Instituto de Biología y Genética Molecular, Universidad de Valladolid-CSIC, 47003 Valladolid, Spain.
Instituto de Productos Naturales y Agrobiología (IPNA-CSIC), Avenida Astrofísico F. Sánchez, 3, 38206 La Laguna, Tenerife, Spain.
Mar Drugs. 2020 Jul 22;18(8):378. doi: 10.3390/md18080378.
Neurodegenerative diseases are age-related disorders caused by progressive neuronal death in different regions of the nervous system. Neuroinflammation, modulated by glial cells, is a crucial event during the neurodegenerative process; consequently, there is an urgency to find new therapeutic products with anti-glioinflammatory properties. Five new furanocembranolides (-), along with leptolide, were isolated from two different extracts of sp., and compound was obtained from chemical transformation of leptolide. Their structures were determined based on spectroscopic evidence. These seven furanocembranolides were screened in vitro by measuring their ability to modulate interleukin-1β (IL-1β) production by microglial BV2 cells after LPS (lipopolysaccharide) stimulation. Leptolide and compounds , and exhibited clear anti-inflammatory effects on microglial cells, while compound presented a pro-inflammatory outcome. The in vitro results prompted us to assess anti-glioinflammatory effects of leptolide in vivo in a high-fat diet-induced obese mouse model. Interestingly, leptolide treatment ameliorated both microgliosis and astrogliosis in this animal model. Taken together, our results reveal a promising direct biological effect of furanocembranolides on microglial cells as bioactive anti-inflammatory molecules. Among them, leptolide provides us a feasible therapeutic approach to treat neuroinflammation concomitant with metabolic impairment.
神经退行性疾病是由神经系统不同区域的神经元进行性死亡引起的与年龄相关的疾病。神经炎症是神经退行性过程中的一个关键事件,受神经胶质细胞调节;因此,迫切需要寻找具有抗神经炎症特性的新治疗产品。从两种不同的 sp.提取物中分离出了五个新的呋喃cembranolide(-),以及leptolide,化合物 是从 leptolide 的化学转化中获得的。根据光谱证据确定了它们的结构。这七种呋喃cembranolide 通过测量它们在 LPS(脂多糖)刺激后调节小胶质细胞 BV2 细胞中白细胞介素 1β(IL-1β)产生的能力,在体外进行了筛选。Leptolide 以及化合物 、 和 对小胶质细胞表现出明显的抗炎作用,而化合物 则呈现出促炎作用。体外结果促使我们在高脂肪饮食诱导的肥胖小鼠模型中评估 leptolide 的体内抗神经炎症作用。有趣的是,leptolide 治疗改善了该动物模型中的小胶质细胞增生和星形胶质细胞增生。总之,我们的结果揭示了呋喃cembranolide 对小胶质细胞具有有希望的直接生物学作用,作为具有生物活性的抗炎分子。其中,leptolide 为我们提供了一种可行的治疗方法,可治疗伴随代谢损伤的神经炎症。