薇甘菊植物活性成分的纳米立方体:LC-MS-NMR、抗微生物以及对抗神经病学和抗炎机制的见解。

IF 2.5 3区 医学 Q3 CHEMISTRY, MEDICINAL
Karim M. Raafat , Ibrahim A. Abdelwahab , Sally A. El-Zahaby
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引用次数: 0

摘要

睡茄(Withania somnifera)在改善神经活性疾病方面的安全性由来已久。目前的研究旨在探索睡茄的植物活性原理,即抗微生物、抗神经病和抗炎活性,并利用纳米立方体利用其作用机制来改变这些活性。利用生物导向分馏技术,采用 LC-MS-NMR 在线技术和糖尿病、神经病变和炎症生物模型,确定了最具植物活性的化合物。此外,还对体外抗菌活性进行了监测。评估了 HbA1c、体内抗氧化剂(血清催化酶、TBARS 和 GSH)、血清胰岛素和促炎血清细胞因子(TNF alpha、IL-6 和 IL-10)的水平,以确定抗神经病变和抗炎机制。纳米立方体制剂(CUB 1-3)被用来提高索姆尼佛最有效化合物的功效。索米非拉有十个主要峰值:凝结素 Q(10.2%)、二氢岩白菜素内酯 A(2.4%)、二氢岩白菜素 D(1.8%)、physagulin D(7.6 %)、黄葵苷 V(2.3 %)、黄葵内酯 A(WDA,10.3 %)、黄葵素 A(4.9 %)、黄葵素 D(7.7 %)、黄葵酮 9(9.9 %)、黄葵内酯 D(4.8 %)。利用 LC-MS-NMR 技术进行的生物导向分馏技术证明,睡茄中最具植物活性的化合物是睡茄内酯 A(WDA)。与 WDA 相比,后者显示出更好的效果,这可能是由于 Ws 中含有其他有效化合物。不过,CUB 3(WDA 纳米立方体分散体)比 Ws 和 WDA 显示出更突出的抗糖尿病、抗神经病、抗炎和抗菌潜力。因此,CUB 3 改变了 WDA 的活性,提高了其疗效。HbA1c 水平的正常化、胰岛素分泌潜能的增加以及氧化应激的改善可能是 Ws、WDA 和 CUB 3 抗糖尿病神经病变的基本机制。此外,Ws、WDA 和 CUB 1-3 的抗炎机制可能是由于改善了促炎血清细胞因子(TNF alpha 和 IL-six 水平下降,IL-ten 水平上升)。因此,CUB 3 可能是一种强有力的工具,可增强睡茄作为口服给药系统的活性,并提高其抗击神经病变和炎症的功效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nano-cubosomes of the phyto-active principle in Withania somnifera: LC-MS-NMR, anti-microbial, and insights of the anti-neuropathic and anti-inflammatory mechanism

Nano-cubosomes of the phyto-active principle in Withania somnifera: LC-MS-NMR, anti-microbial, and insights of the anti-neuropathic and anti-inflammatory mechanism

Withania somnifera (W. somnifera) has a long history of safety in the amelioration of neuro-active ailments. The current study aims to explore Withania somnifera phyto-active principle anti-microbial, ant-neuropathic, and anti-inflammatory activities, and to modify these activities utilizing nano-cubosomes exploiting their mechanisms of action. Bio-guided fractionation technique was utilized, to identify the most phyto-active compound, using LC-MS-NMR online technique and biological models of diabetes, neuropathy, and inflammation. In-vitro antibacterial activity was also monitored. The HbA1c, in-vivo antioxidant (serum-catalase, TBARS, and GSH), serum insulin, and pro-inflammatory serum cytokines (TNF alpha, IL-six, and IL-ten) levels have been assessed to establish the anti-neuropathic and anti-inflammatory mechanisms. The nano-cubosomal formulations (CUB 1–3) were utilized to improve the W. somnifera most active compound efficacy. W. somnifera has shown ten major peaks; coagulin Q (10.2 %), dihydrowithanolide A (2.4 %), dihydrowithaferin D (1.8 %), physagulin D (7.6 %), withanoside V (2.3 %), withanolide A (WDA, 10.3 %), withafrin A (4.9 %), withaferin D (7.7 %), withanone 9 (9.9 %), withanolide D (4.8 %). The bio-guided fractionation technique utilizing LC-MS-NMR technique has proved that withanolide A (WDA) is the most phyto-active compound in W. somnifera. The latter has shown better results than WDA, which might be due to other effective compounds in Ws. However, CUB 3 (WDA nano-cubosomes dispersion) has shown more prominent anti-diabetic, anti-neuropathic, anti-inflammatory, and anti-bacterial potentials than Ws and WDA. Thus, CUB 3 modified WDA activity, and improved its efficacy. The normalization of HbA1c levels, increased insulin secretagogue potential, and the amelioration of the oxidative-stress may be the underlying Ws, WDA, and CUB 3 antidiabetic neuropathy mechanism. Moreover, the Ws, WDA, and CUB 1–3 anti-inflammatory mechanism might be due to the amelioration of the pro-inflammatory serum cytokines (decreasing TNF alpha and IL-six levels and increasing IL-ten). Thus, CUB 3 might be a powerful tool in augmenting Withania somnifera activity as an oral drug-delivery system and improving its efficacy against neuropathy and inflammation.

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来源期刊
Fitoterapia
Fitoterapia 医学-药学
CiteScore
5.80
自引率
2.90%
发文量
198
审稿时长
1.5 months
期刊介绍: Fitoterapia is a Journal dedicated to medicinal plants and to bioactive natural products of plant origin. It publishes original contributions in seven major areas: 1. Characterization of active ingredients of medicinal plants 2. Development of standardization method for bioactive plant extracts and natural products 3. Identification of bioactivity in plant extracts 4. Identification of targets and mechanism of activity of plant extracts 5. Production and genomic characterization of medicinal plants biomass 6. Chemistry and biochemistry of bioactive natural products of plant origin 7. Critical reviews of the historical, clinical and legal status of medicinal plants, and accounts on topical issues.
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