至今,GenScript的服务及产品已被Cell, Nature, Science, PNAS等1300多家生物医药类杂志引用近万次,处于行业领先水平。NIH、哈佛、耶鲁、斯坦福、普林斯顿、杜克大学等约400家全球著名机构使用GenScript的基因合成、多肽服务、抗体服务和蛋白服务等成功地发表科研成果,再次证明GenScript 有能力帮助业内科学家Make research easy.

An 125 I-labeled octavalent peptide fluorescent nanoprobe for tumor-homing imaging in vivo.

Biomaterials.. 2012-06;  33(19):4843-50
Luo H, Shi J, Jin H, Fan D, Lu L, Wang F, Zhang Z.Luo H, Shi J, Jin H, Fan D, Lu L, Wang F, Zhang Z. a Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics–Huazhong University of Science and Technology, Wuhan 430074, Chinab Key Laboratory of Biomedical Photonics of Ministry of Education, Huazhong University of Science and Technology, Wuhan 430074, Chinac Medical Isotopes Research Center, Department of Radiation Medicine, School of Basic Medical Sciences, Peking University, Beijing 100191, Chinad Medical and Healthy Analytical Center, Peking Univers
Products/Services Used Details Operation

摘要

Targeting radiopeptides are promising agents for radio-theranostics. However, in vivo evaluation of their targeting specificity is often obscured by their short biologic half-lives and low binding affinities. Here, we report an approach to efficiently examine targeting radiopeptides with a new class of octavalent peptide fluorescent nanoprobe (Octa-FNP) platform, which is composed of candidate targeting peptides and a tetrameric far-red fluorescent protein (tfRFP) scaffold. To shed light on this process, 125I-Octa-FNP, 125I-tfRFP and 125I-peptide were synthesized, and their targeting functionalities were compared. Both fluorescence imaging and radioactive quantification results confirmed that 125I-Octa-FNP... More

关键词

Far-red fluorescent protein; Targeting peptide; Tetrameric; Protein scaffold; γ-Imaging