结合
点击化学
化学
组合化学
肽
分子成像
体内
蛙皮素
环加成
炔烃
生物化学
受体
催化作用
数学分析
数学
生物技术
神经肽
生物
作者
Thomas L. Mindt,Harriet Struthers,Bernhard Spingler,Luc Brans,Dirk Tourwé,Elisa García‐Garayoa,Roger Schibli
出处
期刊:ChemMedChem
[Wiley]
日期:2010-10-04
卷期号:5 (12): 2026-2038
被引量:35
标识
DOI:10.1002/cmdc.201000342
摘要
Abstract Synthetic strategies that enable the efficient and selective combination of different biologically active entities hold great promise for the development of multifunctional hybrid conjugates useful for biochemical and medical applications. Starting from side‐chain‐functionalized N(α)‐propargyl lysine derivatives, conjugates containing a 99m Tc‐based imaging probe for SPECT and two different moieties (e.g., tumor‐targeting vectors, pharmacological modifiers, affinity tags, or second imaging probes) can be assembled using the Cu I ‐catalyzed alkyne–azide cycloaddition in efficient one‐pot protocols. This strategy was successfully applied to the preparation of a 99m Tc‐labeled conjugate comprising a tumor‐targeting peptide sequence (bombesin(7–14)) and a low‐molecular‐weight albumin binder, a pharmacological modifier that prolongs the blood circulation time of the conjugate. Evaluation of the conjugate in vitro and in vivo provided promising results for its use as an imaging agent for the visualization of tumors positive for the gastrin‐releasing peptide receptor. The methodology presented herein provides an attractive synthetic tool for the preparation of multifunctional 99m Tc‐based radiopharmaceuticals with significant potential for a multitude of applications.
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