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Antioxidant-Rich Nutraceutical as a Therapeutic Strategy for Sickle Cell Disease
Abdulwasiu Ibrahim1, Suleiman Alhaji Muhammad1
1Department of Biochemistry and Molecular Biology, Usmanu Danfodiyo University, Sokoto, Nigeria.
Insights
Antioxidant-rich nutraceuticals show promise for managing sickle cell disease (SCD) by combating oxidative stress and reducing vaso-occlusive crises. These natural compounds may improve red blood cell health and lifespan in SCD patients.
Area of Science:
- Biochemistry
- Genetics
- Pharmacology
Background:
- Sickle cell disease (SCD) is an inherited blood disorder characterized by abnormal hemoglobin polymerization and red blood cell sickling.
- Oxidative stress is a key factor in SCD pathophysiology, leading to hemolysis and vaso-occlusive events.
- Current SCD therapies face challenges, necessitating exploration of novel treatment strategies.
Approach:
- This review examines the therapeutic potential of antioxidant-rich nutraceuticals for SCD management.
- Investigates the role of bioactive compounds from plants in preventing oxidative damage and hemolysis.
- Discusses the mechanisms by which antioxidants mitigate SCD symptoms.
Key Points:
- Nutraceuticals contain antioxidants like alkaloids, polyphenols, vitamins, and minerals.
- These compounds scavenge free radicals, preventing hemoglobin damage and hemolysis.
- Antioxidant-rich nutraceuticals may reduce the frequency and severity of vaso-occlusive crises.
Conclusions:
- Antioxidant nutraceuticals offer a promising avenue for SCD treatment and management.
- Further research is needed to fully elucidate their efficacy and optimize their use.
- Integrating nutraceuticals could complement existing therapies for improved patient outcomes.
Abstract:
Sickle cell disease (SCD) is a genetically inherited disease in which the "SS" individual possesses two copies of the abnormal beta-globin gene. This disease is one of the most dominant genetic diseases in the world. SCD is marked by the propensity of red cell hemoglobin to polymerize and distort the red cell from a biconcave disk shape into a sickle shape, resulting in a typical vaso-occlusive episode and accelerated hemolysis. Plants are rich sources of bioactive compounds that are promising anti-sickling agents to scavenge free radicals, thereby ensuring oxidative balance. The current review highlights the potential therapeutic benefits of antioxidant-rich nutraceutical in the treatment and management of sickle cell disease. The anti-sickling potential of nutraceutical is attributed to the presence of antioxidant bioactive chemicals such as alkaloids, polyphenols, vitamins, and minerals, which acts as scavengers of free radicals that prevent oxidative damage of the hemoglobin and prevent hemolysis, facilitating longer erythrocyte lifespan. The challenges of current therapies for SCD and future directions are also discussed.KEY TEACHING POINTSSickle cell disease is a genetically inherited disease in which SS individuals possess two copies of the abnormal beta-globin gene.Oxidative stress contributes to the pathophysiology of secondary dysfunction in sickle cell patients.Antioxidants can play a vital role in maintaining a balance between oxidant and antioxidant defense systems.Nutraceutical rich in antioxidants such as alkaloids, polyphenols, vitamins, and minerals is potential therapeutic agents for sickle cell disease.An antioxidant-rich nutraceutical may act to reduce vaso-occlusive crises.
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