化学
亲缘关系
结合亲和力
纳米颗粒
血浆蛋白结合
结合位点
血液蛋白质类
生物物理学
生物化学
纳米技术
受体
生物
材料科学
作者
Benjamin Stordy,Zahra Sepahi,Gabriel D. Patrón,Wei Yang,Alexander D. Goodson,Colin Blackadar,Anthony J. Tavares,Guanyou Lin,Ayden Malekjahani,Bill Ling,Rashmi Ravichandran,Derrick R. Hicks,Mikhail G. Shapiro,Miqin Zhang,Neil P. King,David Baker,Luis Ricardez‐Sandoval,Warren C. W. Chan
摘要
Nanoparticles can be coated with targeting ligands to deliver medical agents to specific cells. Serum protein adsorption affects the binding of nanoparticles to target cells. We hypothesized that serum proteins and target receptors compete for binding to nanoparticles. We tested the serum protein binding affinity of 251 nanoparticle designs. Here, we discovered that the binding affinities of serum proteins and receptors to a nanoparticle determine whether it can bind to target cells. We developed and validated a quantitative metric, the binding ratio, to identify nanoparticle designs that can bind to targets in serum with 90% sensitivity and 88% specificity. Using the binding ratio as a numerical guideline for nanoparticle design enabled us to improve the efficiency of nanoparticle binding to target cellular receptors.
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