Connor J, Huang L
J Cell Biol. 1985 Aug;101(2):582-9. doi: 10.1083/jcb.101.2.582.
We previously showed that liposomes composed of dioleoylphosphatidyl-ethanolamine and palmitoyl-homocysteine (8:2) are highly fusion competent when exposed to an acidic environment of pH less than 6.5. (Connor, J., M. B. Yatvin, and L. Huang, 1984, Proc. Natl. Acad. Sci. USA. 81:1715-1718). Palmitoyl anti-H2Kk was incorporated into these pH-sensitive liposomes by a modified reserve-phase evaporation method. Mouse L929 cells (k haplotype) treated with immunoliposomes composed of dioleoylphosphatidylethanolamine/palmitoyl-homocysteine (8:2) with an entrapped fluorescent dye, calcein, showed diffused fluorescence throughout the cytoplasm. Measurements by use of a microscope-associated photometer gave an approximate value of 50 microM for the cytoplasmic calcein concentration. This concentration represents an efficient delivery of the aqueous content of the immunoliposome. Cells treated with immunoliposomes composed of dioleoylphosphatidylcholine (pH-insensitive liposomes) showed only punctate fluorescence. The cytoplasmic delivery of calcein by the pH-sensitive immunoliposomes could be inhibited by chloroquine or by incubation at 20 degrees C. These results suggest that the efficient cytoplasmic delivery involves the endocytic pathway, particularly the acidic organelles such as the endosomes and/or lysosomes. One possibility is that the immunoliposomes fuse with the endosome membranes from within the endosomes, thus releasing the contents into the cytoplasm. This nontoxic method should be widely applicable to the intracellular delivery of biomolecules into living cells.
我们之前表明,由二油酰磷脂酰乙醇胺和棕榈酰高半胱氨酸(8:2)组成的脂质体在暴露于pH小于6.5的酸性环境时具有高度融合能力。(康纳,J.,M. B. 亚特文,和L. 黄,1984,《美国国家科学院院刊》。81:1715 - 1718)。通过改良的反相蒸发法将棕榈酰抗H2Kk掺入这些pH敏感脂质体中。用由二油酰磷脂酰乙醇胺/棕榈酰高半胱氨酸(8:2)组成并包封有荧光染料钙黄绿素的免疫脂质体处理的小鼠L929细胞(k单倍型),在整个细胞质中显示出弥漫性荧光。使用与显微镜相关的光度计进行测量得出细胞质钙黄绿素浓度的近似值为50微摩尔。该浓度代表免疫脂质体水性内容物的有效递送。用由二油酰磷脂酰胆碱组成的免疫脂质体(pH不敏感脂质体)处理的细胞仅显示点状荧光。pH敏感免疫脂质体对钙黄绿素的细胞质递送可被氯喹或在20℃孵育抑制。这些结果表明有效的细胞质递送涉及内吞途径,特别是酸性细胞器如内体和/或溶酶体。一种可能性是免疫脂质体从内体内部与内体膜融合,从而将内容物释放到细胞质中。这种无毒方法应广泛适用于将生物分子细胞内递送至活细胞。