Molecular Targeting and Polymer Toxicology Group, School of Pharmacy, University of Brighton, Brighton BN2 4GJ, U.K.
ACS Nano. 2010 Nov 23;4(11):6629-38. doi: 10.1021/nn101990a. Epub 2010 Oct 28.
Nanoparticles with surface projected polyethyleneoxide (PEO) chains in "mushroom-brush" and "brush" configurations display stealth properties in systemic circulation and have numerous applications in site-specific targeting for controlled drug delivery and release as well as diagnostic imaging. We report on the "structure-activity" relationship pertaining to surface-immobilized PEO of various configurations on model nanoparticles, and the initiation of complement cascade, which is the most ancient component of innate human immunity, and its activation may induce clinically significant adverse reactions in some individuals. Conformational states of surface-projected PEO chains, arising from the block copolymer poloxamine 908 adsorption, on polystyrene nanoparticles trigger complement activation differently. Alteration of copolymer architecture on nanospheres from mushroom to brush configuration not only switches complement activation from C1q-dependent classical to lectin pathway but also reduces the level of generated complement activation products C4d, Bb, C5a, and SC5b-9. Also, changes in adsorbed polymer configuration trigger alternative pathway activation differently and through different initiators. Notably, the role for properdin-mediated activation of alternative pathway was only restricted to particles displaying PEO chains in a transition mushroom-brush configuration. Since nanoparticle-mediated complement activation is of clinical concern, our findings provide a rational basis for improved surface engineering and design of immunologically safer stealth and targetable nanosystems with polymers for use in clinical medicine.
具有表面突出聚氧乙烯(PEO)链的“蘑菇刷”和“刷”构型的纳米粒子在全身循环中具有隐身特性,并在药物输送和释放的靶向给药以及诊断成像等方面具有广泛的应用。我们报告了模型纳米粒子上各种构型的表面固定 PEO 的“结构-活性”关系,以及补体级联的起始,补体级联是先天人类免疫的最古老组成部分,其激活可能会在某些个体中引起临床显著的不良反应。嵌段共聚物聚氧乙烯辛胺 908 吸附在聚苯乙烯纳米粒子上表面突出的 PEO 链的构象状态会以不同的方式触发补体激活。纳米球上共聚物结构从蘑菇状到刷状构型的改变不仅将补体激活从依赖 C1q 的经典途径切换到凝集素途径,而且还降低了生成的补体激活产物 C4d、Bb、C5a 和 SC5b-9 的水平。此外,吸附聚合物构象的变化以不同的方式和不同的启动子触发替代途径的激活。值得注意的是,只有在显示 PEO 链处于过渡蘑菇刷构型的颗粒中,调理素介导的替代途径激活才起作用。由于纳米颗粒介导的补体激活具有临床意义,因此我们的研究结果为改善表面工程和设计具有聚合物的免疫更安全的隐身和靶向纳米系统提供了合理的依据,以用于临床医学。