A Novel pH-Tunable Secondary Conformation Containing Mixed Micellar System in Anticancer Treatment

Author:

Shih Fu-Ying,Jiang Wen-Ping,Lin Xiaojie,Kuo Sheng-Chu,Huang Guan-Jhong,Hou Yu-Chi,Chang Chih-Shiang,Liu Yang,Chiang Yi-TingORCID

Abstract

In this study, for the first time, we precisely assembled the poly-γ-benzyl-l-glutamate and an amphiphilic copolymer d-α-tocopherol polyethylene glycol succinate into a mixed micellar system for the embedment of the anticancer drug doxorubicin. Importantly, the intracellular drug-releasing behaviors could be controlled by changing the secondary structures of poly-γ-benzyl-l-glutamate via the precise regulation of the buffer’s pH value. Under neutral conditions, the micellar architectures were stabilized by both α-helix secondary structures and the microcrystalline structures. Under acidic conditions (pH 4.0), the interior structures transformed into a coil state with a disordered alignment, inducing the release of the loaded drug. A remarkable cytotoxicity of the Dox-loaded mixed micelles was exhibited toward human lung cancer cells in vitro. The internalizing capability into the cancer cells, as well as the intracellular drug-releasing behaviors, were also identified and observed. The secondary structures containing Dox-loaded mixed micelles had an outstanding antitumor efficacy in human lung cancer A549 cells-bearing nude mice, while little toxicities occurred or interfered with the hepatic or renal functions after the treatments. Thus, these pH-tunable α-helix-containing mixed micelles are innovative and promising for controlled intracellular anticancer drug delivery.

Funder

Ministry of Science and Technology, Taiwan

Ministry of Education (MOE), Taiwan

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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