体内分布
化学
镧系元素
钛酸钡
滑膜切除术
核化学
放射化学
粒径
放射性核素治疗
钡
生物医学工程
体外
核医学
陶瓷
有机化学
类风湿性关节炎
生物化学
物理化学
离子
内科学
医学
作者
Sudipta Chakraborty,K.V. Vimalnath,Jyothi Sharma,Priyalata Shetty,Haladhar Dev Sarma,Rubel Chakravarty,Deep Prakash,Pankaj Sinha,Ashutosh Dash
摘要
Since the inception of radiation synovectomy, a host of radioactive colloids and microparticles incorporating suitable therapeutic radionuclides have been proposed for the treatment of arthritis. The present article reports the synthesis and evaluation of barium titanate microparticles as an innovative and effective carrier platform for lanthanide radionuclides in the preparation of therapeutic agents for treatment of arthritis. The material was synthesized by mechanochemical route and characterized by X‐ray diffraction, scanning electron microscopy, surface area, and particle size distribution analyses. Loading of lanthanide radionuclides ( 166 Ho, 153 Sm, 177 Lu, and 169 Er) on the microparticles was achieved in high yield (> 95%) resulting in the formulation of loaded particulates with excellent radiochemical purities (> 99%). Radiolanthanide‐loaded microparticles exhibited excellent in vitro stability in human serum. In vitro diethylene triamine pentaacetic acid challenge study indicated fairly strong chemical association of lanthanides with barium titanate microparticles. Long‐term biodistribution studies carried out after administration of 177 Lu‐loaded microparticles into one of the knee joints of normal Wistar rats revealed near‐complete retention of the formulation (> 96% of the administered radioactivity) within the joint cavity even 14 days post‐administration. The excellent localization of the loaded microparticles was further confirmed by sequential whole‐body radio‐luminescence imaging studies carried out using 166 Ho‐loaded microparticles.
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