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Nasal Delivery of Cinnarizine Thermo- and Ion-Sensitive In Situ Hydrogels for Treatment of Microwave-Induced Brain Injury

(1) Background: When the body is exposed to microwave radiation, the brain is more susceptible to damage than other organs. However, few effective drugs are available for the treatment of microwave-induced brain injury (MIBI) because most drugs are difficult to cross the blood–brain barrier (BBB) to...

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Autores principales: Zhang, Yuanyuan, Li, Qian, Hu, Jinglu, Wang, Chunqing, Wan, Delian, Li, Qi, Jiang, Qingwei, Du, Lina, Jin, Yiguang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8872061/
https://www.ncbi.nlm.nih.gov/pubmed/35200489
http://dx.doi.org/10.3390/gels8020108
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author Zhang, Yuanyuan
Li, Qian
Hu, Jinglu
Wang, Chunqing
Wan, Delian
Li, Qi
Jiang, Qingwei
Du, Lina
Jin, Yiguang
author_facet Zhang, Yuanyuan
Li, Qian
Hu, Jinglu
Wang, Chunqing
Wan, Delian
Li, Qi
Jiang, Qingwei
Du, Lina
Jin, Yiguang
author_sort Zhang, Yuanyuan
collection PubMed
description (1) Background: When the body is exposed to microwave radiation, the brain is more susceptible to damage than other organs. However, few effective drugs are available for the treatment of microwave-induced brain injury (MIBI) because most drugs are difficult to cross the blood–brain barrier (BBB) to reach the brain. (2) Methods: Nasal cinnarizine inclusion complexes with thermo-and ion-sensitive hydrogels (cinnarizine ISGs) were prepared to treat MIBI and the characteristics of the inclusion complexes and their thermo-and ion-sensitive hydrogels were evaluated. (3) Results: Due to high viscosity, cinnarizine ISGs can achieve long-term retention in the nasal cavity to achieve a sustained release effect. Compared with the model, the intranasal thermo-and ion-sensitive cinnarizine ISGs significantly improved the microwave-induced spatial memory and spontaneous exploration behavior with Morris water maze and open field tests. Cinnarizine ISGs inhibited the expression of calcineurin and calpain 1 in the brain, which may be related to the inhibition of calcium overload by cinnarizine. (4) Conclusion: Intranasal thermo- and ion-sensitive cinnarizine ISGs are a promising brain-targeted pharmaceutical preparation against MIBI.
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spelling pubmed-88720612022-02-25 Nasal Delivery of Cinnarizine Thermo- and Ion-Sensitive In Situ Hydrogels for Treatment of Microwave-Induced Brain Injury Zhang, Yuanyuan Li, Qian Hu, Jinglu Wang, Chunqing Wan, Delian Li, Qi Jiang, Qingwei Du, Lina Jin, Yiguang Gels Article (1) Background: When the body is exposed to microwave radiation, the brain is more susceptible to damage than other organs. However, few effective drugs are available for the treatment of microwave-induced brain injury (MIBI) because most drugs are difficult to cross the blood–brain barrier (BBB) to reach the brain. (2) Methods: Nasal cinnarizine inclusion complexes with thermo-and ion-sensitive hydrogels (cinnarizine ISGs) were prepared to treat MIBI and the characteristics of the inclusion complexes and their thermo-and ion-sensitive hydrogels were evaluated. (3) Results: Due to high viscosity, cinnarizine ISGs can achieve long-term retention in the nasal cavity to achieve a sustained release effect. Compared with the model, the intranasal thermo-and ion-sensitive cinnarizine ISGs significantly improved the microwave-induced spatial memory and spontaneous exploration behavior with Morris water maze and open field tests. Cinnarizine ISGs inhibited the expression of calcineurin and calpain 1 in the brain, which may be related to the inhibition of calcium overload by cinnarizine. (4) Conclusion: Intranasal thermo- and ion-sensitive cinnarizine ISGs are a promising brain-targeted pharmaceutical preparation against MIBI. MDPI 2022-02-10 /pmc/articles/PMC8872061/ /pubmed/35200489 http://dx.doi.org/10.3390/gels8020108 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Yuanyuan
Li, Qian
Hu, Jinglu
Wang, Chunqing
Wan, Delian
Li, Qi
Jiang, Qingwei
Du, Lina
Jin, Yiguang
Nasal Delivery of Cinnarizine Thermo- and Ion-Sensitive In Situ Hydrogels for Treatment of Microwave-Induced Brain Injury
title Nasal Delivery of Cinnarizine Thermo- and Ion-Sensitive In Situ Hydrogels for Treatment of Microwave-Induced Brain Injury
title_full Nasal Delivery of Cinnarizine Thermo- and Ion-Sensitive In Situ Hydrogels for Treatment of Microwave-Induced Brain Injury
title_fullStr Nasal Delivery of Cinnarizine Thermo- and Ion-Sensitive In Situ Hydrogels for Treatment of Microwave-Induced Brain Injury
title_full_unstemmed Nasal Delivery of Cinnarizine Thermo- and Ion-Sensitive In Situ Hydrogels for Treatment of Microwave-Induced Brain Injury
title_short Nasal Delivery of Cinnarizine Thermo- and Ion-Sensitive In Situ Hydrogels for Treatment of Microwave-Induced Brain Injury
title_sort nasal delivery of cinnarizine thermo- and ion-sensitive in situ hydrogels for treatment of microwave-induced brain injury
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8872061/
https://www.ncbi.nlm.nih.gov/pubmed/35200489
http://dx.doi.org/10.3390/gels8020108
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