高生物利用度姜黄素PhytosomeTM制剂对gmap - il6小鼠视网膜结构和神经胶质反应性的影响

Víctor Pérez-Fernández, Akshaya Lakshmi Thananjeyan, Faheem Ullah, Gerald Münch, Morven Cameron, Erika Gyengesi
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引用次数: 0

摘要

视网膜不受控制的慢性炎症会扰乱视网膜结构和功能,导致视觉功能受损。在小鼠慢性神经炎症模型(gmap - il6)中,我们首次研究了慢性胶质细胞激活对视网膜小胶质细胞数量和结构的影响。此外,我们测试了姜黄素光敏体TM制剂,提高了生物利用度,以研究细胞因子抑制抗炎药对视网膜结构的影响。将姜黄素植物体TM喂给3个月大的gmap - il6小鼠4周,并与未治疗的gmap - il6小鼠和对照组野生型小鼠进行比较。采用免疫组化和细胞重建技术,采用视网膜全片和切片对视网膜小胶质细胞数量、形态和神经元数量进行了表征。GFAP-IL6小鼠显示iba1标记的单核吞噬细胞(包括小胶质细胞)显著增加,胶质细胞形态发生改变。与野生型小鼠相比,这导致锥体密度降低,视网膜层变薄。姜黄素光敏体TM治疗有助于降低小胶质细胞密度,与对照饮食相比,显著降低体细胞和细胞大小,并防止视网膜层变薄。本研究首次描述了慢性视网膜炎症对gmap - il6小鼠的影响,以及增强的生物可利用姜黄素光敏体TM显著降低小胶质细胞密度和防止神经元丢失的治疗益处。这些数据表明,姜黄素可以作为传统治疗方法的补充治疗,以减少各种视网膜疾病的相关视网膜炎症。
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The effects of a highly bioavailable curcumin PhytosomeTM preparation on the retinal architecture and glial reactivity in the GFAP-IL6 mice
Uncontrolled, chronic inflammation in the retina can disturb retinal structure and function leading to impaired visual function. For the first time, in a mouse model of chronic neuroinflammation (GFAP-IL6), we investigated the impact of chronic glial activation on the retinal microglia population and structure. In addition, we tested a curcumin Phytosome TM preparation with enhanced bioavailability to investigate the effects of a cytokine-suppressing anti-inflammatory drug on retinal architecture. Curcumin Phytosome TM was fed to 3-month old GFAP-IL6 mice for 4 weeks and compared to their untreated GFAP-IL6 counterparts as well as wild type mice on control diet. Microglial numbers and morphology together with neuronal numbers were characterized using immunohistochemistry and cell reconstruction in the retina, using retinal wholemount and slices. GFAP-IL6 mice showed a significant increase in Iba1-labelled mononuclear phagocytes, including microglia, and displayed altered glial morphology. This resulted in a reduction in cone density and a thinning of the retinal layers compared to wild type mice. Curcumin Phytosome TM treatment contributed to decreased microglial density, significantly decreasing both soma and cell size compared to control diet, as well as preventing the thinning of the retinal layers. This study is the first to characterize the impact of chronic retinal inflammation in the GFAP-IL6 mouse and the therapeutic benefit of enhanced bioavailable curcumin Phytosome TM to significantly reduce microglia density and prevent neuronal loss. These data suggest that curcumin could be used as a complementary therapy alongside traditional treatments to reduce associated retinal inflammation in a variety of retinal diseases.
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