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Retinoids in the treatment of glioma: a new perspective
1Department of Health Policy and Management, School of Health Sciences, College of Public Service, Jackson State University, Jackson, MS, USA.
Abstract:
Primary brain tumors are among the top ten causes of cancer-related deaths in the US. Malignant gliomas account for approximately 70% of the 22,500 new cases of malignant primary brain tumors diagnosed in adults each year and are associated with high morbidity and mortality. Despite optimal treatment, the prognosis for patients with gliomas remains poor. The use of retinoids (vitamin A and its congeners) in the treatment of certain tumors was originally based on the assumption that these conditions were associated with an underlying deficiency of vitamin A and that supplementation with pharmacological doses would correct the deficiency. Yet the results of retinoid treatment have been only modestly beneficial and usually short-lived. Studies also indicate that vitamin A excess and supplementation have pro-oxidant effects and are associated with increased risks of mortality from cancer and other diseases. The therapeutic role of vitamin A in cancer thus remains uncertain and a new perspective on the facts is needed. The modest and temporary benefits of retinoid treatment could result from a process of feedback inhibition, whereby exogenous retinoid temporarily inhibits the endogenous synthesis of these compounds. In fact, repeated and/or excessive exposure of the tissues to endogenous retinoic acid may contribute to carcinogenesis. Gliomas, in particular, may result from an imbalance in retinoid receptor expression initiated by environmental factors that increase the endogenous production of retinoic acid in glia. At the receptor level, it is proposed that this imbalance is characterized by excessive expression of retinoic acid receptor-α (RARα) and reduced expression of retinoic acid receptor-β (RARβ). This suggests a potential new treatment strategy for gliomas, possibly even at a late stage of the disease, ie, to combine the use of a RARα antagonist and a RARβ agonist. According to this hypothesis, the RARα antagonist would be expected to inhibit RARα-induced gliomas, while the RARβ agonist would suppress tumor growth and possibly contribute to the regeneration of normal glia.
Insights
Malignant gliomas, a deadly brain cancer, may be treated by targeting retinoid receptors. A new strategy suggests using a retinoic acid receptor-alpha antagonist and a retinoic acid receptor-beta agonist to suppress tumor growth.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Cancer Research
Background:
- Primary brain tumors are a leading cause of cancer death in the US, with malignant gliomas representing a significant portion and having a poor prognosis.
- Retinoid therapy for tumors, based on vitamin A, has shown limited and temporary benefits, with potential risks from excess supplementation.
- Existing research suggests retinoid therapy's modest effects may stem from feedback inhibition, and excessive retinoic acid could promote carcinogenesis.
Purpose of the Study:
- To explore a novel therapeutic strategy for gliomas by investigating the role of retinoid receptor imbalances.
- To propose a new treatment approach targeting specific retinoid receptors implicated in glioma development.
Main Methods:
- The study proposes a hypothesis based on existing research regarding retinoid metabolism and receptor expression in gliomas.
- It suggests analyzing the expression levels of retinoic acid receptor-alpha (RARα) and retinoic acid receptor-beta (RARβ) in glioma tissues.
- The proposed strategy involves using specific antagonists and agonists for these receptors.
Main Results:
- Gliomas may arise from an imbalance in retinoid receptor expression, specifically excessive RARα and reduced RARβ.
- This imbalance is potentially triggered by environmental factors increasing endogenous retinoic acid production in glia.
- The proposed therapeutic strategy targets this specific receptor imbalance.
Conclusions:
- A potential new treatment for gliomas involves combining a RARα antagonist with a RARβ agonist.
- This combination therapy could inhibit RARα-driven gliomas and suppress tumor growth.
- The approach may offer a therapeutic option even for late-stage gliomas and potentially aid in glia regeneration.
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