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Target-based anticancer indole derivatives and insight into structure‒activity relationship: A mechanistic review
Ashima Dhiman1, Rupam Sharma1, Rajesh K Singh1
1Department of Pharmaceutical Chemistry, Shivalik College of Pharmacy, IKG Punjab Technical University, Jalandhar 140126, India.
Abstract:
Cancer, which is the uncontrolled growth of cells, is the second leading cause of death after heart disease. Targeting drugs, especially to specific genes and proteins involved in growth and survival of cancer cells, is the prime need of research world-wide. Indole moiety, which is a combination of aromatic-heterocyclic compounds, is a constructive scaffold for the development of novel leads. Owing to its bioavailability, high unique chemical properties and significant pharmacological behaviours, indole is considered as the most inquisitive scaffold for anticancer drug research. This is illustrated by the fact that the U.S. Food and Drug Administration (FDA) has recently approved several indole-based anticancer agents such as panobinostat, alectinib, sunitinib, osimertinib, anlotinib and nintedanib for clinical use. Furthermore, hundreds of studies on the synthesis and activity of the indole ring have been published in the last three years. Taking into account the facts stated above, we have presented the most recent advances in medicinal chemistry of indole derivatives, encompassing hot articles published between 2018 and 2021 in anticancer drug research. The recent advances made towards the synthesis of promising indole-based anticancer compounds that may act via various targets such as topoisomerase, tubulin, apoptosis, aromatase, kinases, etc., have been discussed. This review also summarizes some of the recent efficient green chemical synthesis for indole rings using various catalysts for the period during 2018-2021. The review also covers the synthesis, structure‒activity relationship, and mechanism by which these leads have demonstrated improved and promising anticancer activity. Indole molecules under clinical and preclinical stages are classified into groups based on their cancer targets and presented in tabular form, along with their mechanism of action. The goal of this review article is to point the way for medicinal chemists to design and develop effective indole-based anticancer agents.
Insights
Indole derivatives show promise as anticancer drugs, with recent research focusing on their synthesis and mechanisms. This review highlights advances in developing novel indole-based compounds targeting various cancer pathways for improved drug discovery.
Area of Science:
- Medicinal Chemistry
- Drug Discovery
- Organic Synthesis
Background:
- Cancer remains a leading cause of death, necessitating novel targeted therapies.
- Indole scaffolds are valuable in medicinal chemistry due to their unique properties and pharmacological behaviors.
- Several FDA-approved indole-based anticancer agents underscore their therapeutic potential.
Purpose of the Study:
- To review recent advances (2018-2021) in the medicinal chemistry of indole derivatives for anticancer drug research.
- To discuss the synthesis, structure-activity relationships, and mechanisms of action of promising indole-based anticancer compounds.
- To highlight efficient green chemical synthesis methods for indole rings.
Main Methods:
- Comprehensive literature review of hot articles published between 2018 and 2021 focusing on indole derivatives in anticancer research.
- Analysis of synthesis strategies, including green chemistry approaches.
- Classification and tabulation of indole molecules in clinical and preclinical stages based on cancer targets and mechanisms of action.
Main Results:
- Recent advances in the synthesis of indole-based anticancer compounds targeting diverse pathways like topoisomerase, tubulin, apoptosis, aromatase, and kinases.
- Summary of efficient green chemical synthesis methods for indole ring construction.
- Detailed discussion on structure-activity relationships and mechanisms driving promising anticancer activity.
Conclusions:
- Indole derivatives represent a significant scaffold for developing novel anticancer agents.
- The review provides a roadmap for medicinal chemists to design and develop effective indole-based anticancer drugs.
- Continued research into indole chemistry and pharmacology is crucial for future cancer therapy advancements.
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