Sarker Satya Ranjan, Takikawa Masato, Takeoka Shinji
Department of Life Science and Medical Bioscience, Graduate School of Advanced Science and Engineering, Waseda University (TWIns), Shinjuku-ku, Tokyo 162-8480, Japan.
Department of Biotechnology and Genetic Engineering, Jahangirnagar University, Savar, Dhaka-1342, Bangladesh.
ACS Appl Bio Mater. 2020 Apr 20;3(4):2048-2057. doi: 10.1021/acsabm.9b01167. Epub 2020 Mar 16.
Bioactive peptides, which act as biologically active regulators, often require intracellular delivery systems to access their therapeutic targets in the cytosolic space maintaining their bioactivity. Here, we report on the delivery of a polar cell impermeable bioactive peptide, phalloidin, into living HeLa cells with cationic liposomes prepared from lysine-based lipids. Liposome/Alexa Fluor 594 phalloidin complexes were characterized regarding their size and zeta potential, which were 85 ± 38 nm and +24.5 ± 4.21 mV, respectively. The delivery of Alexa Fluor 594 phalloidin into live HeLa cells with K3C14 liposomes was evaluated using a fluorescence activated cell sorter and confocal laser scanning microscopy. The highest Alexa Fluor 594 phalloidin delivery efficiency was 92% when using 200 μg of the cationic lipid/1 × 10 cells seeded at 37 °C. The cellular uptake mechanism for the cationic liposome/Alexa Fluor 594 phalloidin complexes was investigated using various endocytosis inhibitors. We confirmed the complexes were mainly taken up through caveolae-mediated endocytosis. Incubation with bafilomycin A1, which inhibits the acidification of lysosomes, revealed that Alexa Fluor 594 phalloidin did not pass through the lysosomal pathway. Rather, Alexa Fluor 594 phalloidin was released from early endosomes or caveosomes to the cytosol to exhibit its bioactive effects including the multinucleation of HeLa cells.
生物活性肽作为生物活性调节剂,通常需要细胞内递送系统才能进入胞质空间中的治疗靶点并保持其生物活性。在此,我们报告了使用由赖氨酸基脂质制备的阳离子脂质体将一种极性细胞不可渗透的生物活性肽——鬼笔环肽递送至活的HeLa细胞中。对脂质体/ Alexa Fluor 594鬼笔环肽复合物的大小和zeta电位进行了表征,其大小分别为85±38 nm,zeta电位为+24.5±4.21 mV。使用荧光激活细胞分选仪和共聚焦激光扫描显微镜评估了用K3C14脂质体将Alexa Fluor 594鬼笔环肽递送至活的HeLa细胞中的情况。当在37°C下使用200μg阳离子脂质/接种的1×10个细胞时,Alexa Fluor 594鬼笔环肽的最高递送效率为92%。使用各种内吞作用抑制剂研究了阳离子脂质体/Alexa Fluor 594鬼笔环肽复合物的细胞摄取机制。我们证实该复合物主要通过小窝介导的内吞作用被摄取。用抑制溶酶体酸化的巴弗洛霉素A1孵育后发现,Alexa Fluor 594鬼笔环肽未通过溶酶体途径。相反,Alexa Fluor 594鬼笔环肽从早期内体或小窝体释放到细胞质中,以发挥其生物活性作用,包括使HeLa细胞多核化。