Tan Angel, Hong Linda, Du Joanne D, Boyd Ben J
ARC Centre of Excellence in Convergent Bio-Nano Science and Technology Drug Delivery, Disposition and Dynamics Monash Institute of Pharmaceutical Sciences Monash University, Parkville Campus 381 Royal Parade Parkville VIC 3052 Australia.
Adv Sci (Weinh). 2018 Nov 12;6(3):1801223. doi: 10.1002/advs.201801223. eCollection 2019 Feb 6.
Self-assembly of lipid-based liquid crystalline (LLC) nanoparticles is a formulation art arising from the hydrophilic-lipophilic qualities and the geometric packing of amphiphilic lipid molecules in an aqueous environment. The diversity of commercialized amphiphilic lipids and an increased understanding of the physicochemical factors dictating their membrane curvature has enabled versatile architectural design and engineering of LLC nanoparticles. While these exotic nanostructured materials are hypothesized to form the next generation of smart therapeutics for a broad field of biomedical applications, biological knowledge particularly on the systemic biocompatibility or cytotoxicity of LLC materials remains unclear. Here, an overview on the interactions between LLCs of different internal nanostructures and biological components (including soluble plasma constituents, blood cells, and isolated tissue cell lines) is provided. Factors affecting cell-nanoparticle tolerability such as the type of lipids, type of steric stabilizers, nanoparticle surface charges, and internal nanostructures (or lipid phase behaviors) are elucidated. The mechanisms of cellular uptake and lipid transfer between neighboring membrane domains are also reviewed. A critical analysis of these studies sheds light on future strategies to transform LLC materials into a viable therapeutic entity ideal for internal applications.
基于脂质的液晶(LLC)纳米颗粒的自组装是一门制剂技术,它源于两亲性脂质分子在水性环境中的亲水亲脂特性以及几何堆积。商业化两亲性脂质的多样性以及对决定其膜曲率的物理化学因素的深入理解,使得LLC纳米颗粒能够进行多样化的结构设计和工程化。虽然这些奇异的纳米结构材料被认为有望成为用于广泛生物医学应用领域的下一代智能疗法,但关于LLC材料的全身生物相容性或细胞毒性等生物学知识仍不明确。在此,提供了关于不同内部纳米结构的LLC与生物成分(包括可溶性血浆成分、血细胞和分离的组织细胞系)之间相互作用的概述。阐明了影响细胞-纳米颗粒耐受性的因素,如脂质类型、空间稳定剂类型、纳米颗粒表面电荷和内部纳米结构(或脂质相行为)。还综述了细胞摄取机制以及相邻膜域之间的脂质转移。对这些研究的批判性分析为将LLC材料转化为适用于内部应用的可行治疗实体的未来策略提供了启示。