School of Pharmacy, University of Otago, PO Box 56, Dunedin 9054 Dunedin, New Zealand.
Drug Delivery, Disposition and Dynamics and ARC Centre of Excellence in Convergent Bio-Nano Science and Technology, Monash Institute of Pharmaceutical Sciences, Monash University (Parkville Campus), 381 Royal Parade, Parkville, VIC 3052, Australia.
Int J Pharm. 2021 May 1;600:120411. doi: 10.1016/j.ijpharm.2021.120411. Epub 2021 Mar 3.
The potential of cubosomes to improve delivery of incorporated cargo to the brain was explored in zebrafish. Cubosomes were formulated with one of three stabilisers, Pluronic F68, Pluronic F127 or Tween 80, with the hypothesis that coating with Tween 80 will enable brain targeting of cubosomes as has been previously shown for polymeric nanoparticles. The physiochemical properties and the ability of the cubosomes to facilitate delivery of the model drug lissamine rhodamine (RhoB) into the brain was investigated. Distribution of cubosomes in the midbrain was also investigated by ultrastructural analysis via incorporation of octanethiol-functionalized gold nanoparticles. Cubosomes were typically 165-195 nm in size with a Pn3m (Pluronics) or Im3m (Tween 80) cubic phase internal structure. Cubosomes were injected intravenously into zebrafish larvae (12-14 days post fertilization) and the concentration of RhoB in the midbrain was determined by quantifying its fluorescence intensity. Uptake of RhoB was significantly greater in larvae injected with Tween 80 stabilized cubosomes as compared to a control suspension of RhoB or cubosomes stabilized with Pluronics. Collectively, we show for the first time that cubosomes can be functionalized to deliver drug across the BBB, offering new opportunities to overcome drug delivery issues across this formidable biological barrier.
我们探讨了立方脂质体(cubosomes)将包裹的货物递送至大脑的潜力。我们用三种稳定剂之一(Pluronic F68、Pluronic F127 或 Tween 80)来制备立方脂质体,假设用 Tween 80 进行涂层将使立方脂质体能够像以前已经证明的那样靶向聚合物纳米颗粒进入大脑。我们研究了立方脂质体的物理化学性质以及促进模型药物丽丝胺罗丹明(RhoB)递送至大脑的能力。还通过结合辛硫醇功能化的金纳米粒子进行超微结构分析,研究了立方脂质体在中脑的分布。立方脂质体的粒径通常为 165-195nm,具有 Pn3m(Pluronic)或 Im3m(Tween 80)立方相内部结构。我们将立方脂质体静脉内注射到斑马鱼幼虫(受精后 12-14 天)中,并通过定量其荧光强度来确定 RhoB 在中脑的浓度。与 RhoB 对照悬浮液或用 Pluronic 稳定的立方脂质体相比,用 Tween 80 稳定的立方脂质体注射的幼虫中 RhoB 的摄取量明显更高。总之,我们首次表明,立方脂质体可以进行功能化以递送至 BBB 以外的药物,为克服这一令人生畏的生物屏障的药物递送问题提供了新的机会。