Discovery of 1H-indazole-6-amine Derivatives as Anticancer Agents: Simple But Effective

Author:

Tran Phuong-Thao1ORCID,Hoang Ngo Xuan1,Hoang Van-Hai23,Ngo Thien4,Y.Vu Thien5

Affiliation:

1. Hanoi University of Pharmacy, 13-15 Le Thanh Tong, Hanoi, Vietnam

2. Faculty of Pharmacy, PHENIKAA University, Hanoi 12116, Vietnam

3. PHENIKAA Institute for Advanced Study (PIAS), PHENIKAA University, Yen Nghia, Hadong, Hanoi 12116, Vietnam

4. Faculty of Pharmacy, Thai Binh University of Medicine and Pharmacy, Thai Binh, Vietnam

5. Faculty of Pharmacy, Ton Duc Thang University, Ho Chi Minh, Vietnam

Abstract

Background: Indazole is a promising structure present in various biological activity compounds; in particular, many 6-aminoindazole-containing compounds demonstrated anticancer activity. In our previous research, we discovered some of the 6-aminoindazole derivatives with excellent cytotoxicity in the human colorectal cancer cell line (HCT116). Objective: In this study, a series of 6-substituted amino-1H-indazole derivatives were designed and synthesized through simple and well-known chemical reactions, which were evaluated for anti-proliferative activity in four human cancer cell lines. Method: The title compounds were designed based on the structures of potential anticancer candidates in our previous report. The synthesis of 6-aminoindazole derivatives through acetylation and reductive amination with 6-amininoindazole as the starting material. Sulforhodamin B (SRB) assay was used for in vitro biological evaluation of synthesized compounds. Various physicochemical properties of them were predicted by online site Molinspiration. Results: Seven out of eight synthesized compounds showed growth inhibitory activity with IC50 values from 2.9 to 59.0 μM range in all four tested cancer cell lines. Of them, the compound N-(4-fluorobenzyl)- 1H-indazol-6-amine (9f) exhibited a potent anti-proliferative activity, with an IC50 value of 14.3±4.4 μM in the human colorectal cancer cell (HCT116) and non-cytotoxicity in the normal cell (lung fibroblast cells, MRC5, IC50 >100 μM). Conclusion: The bioactivity result and conformance of the physicochemical properties of the synthesized compounds to the "rule of three" for hit-like compounds suggested that 9f was effective and could be used as a hit for the development of novel anticancer agents.

Funder

Vietnam National Foundation for Science and Technology Development

Publisher

Bentham Science Publishers Ltd.

Subject

Drug Discovery,Pharmaceutical Science,Molecular Medicine

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