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Exploiting cancer's phenotypic guise against itself: targeting ectopically expressed peptide G-protein coupled
Mahjabin Khan1, Tao Huang1, Cheng-Yuan Lin1,2
1Laboratory of Brain-Gut Research, School of Chinese Medicine, Hong Kong Baptist University, HKSAR, Kowloon Tong, P.R. China.
Abstract:
Lung cancer, claiming millions of lives annually, has the highest mortality rate worldwide. This advocates the development of novel cancer therapies that are highly toxic for cancer cells but negligibly toxic for healthy cells. One of the effective treatments is targeting overexpressed surface receptors of cancer cells with receptor-specific drugs. The receptors-in-focus in the current review are the G-protein coupled receptors (GPCRs), which are often overexpressed in various types of tumors. The peptide subfamily of GPCRs is the pivot of the current article owing to the high affinity and specificity to and of their cognate peptide ligands, and the proven efficacy of peptide-based therapeutics. The article summarizes various ectopically expressed peptide GPCRs in lung cancer, namely, Cholecystokinin-B/Gastrin receptor, the Bombesin receptor family, Bradykinin B1 and B2 receptors, Arginine vasopressin receptors 1a, 1b and 2, and the Somatostatin receptor type 2. The autocrine growth and pro-proliferative pathways they mediate, and the distinct tumor-inhibitory effects of somatostatin receptors are then discussed. The next section covers how these pathways may be influenced or 'corrected' through therapeutics (involving agonists and antagonists) targeting the overexpressed peptide GPCRs. The review proceeds on to Nano-scaled delivery platforms, which enclose chemotherapeutic agents and are decorated with peptide ligands on their external surface, as an effective means of targeting cancer cells. We conclude that targeting these overexpressed peptide GPCRs is potentially evolving as a highly promising form of lung cancer therapy.
Insights
Targeting overexpressed peptide G-protein coupled receptors (GPCRs) in lung cancer offers a promising therapeutic strategy. Novel treatments, including peptide-ligand decorated nanodelivery systems, show potential for improved lung cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Lung cancer has the highest global mortality rate, necessitating novel, targeted therapies.
- Overexpressed G-protein coupled receptors (GPCRs) on cancer cells present therapeutic targets.
- The peptide subfamily of GPCRs is crucial due to high ligand affinity and proven efficacy of peptide therapeutics.
Purpose of the Study:
- To review ectopically expressed peptide GPCRs in lung cancer.
- To discuss their role in tumor growth and potential therapeutic interventions.
- To explore nano-scaled delivery platforms for targeted lung cancer treatment.
Main Methods:
- Literature review of peptide GPCRs in lung cancer.
- Analysis of autocrine growth pathways mediated by these receptors.
- Examination of therapeutic strategies including agonists, antagonists, and nanodelivery systems.
Main Results:
- Identified key peptide GPCRs in lung cancer: Cholecystokinin-B/Gastrin, Bombesin receptor family, Bradykinin B1/B2, Arginine vasopressin 1a/1b/2, and Somatostatin receptor type 2.
- Discussed the pro-proliferative roles of these receptors and tumor-inhibitory effects of somatostatin receptors.
- Highlighted the potential of nano-scaled platforms for targeted drug delivery.
Conclusions:
- Targeting overexpressed peptide GPCRs is a promising avenue for lung cancer therapy.
- Therapeutic modulation of these receptors, combined with advanced delivery systems, offers a novel treatment strategy.
- Further research into these targeted approaches could significantly improve lung cancer patient outcomes.
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