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采用新型天然纤维交织脂质体技术制备、表征并研究脂质体小檗碱的体外和体内研究。

Preparation, characterization, in vitro and in vivo studies of liposomal berberine using novel natural Fiber Interlaced Liposomal technology.

机构信息

R&D Center for Excellence, Vidya Herbs Pvt Ltd., Bangalore 560105, India.

R&D Center for Excellence, Vidya Herbs Pvt Ltd., Bangalore 560105, India.

出版信息

Eur J Pharm Biopharm. 2024 Oct;203:114431. doi: 10.1016/j.ejpb.2024.114431. Epub 2024 Jul 31.

Abstract

Berberine hydrochloride (BBR), used in various traditional medicinal practices, has a variety of pharmacological effects. It is a plant-derived quaternary isoquinoline alkaloid with a low water solubility and can be used in the treatment of various conditions. However, the therapeutic use of BBR has been compromised because of its hydrophobic characteristics, in addition to its low stability and poor bioavailability. To overcome these drawbacks of BBR's oral bioavailability, technologies like liposomal delivery systems have been developed to ensure enhanced absorption. But conventional liposomes have low physical and chemical stability due to delicate liposomal membranes, peroxidation and rapid clearance from the bloodstream. Surface modification of liposomes could be a solution and creating a liposome with plant-based fibers as surface material will provide enhanced stability, aqueous solubility and protection against degradation. Consequently, the aim of this study is to create and describe a Fiber Interlaced Liposome™ (FIL) as a vehicle for an enhanced bioavailability platform for BBR and other biomolecules. This optimised FIL-BBR formulation was analysed for its structural and surface morphological characteristics by using FTIR, SEM, TEM, XRD, zeta potential and DSC. Encapsulation efficiency, stability, and sustained release studies using an in vitro digestion model with simulated gastric and intestinal fluids were also examined. FIL formulation showed a sustained release of BBR at 59.03 % as compared to the unformulated control (46.73 %) after 8 h of dialysis. Furthermore, the FIL-BBR demonstrated enhanced stability in the simulated gastric fluid (SGF) in addition to a more sustained release in the simulated intestinal fluid (SIF). The efficacy of FIL-BBR were further anlaysed by an in vivo bioavailability study using male Wistar rats and it demonstrated a 3.37-fold higher relative oral bioavailability compared to the unformulated BBR. The AUC for BBR in FIL-BBR was 1.38 ng.h/mL, significantly greater than the unformulated BBR (0.41 ng.h/mL). Similarly, the C for BBR in FIL-BBR (50.98 ng/mL) was discovered to be far greater than unformulated BBR (15.54 ng/mL) after the oral administration. These findings imply that fruit fiber based liposomal encapsulation improves the stability and slows down BBR release, which could be advantageous for applications requiring a higher bioavailability and a more sustained release.

摘要

盐酸小檗碱(BBR)在各种传统医学实践中都有应用,具有多种药理学作用。它是一种植物源性的季铵异喹啉生物碱,水溶性低,可用于治疗各种疾病。然而,由于其疏水性,再加上低稳定性和生物利用度差,BBR 的治疗用途受到了限制。为了克服 BBR 口服生物利用度的这些缺点,已经开发了脂质体递送系统等技术,以确保吸收增强。但是,由于脂质体膜脆弱、过氧化和从血液中快速清除,传统脂质体的物理和化学稳定性较低。脂质体的表面修饰可能是一种解决方案,使用植物纤维作为表面材料制造脂质体将提供增强的稳定性、水溶解度和对降解的保护。因此,本研究的目的是创建和描述一种纤维交织脂质体(FIL),作为 BBR 和其他生物分子的增强生物利用度平台的载体。通过使用傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X 射线衍射(XRD)、Zeta 电位和差示扫描量热法(DSC)对优化的 FIL-BBR 配方进行结构和表面形态特征分析。还使用模拟胃液和肠液的体外消化模型对包封效率、稳定性和持续释放进行了研究。与未经配方处理的对照(46.73%)相比,在 8 小时透析后,FIL 配方以 59.03%的比例持续释放 BBR。此外,与未形成配方的对照相比,FIL-BBR 在模拟胃液(SGF)中表现出更好的稳定性,并且在模拟肠液(SIF)中具有更持久的释放。通过使用雄性 Wistar 大鼠进行体内生物利用度研究进一步分析了 FIL-BBR 的功效,结果表明,与未经配方处理的 BBR 相比,其相对口服生物利用度提高了 3.37 倍。FIL-BBR 中 BBR 的 AUC 为 1.38ng.h/mL,明显大于未经配方处理的 BBR(0.41ng.h/mL)。同样,在口服给药后,FIL-BBR 中 BBR 的 C 值(50.98ng/mL)也远大于未经配方处理的 BBR(15.54ng/mL)。这些发现表明,基于水果纤维的脂质体包封可提高稳定性并减缓 BBR 释放,这对于需要更高生物利用度和更持久释放的应用可能是有利的。

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