Institute of Materials Research and Engineering, A*STAR (Agency for Science Technology and Research), 3 Research Link, 117602, Singapore.
Adv Healthc Mater. 2015 Apr 22;4(6):911-7. doi: 10.1002/adhm.201400730. Epub 2015 Feb 3.
A non-membrane protein-based nanoparticle agent for the tracking of lipid rafts on live cells is produced by stoichiometric functionalization of gold nanoparticles with a previously characterized sphingolipid- and cell membrane microdomain-binding domain peptide (SBD). The SBD peptide is inserted in a self-assembled monolayer of peptidol and alkane thiol ethylene glycol, on gold nanoparticles surface. The stoichiometric functionalization of nanoparticles with the SBD peptide, essential for single molecule tracking, is achieved by means of non-affinity nanoparticle purification. The SBD-nanoparticles have remarkable long-term resistance to electrolyte-induced aggregation and ligand-exchange and have no detectable non-specific binding to live cells. Binding and diffusion of SBD-nanoparticles bound to the membrane of live cells is measured by real-time photothermal microscopy and shows the dynamics of sphingolipid-enriched microdomains on cells membrane, with evidence for clustering, splitting, and diffusion over time of the SBD-nanoparticle labeled membrane domains. The monofunctionalized SBD-nanoparticle is a promising targeting agent for the tracking of lipid rafts independently of their protein composition and the labelling requires no prior modification of the cells. This approach has potential for further functionalization of the particles to manipulate the organization of, or targeting to microdomains that control signaling events and thereby lead to novel diagnostics and therapeutics.
一种基于非膜蛋白的纳米粒子探针,可用于在活细胞上追踪脂筏,它是通过化学计量功能化金纳米粒子,使其与先前表征的鞘脂和细胞膜微区结合域肽(SBD)结合而制成的。SBD 肽被插入到肽和烷硫醇乙二醇的自组装单层中,位于金纳米粒子表面。通过非亲和性纳米粒子纯化,实现了 SBD 肽对纳米粒子的化学计量功能化,这对于单分子跟踪至关重要。SBD-纳米粒子具有显著的长期抗电解质诱导聚集和配体交换能力,并且对活细胞没有可检测到的非特异性结合。通过实时光热显微镜测量与活细胞膜结合的 SBD-纳米粒子的结合和扩散,显示了细胞膜上富含鞘脂的微区的动力学,证明了 SBD-纳米粒子标记的膜域随时间的聚类、分裂和扩散。单功能化的 SBD-纳米粒子是一种有前途的靶向脂质筏的探针,与它们的蛋白质组成无关,并且不需要对细胞进行预先修饰即可进行标记。这种方法有可能进一步对颗粒进行功能化,以操纵控制信号事件的微区的组织或靶向,从而导致新的诊断和治疗方法。