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Marine natural products for multi-targeted cancer treatment: A future insight
Maushmi S Kumar1, Kaveri M Adki1
1Shobhaben Pratapbhai Patel School of Pharmacy and Technology Management, SVKM'S NMIMS, V. L. Mehta Road, Vile Parle (West), Mumbai 400056, India.
Abstract:
Cancer is world's second largest alarming disease, which involves abnormal cell growth and have potential to spread to other parts of the body. Most of the available anticancer drugs are designed to act on specific targets by altering the activity of involved transporters and genes. As cancer cells exhibit complex cellular machinery, the regeneration of cancer tissues and chemo resistance towards the therapy has been the main obstacle in cancer treatment. This fact encourages the researchers to explore the multitargeted use of existing medicines to overcome the shortcomings of chemotherapy for alternative and safer treatment strategies. Recent developments in genomics-proteomics and an understanding of the molecular pharmacology of cancer have also challenged researchers to come up with target-based drugs. The literature supports the evidence of natural compounds exhibiting antioxidant, antimitotic, anti-inflammatory, antibiotic as well as anticancer activity. In this review, we have selected marine sponges as a prolific source of bioactive compounds which can be explored for their possible use in cancer and have tried to link their role in cancer pathway. To prove this, we revisited the literature for the selection of cancer genes for the multitargeted use of existing drugs and natural products. We used Cytoscape network analysis and Search tool for retrieval of interacting genes/ proteins (STRING) to study the possible interactions to show the links between the antioxidants, antibiotics, anti-inflammatory and antimitotic agents and their targets for their possible use in cancer. We included total 78 pathways, their genes and natural compounds from the above four pharmacological classes used in cancer treatment for multitargeted approach. Based on the Cytoscape network analysis results, we shortlist 22 genes based on their average shortest path length connecting one node to all other nodes in a network. These selected genes are CDKN2A, FH, VHL, STK11, SUFU, RB1, MEN1, HRPT2, EXT1, 2, CDK4, p14, p16, TSC1, 2, AXIN2, SDBH C, D, NF1, 2, BHD, PTCH, GPC3, CYLD and WT1. The selected genes were analysed using STRING for their protein-protein interactions. Based on the above findings, we propose the selected genes to be considered as major targets and are suggested to be studied for discovering marine natural products as drug lead in cancer treatment.
Insights
Marine sponges offer natural compounds for multitargeted cancer therapy. Researchers identified 22 key genes and their interactions, suggesting these as targets for novel anticancer drug discovery from marine sources.
Area of Science:
- Marine Biology
- Pharmacology
- Genomics
- Proteomics
- Cancer Research
Background:
- Cancer is a leading global health concern, characterized by uncontrolled cell growth and metastasis.
- Current chemotherapy faces challenges like cancer cell regeneration and drug resistance, necessitating novel therapeutic strategies.
- Natural products, particularly from marine organisms, show promise for anticancer activity due to their diverse pharmacological properties.
Purpose of the Study:
- To explore marine sponges as a source of bioactive compounds for cancer treatment.
- To identify key cancer-related genes and pathways amenable to multitargeted drug approaches.
- To investigate the potential of natural compounds as drug leads for cancer therapy.
Main Methods:
- Literature review focusing on marine sponges and their anticancer compounds.
- Utilized Cytoscape network analysis to identify critical genes in cancer pathways.
- Employed the Search Tool for the Retrieval of Interacting Genes/Proteins (STRING) to analyze protein-protein interactions.
Main Results:
- Identified 78 relevant pathways, genes, and natural compounds across four pharmacological classes (antioxidant, antimitotic, anti-inflammatory, antibiotic).
- Through network analysis, 22 key genes (e.g., CDKN2A, RB1, WT1) were shortlisted as potential multitargets.
- STRING analysis confirmed significant protein-protein interactions among these selected genes.
Conclusions:
- The 22 identified genes represent promising targets for multitargeted cancer drug discovery.
- Marine natural products hold significant potential as drug leads for developing novel anticancer therapies.
- Further research into these marine compounds and their interaction with identified gene targets is warranted.
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