白蛋白冠颠覆肉豆蔻酸共轭奎硫平纳米混悬液的长效行为。

IF 10 2区 医学 Q1 ENGINEERING, BIOMEDICAL
Hy Dinh Nguyen, Hai Van Ngo, Beom-Jin Lee
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引用次数: 0

摘要

本研究旨在研究自组装肉豆酱酸偶联奎硫平纳米混悬液(QMN)与人血清白蛋白的相互作用及其对QMN长效性能的影响。白蛋白电晕的形成通过改变其ph响应性和纳米聚集行为改变了QMN的物理化学性质和药代动力学特征。白蛋白在QMN上的吸附最初是由静电力触发的,然后是疏水相互作用与白蛋白结构的构象变化。虽然QMN对溶液中的离子强度、pH和白蛋白浓度非常敏感,但白蛋白预包覆的QMN (A-QMN)稳定了粒径,并将表面电荷从≈+60 mV逆转到-16 mV,消除了生理pH条件下pH响应的纳米聚集行为。因此,a -QMN表现出更快的体外释放和更快的体内吸收,与比格犬肌肉注射QMN后长达5周的持续时间相比,a -QMN在1周内具有巨大的初始爆发释放和更短的血浆浓度-时间曲线。这些结果表明血清蛋白在纳米颗粒的释放动力学和药代动力学中起重要作用。蛋白质电晕的操作可以用来控制物理化学性质,生物状态,以及预期的长效纳米混悬液的药代动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Albumin Corona Overturns Long-Acting Behaviors of Myristic Acid-Conjugated Quetiapine Nanosuspension.

This work aimed to investigate the interaction of a self-assembled myristic acid-conjugated quetiapine nanosuspension (QMN) with human serum albumin and its overturning effect on QMN's long-acting performance. Albumin corona formation modified the physicochemical properties and pharmacokinetic profile of QMN by overturning its pH-responsiveness and nano-aggregation behavior. The adsorption of albumin on QMN is initially triggered by electrostatic forces and later by hydrophobic-hydrophobic interactions with the conformational change of the albumin structure. While QMN is highly susceptible to ionic strength, pH, and albumin concentration in solution, albumin-precoated QMN (A-QMN) stabilized particle size and reversed the surface charge from ≈+60 to -16 mV, annulling the pH-responsive nanoaggregation behaviors under physiological pH conditions. Consequently, A-QMNs exhibited much faster in vitro release and more rapid in vivo absorption, resulting in a huge initial burst release and shorter duration within one week in plasma concentration-time profiles compared to the extended five-week duration of QMN following intramuscular injection in beagle dogs. These findings indicated the important role of serum proteins in the release kinetics and pharmacokinetics of the nanoparticles. The manipulation of protein corona can be utilized to control the physicochemical properties, biological states, and pharmacokinetics of intended long-acting nanosuspensions.

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来源期刊
Advanced Healthcare Materials
Advanced Healthcare Materials 工程技术-生物材料
CiteScore
14.40
自引率
3.00%
发文量
600
审稿时长
1.8 months
期刊介绍: Advanced Healthcare Materials, a distinguished member of the esteemed Advanced portfolio, has been dedicated to disseminating cutting-edge research on materials, devices, and technologies for enhancing human well-being for over ten years. As a comprehensive journal, it encompasses a wide range of disciplines such as biomaterials, biointerfaces, nanomedicine and nanotechnology, tissue engineering, and regenerative medicine.
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