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Published on: August 2, 2022
Antioxidants in brain tumors: current therapeutic significance and future prospects
Xuchen Qi1,2, Saurabh Kumar Jha3,4,5, Niraj Kumar Jha6
1Department of Neurosurgery, Shaoxing People's Hospital, Shaoxing, 312000, Zhejiang, China.
Abstract:
Brain cancer is regarded among the deadliest forms of cancer worldwide. The distinct tumor microenvironment and inherent characteristics of brain tumor cells virtually render them resistant to the majority of conventional and advanced therapies. Oxidative stress (OS) is a key disruptor of normal brain homeostasis and is involved in carcinogenesis of different forms of brain cancers. Thus, antioxidants may inhibit tumorigenesis by preventing OS induced by various oncogenic factors. Antioxidants are hypothesized to inhibit cancer initiation by endorsing DNA repair and suppressing cancer progression by creating an energy crisis for preneoplastic cells, resulting in antiproliferative effects. These effects are referred to as chemopreventive effects mediated by an antioxidant mechanism. In addition, antioxidants minimize chemotherapy-induced nonspecific organ toxicity and prolong survival. Antioxidants also support the prooxidant chemistry that demonstrate chemotherapeutic potential, particularly at high or pharmacological doses and trigger OS by promoting free radical production, which is essential for activating cell death pathways. A growing body of evidence also revealed the roles of exogenous antioxidants as adjuvants and their ability to reverse chemoresistance. In this review, we explain the influences of different exogenous and endogenous antioxidants on brain cancers with reference to their chemopreventive and chemotherapeutic roles. The role of antioxidants on metabolic reprogramming and their influence on downstream signaling events induced by tumor suppressor gene mutations are critically discussed. Finally, the review hypothesized that both pro- and antioxidant roles are involved in the anticancer mechanisms of the antioxidant molecules by killing neoplastic cells and inhibiting tumor recurrence followed by conventional cancer treatments. The requirements of pro- and antioxidant effects of exogenous antioxidants in brain tumor treatment under different conditions are critically discussed along with the reasons behind the conflicting outcomes in different reports. Finally, we also mention the influencing factors that regulate the pharmacology of the exogenous antioxidants in brain cancer treatment. In conclusion, to achieve consistent clinical outcomes with antioxidant treatments in brain cancers, rigorous mechanistic studies are required with respect to the types, forms, and stages of brain tumors. The concomitant treatment regimens also need adequate consideration.
Insights
Antioxidants show dual roles in brain cancer treatment, acting both to prevent cancer and aid chemotherapy. Further research is needed to optimize their use in clinical settings for better outcomes.
Area of Science:
- Neuro-oncology
- Biochemistry
- Cancer Biology
Background:
- Brain cancers are highly lethal due to resistant tumor microenvironments and cell characteristics.
- Oxidative stress (OS) is a critical factor in brain cancer development and progression.
- Antioxidants offer potential therapeutic strategies by modulating OS.
Purpose of the Study:
- To review the chemopreventive and chemotherapeutic roles of antioxidants in brain cancers.
- To discuss the influence of antioxidants on metabolic reprogramming and signaling pathways.
- To explore the dual pro- and antioxidant mechanisms of antioxidants in cancer treatment.
Main Methods:
- Literature review of exogenous and endogenous antioxidants in brain cancer.
- Analysis of antioxidant effects on oxidative stress, DNA repair, and cellular metabolism.
- Discussion of antioxidant roles in chemoprevention, chemotherapy, and chemoresistance reversal.
Main Results:
- Antioxidants can inhibit cancer initiation and progression by preventing OS and inducing antiproliferative effects.
- At pharmacological doses, antioxidants can promote OS, leading to cell death and exhibiting chemotherapeutic potential.
- Exogenous antioxidants may serve as adjuvants to reverse chemoresistance and minimize treatment toxicity.
Conclusions:
- Antioxidants possess both pro- and antioxidant properties crucial for killing cancer cells and preventing recurrence.
- Conflicting outcomes in studies highlight the need to understand the specific requirements for antioxidant effects in brain tumors.
- Rigorous mechanistic studies and consideration of tumor type, stage, and treatment regimens are essential for consistent clinical results.
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