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首页> 外文期刊>Chinese Medicine >Niosomes of active Fumaria officinalis phytochemicals: antidiabetic, antineuropathic, anti-inflammatory, and possible mechanisms of action
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Niosomes of active Fumaria officinalis phytochemicals: antidiabetic, antineuropathic, anti-inflammatory, and possible mechanisms of action

机译:活性阵亡型植物植物植物植物植物植物化学症:抗糖尿病,抗癌性,抗炎和可能的行动机制

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Fumaria officinalis (F. officinalis, FO) has been used in many inflammatory and painful-ailments. The main aim of this work is to perform an in-depth bio-guided phytochemical investigation of F. officinalis by identifying its main-active ingredients. Optimizing pharmacokinetics via niosomal-preparation will also be done to enhance their in vivo antineuropathic and anti-inflammatory potentials, and to explore their possible-mechanism of actions. Bio-guided phytochemical-investigations including fractionation, isolation, chromatographic-standardization, and identification of the most active compound(s) were done. Optimized niosomal formulations of F. officinalis most active compound(s) were prepared and characterized. An in vivo biological-evaluation was done exploring acute, subchronic, and chronic alloxan-induced diabetes and diabetic-neuropathy, and carrageenan-induced acute inflammatory-pain and chronic-inflammatory edema. In-vivo bio-guided fractionation and chromatographic phytochemical-analysis showed that the alkaloid-rich fraction (ARF) is the most-active fraction. ARF contained two major alkaloids; Stylopine 48.3%, and Sanguinarine 51.6%. In-vitro optimization, analytical, and in vivo biological-investigations showed that the optimized-niosome, Nio-2, was the most optimized niosomal formulation. Nio-2 had particle size 96.56?±?1.87?nm and worked by improving the pharmacokinetic-properties of ARF developing adequate entrapment-efficiency, rapid-degradation, and acceptable stability in simulated GI conditions. FO, ARF, and Nio 2 were the most potent antidiabetic and anti-inflammatory compounds. The reduction of the pro-inflammatory tumor necrosis factor-alpha (TNF-alpha) and Interleukin 6 (IL-6), and elevation the anti-inflammatory factor IL-10 levels and amelioration of the in vivo oxidative-stress might be the main-mechanism responsible for their antinociceptive and anti-inflammatory activities. Fumaria officinalis most-active fraction was identified as ARF. This study offers an efficient and novel practical oral formulation ameliorating various inflammatory conditions and diabetic complications especially neuropathic-pain.
机译:Fumaria Officinalis(F. Officinalis,Fo)已被用于许多炎症和痛苦的疾病。这项工作的主要目的是通过鉴定其主活性成分来对F. Officinalis进行深入的生物导向性研究。通过憩室制剂优化药代动力学也将进行以增强其体内抗脑病和抗炎潜力,并探讨其可能的行动机制。生物引导的植物化学研究包括分级,分离,色谱标准化和最鉴定最活性化合物的分馏。制备和表征F. Officinalis大多数活性化合物的优化憩室配方。体内生物学评价是探索急性,次级和慢性阿洛昔兰诱导的糖尿病和糖尿病 - 神经病变,并且角叉菜胶诱导的急性炎症 - 疼痛和慢性炎症水肿。体内生物导向分级和色谱植物化学分析表明,富含生物碱的馏分(ARF)是最具活性的级分。 ARF含有两种主要生物碱;风格蓬松48.3%,血红素素51.6%。体外优化,分析和体内生物研究表明,优化 - 定期NiO-2是最优化的憩室制剂。 NiO-2具有粒径96.56?±1.87Ω·Nm,并通过改善ARF的药代动力学性能,在模拟GI条件下提高ARF的累积效率,快速降解和可接受的稳定性。 FO,ARF和NIO 2是最有效的抗炎症和抗炎化合物。减少促炎肿瘤坏死因子-α(TNF-α)和白细胞介素6(IL-6),并升高抗炎因子IL-10水平和体内氧化 - 压力的改善可能是主要的 - 负责其抗炎和抗炎活动的机制。 Mumaria Officinalis最具活跃的分数被鉴定为ARF。本研究提供了一种有效和新颖的实际口服制剂,改善了各种炎症病症和糖尿病并发症,尤其是神经性疼痛。

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