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利用单链抗体 SNAP 标签融合蛋白快速光学成像 EGFR 表达。

Rapid optical imaging of EGF receptor expression with a single-chain antibody SNAP-tag fusion protein.

机构信息

Fraunhofer Institute for Molecular Biology and Applied Ecology, 52074 Aachen, Germany.

出版信息

Eur J Nucl Med Mol Imaging. 2010 Oct;37(10):1926-34. doi: 10.1007/s00259-010-1482-5. Epub 2010 May 7.

Abstract

PURPOSE

The epidermal growth factor receptor (EGFR) is overexpressed in several types of cancer and its inhibition can effectively inhibit tumour progression. The purpose of this study was to design an EGFR-specific imaging probe that combines efficient tumour targeting with rapid systemic clearance to facilitate non-invasive assessment of EGFR expression.

METHODS

Genetic fusion of a single-chain antibody fragment with the SNAP-tag produced a 48-kDa antibody derivative that can be covalently and site-specifically labelled with substrates containing 0 (6)-benzylguanine. The EGFR-specific single-chain variable fragment (scFv) fusion protein 425(scFv)SNAP was labelled with the near infrared (NIR) dye BG-747, and its accumulation, specificity and kinetics were monitored using NIR fluorescence imaging in a subcutaneous pancreatic carcinoma xenograft model.

RESULTS

The 425(scFv)SNAP fusion protein accumulates rapidly and specifically at the tumour site. Its small size allows efficient renal clearance and a high tumour to background ratio (TBR) of 33.2 +/- 6.3 (n = 4) 10 h after injection. Binding of the labelled antibody was efficiently competed with a 20-fold excess of unlabelled probe, resulting in an average TBR of 6 +/- 1.35 (n = 4), which is similar to that obtained with a non-tumour-specific probe (5.44 +/- 1.92, n = 4). When compared with a full-length antibody against EGFR (cetuximab), 425(scFv)SNAP-747 showed significantly higher TBRs and complete clearance 72 h post-injection.

CONCLUSION

The 425(scFv)SNAP fusion protein combines rapid and specific targeting of EGFR-positive tumours with a versatile and robust labelling technique that facilitates the attachment of fluorophores for use in optical imaging. The same approach could be used to couple a chelating agent for use in nuclear imaging.

摘要

目的

表皮生长因子受体(EGFR)在多种类型的癌症中过表达,其抑制可以有效抑制肿瘤进展。本研究旨在设计一种 EGFR 特异性成像探针,该探针将高效的肿瘤靶向与快速的全身清除相结合,以促进 EGFR 表达的非侵入性评估。

方法

通过基因融合将单链抗体片段与 SNAP 标签融合,产生 48kDa 的抗体衍生物,该抗体衍生物可以与含有 0(6)-苄基鸟嘌呤的底物共价且特异性标记。EGFR 特异性单链可变片段(scFv)融合蛋白 425(scFv)SNAP 用近红外(NIR)染料 BG-747 标记,并在皮下胰腺癌异种移植模型中通过近红外荧光成像监测其积累、特异性和动力学。

结果

425(scFv)SNAP 融合蛋白在肿瘤部位快速且特异性地积累。其小尺寸允许高效的肾脏清除和高肿瘤与背景比(TBR)为 33.2 +/- 6.3(n = 4),在注射后 10 小时。标记抗体的结合被 20 倍过量的未标记探针有效地竞争,导致平均 TBR 为 6 +/- 1.35(n = 4),与非肿瘤特异性探针(5.44 +/- 1.92,n = 4)获得的 TBR 相似。与针对 EGFR 的全长抗体(西妥昔单抗)相比,425(scFv)SNAP-747 在注射后 72 小时显示出更高的 TBR 和完全清除。

结论

425(scFv)SNAP 融合蛋白将 EGFR 阳性肿瘤的快速和特异性靶向与灵活且强大的标记技术相结合,该技术便于附着荧光团用于光学成像。同样的方法可以用于结合螯合剂用于核成像。

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