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 (1-5), along with leptolide, were isolated from two different extracts of Leptogorgia sp., and compound 6 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 3, 4 and 6 exhibited clear anti-inflammatory effects on microglial cells, while compound 2 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.
Modulation of Glial Responses by Furanocembranolides: Leptolide Diminishes Microglial Inflammation in Vitro and Ameliorates Gliosis In Vivo in a Mouse Model of Obesity and Insulin Resistance.
呋喃塞布拉内酯对神经胶质反应的调节:在小鼠肥胖和胰岛素抵抗模型中,Leptolide 可减轻体外小胶质细胞炎症并改善体内神经胶质增生
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作者:Corraliza-Gómez Miriam, Gallardo Amalia B, DÃaz-Marrero Ana R, de la Rosa José M, D'Croz Luis, Darias José, Arranz Eduardo, Cózar-Castellano Irene, Ganfornina MarÃa D, Cueto Mercedes
| 期刊: | Marine Drugs | 影响因子: | 5.400 |
| 时间: | 2020 | 起止号: | 2020 Jul 22; 18(8):378 |
| doi: | 10.3390/md18080378 | 种属: | Mouse |
| 研究方向: | 神经科学 | ||
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