...
首页> 外文期刊>Pharmaceuticals >Feasibility of Multiple Examinations Using 68 Ga-Labelled Collagelin Analogues: Organ Distribution in Rat for Extrapolation to Human Organ and Whole-Body Radiation Dosimetry
【24h】

Feasibility of Multiple Examinations Using 68 Ga-Labelled Collagelin Analogues: Organ Distribution in Rat for Extrapolation to Human Organ and Whole-Body Radiation Dosimetry

机译:使用68 Ga-Labelled胶原蛋白类似物进行多次检查的可行性:大鼠体内器官分布以推断人体器官和全身辐射剂量法

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Objectives : Fibrosis is involved in many chronic diseases. It affects the functionality of vital organs, such as liver, lung, heart and kidney. Two novel imaging agents for positron emission tomography (PET) imaging of fibrosis have previously pre-clinically demonstrated promising target binding and organ distribution characteristics. However, the relevant disease monitoring in the clinical setup would require multiple repetitive examinations per year. Thus, it is of paramount importance to investigate the absorbed doses and total effective doses and thus, the potential maximum number of examinations per year. Methods : Two cyclic peptide (c[CPGRVMHGLHLGDDEGPC]) analogues coupled via an ethylene glycol linker (EG 2 ) to either 2-(4,7-bis(2-( tert -butoxy)-2-oxoethyl)-1,4,7-triazonan-1-yl)acetic acid (NO2A-Col) or 4-(4,7-bis(2-( tert -butoxy)-2-oxoethyl)-1,4,7-triazacyclononan-1-yl)-5-(tert-butoxy)-5-oxopentanoic acid (NODAGA-Col) were labelled with 68 Ga. The resulting agents, [ 68 Ga]Ga-NO2A-Col and [ 68 Ga]Ga-NODAGA-Col, were administered in the tail vein of male and female Sprague–Dawley rats ( N = 24). An ex vivo organ distribution study was performed at the 5-, 10-, 20-, 40-, 60- and 120-min time points. The resulting data were extrapolated for the estimation of human organ and total body absorbed and total effective doses using Organ Level Internal Dose Assessment Code software (OLINDA/EXM 1.1) assuming a similar organ distribution pattern between the species. Time-integrated radioactivity in each organ was calculated by trapezoidal integration followed by a single-exponential fit to the data points extrapolated to infinity. The resulting values were used for the residence time calculation. Results : Ex vivo organ distribution data revealed fast blood clearance and washout from most of the organs. Although the highest organ absorbed dose was found for kidneys (0.1 mGy/MBq), this organ was not the dose-limiting one and would allow for the administration of over 1460 MBq per year for both [ 68 Ga]Ga-NO2A-Col and [ 68 Ga]Ga-NODAGA-Col. The total effective dose was the limiting parameter with 0.0155/0.0156 (female/male) mSv/MBq and 0.0164/0.0158 (female/male) mSv/MBq, respectively, for [ 68 Ga]Ga-NO2A-Col and [ 68 Ga]Ga-NODAGA-Col. This corresponded to the total amount of radioactivity that could be administered per year of 643 and 621 MBq before reaching the annual limit of 10 mSv. Thus, up to six examinations would be possible. The residence time and organ absorbed doses in liver and spleen were higher for [ 68 Ga]Ga-NODAGA-Col as compared to [ 68 Ga]Ga-NO2A-Col. Conclusion : The limiting parameter for the administered dose was the total effective dose that would allow for at least six examinations per year that might be sufficient for adequate disease monitoring in longitudinal studies and a routine clinical setup.
机译:目的:纤维化与许多慢性疾病有关。它会影响重要器官的功能,例如肝,肺,心脏和肾脏。两种用于纤维化的正电子发射断层扫描(PET)成像的新型成像剂先前已在临床前证明了有希望的靶标结合和器官分布特征。但是,临床设置中的相关疾病监测每年将需要多次重复检查。因此,研究吸收剂量和总有效剂量以及每年潜在的最大检查次数至关重要。方法:两个环肽(c [CPGRVMHGLHLGDDEGPC])类似物通过乙二醇接头(EG 2)与2-(4,7-双(2-(叔丁氧基)-2-氧代乙基)-1,4, 7-三唑烷-1-基)乙酸(NO2A-Col)或4-(4,7-双(2-(叔丁氧基)-2-氧乙基)-1,4,7-三氮杂环壬基-1-基)用68 Ga标记-5-(叔丁氧基)-5-氧戊酸(NODAGA-Col)。施用所得试剂[68 Ga] Ga-NO2A-Col和[68 Ga] Ga-NODAGA-Col。在雄性和雌性Sprague–Dawley大鼠的尾静脉中(N = 24)。在5、10、20、40、60和120分钟的时间点进行了离体器官分布研究。假设物种之间的器官分布方式相似,则使用“器官水平内部剂量评估代码”软件(OLINDA / EXM 1.1)外推得出的数据,以估计人体器官和人体吸收总量以及总有效剂量。通过梯形积分,然后对外推至无穷大的数据点进行单指数拟合,计算每个器官中的时间积分放射性。所得值用于停留时间计算。结果:离体器官分布数据显示大多数器官的血液清除率和清除速度很快。尽管发现肾脏的最大器官吸收剂量(0.1 mGy / MBq),但该器官不是剂量限制的器官,对于[68 Ga] Ga-NO2A-Col和[68 Ga] Ga-NODAGA-Col。对于[68 Ga] Ga-NO2A-Col和[68 Ga],总有效剂量分别为0.0155 / 0.0156(女性/男性)mSv / MBq和0.0164 / 0.0158(女性/男性)mSv / MBq。 Ga-NODAGA-Col。这相当于在达到10 mSv的年度限值之前每年可以进行的643和621 MBq的放射性总量。因此,最多可以进行六次检查。与[68 Ga] Ga-NO2A-Col相比,[68 Ga] Ga-NODAGA-Col在肝脏和脾脏中的停留时间和器官吸收剂量更高。结论:给药剂量的限制参数是总有效剂量,该总有效剂量将允许每年至少进行六次检查,这可能足以在纵向研究和常规临床设置中进行足够的疾病监测。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号