Wang Lirong, Su Yuqing, Wang Xuling, Liang Kaifan, Liu Mengyang, Tang Wenya, Song Yanzhi, Liu Xinrong, Deng Yihui
Shenyang Pharmaceutical University, No.103, Wenhua Road, Shenyang 110016, China.
Asian J Pharm Sci. 2017 May;12(3):250-258. doi: 10.1016/j.ajps.2016.06.004. Epub 2016 Jul 14.
Researchers reported that intravenously injected PEGylated colloidal drug carriers lose their long-circulating characteristic and accumulated extensively in liver when they are administrated twice in the same animal with certain intervals. This phenomenon was referred to as the "accelerated blood clearance (ABC) phenomenon". Some former studies had found that complement-mediated phagocytosis, activated by antigen-antibody complex, was responsible for inducing the phenomenon. According to the theory, we have used cobra venom factor to deplete complement and to investigate the effect of complement inhibition on the ABC phenomenon. Rats were administered by injection of cobra venom factor solution to build up the model of complement exhaustion/inhibition, and the effect of the inhibition of complement on ABC phenomenon was carried out. It seemed that inhibition of complement didn't affect the pharmacokinetic of the first infection. By contrast, in rats of which complement had been depleted, the second dose of PEGylated nanoemulsions showed enhanced circulation time compared with normal rats in a complement inhibition-independent manner, but the ABC phenomenon was not completely eliminated. It indicated that complement inhibition could certainly weaken the accelerated clearance; meanwhile, there were other factors causing the ABC effect. These findings provide novel insights into the attenuating of ABC phenomenon and lay foundation for further study of immune mechanism.
研究人员报告称,静脉注射的聚乙二醇化胶体药物载体在同一动物体内以一定间隔给药两次时,会失去其长循环特性,并在肝脏中大量蓄积。这种现象被称为“加速血液清除(ABC)现象”。一些先前的研究发现,由抗原-抗体复合物激活的补体介导的吞噬作用是诱导该现象的原因。根据这一理论,我们使用眼镜蛇毒因子来消耗补体,并研究补体抑制对ABC现象的影响。通过注射眼镜蛇毒因子溶液对大鼠进行给药,以建立补体耗竭/抑制模型,并研究补体抑制对ABC现象的影响。似乎补体抑制并不影响首次给药的药代动力学。相比之下,在补体已被消耗的大鼠中,与正常大鼠相比,第二剂聚乙二醇化纳米乳剂以补体抑制非依赖性方式显示出延长的循环时间,但ABC现象并未完全消除。这表明补体抑制肯定会减弱加速清除;同时,还有其他因素导致ABC效应。这些发现为减轻ABC现象提供了新的见解,并为进一步研究免疫机制奠定了基础。