nic.ac.cn
  • 基金项目:

    国家高技术研究发展计划(863计划)(2006AA2A107)

    国家重点基础研究发展规划(973计划)(2005CB522702)

Bioluminescence imaging characteristics and application

    Corresponding author: PEI Xue-tao, peixt@nic.ac.cn
  • 摘要: 生物发光成像(BLI)是通过荧光素酶基因标记细胞或DNA,在ATP及氧气存在条件下,催化荧光素的氧化反应而发光,从而能够直接监控活体内的细胞活动和基因行为。该文通过比较BLI与MRI,PET、放射成像的异同,以及BLI在肿瘤、干细胞和免疫细胞运输、细胞凋亡等方面的应用,为更好地推广BLI的应用提供依据。
  • [1] Zhang WS,Purchio A,Chen K,et al.In vivo activation of the human CYP3A4 promoter in mouse liver and regulation by pregnane X receptors.Biochem Pharmacol,2003,65(11):1889-1896.
    [2] Echchannaoui H,Frei Schnell C,et al.Toll-like receptor 2-deflcient mice are highly susceptible to streptococcus pneumoniae meningitis because of reduced bacterial clearing and enhanced inflammation.J Infect Dis, 2002,186(6):798-806.
    [3] Lyer M,Berenji M,Templeton NS,et al.Noninvasive imaging of cationic lipid-mediated delivery of optical and PET reporter genes in living mice.Mol Ther,2002,6(4):555-562.
    [4] Rehemtulla A,Stegman LD,Cardozo SJ,et al.Rapid and quantitative assessment of cancer treatment response using in vivo bioluminescence imaging.Neoplasia,2000,2(6):491-495.
    [5] Wu JC,Sundaresan G,Lyer M,et al.Noninvasive optical imaging of firefly luciferase reporter gene expression in skeletal muscles of living mice.Mol Ther,2001,4(4):297-306.
    [6] Wetterwald A,Van der Pluijm G,Que I,et al.Optical imaging of cancer metastasis to bone mairow:a roouse model of minimal residual disease.Am J Pathol,2002,160(3):1143-1153.
    [7] Sweeney TJ,Mail nder V,Tucker AA,et al.Visualizing the kinetics of tumor-cell clearance in living animals.Proc Natl Acad Sci USA,1999,96(21):12044-12049.
    [8] Hollingshead MG,Bonomi CA,Borgel SD,et al.A potential role for imaging technology in anticancer efficacy evaluations.Eur J Cancer,2004,40(6):890-898.
    [9] Vooijs M,Jonkere J,Lyons S,et al.Noninvasive imaging of spontaneous retinoblastoma pathway-dependent tumors in mice.Cancer Res,2002,62(6):1862-1867.
    [10] Shah K,Tung CH,Brealcefield X0,et al.In vivo imaging of S-TRAIL-mediated tumor regression and apoptosis.Mol Ther,2005,11(6):926-931.
    [11] Shah K,Tang Y,Breakefield X,et al.Real-time imaging of TRAIL-induced apoptosis of glioma tumors in vivo.Oncogene,2003,22(44):6865-6872.
    [12] Dickson PV,Hamner JB,Burger RA,et al.Intravascuiar administration of tumor tropic neural progenitor cells permits targeted delivery of interferon-beta and restricts tumor growth in a murine model of disseminated neuroblastoma.J Pediatr Surg,2007,42(1):48-53.
    [13] Tang Y,ShahäK,Messerli SM,et al.In vivo tracking of neural progenitor cell migration to glioblastomas.Hum Gene Ther,2003,14(13):1247-1254.
    [14] Cao F,Lin S,Xie X,et al.In vivo visualization of embryonic stem cell survival,proliferation,and migration after cardiac delivery.Circulation,2006,113(7):1005-1014.
    [15] Baumjohann D,Lutz MB.Non-invasive imaging of dendritic cell migration in vivo.Immunobiology,2006,211(6-8):587-597.
    [16] Beilhack A,Schulz S,Baker J,et al.In vivo analyses of early events in acute graft-versus-host disease reveal sequential infiltration of T-cell subsets.Blood,2005,106(3):1113-1122.
    [17] Laxman B,Hall DE,Bhojani MS,et al.Noninvasive real-time imaging of apoptosis.Proc Natl Acad Sci USA,2002,99(26):16551-16555,
    [18] Paulmurugan R,Umezawa Y,Gambhir SS.Noninvasive imaging of protein-protein interactions in living subjects by using reporter protein complementation and reconstitution strategies.Proc Natl Acad Sci USA,2002,99(24):15608-15613.
    [19] McCaffrey AP,Meuse L,Pham TT,et al.RNA interference in adult mice.Nature,2002,418(6893):38-39.
    [20] Huang M,Chan DA,Jia F,et al.Short hairpin RNA interference therapy for ischemic heart disease.Circulation,2008,118(14 suppl):S226-S233.
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  • 收稿日期:  2009-04-22

生物发光成像的特点及应用

    通讯作者: 裴雪涛, peixt@nic.ac.cn
  • 1. 北京军区总医院263临床部神经内科, 北京, 101149;
  • 2. 中国人民解放军军事医学科学院输血研究所干细胞生物学研究室, 北京, 100850
基金项目:  国家高技术研究发展计划(863计划)(2006AA2A107)国家重点基础研究发展规划(973计划)(2005CB522702)

摘要: 生物发光成像(BLI)是通过荧光素酶基因标记细胞或DNA,在ATP及氧气存在条件下,催化荧光素的氧化反应而发光,从而能够直接监控活体内的细胞活动和基因行为。该文通过比较BLI与MRI,PET、放射成像的异同,以及BLI在肿瘤、干细胞和免疫细胞运输、细胞凋亡等方面的应用,为更好地推广BLI的应用提供依据。

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