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Impact of Astaxanthin on Diabetes Pathogenesis and Chronic Complications
Rebecca Landon1, Virginie Gueguen2, Hervé Petite1
1CNRS UMR7052-INSERM U1271, Laboratory of Osteoarticular Biology, Bioengineering and Bioimaging, Paris Diderot University, 10 av.de Verdun, 75010 Paris, France.
Abstract:
Oxidative stress (OS) plays a pivotal role in diabetes mellitus (DM) onset, progression, and chronic complications. Hyperglycemia-induced reactive oxygen species (ROS) have been shown to reduce insulin secretion from pancreatic β-cells, to impair insulin sensitivity and signaling in insulin-responsive tissues, and to alter endothelial cells function in both type 1 and type 2 DM. As a powerful antioxidant without side effects, astaxanthin (ASX), a xanthophyll carotenoid, has been suggested to contribute to the prevention and treatment of DM-associated pathologies. ASX reduces inflammation, OS, and apoptosis by regulating different OS pathways though the exact mechanism remains elusive. Based on several studies conducted on type 1 and type 2 DM animal models, orally or parenterally administrated ASX improves insulin resistance and insulin secretion; reduces hyperglycemia; and exerts protective effects against retinopathy, nephropathy, and neuropathy. However, more experimental support is needed to define conditions for its use. Moreover, its efficacy in diabetic patients is poorly explored. In the present review, we aimed to identify the up-to-date biological effects and underlying mechanisms of ASX on the ROS-induced DM-associated metabolic disorders and subsequent complications. The development of an in-depth research to better understand the biological mechanisms involved and to identify the most effective ASX dosage and route of administration is deemed necessary.
Insights
Astaxanthin (ASX) shows promise in managing diabetes mellitus (DM) by combating oxidative stress and improving insulin function. Further research is needed to confirm its efficacy and optimal use in diabetic patients.
Area of Science:
- Biochemistry
- Endocrinology
- Pharmacology
Background:
- Oxidative stress (OS) and reactive oxygen species (ROS) are key factors in diabetes mellitus (DM) development and complications.
- Hyperglycemia exacerbates OS, negatively impacting pancreatic beta-cells and insulin sensitivity.
- Astaxanthin (ASX), a potent antioxidant, is being investigated for its therapeutic potential in DM.
Purpose of the Study:
- To review the biological effects and mechanisms of astaxanthin (ASX) in mitigating ROS-induced metabolic disorders associated with DM.
- To explore ASX's potential in preventing and treating DM-related complications.
Main Methods:
- Review of existing studies on type 1 and type 2 DM animal models.
- Analysis of ASX administration routes (oral and parenteral) and their effects.
- Examination of ASX's impact on OS pathways and cellular functions.
Main Results:
- ASX administration in animal models improved insulin resistance and secretion.
- ASX reduced hyperglycemia and demonstrated protective effects against DM-associated retinopathy, nephropathy, and neuropathy.
- ASX was shown to reduce inflammation, OS, and apoptosis.
Conclusions:
- Astaxanthin (ASX) exhibits potential therapeutic benefits for diabetes mellitus (DM) by addressing oxidative stress and improving metabolic parameters.
- More research is required to elucidate the precise mechanisms of ASX and determine optimal dosage and administration for clinical use in diabetic patients.
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