Microalgae and exercise: from molecular mechanisms and brain health to clinical perspectives in the context of 3P medicine.

IF 5.9 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
The EPMA journal Pub Date : 2025-03-26 eCollection Date: 2025-06-01 DOI:10.1007/s13167-025-00405-8
Xuanyu Bo
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引用次数: 0

Abstract

Microalgae are emerging as innovative bioresources with diverse therapeutic applications, particularly in cardiovascular health, neuroprotection, anti-inflammatory, and antioxidant responses. These bioactive compounds effectively reduce inflammatory mediators, mitigate oxidative stress, and support mitochondrial health-critical factors in exercise performance, recovery, and chronic disease management. Notably, microalgae such as Spirulina and Chlorella exhibit promising biological activities in preclinical and limited clinical studies, including anti-inflammatory and neuroprotective effects. However, large-scale, randomized controlled trials (RCTs) remain scarce, limiting their clinical translation. Although preliminary evidence suggests potential benefits for sports performance, oxidative stress reduction, and cognitive function, most studies are small-scale, preclinical, or observational. Large, well-powered RCTs are needed to confirm their efficacy and safety. Within the framework of Predictive, Preventive, and Personalized Medicine (PPPM/3PM), this review explores microalgae's potential in predictive diagnostics, targeted prevention, and individualized supplementation strategies. Despite promising findings, clinical application requires a cautious approach due to insufficient high-quality trials supporting microalgae-based interventions in medical practice. Future research should prioritize RCTs, pharmacokinetic studies, and long-term safety assessments to establish evidence-based guidelines for their use in health and disease management.

微藻与运动:从分子机制和脑健康到3P医学背景下的临床观点。
微藻是一种创新的生物资源,具有多种治疗应用,特别是在心血管健康、神经保护、抗炎和抗氧化反应方面。这些生物活性化合物有效地减少炎症介质,减轻氧化应激,并支持线粒体健康关键因素在运动表现,恢复和慢性疾病管理。值得注意的是,螺旋藻和小球藻等微藻在临床前和有限的临床研究中表现出了良好的生物活性,包括抗炎和神经保护作用。然而,大规模的随机对照试验(rct)仍然很少,限制了它们的临床转化。虽然初步证据表明对运动表现、氧化应激减少和认知功能有潜在的益处,但大多数研究都是小规模的、临床前的或观察性的。需要大规模、高强度的随机对照试验来证实其有效性和安全性。在预测、预防和个性化医学(PPPM/3PM)的框架下,本文探讨了微藻在预测诊断、针对性预防和个性化补充策略方面的潜力。尽管有很好的发现,临床应用需要谨慎的态度,因为在医疗实践中支持基于微藻的干预措施的高质量试验不足。未来的研究应优先考虑随机对照试验、药代动力学研究和长期安全性评估,为其在健康和疾病管理中的应用建立循证指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
12.50
自引率
0.00%
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