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芳樟醇纳米结构脂质载体的制备、表征及药代动力学研究

Preparation, characterization and pharmacokinetic studies of linalool-loaded nanostructured lipid carriers.

作者信息

Shi Feng, Zhao Yingying, Firempong Caleb Kesse, Xu Ximing

机构信息

a Department of Pharmaceutics , School of Pharmacy Center for Nano Drug/Gene Delivery and Tissue Engineering, Jiangsu University , Zhenjiang , PR China.

出版信息

Pharm Biol. 2016 Oct;54(10):2320-8. doi: 10.3109/13880209.2016.1155630. Epub 2016 Mar 17.

Abstract

Context Linalool (LL) is associated with numerous pharmacological activities. However, its poor solubility usually results in poor bioavailability, and further limited its applications. Objective To reduce volatilization and improve bioavailability of LL, linalool-loaded nanostructured lipid carriers (LL-NLCs) were prepared. Materials and methods LL-NLCs were prepared using high-pressure homogenization method and optimized via response surface methodology-central composite design, followed by characterization, including particle size (PS), zeta potential (ZP), transmission electron microscope (TEM), X-ray diffraction (XRD), differential scanning calorimetry (DSC) and in vitro release study. Rats were administered 300 mg × kg (-) (1) LL with each preparation (LL-NLCs or LL) via oral gavage. Results LL-NLCs had a PS of 52.72 nm with polydispersity index of 0.172, and ZP of -16.0 mV. The encapsulation efficiency and drug loading gave 79.563 and 7.555%, respectively. The cumulative release of LL from free LL reached 51.414% at 180 min, while LL from LL-NLCs was 15.564%. All the pharmacokinetics parameters of LL-NLCs were better than those of LL, including Cmax (from 1915.45 to 2182.45 ng × mL (-) (1)), AUC0-t (from 76003.40 to 298948.46 ng × min × mL (-) (1)) and relative bioavailability (393.34%). The t1/2, MRT and tmax of LL-NLCs (110.50, 146.66 and 60 min) were also longer than that of LL (44.72, 45.66 and 40 min). Discussion and conclusion LL-NLCs were for the first time prepared and its oral administration in rats thoroughly investigated. LL-NLCs exhibited sustained release effect and increased absorption of LL. Therefore, these findings might provide a potential possibility for clinical application of LL.

摘要

背景 芳樟醇(LL)具有多种药理活性。然而,其溶解度差通常导致生物利用度低,进而限制了其应用。目的 为了减少芳樟醇的挥发并提高其生物利用度,制备了载芳樟醇的纳米结构脂质载体(LL-NLCs)。材料与方法 采用高压均质法制备LL-NLCs,并通过响应面法-中心复合设计进行优化,随后进行表征,包括粒径(PS)、zeta电位(ZP)、透射电子显微镜(TEM)、X射线衍射(XRD)、差示扫描量热法(DSC)和体外释放研究。通过灌胃给大鼠施用每种制剂(LL-NLCs或LL)300 mg×kg(-)(1)的LL。结果 LL-NLCs的PS为52.72 nm,多分散指数为0.172,ZP为-16.0 mV。包封率和载药量分别为79.563%和7.555%。游离LL在180分钟时的累积释放率达到51.414%,而LL-NLCs中的LL为15.564%。LL-NLCs的所有药代动力学参数均优于LL,包括Cmax(从1915.45至2182.45 ng×mL(-)(1))、AUC0-t(从76003.40至298948.46 ng×min×mL(-)(1))和相对生物利用度(393.34%)。LL-NLCs的t1/2、MRT和tmax(110.50、146.66和60分钟)也比LL的长(44.72、45.66和40分钟)。讨论与结论 首次制备了LL-NLCs,并对其在大鼠体内的口服给药进行了全面研究。LL-NLCs表现出缓释效果并增加了LL的吸收。因此,这些发现可能为LL的临床应用提供潜在可能性。

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