期刊文献+

^(131)I标记Tyr-GX1在荷瘤裸鼠体内分布和显像研究 被引量:2

Biodistribution and Imaging of ^(131)I-labelled Tyr-GX1 Peptide Homing to Tumor Vessels in Nude Mice Bearing Tumors
原文传递
导出
摘要 目的:设计、合成酪氨酸(Tyr)修饰的肿瘤血管靶向肽GX1,研究131I标记短肽Tyr-GX1在荷人胃癌裸鼠体内的生物学分布与显像,探讨131I-Tyr-GX1短肽作为肿瘤血管靶向诊治药物的可能性。方法:利用Iodogen碘标法对Tyr-GX1进行131I标记,检测其标记率和体内外稳定性;建立荷人胃癌裸鼠动物模型,尾静脉注射标记肽,分别进行体内生物学分布实验和肿瘤显像实验,结果用PASW Statistics18.0统计软件进行分析。结果:1).纸层析法结果计算表明,131I-Tyr-GX1肽的标记率和放化纯均达90%以上;24 h稳定性测试表明,131I-Tyr-GX1在室温下存放以及与人血清、鼠血清、PBS等溶液混合,其标记率仍然都维持在90%左右,说明其具有良好的体内外稳定性;2).荷瘤裸鼠体内生物学分布研究显示:标记肽在荷瘤裸鼠双肾放射性计数测量最高;其次是肝脏、肿瘤等组织;脑、骨、肌肉组织放射性计数含量较低,给药24 h时,肿瘤/肌肉(T/M)、肿瘤/血液(T/Bl)、肿瘤/脑组织(T/Br)的放射性比值分别是5.78、4.06和23.01;3).体内SPECT显像结果显示:尾静脉注射131I-Tyr-GX1肽后4 h肿瘤部位已开始显影,并随时间的延长,显像逐渐清楚,至18 h时,肿瘤显像最清晰。结论:应用Iodogen碘标法成功标记Tyr-GX1短肽;尾静脉注射131I-Tyr-GX1后,肿瘤部位可以出现放射性浓聚,表明131I-Tyr-GX1短肽可以靶向结合于肿瘤部位,有望成为新一种胃肠道肿瘤诊断与治疗的药物。 Objective: To design and modify tumor vasculature homing peptide GX1 with tyrosine (Tyr), and evaluate the possibility of ^131I-Tyr-GX1 peptide as tumor targeted radiotracer by analysing the biodistfibution and ECT imaging of ^131I- labelled GX1 peptide in nude mice bearing human gastric tumors. Methods: Tyr-GX1 peptide was labelled with ^131I by Iodogen method under the optimum labelling conditions, then the labeling efficiency and the stability were detected in vivo and in vitro. Nude mice bearing tumor xenografts of human gastric carcinoma were intravenously injected with ^131I-Tyr-GX1 via a vein of mouse tail, and SPECT imaging and biodistribution were performed. The percent injected dose per gram (%ID/g) of different organs or tissues and T/NT ratio were measured, then the data was analysed with PASW Statistics18.0. Results: 1).Paper chromatography showed that the labeling efficiency and the radiochemical purity of ^131I- labelled GX1 peptide were over 90 %. The stability of ^131I- labelled GX1 peptide in human serum, mouse serum, PBS buffer solution were maintained 90 % in 24 h; 2). In biodistribution, high radioactivity was found in kidney, then in the liver, tumor, and lower radioactivity was found in muscle, brain and bone. Tumor/muscle (T/M), tumor/blood (T/B1), tumor/brain (T/Br) were 5.78, 4.06 and 23.01 respectively at 24 h. 3). The SPECT imaging showed increased ^131I- labelled GX1 peptide uptake in the tumor from 4 h to 24 h gradually after injection. Conclusions: Tyr-GX1 peptide could be labelled with^131I by Iodogen method easily and effectively.^ 131I- labelled GX1 peptide showed perfect tumor-targeting efficacy in vivo, which indicted it may be developed as a new promising gastrointestinal turnor targeted radiotracer.
出处 《现代生物医学进展》 CAS 2013年第9期1601-1604,共4页 Progress in Modern Biomedicine
基金 国家自然科学基金重大项目(81090270 81090273) 国家自然科学基金项目(30900704 30873005) 国家973项目(2010CB529302)
关键词 131I标记 GX1 生物学分布 SPECT 肿瘤显像 ^131I labeling GX1 peptide Biodistribution SPECT Tumor imaging
  • 相关文献

