4.7 Article

Design, synthesis, and biological evaluation of hederagenin derivatives with improved aqueous solubility and tumor resistance reversal activity

期刊

出版社

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.ejmech.2020.113107

关键词

Hederagenin; PEGylated derivatives; Synthesis; Tumor resistance reversal activity; Aqueous solubility; P-glycoprotein

资金

  1. National Natural Science Foundation of China [81773563]
  2. Science and Technology Support Program for Youth Innovation in Universities of Shandong [2020KJM003]
  3. Natural Science Foundation of Shandong Province [ZR2018LH025]
  4. Graduate Innovation Foundation of Yantai University, GIFYTU [YDZD2033]
  5. Top Talents Program for One Case One Discussion of Shandong Province

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This study designed and synthesized a series of HD derivatives, among which PEGylated and ring-A substituted compounds showed good aqueous solubility and tumor MDR reversal activity, reversing multidrug-resistant cancer cells' resistance to various drugs by inhibiting the efflux function of P-gp.
Multidrug resistance (MDR) has become a major obstacle to malignancies treatment by chemotherapeutic drugs, therefore, it is important to develop MDR reversal agents with high activity. We have previously found that the hederagenin (HD) derivative HBQ showed good tumor MDR reversal activity in vitro and in vivo but had poor solubility. In this study, to enhance the aqueous solubility and tumor MDR reversal activity of HBQ, three series of HD derivatives were designed and synthesized. Nitrogen-containing heterocyclic-substituted, PEGylated, and ring-A substituted derivatives significantly reversed the MDR phenotype of KBV (multidrug-resistant oral epidermoid carcinoma) cells toward paclitaxel at a concentration of 10 mM in MTT assays. The PEGylated derivatives 10c-10e had increased aqueous solubility compared with HBQ by 18-657 fold, while maintaining tumor MDR reversal activity. The most in vitro active compound 10c possessed good chemical stability to an esterase over 24 h and enhanced the sensitivity of KBV cells to paclitaxel and vincristine with IC50 values of 4.58 and 0.79 nM, respectively. Mechanism studies indicated that compound 10c increased the accumulation of P-glycoprotein (P-gp) substrates rhodamine 123 and Flutax1 in KBV cells and MCF-7T (paclitaxel-resistant breast carcinoma) cells, that is to say, compound 10c exerted the reversal effect of tumor MDR by inhibiting the efflux function of P-gp. Finally, the structureeactivity relationships were further investigated by analyzing the relationship between structure and tumor MDR reversal activity of HD derivatives. This study highlights the potential of PEGylated HD derivatives such as compound 10c for the development of tumor MDR reversal agents and provides information for the further improvement of the aqueous solubility and tumor MDR reversal activity of HD derivatives in the future. (C) 2020 Elsevier Masson SAS. All rights reserved.

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