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采用固体脂质纳米粒经口腔递送至脑内的甲基硫代腺苷:药代动力学、行为学和组织病理学证据。

Oral Delivery of Methylthioadenosine to the Brain Employing Solid Lipid Nanoparticles: Pharmacokinetic, Behavioral, and Histopathological Evidences.

机构信息

Department of Pharmacy, School of Chemical Sciences and Pharmacy, Central University of Rajasthan, Bandar Sindri, Distt., Ajmer, Rajasthan, 305817, India.

Department of Pharmaceutical Analysis, National Institute of Pharmaceutical Education and Research (NIPER), Guwahati, Assam, 781125, India.

出版信息

AAPS PharmSciTech. 2019 Jan 10;20(2):74. doi: 10.1208/s12249-019-1296-0.

Abstract

The present study aimed to orally deliver methylthioadenosine (MTA) to the brain employing solid lipid nanoparticles (SLNs) for the management of neurological conditions like multiple sclerosis. The stearic acid-based SLNs were below 100 nm with almost neutral zeta potential and offered higher drug entrapment and drug loading. Cuprizone-induced demyelination model in mice was employed to mimic the multiple sclerosis-like conditions. It was observed that the MTA-loaded SLNs were able to maintain the normal metabolism, locomotor activity, motor coordination, balancing, and grip strength of the rodents in substantially superior ways vis-à-vis plain MTA. Histopathological studies of the corpus callosum and its subsequent staining with myelin staining dye luxol fast blue proved the potential of MTA-loaded SLNs in the remyelination of neurons. The pharmacokinetic studies provided the evidences for improved bioavailability and enhanced bioresidence supporting the pharmacodynamic findings. The studies proved that SLN-encapsulated MTA can be substantially delivered to the brain and can effectively remyelinate the neurons. It can reverse the multiple sclerosis-like symptoms in a safer and effective manner, that too by oral route.

摘要

本研究旨在通过固体脂质纳米粒(SLN)将甲基硫代腺苷(MTA)经口递送至大脑,以用于治疗多发性硬化等神经系统疾病。基于硬脂酸的 SLN 粒径小于 100nm,具有接近中性的 zeta 电位,能够提供更高的药物包封率和载药量。采用 cuprizone 诱导的脱髓鞘小鼠模型模拟多发性硬化样病症。结果表明,与普通 MTA 相比,载 MTA 的 SLN 能够以显著更好的方式维持啮齿动物的正常代谢、运动活动、运动协调、平衡和握力。胼胝体的组织病理学研究及其随后用髓鞘染色染料 luxol fast blue 进行染色证明了载 MTA 的 SLN 具有神经元髓鞘再生的潜力。药代动力学研究提供了证据,证明了生物利用度的提高和生物滞留时间的延长,支持了药效学发现。研究证明,SLN 包封的 MTA 可以大量递送至大脑,并能有效地使神经元髓鞘再生。它可以以更安全有效的方式通过口服途径逆转类似多发性硬化的症状。

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