4.7 Article

An insight into the structure of 5-spiro aromatic derivatives of imidazolidine-2,4-dione, a new group of very potent inhibitors of tumor multidrug resistance in T-lymphoma cells

Journal

BIOORGANIC CHEMISTRY
Volume 109, Issue -, Pages -

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bioorg.2021.104735

Keywords

Crystal structure; Fluorene; Hydantoin; Multidrug resistance; P-glycoprotein (ABCB1); T-lymphoma

Funding

  1. Jagiellonian University Medical College in Cracow [N42/DBS/000027]
  2. Pedagogical University of Cracow grant [BN.610185/PBU/2020]
  3. Polish National Science Centre (NCN) [UMO-2015/17/B/NZ7/02973, DEC-2011/02/A/NZ4/00031]
  4. CSIC through the iLINK project [LINKA20285]
  5. [GINOP-2.3.2-15-2016-00038]

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A series of newly synthesized compounds were explored for their potential as potent inhibitors of cancer multidrug resistance efflux pumps. Particularly, the spirofluorene derivatives with amine alkyl substituents at position 1 showed the strongest P-glycoprotein inhibitory activity in MDR T-lymphoma cells, with compounds 7 and 12 being 100-fold more potent than verapamil. Crystallography-supported pharmacophore-based SAR analysis suggested specific structural properties contributing to this excellent cancer MDR-inhibitory action.
A series of 17 arylpiperazine derivatives of the 5-spiroimidazolidine-2,4-diones (6-22) has been explored, including variations in (i) the number of aromatic rings at position 5, (ii) the length of the linker, as well as (iii) the kind and position of the linked arylpiperazine terminal fragment. Synthesis (6-16) and X-ray crystallographic studies for representative compounds (8, 10, 14 and 18) have been performed. The ability to inhibit the tumor multidrug resistance (MDR) efflux pump P-glycoprotein (P-gp, ABCB1) overexpressed in mouse T-lymphoma cells was investigated. The cytotoxic and antiproliferative actions of the compounds on both the reference and the ABCB1-overproducing cells were also examined. The pharmacophore-based molecular modeling studies have been performed. ADMET properties in vitro of selected most active derivatives (6, 11 and 12) have been determined. All compounds, excluding 18, inhibited the cancer P-gp efflux pump with higher potency than that of reference verapamil. The spirofluorene derivatives with amine alkyl substituents at position 1, and the methyl group at position 3 (6-16), occurred the most potent P-gp inhibitors in the MDR T-lymphoma cell line. In particular, compounds 7 and 12 were 100-fold more potent than verapamil. Crystallography-supported pharmacophore-based SAR analysis has postulated specific structural properties that could explain this excellent cancer MDR-inhibitory action.

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