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含磷脂酰胆碱和溶血磷脂酰丝氨酸的耐受性脂质纳米粒子的物理化学特性分析。

Biophysical Characterization of Tolerogenic Lipid-Based Nanoparticles Containing Phosphatidylcholine and Lysophosphatidylserine.

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy and Pharmaceutical Sciences, University at Buffalo, Buffalo, NY, USA.

Department of Pharmaceutical Sciences, School of Pharmacy and Pharmaceutical Sciences, University at Buffalo, Buffalo, NY, USA.

出版信息

J Pharm Sci. 2022 Jul;111(7):2072-2082. doi: 10.1016/j.xphs.2022.01.025. Epub 2022 Jan 31.

Abstract

Autoimmune conditions, allergies, and immunogenicity against therapeutic proteins are initiated by the unwanted immune response against self and non-self proteins. The development of tolerance induction approaches can offer an effective treatment modality for these clinical conditions. We recently showed that oral administration of lipidic nanoparticles containing phosphatidylcholine (PC) and lysophosphatidylserine (Lyso-PS) converted an immunogen to a tolerogen and induced immunological tolerance towards several antigens. While the biophysical properties such as lamellar characteristics of this binary lipid system are critical for stability, therapeutic delivery, and mechanism of tolerance induction, such information has not been thoroughly investigated. In the current study, we evaluated the lamellar phase properties of PC/Lyso-PS system using orthogonal biophysical methods such as fluorescence (steady-state, anisotropy, PSvue, and Laurdan), dynamic light scattering, and differential scanning calorimetry. The results showed that Lyso-PS partitioned into the PC bilayers and led to changes in the particles' lamellar phase properties, lipid-packing, and lipid-water dynamics. Additionally, the biophysical characteristics of PC/Lyso-PS system are different from the well-studied PC/double-chain phosphatidylserine (PS) system. Notably, the incorporation of Lyso-PS significantly reduced the hydrodynamic diameter of PC particles. Results from the in vivo uptake study and intestinal loop assay utilizing flow cytometry analysis also indicated that the uptake of Lyso-PS-containing nanoparticles by immune cells in the gut and Peyer's patches is significantly higher than that of double-chain PS due to the differential transport through microfold cells. It was also found that the acyl chain mismatch between PC and Lyso-PS is critical for the miscibility and particle stability. Collectively, the results suggest that these biophysical characteristics likely influence the in vivo behaviors and contribute to the oral tolerance property of PC/Lyso-PS system.

摘要

自身免疫性疾病、过敏和治疗性蛋白的免疫原性是由针对自身和非自身蛋白的不必要免疫反应引发的。诱导耐受的方法的发展可为这些临床病症提供有效的治疗方法。我们最近表明,口服含有磷脂酰胆碱 (PC) 和溶血磷脂酰丝氨酸 (Lyso-PS) 的脂质纳米粒将免疫原转化为耐受原,并诱导对多种抗原的免疫耐受。虽然这种二元脂质系统的生物物理特性,如层状特征对于稳定性、治疗性递送和诱导耐受的机制至关重要,但此类信息尚未得到充分研究。在本研究中,我们使用荧光(稳态、各向异性、PSvue 和 Laurdan)、动态光散射和差示扫描量热法等正交生物物理方法评估了 PC/Lyso-PS 系统的层状相特性。结果表明,Lyso-PS 分配到 PC 双层中,导致颗粒的层状相特性、脂质堆积和脂质-水动力学发生变化。此外,PC/Lyso-PS 系统的生物物理特性与研究充分的 PC/双链磷脂酰丝氨酸 (PS) 系统不同。值得注意的是,Lyso-PS 的掺入显著降低了 PC 颗粒的水动力学直径。利用流式细胞术分析进行体内摄取研究和肠袢实验的结果也表明,由于通过微褶皱细胞的差异转运,含有 Lyso-PS 的纳米颗粒被肠道和派尔集合淋巴结中的免疫细胞摄取的速度明显高于双链 PS。还发现 PC 和 Lyso-PS 之间的酰基链不匹配对于混合和颗粒稳定性至关重要。总的来说,结果表明这些生物物理特性可能影响体内行为并有助于 PC/Lyso-PS 系统的口服耐受特性。

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Phosphatidylserine-mediated oral tolerance.磷脂酰丝氨酸介导的口服耐受。
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本文引用的文献

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Immunogenicity of Protein Pharmaceuticals.蛋白质类药物的免疫原性。
J Pharm Sci. 2019 May;108(5):1637-1654. doi: 10.1016/j.xphs.2018.12.014. Epub 2018 Dec 30.

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