Literature DB >> 30248507

Synthesis, antiproliferative activity and molecular docking of thiocolchicine urethanes.

Urszula Majcher1, Alicja Urbaniak2, Ewa Maj3, Mahshad Moshari4, Magdalena Delgado2, Joanna Wietrzyk3, Franz Bartl5, Timothy C Chambers2, Jack A Tuszynski4, Adam Huczyński6.   

Abstract

A number of naturally occurring compounds such as paclitaxel, vinblastine, combretastatin, and colchicine exert their therapeutic effect by changing the dynamics of tubulin and its polymer form, microtubules. The identification of tubulin as a potential target for anticancer drugs has led to extensive research followed by clinical development of numerous compounds from several families. In this paper we report on the design, synthesis and in vitro evaluation of a group of thiocolchicine derivatives, modified at ring-B, labelled here compounds 4-14. These compounds have been obtained in a simple reaction of 7-deacetyl-10-thiocolchicine 3 with eleven different alcohols in the presence of triphosgene. These novel agents have been checked for anti-proliferative activity against four human cancer cell lines and their mode of action has been confirmed as colchicine binding site inhibition (CBSI) using molecular docking. Molecular simulations provided rational tubulin binding models for the tested compounds. On the basis of in vitro tests, derivatives 4-8 and 14 demonstrated the highest potency against MCF-7, LoVo and A549 tumor cell lines (IC50 values = 0.009-0.014 μM). They were more potent and characterized by a higher selectivity index than several standard chemotherapeutics including cisplatin and doxorubicin as well as unmodified colchicine. Further, studies revealed that colchicine and its several derivatives arrested MCF-7 cells in mitosis, while its selected derivatives caused microtubule depolymerization.
Copyright © 2018 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Anticancer agents; Colchicine binding site inhibitors (CBSI); Colchicine derivatives; Mitotic inhibitor; Tubulin

Mesh:

Substances:

Year:  2018        PMID: 30248507     DOI: 10.1016/j.bioorg.2018.09.004

Source DB:  PubMed          Journal:  Bioorg Chem        ISSN: 0045-2068            Impact factor:   5.275


  6 in total

1.  A decade review of triphosgene and its applications in organic reactions.

Authors:  Moshood O Ganiu; Binod Nepal; Joshua P Van Houten; Rendy Kartika
Journal:  Tetrahedron       Date:  2020-09-06       Impact factor: 2.457

2.  Synthesis and Biological Evaluation of Novel Triple-Modified Colchicine Derivatives as Potent Tubulin-Targeting Anticancer Agents.

Authors:  Urszula Majcher; Greta Klejborowska; Magdalena Kaik; Ewa Maj; Joanna Wietrzyk; Mahshad Moshari; Jordane Preto; Jack A Tuszynski; Adam Huczyński
Journal:  Cells       Date:  2018-11-19       Impact factor: 6.600

3.  Antiproliferative Activity and Molecular Docking of Novel Double-Modified Colchicine Derivatives.

Authors:  Urszula Majcher; Greta Klejborowska; Mahshad Moshari; Ewa Maj; Joanna Wietrzyk; Franz Bartl; Jack A Tuszynski; Adam Huczyński
Journal:  Cells       Date:  2018-11-01       Impact factor: 6.600

4.  Synthesis, Antiproliferative Activity and Molecular Docking Studies of Novel Doubly Modified Colchicine Amides and Sulfonamides as Anticancer Agents.

Authors:  Julia Krzywik; Witold Mozga; Maral Aminpour; Jan Janczak; Ewa Maj; Joanna Wietrzyk; Jack A Tuszyński; Adam Huczyński
Journal:  Molecules       Date:  2020-04-14       Impact factor: 4.411

5.  In silico Investigations of the Mode of Action of Novel Colchicine Derivatives Targeting β-Tubulin Isotypes: A Search for a Selective and Specific β-III Tubulin Ligand.

Authors:  Lorenzo Pallante; Antonio Rocca; Greta Klejborowska; Adam Huczynski; Gianvito Grasso; Jack A Tuszynski; Marco A Deriu
Journal:  Front Chem       Date:  2020-02-21       Impact factor: 5.221

6.  New Series of Double-Modified Colchicine Derivatives: Synthesis, Cytotoxic Effect and Molecular Docking.

Authors:  Julia Krzywik; Maral Aminpour; Ewa Maj; Witold Mozga; Joanna Wietrzyk; Jack A Tuszyński; Adam Huczyński
Journal:  Molecules       Date:  2020-08-02       Impact factor: 4.411

  6 in total

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