Kamel Mohamed, Aleya Sami, Louzon Maxime, Aleya Lotfi
Department of Medicine and Infectious Diseases, Faculty of Veterinary Medicine, Cairo University, Giza, 11221, Egypt.
Faculty of Medicine, Université de Bourgogne Franche-Comté, Hauts-du-Chazal, 25030, Besançon, France.
Arch Toxicol. 2025 Jul 2. doi: 10.1007/s00204-025-04113-0.
Lead toxicity remains a significant global health challenge, causing cancers and profound effects on the neurological, hepatic, cardiovascular, renal, skeletal, reproductive, and hematologic systems. Despite ongoing public health efforts, vulnerable populations, particularly children and those in lead-related occupations, continue to suffer from its impacts. This review article presents Spirulina platensis, a nutrient-rich cyanobacterium, as a promising dietary supplement with potential protective effects against lead toxicity. Spirulina's multifaceted mechanisms of action, including antioxidant properties, heavy metal chelation, anti-inflammatory effects, and immunomodulation, position it as a viable therapeutic option for mitigating lead-induced damage. A comprehensive evaluation of current in vitro and in vivo studies highlights Spirulina's ability to reduce oxidative stress and improve organ function in lead-exposed models. While the potential benefits of Spirulina are evident, challenges, such as variability in product quality and need for standardized protocols, must be addressed. This review emphasizes the importance of further research to explore the long-term effects of Spirulina supplementation and its integration into public health strategies aimed at reducing lead toxicity. Ultimately, Spirulina platensis represents a natural intervention that could enhance detoxification efforts and improve health outcomes for individuals affected by lead exposure.
铅中毒仍然是一项重大的全球健康挑战,会引发癌症,并对神经、肝脏、心血管、肾脏、骨骼、生殖和血液系统产生深远影响。尽管公共卫生一直在努力,但弱势群体,尤其是儿童和从事与铅相关职业的人,仍在遭受其影响。这篇综述文章介绍了富含营养的蓝藻——钝顶螺旋藻,它是一种很有前景的膳食补充剂,对铅中毒可能具有保护作用。螺旋藻具有多方面的作用机制,包括抗氧化特性、重金属螯合、抗炎作用和免疫调节,使其成为减轻铅诱导损伤的可行治疗选择。对当前体外和体内研究的全面评估突出了螺旋藻在铅暴露模型中降低氧化应激和改善器官功能的能力。虽然螺旋藻的潜在益处显而易见,但产品质量的变异性和标准化方案的需求等挑战必须得到解决。这篇综述强调了进一步研究的重要性,以探索补充螺旋藻的长期影响以及将其纳入旨在降低铅中毒的公共卫生策略。最终,钝顶螺旋藻是一种天然干预措施,可以加强排毒工作,并改善受铅暴露影响个体的健康状况。