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采用 Box-Behnken 设计优化和开发抗糖尿病植物药。

Optimization and development of antidiabetic phytosomes by the Box-Behnken design.

机构信息

a Department of RIC , IKG Punjab Technical University , Kapurthala , India and.

b Chandigarh College of Pharmacy , Landran , India.

出版信息

J Liposome Res. 2018 Jun;28(2):161-172. doi: 10.1080/08982104.2017.1311913. Epub 2017 Apr 17.

Abstract

Researchers have extensively reviewed on herbs and natural products for their marked clinical efficacy in some recent years, however, maximum of the newly discovered bioactive constituents offer poor bioavailability due to their large size molecules or to their poor miscibility with oils and lipids, thereby limiting their ability to pass across the lipid-rich outer membranes of the enterocytes of the small intestine. Phytosomes are more bioavailable as compared to herbal extracts owing to their enhanced capacity to cross the bio-membranes and thus reaching the systemic circulation. This study was aimed to investigate the development and optimization of antidiabetic phytosomes using a three-factor, three-level the Box-Behnken design (17 batches). The fruits of Citrullus colocynthis (L.) Momordica balsamina and Momordica dioica were extracted using Soxhlet's apparatus. The phytochemical fingerprint profile of the combined methanolic extracts was done by using high-performance thin layer chromatography (HPTLC). The polynomial quadratic equation analysis was designed to study the response (entrapment efficiency (EE), % yield) of independent significant factors at different levels. Phytosomes were characterized in terms of drug content, particle size, EE, zeta potential and in vitro dissolution. TEM analysis revealed good stability and a spherical, self-closed structure of phytosomes in complex formulations. Average particle size was found to 450 nm. Total flavonoid content was found to be 10.0 ± 0.002 μg/g. Optimized formulation was selected and was prepared using A (1:3), B (60 °C) and C (2.5 h) to give maximum yield and entrapment efficiencies (72% and 92.1 ± 5.1%). Phytosomes were found to have antidiabetic activity comparable to metformin in low dose. HPTLC showed the presence of the phyto-constituent quercetin.

摘要

近年来,研究人员广泛研究了草药和天然产物,因为它们在某些方面具有显著的临床疗效。然而,由于其分子体积较大或与油和脂质的混溶性较差,最大多数新发现的生物活性成分的生物利用度较差,从而限制了它们穿过富含脂质的小肠肠细胞外膜的能力。与草药提取物相比,植物磷脂体具有更好的生物利用度,因为它们增强了穿过生物膜的能力,从而到达全身循环。本研究旨在使用三因素三水平 Box-Behnken 设计(17 批)开发和优化抗糖尿病植物磷脂体。使用索氏提取器提取苦瓜(L.)Momordica balsamina 和 Momordica dioica 的果实。采用高效薄层色谱法(HPTLC)对合并的甲醇提取物的植物化学指纹图谱进行了研究。设计了多项式二次方程分析,以研究不同水平的独立显著因素对响应(包封效率(EE),%产率)的影响。从药物含量、粒径、EE、Zeta 电位和体外溶出度等方面对植物磷脂体进行了表征。TEM 分析表明,复杂配方中的植物磷脂体具有良好的稳定性和球形自封闭结构。平均粒径为 450nm。总黄酮含量为 10.0±0.002μg/g。选择优化的配方,并使用 A(1:3)、B(60°C)和 C(2.5h)进行制备,以获得最大的产率和包封效率(72%和 92.1±5.1%)。与低剂量的二甲双胍相比,植物磷脂体具有相当的降血糖活性。HPTLC 显示出存在植物成分槲皮素。

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