首页> 美国卫生研究院文献>BioMed Research International >Antidiabetic Micro-/Nanoaggregates from Ge-Gen-Qin-Lian-Tang Decoction Increase Absorption of Baicalin and Cellular Antioxidant Activity In Vitro
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Antidiabetic Micro-/Nanoaggregates from Ge-Gen-Qin-Lian-Tang Decoction Increase Absorption of Baicalin and Cellular Antioxidant Activity In Vitro

机译:葛根秦连汤汤的降糖微/纳米聚集体增加黄ical苷的吸收和体外细胞抗氧化活性

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摘要

The antidiabetic effects of Ge-Gen-Qin-Lian-Tang decoction (GQD) have been proven clinically. In a pharmacological study conducted on STZ-induced diabetic rats, the constitutive aggregates/sediments of Ge-Gen-Qin-Lian-Tang decoction exhibited stronger hypoglycemic and antioxidant activities compared to the soluble compositions. This study aims to demonstrate the pharmacological properties of aggregates derived from GQD by measuring permeability of the active monomer phytochemicals (e.g., baicalin) in a Caco-2 cell monolayer and determine the cellular viability, intracellular redox status (MDA and SOD), and insulin secretion of pancreatic β-cell line, INS-1, following STZ-induced oxidative stress. The aggregates were separated into three fractions, namely, “MA (microaggregates),” “400 g supernatant,” and “MNA (micro-/nanoaggregates),” by centrifugation at 400 ×g and 15000 ×g, respectively. Aggregates in the sediment increased baicalin absorption, showed little toxicity to β-cells, elevated intracellular SOD levels, and significantly suppressed oxidative damage effects on cellular viability and functions. The “MA” fraction had a larger particle size and provided higher antioxidant cellular protection than “MNA” in vitro, implying that the sediments may be the active components in the herbal decoction. The actions of these micro-/nanoaggregates may provide a new perspective for understanding the antidiabetic effects of herbal decoctions and aid in interpretation of synergistic actions between the multiple components.
机译:葛根秦连汤汤(GQD)具有抗糖尿病作用。在对STZ诱导的糖尿病大鼠进行的药理研究中,与可溶性组合物相比,葛根-秦-莲-汤汤的本构聚集体/沉积物表现出较强的降血糖和抗氧化活性。这项研究旨在通过测量Caco-2细胞单层中活性单体植物化学物质(例如黄ical苷)的渗透性并确定细胞活力,细胞内氧化还原状态(MDA和SOD)和胰岛素来证明GQD聚集体的药理特性。 STZ诱导的氧化应激后胰腺β细胞系INS-1的分泌。通过分别以400μg×g和15000μg×g的离心力将聚集体分成三部分,即“ MA(微聚集体)”,“400μg上清液”和“ MNA(微/纳米聚集体)”。沉积物中的聚集体增加了黄ical苷的吸收,对β细胞几乎没有毒性,细胞内SOD水平升高,并显着抑制了氧化损伤对细胞活力和功能的影响。与“ MNA”相比,“ MA”级分在体外具有更大的粒径并提供更高的抗氧化细胞保护作用,这表明沉淀物可能是草药汤中的活性成分。这些微量/纳米聚集体的作用可能为理解草药汤的抗糖尿病作用提供新的视角,并有助于解释多种成分之间的协同作用。

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