Gutiérrez-Rebolledo Gabriel Alfonso, Galar-Martínez Marcela, García-Rodríguez Rosa Virginia, Chamorro-Cevallos Germán A, Hernández-Reyes Ana Gabriela, Martínez-Galero Elizdath
1 Department of Pharmacy, ENCB-IPN, Zacatenco Unity of Professional Studies, Del. GAM, Mexico City, Mexico.
2 Unity of Support Services for Analytical Resolution (SARA), University of Veracruz , Xalapa, Mexico .
J Med Food. 2015 Aug;18(8):865-71. doi: 10.1089/jmf.2014.0117. Epub 2015 Jan 19.
One of the major mechanisms in the pathogenesis of chronic inflammation is the excessive production of reactive oxygen and reactive nitrogen species, and therefore, oxidative stress. Spirulina (Arthrospira) maxima has marked antioxidant activity in vivo and in vitro, as well as anti-inflammatory activity in certain experimental models, the latter activity being mediated probably by the antioxidant activity of this cyanobacterium. In the present study, chronic inflammation was induced through injection of Freund's complete adjuvant (CFA) in rats treated daily with Spirulina (Arthrospira) maxima for 2 weeks beginning on day 14. Joint diameter, body temperature, and motor capacity were assessed each week. On days 0 and 28, total and differential leukocyte counts and serum oxidative damage were determined, the latter by assessing lipid peroxidation and protein carbonyl content. At the end of the study, oxidative damage to joints was likewise evaluated. Results show that S. maxima favors increased mobility, as well as body temperature regulation, and a number of circulating leukocytes, lymphocytes, and monocytes in specimens with CFA-induced chronic inflammation and also protects against oxidative damage in joint tissue as well as serum. In conclusion, the protection afforded by S. maxima against development of chronic inflammation is due to its antioxidant activity.
慢性炎症发病机制的主要机制之一是活性氧和活性氮物质的过度产生,进而导致氧化应激。极大螺旋藻(钝顶螺旋藻)在体内和体外均具有显著的抗氧化活性,并且在某些实验模型中具有抗炎活性,后者的活性可能由这种蓝细菌的抗氧化活性介导。在本研究中,从第14天开始,对每天用极大螺旋藻(钝顶螺旋藻)处理2周的大鼠注射弗氏完全佐剂(CFA)以诱导慢性炎症。每周评估关节直径、体温和运动能力。在第0天和第28天,测定白细胞总数和分类计数以及血清氧化损伤,后者通过评估脂质过氧化和蛋白质羰基含量来确定。在研究结束时,同样评估关节的氧化损伤。结果表明,极大螺旋藻有利于提高CFA诱导的慢性炎症标本的活动能力以及体温调节能力,并增加一些循环白细胞、淋巴细胞和单核细胞的数量,还能保护关节组织和血清免受氧化损伤。总之,极大螺旋藻对慢性炎症发展的保护作用归因于其抗氧化活性。