Insights into the computer-aided drug design and discovery based on anthraquinone scaffold for cancer treatment: A systematic review

Author:

Chua Hui MingORCID,Moshawih SaidORCID,Kifli Nurolaini,Goh Hui Poh,Ming Long Chiau

Abstract

Background In the search for better anticancer drugs, computer-aided drug design (CADD) techniques play an indispensable role in facilitating the lengthy and costly drug discovery process especially when natural products are involved. Anthraquinone is one of the most widely-recognized natural products with anticancer properties. This review aimed to systematically assess and synthesize evidence on the utilization of CADD techniques centered on the anthraquinone scaffold for cancer treatment. Methods The conduct and reporting of this review were done in accordance to the Preferred Reporting Items for Systematic Reviews and Meta-analysis (PRISMA) 2020 guideline. The protocol was registered in the “International prospective register of systematic reviews” database (PROSPERO: CRD42023432904) and also published recently. The search strategy was designed based on the combination of concept 1 “CADD or virtual screening”, concept 2 “anthraquinone” and concept 3 “cancer”. The search was executed in PubMed, Scopus, Web of Science and MedRxiv on 30 June 2023. Results Databases searching retrieved a total of 317 records. After deduplication and applying the eligibility criteria, the final review ended up with 32 articles in which 3 articles were found by citation searching. The CADD methods used in the studies were either structure-based alone (69%) or combined with ligand-based methods via parallel (9%) or sequential (22%) approaches. Molecular docking was performed in all studies, with Glide and AutoDock being the most popular commercial and public software used respectively. Protein data bank was used in most studies to retrieve the crystal structure of the targets of interest while the main ligand databases were PubChem and Zinc. The utilization of in-silico techniques has enabled a deeper dive into the structural, biological and pharmacological properties of anthraquinone derivatives, revealing their remarkable anticancer properties in an all-rounded fashion. Conclusion By harnessing the power of computational tools and leveraging the natural diversity of anthraquinone compounds, researchers can expedite the development of better drugs to address the unmet medical needs in cancer treatment by improving the treatment outcome for cancer patients.

Publisher

Public Library of Science (PLoS)

Reference103 articles.

1. Cancer statistics, 2023.;RL Siegel;CA: A Cancer Journal for Clinicians.,2023

2. Global Cancer Statistics 2020: GLOBOCAN Estimates of Incidence and Mortality Worldwide for 36 Cancers in 185 Countries.;H Sung;CA Cancer J Clin.,2021

3. Drug resistance and combating drug resistance in cancer;X Wang;Cancer Drug Resist,2019

4. A concise review on cancer treatment methods and delivery systems;E Bidram;Journal of Drug Delivery Science and Technology,2019

5. How Much Does It Cost to Research and Develop a New Drug? A Systematic Review and Assessment.;M Schlander;PharmacoEconomics.,2021

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