Nag Okhil K, Naciri Jawad, Oh Eunkeu, Spillmann Christopher M, Delehanty James B
Center for Biomolecular Science and Engineering, Naval Research Laboratory.
Optical Sciences Division, Naval Research Laboratory; Sotera Defense Solutions.
J Vis Exp. 2017 Feb 8(120):55181. doi: 10.3791/55181.
The controlled delivery of drug/imaging agents to cells is critical for the development of therapeutics and for the study of cellular signaling processes. Recently, nanoparticles (NPs) have shown significant promise in the development of such delivery systems. Here, a liquid crystal NP (LCNP)-based delivery system has been employed for the controlled delivery of a water-insoluble dye, 3,3'-dioctadecyloxacarbocyanine perchlorate (DiO), from within the NP core to the hydrophobic region of a plasma membrane bilayer. During the synthesis of the NPs, the dye was efficiently incorporated into the hydrophobic LCNP core, as confirmed by multiple spectroscopic analyses. Conjugation of a PEGylated cholesterol derivative to the NP surface (DiO-LCNP-PEG-Chol) enabled the binding of the dye-loaded NPs to the plasma membrane in HEK 293T/17 cells. Time-resolved laser scanning confocal microscopy and Förster resonance energy transfer (FRET) imaging confirmed the passive efflux of DiO from the LCNP core and its insertion into the plasma membrane bilayer. Finally, the delivery of DiO as a LCNP-PEG-Chol attenuated the cytotoxicity of DiO; the NP form of DiO exhibited ~30-40% less toxicity compared to DiOfree delivered from bulk solution. This approach demonstrates the utility of the LCNP platform as an efficient modality for the membrane-specific delivery and modulation of hydrophobic molecular cargos.
将药物/成像剂可控地递送至细胞对于治疗学的发展以及细胞信号传导过程的研究至关重要。最近,纳米颗粒(NPs)在这类递送系统的开发中显示出巨大的潜力。在此,一种基于液晶纳米颗粒(LCNP)的递送系统已被用于将水不溶性染料高氯酸3,3'-二辛基氧杂羰花青(DiO)从NP核心可控地递送至质膜双层的疏水区域。在NP合成过程中,通过多种光谱分析证实该染料被有效地掺入到疏水的LCNP核心中。将聚乙二醇化胆固醇衍生物缀合到NP表面(DiO-LCNP-PEG-Chol)能够使负载染料的NP与HEK 293T/17细胞中的质膜结合。时间分辨激光扫描共聚焦显微镜和Förster共振能量转移(FRET)成像证实了DiO从LCNP核心的被动流出及其插入质膜双层。最后,以LCNP-PEG-Chol形式递送DiO减弱了DiO的细胞毒性;与从本体溶液中递送的游离DiO相比,DiO的NP形式表现出约30 - 40%的更低毒性。这种方法证明了LCNP平台作为一种用于膜特异性递送和调节疏水性分子货物的有效方式的实用性。