Fedorova Anna, Zobel Kerry, Gill Herman S, Ogasawara Annie, Flores Judith E, Tinianow Jeff N, Vanderbilt Alexander N, Wu Ping, Meng Y Gloria, Williams Simon-P, Wiesmann Christian, Murray Jeremy, Marik Jan, Deshayes Kurt
Department of Early Discovery Biochemistry, Genentech, South San Francisco, CA 94080, USA.
Chem Biol. 2011 Jul 29;18(7):839-45. doi: 10.1016/j.chembiol.2011.05.011.
Limitations to the application of molecularly targeted cancer therapies are the inability to accurately match patient with effective treatment and the absence of a prompt readout of posttreatment response. Noninvasive agents that rapidly report vascular endothelial growth factor (VEGF) levels using positron emission tomography (PET) have the potential to enhance anti-angiogenesis therapies. Using phage display, two distinct classes of peptides were identified that bind to VEGF with nanomolar affinity and high selectivity. Co-crystal structures of these different peptide classes demonstrate that both bind to the receptor-binding region of VEGF. (18)F-radiolabelling of these peptides facilitated the acquisition of PET images of tumor VEGF levels in a HM7 xenograph model. The images obtained from one 59-residue probe, (18)F-Z-3B, 2 hr postinjection are comparable to those obtained with anti-VEGF antibody B20 72 hr postinjection. Furthermore, VEGF levels in growing SKOV3 tumors were followed using (18)F-Z-3B as a PET probe with VEGF levels increasing with tumor size.
分子靶向癌症治疗应用的局限性在于无法准确地将患者与有效治疗相匹配,以及缺乏对治疗后反应的快速评估指标。使用正电子发射断层扫描(PET)快速报告血管内皮生长因子(VEGF)水平的非侵入性药物有可能增强抗血管生成治疗。利用噬菌体展示技术,鉴定出两类不同的肽,它们以纳摩尔亲和力和高选择性结合VEGF。这些不同肽类的共晶体结构表明,它们都与VEGF的受体结合区域结合。这些肽的(18)F放射性标记有助于在HM7异种移植模型中获取肿瘤VEGF水平的PET图像。注射后2小时从一个59个残基的探针(18)F-Z-3B获得的图像与注射后72小时用抗VEGF抗体B20获得的图像相当。此外,使用(18)F-Z-3B作为PET探针跟踪生长中的SKOV3肿瘤中的VEGF水平,VEGF水平随肿瘤大小增加而升高。