Nano-Zirconium Dioxide Catalyzed Multicomponent Synthesis of Bioactive Pyranopyrazoles That Target Cyclin Dependent Kinase 1 in Human Breast Cancer Cells

Author:

Basappa BasappaORCID,Poonacha Lisha K.,Xi ZhangORCID,Vishwanath DivakarORCID,Yang Ji-RuiORCID,Nagaraja Omantheswara,Swamynayaka Ananda,Madegowda MahendraORCID,Chinnathambi ArunachalamORCID,Alharbi Sulaiman Ali,Gurudatt Doddahosuru Mahadevappa,Pandey VijayORCID,Shivananju Nanjundaswamy,Ahn Kwang SeokORCID,Sethi Gautam,Lobie Peter E.,Shubha Priya Babu

Abstract

Small molecules are being used to inhibit cyclin dependent kinase (CDK) enzymes in cancer treatment. There is evidence that CDK is a drug-target for cancer therapy across many tumor types because it catalyzes the transfer of the terminal phosphate of ATP to a protein that acts as a substrate. Herein, the identification of pyranopyrazoles that were CDK inhibitors was attempted, whose synthesis was catalyzed by nano-zirconium dioxide via multicomponent reaction. Additionally, we performed an in-situ analysis of the intermediates of multicomponent reactions, for the first-time, which revealed that nano-zirconium dioxide stimulated the reaction, as estimated by Gibbs free energy calculations of spontaneity. Functionally, the novel pyranopyrazoles were tested for a loss of cell viability using human breast cancer cells (MCF-7). It was observed that compounds 5b and 5f effectively produced loss of viability of MCF-7 cells with IC50 values of 17.83 and 23.79 µM, respectively. In vitro and in silico mode-of-action studies showed that pyranopyrazoles target CDK1 in human breast cancer cells, with lead compounds 5b and 5f having potent IC50 values of 960 nM and 7.16 μM, respectively. Hence, the newly synthesized bioactive pyranopyrazoles could serve as better structures to develop CDK1 inhibitors against human breast cancer cells.

Funder

Vision Group on Science and Technology

Shenzhen Key Laboratory of Innovative Oncotherapeutics

Shenzhen Development and Reform Commission Subject Construction Project

Overseas Research Cooperation Project

Tsinghua University Stable Funding Key Project

Shenzhen Bay Laboratory

Korean government

Researchers Supporting Project

OBC Cell, University of Mysore, Mysuru and DST PhD Fellowship

Publisher

MDPI AG

Subject

General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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