参考文献18

  • 1Folkman, J. Tumor angiogenesis: thepeutic implications[J]. N Engl J Med, 1971,285(21): 1182-1186.
  • 2BrownC.K., Modzelewski RA, Johnson CS, et al. A novel approach for the identification of unique tumor vasculature binding peptides using an E. coli peptide display library[J]. Ann SurgOncol, 2000,7(10): 743- 749.
  • 3于明明,王荣福.靶向肿瘤血管多肽显像的研究进展[J].中国医学影像技术,2008,24(7):1125-1129. 被引量:5
  • 4MetaferiaB.B., Rittler M, Gheeya JS, et al. Synthesis of novel cyclic NGRlRGD peptide analogs via on resin click chemistry[J]. Bioorg Med ChemLett, 2010, 20(24): 7337-7340.
  • 5ChenX, Tohme M, Park R, et al. Micro-PET imaging of alphavbeta3- integrin expression with 18F-Iabeled dimeric RGD peptide[J]. Mol Imaging, 2004, 3(2): 96-104.
  • 6ZhiM, Wu KC, Dong L, et al. Characterization of a specific phage-dis?played Peptide binding to vasculature of human gastric cancer[J]. Can?cer BiolTher, 2004, 3(12): 1232-1235.
  • 7Hui X, Han Y, Liang S, et al. Specific targeting of the vasculature of gastric cancer by a new tumor-homing peptide CGNSNPKSC[J]. J Control Release, 2008,131(2): 86-93.
  • 8ChenK, Sun X, Niu G, et al. Evaluation of 64Cu labeled GXI: a phage display peptide probe for PET imaging of tumor vasculature[J]. Mol Imaging Bioi, 2012,14(1): 96-105.
  • 9ChenK,Yap LP, Park R, et al. A Cy5.5-labeled phage-displayed peptide probe for near-infrared fluorescence imaging of tumor vasculature in living mice[J]. Amino Acids, 2012, 42(4): 1329-1337.
  • 10J. M. Walker. The Protein Protocols Handbook[M]. Humana Press Inc., Totowa, NJ, 1996: 673-674.

二级参考文献56

  • 1王荣福.肿瘤影像核医学进展[J].中国医学影像技术,2004,20(11):1792-1796. 被引量:16
  • 2唐林,于俊峰,郑明强,夏姣云,尹端沚.铼[^(188)Re]羰基化合物标记含RGD的环肽及其生物分布[J].核技术,2006,29(6):448-452. 被引量:3
  • 3王荣福.肿瘤核素诊治现状与进展[J].同位素,2006,19(2):112-118. 被引量:17
  • 4Varner JA, Cheresh DA. Integrins and cancer. Current Opinion in Cell Biolowgy, 1996,8(5) :724-730.
  • 5Assa-Munt N, Jia X, Laakkonen P, et al. Solution structures and integrin binding activities of an RGD peptide with two isomers. Biochemistry, 2001,40(8) : 2373-2378.
  • 6Haubner R, Bruchertseifer F, Pock M, et al. Synthesis and bio logical evaluation of a ^99mTc -labeled cyclic RGD peptide for imaging the αvβ3 expression. Nuclear Medizin, 2004,43( 1 ) : 26-32.
  • 7Pasqualini R, Koivunen E, Ruoslahti E. A peptide isolated from phage display libraries is a structural and functional mimic of an RGD-binding site on integrins. J Cell Biology, 1995,130(5) :1189-1196.
  • 8Chen X, Plasencia C, Hou Y, at al. Synthesis and biological evaluation of dimeric RGD peptide paclitaxel as a model for integrine targeted drug delivery. J Med Chem,2005,48(4) : 1098-1106.
  • 9Chen X, Tohme M, Park R, at al. Micro-PET imaging of αvβ3-integrin expression with ^18 F-labeled dimeric RGD peptide. J Molecu lar Imaging, 2004,3(2) : 96-104.
  • 10Clezardin P. Recent insights into the role of integrins in cancer metastasis. Cell Mol Life Sci, 1998,54(6) :541-548.

共引文献20

同被引文献25

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部