» Articles » PMID: 30100632

Synthesis of Unsymmetrical Disulfanes Bearing 1,2,4-triazine Scaffold and Their in Vitro Screening Towards Anti-breast Cancer Activity

Overview
Journal Monatsh Chem
Specialty Chemistry
Date 2018 Aug 14
PMID 30100632
Citations 7
Authors
Affiliations
Soon will be listed here.
Abstract

Abstract: A new series of 1,2,4-triazine unsymmetrical disulfanes were prepared and evaluated as anticancer activity compounds against MCF-7 human breast cancer cells with some of them acting as low micromolar inhibitors. Evaluation of the cytotoxicity using an MTT assay, the inhibition of [H]-thymidine incorporation into DNA demonstrated that these products exhibit cytotoxic effects on breast cancer cells in vitro. The most effective compounds with 59 and 60 µM compared to chlorambucil with 47 µM were disulfanes bearing methyl and methoxy substituent in an aromatic ring. Furthermore, all new 14 compounds were obtained with 22-74% yield via mild and efficient synthesis of the sulfur-sulfur bond formation from thiols and symmetrical disulfanes using 2,3-dichloro-5,6-dicyanobenzoquinone (DDQ). The molecular structure of the newly obtained compounds was confirmed by X-ray analysis. The conformational preferences of disulfide system were characterized using theoretical calculations at DFT level and statistical distributions of C-S-S-C torsion angle values based on the Cambridge Structural Database (CSD). The DFT calculations and CSD searching show two preferential conformations for C-S-S-C torsion angle close to ± 90° and relatively large freedom of rotation on S-S bond in physiological conditions. The molecular docking studies were performed using the human estrogen receptor alpha (ER) as molecular target to find possible binding orientation and intermolecular interactions of investigated disulfanes within the active site of ER. The S…H-S and S…H-C hydrogen bonds between sulfur atoms of bisulfide bridge and S-H and C-H groups of Cys530 and Ala350 as protein residues play crucial role in interaction with estrogen receptor for the most anticancer active disulfane.

Graphical Abstract:

Citing Articles

Micronutrient Status and Breast Cancer: A Narrative Review.

Forma A, Grunwald A, Zembala P, Januszewski J, Brachet A, Zembala R Int J Mol Sci. 2024; 25(9).

PMID: 38732186 PMC: 11084730. DOI: 10.3390/ijms25094968.


Monoterpene Thiols: Synthesis and Modifications for Obtaining Biologically Active Substances.

Sudarikov D, Nikitina L, Rollin P, Izmestev E, Rubtsova S Int J Mol Sci. 2023; 24(21).

PMID: 37958865 PMC: 10649346. DOI: 10.3390/ijms242115884.


Synthesis and Biological Activity of Unsymmetrical Monoterpenylhetaryl Disulfides.

Sudarikov D, Gyrdymova Y, Borisov A, Lukiyanova J, Rumyantcev R, Shevchenko O Molecules. 2022; 27(16).

PMID: 36014334 PMC: 9416111. DOI: 10.3390/molecules27165101.


Recent Advancements in the Development of Anti-Breast Cancer Synthetic Small Molecules.

Elkaeed E, Abd El Salam H, Sabt A, Al-Ansary G, Eldehna W Molecules. 2021; 26(24).

PMID: 34946704 PMC: 8709016. DOI: 10.3390/molecules26247611.


MM-129 as a Novel Inhibitor Targeting PI3K/AKT/mTOR and PD-L1 in Colorectal Cancer.

Hermanowicz J, Pawlak K, Sieklucka B, Czarnomysy R, Kwiatkowska I, Kazberuk A Cancers (Basel). 2021; 13(13).

PMID: 34206937 PMC: 8268553. DOI: 10.3390/cancers13133203.


References
1.
Peterson Q, Hsu D, Goode D, Novotny C, Totten R, Hergenrother P . Procaspase-3 activation as an anti-cancer strategy: structure-activity relationship of procaspase-activating compound 1 (PAC-1) and its cellular co-localization with caspase-3. J Med Chem. 2009; 52(18):5721-31. PMC: 2749958. DOI: 10.1021/jm900722z. View

2.
Jammi S, Sakthivel S, Rout L, Mukherjee T, Mandal S, Mitra R . CuO nanoparticles catalyzed C-N, C-O, and C-S cross-coupling reactions: scope and mechanism. J Org Chem. 2009; 74(5):1971-6. DOI: 10.1021/jo8024253. View

3.
Winum J, Rami M, Scozzafava A, Montero J, Supuran C . Carbonic anhydrase IX: a new druggable target for the design of antitumor agents. Med Res Rev. 2007; 28(3):445-63. DOI: 10.1002/med.20112. View

4.
Lee M, Yang Z, Lim C, Lee Y, Dongbang S, Kang C . Disulfide-cleavage-triggered chemosensors and their biological applications. Chem Rev. 2013; 113(7):5071-109. DOI: 10.1021/cr300358b. View

5.
DeSantis C, Siegel R, Bandi P, Jemal A . Breast cancer statistics, 2011. CA Cancer J Clin. 2011; 61(6):409-18. DOI: 10.3322/caac.20134. View