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Antioxidant Biomolecules and Their Potential for the Treatment of Difficult-to-Treat Depression and Conventional
María Eugenia Riveros1, Alba Ávila2, Koen Schruers3
1Centro de Fisiología Celular e Integrativa, Facultad de Medicina Clínica Alemana-Universidad del Desarrollo, Santiago 7710162, Chile.
Abstract:
Major depression is a devastating disease affecting an increasing number of people from a young age worldwide, a situation that is expected to be worsened by the COVID-19 pandemic. New approaches for the treatment of this disease are urgently needed since available treatments are not effective for all patients, take a long time to produce an effect, and are not well-tolerated in many cases; moreover, they are not safe for all patients. There is solid evidence showing that the antioxidant capacity is lower and the oxidative damage is higher in the brains of depressed patients as compared with healthy controls. Mitochondrial disfunction is associated with depression and other neuropsychiatric disorders, and this dysfunction can be an important source of oxidative damage. Additionally, neuroinflammation that is commonly present in the brain of depressive patients highly contributes to the generation of reactive oxygen species (ROS). There is evidence showing that pro-inflammatory diets can increase depression risk; on the contrary, an anti-inflammatory diet such as the Mediterranean diet can decrease it. Therefore, it is interesting to evaluate the possible role of plant-derived antioxidants in depression treatment and prevention as well as other biomolecules with high antioxidant and anti-inflammatory potential such as the molecules paracrinely secreted by mesenchymal stem cells. In this review, we evaluated the preclinical and clinical evidence showing the potential effects of different antioxidant and anti-inflammatory biomolecules as antidepressants, with a focus on difficult-to-treat depression and conventional treatment-resistant depression.
Insights
Antioxidant and anti-inflammatory biomolecules show promise for treating depression, especially treatment-resistant cases. This review explores their potential to combat oxidative stress and neuroinflammation linked to major depression.
Area of Science:
- Neuroscience
- Biochemistry
- Pharmacology
Background:
- Major depression is a growing global health concern, with current treatments often being ineffective, slow, or poorly tolerated.
- Depressed individuals exhibit reduced antioxidant capacity and increased oxidative damage in the brain.
- Mitochondrial dysfunction and neuroinflammation contribute to oxidative stress and are implicated in depression.
Purpose of the Study:
- To review preclinical and clinical evidence on the antidepressant potential of antioxidant and anti-inflammatory biomolecules.
- To focus on the efficacy of these biomolecules for difficult-to-treat and treatment-resistant depression.
- To explore the role of plant-derived antioxidants and mesenchymal stem cell-secreted molecules.
Main Methods:
- Systematic review of preclinical studies.
- Analysis of clinical trial data.
- Evaluation of evidence for antioxidant and anti-inflammatory compounds as antidepressants.
Main Results:
- Evidence suggests a link between oxidative stress, neuroinflammation, and depression.
- Anti-inflammatory diets, like the Mediterranean diet, may reduce depression risk.
- Various antioxidant and anti-inflammatory biomolecules demonstrate potential antidepressant effects.
Conclusions:
- Antioxidant and anti-inflammatory biomolecules represent a promising therapeutic avenue for major depression.
- These agents may offer novel treatment strategies, particularly for patients unresponsive to conventional therapies.
- Further research into plant-derived compounds and stem cell-secreted factors is warranted.
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