Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7692071 | Chemistry and Physics of Lipids | 2018 | 34 Pages |
Abstract
Liposomes can achieve a controlled release and an improved bioavailability of water- insoluble drug with minimized side effects. Paclitaxel is an efficient anticancer drug for the treatment of various cancers. However, paclitaxel has a solubility of 0.5â¯mg/L in water and a low bioavailability of 6.5%. Moreover, paclitaxel is a substrate for p-glycoprotein, which shows a decreased accumulation of drug within the cancer cell expressed by a p-glycoprotein. Therefore, the purpose of this study is to prepare a paclitaxel-loaded liposome and evaluate the effect of d-α-tocopheryl polyethylene glycol 1000 succinate (TPGS) as an inhibitor of p-glycoprotein on the paclitaxel-loaded liposome. The paclitaxel-loaded liposome and TPGS coated paclitaxel-loaded liposome had spherical vesicles, with mean particle size 184.9â¯Â±â¯18.45â¯nm with PDI 0.324â¯Â±â¯0.018 and 282.6â¯Â±â¯20.41â¯nm with PDI 0.269â¯Â±â¯0.013, respectively. Paclitaxel-loaded liposome and TPGS coated paclitaxel-loaded liposome showed a controlled and sustained release of PTX over 72â¯h. The cellular uptake of paclitaxel from TPGS coated paclitaxel-loaded liposome was a 3.56-fold increase for 2â¯h and 5.75-fold increase for 4â¯h compared to that from paclitaxel-loaded liposome in MCF-7/ADR cells, resulting in improved cytotoxicity against MCF-7/ADR cells. Western blot assay revealed the P-gp inhibitory effect of TPGS-coated PTX-liposome. In conclusion, TPGS coated liposome with a sustained releasing capability and the inhibitory effect of p-glycoprotein may be a promising carrier for future applications in cancer therapy.
Related Topics
Physical Sciences and Engineering
Chemistry
Chemistry (General)
Authors
Su-Min Han, Jong-Suep Baek, Min-Soo Kim, Sung-Joo Hwang, Cheong-Weon Cho,