大麻二酚/ γ-聚谷氨酸-g-胆固醇纳米胶束的药代动力学和抗炎活性

Q3 Pharmacology, Toxicology and Pharmaceutics
Rui Li, Li-Yan Lu, Chu Xu, Rui Hao, Xiao Yu, Rui Guo, Jue Chen, Wen-Hui Ruan, Ying-Li Wang
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引用次数: 0

摘要

本研究通过药动学实验研究了大麻二酚(CBD)/γ-聚谷氨酸-g-胆固醇(γ-PGA-g-CHOL)纳米束[CBD/(γ-PGA-g-CHOL)NMs]的药动学特性和组织分布,并通过细胞实验评价了CBD/(γ-PGA-g-CHOL)NMs对脂多糖(LPS)诱导的细胞炎症损伤的影响。透析法制备CBD/(γ-PGA-g-CHOL)NMs。研究了雄性SD大鼠经CBD和CBD/(γ-PGA-g-CHOL)NMs处理后血浆样品中CBD浓度的变化,计算并比较了它们的药动学参数。采用UPLC-MS/MS法测定组织样品中CBD的浓度。在不同时间点采集心脏、肝脏、脾脏、肺、肾和肌肉样本,探讨CBD和CBD/(γ-PGA-g-CHOL)NMs的组织分布。建立脂多糖诱导炎症的Caco-2细胞模型,测定细胞活力、经皮电阻(TEER)、炎性细胞因子分泌水平,比较两组抗炎活性。结果表明,CBD/(γ-PGA-g-CHOL)NMs的平均粒径为(163.1±2.3)nm,载药量为8.78%±0.28%,包封率为84.46%±0.35%。与CBD相比,CBD/(γ-PGA-g-CHOL)NMs的峰浓度(C_(max))升高,峰时间(t_(max))和平均停留时间(MRT_(0-t))延长。24 h内,CBD/(γ-PGA-g-CHOL)NMs的组织分布浓度高于CBD。此外,CBD和CBD/(γ-PGA-g-CHOL)NMs均能显著提高Caco-2细胞活力和TEER,降低炎症因子分泌水平,减轻炎症反应。CBD/(γ-PGA-g-CHOL)NMs具有较强的抗炎作用。由此可见,γ-PGA-g-CHOL空白纳米胶束是CBD的良好载体,能够延长CBD在血液中的循环时间,提高CBD的生物利用度和组织分布浓度,对lps诱导的炎症损伤具有保护作用。研究结果可为CBD口服制剂的开发和临床应用提供实验依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Pharmacokinetics and anti-inflammatory activity of cannabidiol/ γ-polyglutamic acid-g-cholesterol nanomicelles].

In this study, the pharmacokinetic characteristics and tissue distribution of cannabidiol(CBD)/γ-polyglutamic acid-g-cholesterol(γ-PGA-g-CHOL) nanomicelles [CBD/(γ-PGA-g-CHOL)NMs] were investigated by pharmacokinetic experiments, and the effect of CBD/(γ-PGA-g-CHOL)NMs on the lipopolysaccharide(LPS)-induced inflammatory damage of cells was evaluated by cell experiments. CBD/(γ-PGA-g-CHOL)NMs were prepared by dialysis. The CBD concentrations in the plasma samples of male SD rats treated with CBD and CBD/(γ-PGA-g-CHOL)NMs were investigated, and the pharmacokinetic parameters were calculated and compared. UPLC-MS/MS was employed to determine the concentration of CBD in tissue samples. The heart, liver, spleen, lung, kidney, and muscle samples were collected at different time points to explore the tissue distribution of CBD and CBD/(γ-PGA-g-CHOL)NMs. The Caco-2 cell model of LPS-induced inflammation was established, and the cell viability, transepithelial electrical resistance(TEER), and secretion levels of inflammatory cytokines were determined to compare the anti-inflammatory activity between the two groups. The results showed that CBD/(γ-PGA-g-CHOL)NMs had the average particle size of(163.1±2.3)nm, drug loading of 8.78%±0.28%, and encapsulation rate of 84.46%±0.35%. Compared with CBD, CBD/(γ-PGA-g-CHOL)NMs showed increased peak concentration(C_(max)) and prolonged peak time(t_(max)) and mean residence time(MRT_(0-t)). Within 24 h, the tissue distribution concentration of CBD/(γ-PGA-g-CHOL)NMs was higher than that of CBD. In addition, both CBD and CBD/(γ-PGA-g-CHOL)NMs significantly enhanced Caco-2 cell viability and TEER, lowered the secretion levels of inflammatory cytokines, and alleviated inflammation. Moreover, CBD/(γ-PGA-g-CHOL)NMs demonstrated stronger anti-inflammatory effect. It can be inferred that γ-PGA-g-CHOL blank nanomicelles are good carriers of CBD, being capable of prolonging the circulation time of CBD in the blood, improving the bioavailability and tissue distribution concentration of CBD, and protecting against LPS-induced inflammatory injury. The findings can provide an experimental basis for the development and clinical application of oral CBD preparations.

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Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
1.50
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0.00%
发文量
581
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