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固体无定形分散技术提高β-胡萝卜素在大鼠体内的生物利用度。

Improved Bioavailability of β-Carotene by Amorphous Solid Dispersion Technology in Rats.

机构信息

Laboratory of Innovative Food Science, Graduate School of Pharmaceutical Sciences, Osaka University.

R&D Group, Mitsui Norin Co. Ltd.

出版信息

J Nutr Sci Vitaminol (Tokyo). 2020;66(2):207-210. doi: 10.3177/jnsv.66.207.

Abstract

β-Carotene (BC) is a natural lipophilic carotenoid mainly present in vegetables and fruits. Although it has various beneficial pharmacological activities, its bioavailability is low owing to its low water solubility. Recently, we reported that BC solid dispersion prepared using hot-melt technology with polyvinylpyrrolidone and sucrose fatty acid esters was in an amorphous state and showed the highest solubility. We hypothesized that the absorption of BC solid dispersion would be better because of its increased water solubility. To verify this, we conducted a pharmacokinetic analysis of BC for application in functional foods. Crystalline or amorphous BC was orally administered to rats. Blood was collected at various time points, and the BC concentration in the plasma was measured by HPLC. Oral administration of amorphous BC showed increased absorption in rats compared with that of BC crystals. Using blood samples from rats that were intravenously injected with the plasma of rats that had been orally administered BC, pharmacokinetic parameters could be calculated without using organic solvents or surfactants. It was possible to calculate various pharmacokinetic parameters under physiological conditions according to amorphous BC characteristics. Thus, we were able to determine the bioavailability of BC after oral administration. This simple technology to improve BC solubility without the use of organic solvents can be applied not only in the pharmaceutical industry but also in the food industry, and it therefore has high utility value.

摘要

β-胡萝卜素(BC)是一种天然亲脂性类胡萝卜素,主要存在于蔬菜和水果中。尽管它具有多种有益的药理活性,但由于其低水溶性,其生物利用度较低。最近,我们报道了使用聚维酮和蔗糖脂肪酸酯的热熔技术制备的 BC 固体分散体呈无定形状态,具有最高的溶解度。我们假设由于其水溶性的提高,BC 固体分散体的吸收会更好。为了验证这一点,我们进行了 BC 的药代动力学分析,以将其应用于功能性食品。将结晶或无定形 BC 口服给予大鼠。在不同时间点采集血液,并通过 HPLC 测量血浆中 BC 的浓度。与 BC 晶体相比,无定形 BC 的口服给药在大鼠中显示出吸收增加。使用从静脉注射了大鼠血浆的大鼠的血液样本,可以在不使用有机溶剂或表面活性剂的情况下计算药代动力学参数。根据无定形 BC 的特性,可以在生理条件下计算各种药代动力学参数。因此,我们能够确定口服给予 BC 后的生物利用度。这种无需使用有机溶剂即可提高 BC 溶解度的简单技术不仅可应用于制药行业,还可应用于食品行业,因此具有很高的实用价值。

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