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采用质量源于设计方法工程化载 siRNA 的脂质体-聚合物杂化纳米粒的固体剂型。

Engineering of Solid Dosage Forms of siRNA-Loaded Lipidoid-Polymer Hybrid Nanoparticles Using a Quality-by-Design Approach.

机构信息

Department of Pharmacy, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen Ø, Denmark.

出版信息

Methods Mol Biol. 2021;2282:137-157. doi: 10.1007/978-1-0716-1298-9_9.

Abstract

Therapy based on RNA interference (RNAi), which can be mediated by exogenous small interfering RNA (siRNA), has potential for the management of diseases at the genetic level by silencing gene function(s). In all eukaryotic cells, RNAi is an endogenous regulatory mechanism, where messenger RNA (mRNA) is degraded, preventing its translation into protein. A significant advantage of RNAi therapy is that siRNA is very potent and gene silencing is highly specific, ensuring few off-target effects. However, the delivery of exogenous siRNA to the RNAi pathway in the cytosol is a challenge, and there is a need for development of advanced delivery systems to ensure safe and effective delivery of siRNA to the intracellular target site. Recently, we demonstrated the ability of lipid-polymer hybrid nanoparticles (LPNs) composed of cationic lipidoid 5 (L) and the biodegradable polymer poly(DL-lactic-co-glycolic acid) to effectively deliver siRNA directed against tumor necrosis factor alpha (TNF-α) intracellularly to macrophages. L is a novel lipid-like material consisting of a tetraamine backbone linked to five C alkyl chains. Here, we describe a systematic quality-by-design (QbD) approach including risk assessment and design of experiments to investigate the influence of critical formulation parameters (i.e., L content and L:TNF-α siRNA ratio (w/w)) on the physicochemical properties and the TNF-α gene silencing ability of TNF-α siRNA-loaded LPNs, prepared by using a double emulsion solvent evaporation method. We then detail protocols for the manufacturing of more stable solid dosage forms of LPNs using freeze drying and spray drying processes, respectively. We also provide protocols for characterization of the physicochemical properties of the nanocomposite dry powders, including (1) process yield, (2) aerodynamic particle size, (3) surface morphology, (4) moisture content, and (5) solid state properties. General considerations are provided that emphasize the advantages and disadvantages of applying QbD approaches for optimizing nanoparticulate formulations.

摘要

基于 RNA 干扰(RNAi)的治疗方法,可通过外源性小干扰 RNA(siRNA)介导,具有通过沉默基因功能来管理遗传疾病的潜力。在所有真核细胞中,RNAi 是一种内源性调节机制,其中信使 RNA(mRNA)被降解,防止其翻译成蛋白质。RNAi 治疗的一个显著优势是 siRNA 非常有效,基因沉默非常特异,确保很少出现脱靶效应。然而,将外源性 siRNA 递送到细胞质中的 RNAi 途径是一个挑战,需要开发先进的递药系统以确保安全有效地将 siRNA 递送至细胞内靶位。最近,我们证明了由阳离子脂质体 5(L)和可生物降解聚合物聚(DL-乳酸-共-乙醇酸)组成的脂质-聚合物杂化纳米颗粒(LPN)能够有效地将针对肿瘤坏死因子-α(TNF-α)的 siRNA 递送至巨噬细胞内。L 是一种新型的类脂材料,由连接到五个 C 烷基链的四胺主链组成。在这里,我们描述了一种系统的质量源于设计(QbD)方法,包括风险评估和实验设计,以研究关键制剂参数(即 L 含量和 L:TNF-α siRNA 比值(w/w))对载 TNF-α siRNA 的 LPN 的理化性质和 TNF-α 基因沉默能力的影响,该 LPN 是通过双乳液溶剂蒸发法制备的。然后,我们详细介绍了分别使用冷冻干燥和喷雾干燥工艺制造更稳定的 LPN 固体剂型的方案。我们还提供了用于表征纳米复合材料干粉物理化学性质的方案,包括(1)过程产率、(2)空气动力学粒径、(3)表面形态、(4)水分含量和(5)固态性质。提供了一般性考虑,强调了应用 QbD 方法优化纳米制剂的优缺点。

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