Preparation, In Vitro and In Vivo Evaluation of Nanoemulsion In Situ Gel for Transnasal Delivery of Traditional Chinese Medicine Volatile Oil from Ligusticum sinense Oliv.cv. Chaxiong

Author:

Huang Chunhui,Wang Canjian,Zhang Wenliu,Yang Tao,Xia Mingyan,Lei Xiaomeng,Peng Ying,Wu Yuhuan,Feng Jianfang,Li Dongxun,Zhang Guosong

Abstract

Ischemic stroke is a difficult-to-treat brain disease that may be attributed to a limited therapeutic time window and lack of effective clinical drugs. Nasal–brain administration is characterized by low systemic toxicity and is a direct and non-invasive brain targeting route. Preliminary studies have shown that the volatile oil of Chaxiong (VOC) has an obvious anti-ischemic stroke effect. In this work, we designed a nanoemulsion thermosensitive in situ gel (VOC-NE-ISG) loaded with volatile oil of Chaxiong for ischemia via intranasal delivery to rat brain treatment of cerebral ischemic stroke. The developed VOC-NE-ISG formulation has a suitable particle size of 21.02 ± 0.25 nm and a zeta potential of −20.4 ± 1.47 mV, with good gelling ability and prolonged release of the five components of VOC. The results of in vivo pharmacokinetic studies and brain targeting studies showed that intranasal administration of VOC-NE-ISG could significantly improve the bioavailability and had excellent brain-targeting efficacy of nasal-to-brain delivery. In addition, the results of pharmacodynamics experiments showed that both VOC-NE and VOC-NE-ISG could reduce the neurological deficit score of model rats, reducing the size of cerebral infarction, with a significant effect on improving ischemic stroke. Overall, VOC-NE-ISG may be a promising intranasal nanomedicine for the effective treatment of ischemic stroke.

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference39 articles.

1. Descriptions of Apoplexy by Joseph Frank in the Beginning of the Nineteenth Century in Vilnius;Sakalauskaite-Juodeikiene;Eur. Neurol.,2017

2. Pathophysiologic Cascades in Ischemic Stroke;Xing;Int. J. Stroke,2012

3. MiR-375 attenuates injury of cerebral ischemia/reperfusion via targeting Ctgf;Ou;Biosci. Rep.,2017

4. Chemical Constituents from the Aerial Parts of Ligusticum sinense;Yang;J. Chin. Med. Mater.,2018

5. GC-MS analysis of volatile oil components in Ligusticum sinense Oliv cv. Chaxiong;Luo Yongming;J. Chin. Med. Mater.,1996

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