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TPGS修饰的绿原酸脂质体的制备、表征及其在大鼠体内的生物利用度

Fabrication and characterization of TPGS-modified chlorogenic acid liposomes and its bioavailability in rats.

作者信息

Zhang Jian-Jun, Luo Qiu-Shui, Li Qing-Qing, Xu Qian, Geng Xiang, Xiong Jian-Hua

机构信息

College of Food Science and Engineer, Jiangxi Agricultural University Nanchang 330045 China

Key Lab for Agricultural Product Processing and Quality Control of Nanchang City Nanchang 330045 China.

出版信息

RSC Adv. 2024 Aug 13;14(35):25289-25300. doi: 10.1039/d4ra04116j. eCollection 2024 Aug 12.

Abstract

Chlorogenic acid (CGA), a polyphenol compound, exhibits excellent anti-oxidative, anti-hypoxic, antibacterial, antiviral, and anti-inflammatory activities, however the bioactivity of it has not been fully utilized due to its instability and low bioavailability. To address these issues, we prepared and characterized CGA-TPGS-LP, which is a TPGS-modified liposome loaded with CGA. The pharmacokinetics of CGA-TPGS-LP were studied in rats after oral administration. CGA-TPGS-LP was fabricated using a combination of thin film dispersion and ion-driven methods. The liposomes were observed to be uniformly small and spherical in shape. Their membranes were composed of lecithin, cholesterol, and TPGS lipophilic head with a TPGS hydrophilic tail chain coating on its surface. The loading efficiency and encapsulation efficiency were found to be 11.21% and 83.22%, respectively. The physicochemical characterisation demonstrated that the CGA was present in an amorphous form and retained its original structural state within the liposomal formulation. The stability of CGA was significantly improved by fabricating TPGS-LP. CGA-TPGS-LP exhibited good sustained-release properties in both simulated gastric and intestinal fluids. Following oral administration, ten metabolites were identified in rat plasma using UPLC-QTOF-MS. UPLC-QqQ-MS/MS quantitative analysis demonstrated that the oral bioavailability of CGA encapsulated in TPGS-modified liposomes was enhanced by 1.52 times. In addition, the three main metabolites of CGA had higher plasma concentrations and slower degradation rate. These results demonstrate that TPGS-modified liposomes could be a feasible strategy to further enhance the oral bioavailability of CGA, facilitating its clinical use.

摘要

绿原酸(CGA)是一种多酚化合物,具有出色的抗氧化、抗缺氧、抗菌、抗病毒和抗炎活性,然而,由于其不稳定性和低生物利用度,其生物活性尚未得到充分利用。为了解决这些问题,我们制备并表征了CGA-TPGS-LP,它是一种负载CGA的TPGS修饰脂质体。口服给药后,在大鼠中研究了CGA-TPGS-LP的药代动力学。采用薄膜分散法和离子驱动法相结合的方法制备了CGA-TPGS-LP。观察到脂质体均匀且呈小的球形。它们的膜由卵磷脂、胆固醇和TPGS亲脂性头部组成,表面有TPGS亲水性尾链涂层。发现负载效率和包封效率分别为11.21%和83.22%。物理化学表征表明,CGA以无定形形式存在,并在脂质体制剂中保持其原始结构状态。通过制备TPGS-LP,CGA的稳定性得到显著提高。CGA-TPGS-LP在模拟胃液和肠液中均表现出良好的缓释性能。口服给药后,使用UPLC-QTOF-MS在大鼠血浆中鉴定出十种代谢物。UPLC-QqQ-MS/MS定量分析表明,TPGS修饰脂质体包裹的CGA的口服生物利用度提高了1.52倍。此外,CGA的三种主要代谢物具有较高的血浆浓度和较慢的降解速率。这些结果表明,TPGS修饰的脂质体可能是进一步提高CGA口服生物利用度、促进其临床应用的可行策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e22/11320192/7e7fb6f784bb/d4ra04116j-f1.jpg

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