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首页> 外文期刊>Journal of biomaterials and tissue engineering >The Preparation of Morinda citrifolia (Noni)-Phospholipid Complex and Its Pharmacokinetics Study in Rats
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The Preparation of Morinda citrifolia (Noni)-Phospholipid Complex and Its Pharmacokinetics Study in Rats

机译:巴戟天(Noni)-磷脂复合物的制备及其在大鼠体内的药代动力学研究

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摘要

Morinda citrifolia L. (NONI) fruits have been used for thousands of years for the treatment of many health problems including cancer, cold, diabetes, flu, hypertension, and pain. Plant extracts have reported several therapeutic benefits, but extraction of individual compound from the extract often exhibits limited clinical utility as the synergistic effect of various natural ingredients gets lost. In the present study oral bioavailability of standardized Noni fruit extract (NFE) has been improved by preparing Noni fruit extract phospholipid complexes (NFP). The physicochemical properties of the prepared complex were studied by differential scanning calorimetry (DSC) and dissolution. The pharmacokinetic and bioavailability studies were done in rats taking scopoletin and quercetin as marker. The results indicate that the bioavailability of scopoletin and quercetin were increased significantly after oral administration of NFP comparing with NFE in rats. The maximum concentration in plasma for Scopoletin and quercetin 6.2 μg/mL, 0.121 μg/mL (NFE) were increased to 10.97 /ig/mL, 0.76 μg/mL in (NFP) respectively. Where as AUC (0~T) for scopoletin and quercetin were increased from 138.8 μg-min /mL, 86.9 μg-min/mL (NFE) to 278.3 μg-min/mL, 225.5 μg-min/mL in (NFP) respectively.
机译:巴戟天(NONI)水果已用于治疗许多健康问题,包括癌症,感冒,糖尿病,流感,高血压和疼痛,已有数千年的历史。植物提取物已经报道了几种治疗益处,但是由于各种天然成分的协同作用丧失,从提取物中提取单个化合物常常表现出有限的临床效用。在本研究中,通过制备诺丽果提取物磷脂复合物(NFP)可以提高标准化诺丽果提取物(NFE)的口服生物利用度。通过差示扫描量热法(DSC)和溶出度研究了所制备复合物的理化性质。在以scopoletin和槲皮素为标记的大鼠中进行了药代动力学和生物利用度研究。结果表明,与NFE相比,口服NFP时,鼠胆碱和槲皮素的生物利用度显着提高。血浆中Scopoletin和槲皮素的最大浓度分别为6.2μg/ mL,0.121μg/ mL(NFE)和(NFP),分别增至10.97 /ig/mL、0.76μg/ mL。草素和槲皮素的AUC(0〜T)分别从(NFP)中的138.8μg-min/ mL,86.9μg-min/ mL(NFE)增加到278.3μg-min/ mL,225.5μg-min/ mL 。

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