Functional Materials Science Research Laboratories, Lion Corporation, 2-1, Hirai 7, Edogawa, Tokyo, 132-0035, Japan.
Functional Materials Science Research Laboratories, Lion Corporation, 2-1, Hirai 7, Edogawa, Tokyo, 132-0035, Japan.
Colloids Surf B Biointerfaces. 2018 Sep 1;169:444-452. doi: 10.1016/j.colsurfb.2018.05.052. Epub 2018 May 24.
Nanoemulsions of a lipophilic vitamin, retinol palmitate (vitamin A; VA), have a therapeutic effect on corneal damage. The nanoemulsion based on a triblock-type polymer surfactant with polyoxyethylene and polypropylene, EOPOEO (EOPO) showed superior efficacy, as compared with a nanoemulsion based on polyoxyethylene (60) hydrogenated castor oil (HCO). We studied the mechanism of VA nanoemulsions related to efficacy from the viewpoint of the interaction with plasma membrane-mimicking giant unilamellar vesicles (GUVs) and the plasma membrane permeation in corneal epithelial cells. When nanoemulsions and GUVs doped with fluorescent compounds were mixed each other, and observed by confocal laser microscopy, EOPO nanoemulsions induced endocytic morphological changes like strings and vesicles of the bilayer drawn inside a GUV by budding. Judging by isothermal titration calorimetry and ζ potential measurements, the EOPO nanoemulsions seemed to have stronger hydrophobic interactions with the lipid bilayer because of lower coverage of the core interface. Next, when the nanoemulsions prepared with a pyrene derivative of retinol (VApyr) were applied to corneal epithelial cells, the EOPO nanoemulsions greatly permeated the cells and gathered around the cell nucleus, as compared with HCO nanoemulsions. Furthermore, according to the three-dimensional images of the cell, it was found that the vesicles that absorbed nanoemulsions formed from the plasma membrane as real endocytosis, and were transported to the area around the nucleus. Consequently, it is likely that EOPO nanoemulsions entered the cell by membrane-mediated transport, delivering VA to the cell nucleus effectively and enhancing the effects of VA.
亲脂性维生素视黄醇棕榈酸酯 (维生素 A;VA) 的纳米乳剂对角膜损伤具有治疗作用。与基于聚氧乙烯 (60) 氢化蓖麻油 (HCO) 的纳米乳剂相比,基于嵌段型聚合物表面活性剂聚氧乙烯和聚丙烯的 EOPOEO (EOPO) 纳米乳剂显示出更好的效果。我们从与模拟质膜的巨大单层囊泡 (GUV) 的相互作用以及角膜上皮细胞中质膜渗透的角度研究了与 VA 纳米乳剂疗效相关的机制。当纳米乳剂和掺杂荧光化合物的 GUV 相互混合并通过共焦激光显微镜观察时,EOPO 纳米乳剂诱导了类似内陷的内吞形态变化,即 GUV 中的双层被泡状物牵拉形成串状和囊泡。通过等温滴定量热法和 ζ 电位测量判断,EOPO 纳米乳剂似乎与脂质双层具有更强的疏水性相互作用,因为其核心界面的覆盖度较低。接下来,当将用视黄醇 (VApyr) 的芘衍生物制备的纳米乳剂应用于角膜上皮细胞时,与 HCO 纳米乳剂相比,EOPO 纳米乳剂大量渗透到细胞中并聚集在细胞核周围。此外,根据细胞的三维图像,发现吸收纳米乳剂的囊泡从质膜形成作为真正的内吞作用,并被运输到细胞核周围区域。因此,EOPO 纳米乳剂很可能通过膜介导的运输进入细胞,将 VA 有效递送到细胞核并增强 VA 的效果。