Abstract
Docetaxel (DTX) is an effective and commonly used chemotherapeutic drug for cancer. However, its efficacy is greatly compromised because of its toxicity and poor water solubility. In order to overcome these disadvantages, three inclusion complexes between DTX and alkylenediamine-modified β-cyclodextrins (H1-3) with ethylene, propylene and butylene segments were prepared and characterized. The phase solubility studies demonstrated that the stoichiometry of the inclusion complexes betweenH1-3and DTX were 1 : 1. The binding abilities of hostH1-3towards DTX decrease in the following order:H3> H1, which had good consistency with the decreasing alkylene lengths of these hosts. The water solubility of DTX is remarkably increased 216, 242 and 253 times after forming inclusion complexes withH1-3, respectively.In vitrorelease studies of DTX fromH1-3/DTX into NaAc-HAc buffer solution (pH 5.0) or PBS (pH 7.4) exhibited a preliminary stage burst effect and followed by a slow drug release. The cytotoxicity studies revealed that theH1-3/DTX inclusion complexes exhibited better cytotoxicity profiles against MCF-7, SW480 and A-549 cells than that of DTX. Furthermore, compared with the treatment of DTX, theH1/DTX inclusion complex significantly increased the cell apoptosis percentage from 17.2% to 30.2% (5 μg mL−1), 19.0% to 31.0% (10 μg mL−1), and 19.3% to 32.2% (15 μg mL−1), respectively. These results will provide useful information forH1-3/DTX inclusion complexes as safe and efficient anticancer drug formulations.
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CITATION STYLE
Chen, X. Y., Yang, H. W., Chi, S. M., Yue, L. L., Ruan, Q., Lei, Z., … Zhao, Y. (2021). Solubility and biological activity enhancement of docetaxelviaformation of inclusion complexes with three alkylenediamine-modified β-cyclodextrins. RSC Advances, 11(11), 6292–6303. https://doi.org/10.1039/d0ra09720a
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