Qian Huimin, Gu Yueqing, Wang Min, Achilefu Samuel
School of Life Science and Technology, China Pharmaceutical University, Nanjing, People's Republic of China.
J Fluoresc. 2009 Mar;19(2):277-84. doi: 10.1007/s10895-008-0413-3. Epub 2008 Aug 29.
The objective of this study is to optimize the parameters in labeling near-infrared (NIR)fluorescent dye cypate to protein drugs for in vivo optical imaging of drug distributions in animal model. L-ASparaginase (L-ASNase) was used as a protein drug model for the study. To achieve this goal, various labeling conditions, including different catalysts, feed ratios of all components, pH conditions, temperatures, and reacting durations, were investigated. The dye-to-protein (D/P) ratio and enzymatic activity were designated as the metric to evaluate the labeling process. The stability of the cypate-protein conjugate in blood serum and its distribution in small animals were subsequently inspected. Results showed that feed ratio of L-ASNase and the pH value played the most important role in adjusting the labeling efficiency. Reaction duration and temperature had less effect on the dye-to-protein labeling properties. The optimal condition for the labeling of cypate to L-ASNase was 4 h reaction duration at 4 degrees C and pH 8.5 under catalysis by HOBt/HBTU. The dynamic distribution in animal model displayed that the labeled L-ASNase firstly accumulated in liver and cleared from the enteron system. This study demonstrated that the NIR image system combined with NIR probe has the capability to trace the dynamics of protein drugs in animals for drug development.
本研究的目的是优化近红外(NIR)荧光染料环孢素与蛋白质药物的标记参数,用于动物模型中药物分布的体内光学成像。L-天冬酰胺酶(L-ASNase)用作该研究的蛋白质药物模型。为实现这一目标,研究了各种标记条件,包括不同的催化剂、所有组分的进料比、pH条件、温度和反应持续时间。染料与蛋白质(D/P)比率和酶活性被指定为评估标记过程的指标。随后检查了环孢素-蛋白质缀合物在血清中的稳定性及其在小动物体内的分布。结果表明,L-ASNase的进料比和pH值在调节标记效率方面起最重要作用。反应持续时间和温度对染料与蛋白质的标记特性影响较小。环孢素标记L-ASNase的最佳条件是以HOBt/HBTU为催化剂,在4℃、pH 8.5下反应4小时。动物模型中的动态分布显示,标记的L-ASNase首先在肝脏中积累,并从肠道系统中清除。本研究表明,结合NIR探针的NIR图像系统有能力在动物体内追踪蛋白质药物的动态,以用于药物开发。