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Direct and enhanced delivery of nanoliposomes of anti schizophrenic agent to the brain through nasal route

The problem of inadequate oral bioavailability of Quetiapine Fumarate, a lipophilic drug used for schizophrenia, due to hepatic metabolism and repulsion by brain barrier was attempted in this study. Combination of two approaches, viz. Quetiapine inclusion into the liposomal carrier for better diffus...

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Autores principales: Upadhyay, Pratik, Trivedi, Jatin, Pundarikakshudu, Kilambi, Sheth, Navin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5357100/
https://www.ncbi.nlm.nih.gov/pubmed/28344488
http://dx.doi.org/10.1016/j.jsps.2016.07.003
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author Upadhyay, Pratik
Trivedi, Jatin
Pundarikakshudu, Kilambi
Sheth, Navin
author_facet Upadhyay, Pratik
Trivedi, Jatin
Pundarikakshudu, Kilambi
Sheth, Navin
author_sort Upadhyay, Pratik
collection PubMed
description The problem of inadequate oral bioavailability of Quetiapine Fumarate, a lipophilic drug used for schizophrenia, due to hepatic metabolism and repulsion by brain barrier was attempted in this study. Combination of two approaches, viz. Quetiapine inclusion into the liposomal carrier for better diffusion and administration through nasal route to avoid hepatic metabolism and barrier elimination was applied. Thin film hydration followed by sonication method was employed in liposome preparation and the formulation was optimized using 3(2) full factorial design. The number of sonication cycles (X(1)) of 2 min and 80% amplitude and molar ratio of constructional components such as cholesterol to egg phosphatidylcholine (X(2)) as independent variables and a % of entrapment efficiency (Y(1)) and cumulative in vitro drug release (Y(2)) at 6 h as dependent variables was selected. Batch F7 prepared by 2 cycles of sonication and 1:3 M ratio of cholesterol:egg phosphatidylcholine was optimized as a consequence of substantial entrapment efficiency of 75.63 ± 3.77%, and 99.92 ± 1.88% drug release and 32.33 ± 1.53% drug diffusion, which was optimum among all other batches at 6 h. Diffusion study was done for all the batches of liposomal formulation by using sheep nasal mucosa and good amount with better diffusion rate was measured which proved liposomal dispersion a virtuous delivery system for brain drug delivery through nasal route. Results of in vivo, ciliotoxicity and gamma scintigraphy studies on mice supported the above inference.
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spelling pubmed-53571002017-03-24 Direct and enhanced delivery of nanoliposomes of anti schizophrenic agent to the brain through nasal route Upadhyay, Pratik Trivedi, Jatin Pundarikakshudu, Kilambi Sheth, Navin Saudi Pharm J Original Article The problem of inadequate oral bioavailability of Quetiapine Fumarate, a lipophilic drug used for schizophrenia, due to hepatic metabolism and repulsion by brain barrier was attempted in this study. Combination of two approaches, viz. Quetiapine inclusion into the liposomal carrier for better diffusion and administration through nasal route to avoid hepatic metabolism and barrier elimination was applied. Thin film hydration followed by sonication method was employed in liposome preparation and the formulation was optimized using 3(2) full factorial design. The number of sonication cycles (X(1)) of 2 min and 80% amplitude and molar ratio of constructional components such as cholesterol to egg phosphatidylcholine (X(2)) as independent variables and a % of entrapment efficiency (Y(1)) and cumulative in vitro drug release (Y(2)) at 6 h as dependent variables was selected. Batch F7 prepared by 2 cycles of sonication and 1:3 M ratio of cholesterol:egg phosphatidylcholine was optimized as a consequence of substantial entrapment efficiency of 75.63 ± 3.77%, and 99.92 ± 1.88% drug release and 32.33 ± 1.53% drug diffusion, which was optimum among all other batches at 6 h. Diffusion study was done for all the batches of liposomal formulation by using sheep nasal mucosa and good amount with better diffusion rate was measured which proved liposomal dispersion a virtuous delivery system for brain drug delivery through nasal route. Results of in vivo, ciliotoxicity and gamma scintigraphy studies on mice supported the above inference. Elsevier 2017-03 2016-08-05 /pmc/articles/PMC5357100/ /pubmed/28344488 http://dx.doi.org/10.1016/j.jsps.2016.07.003 Text en © 2016 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Upadhyay, Pratik
Trivedi, Jatin
Pundarikakshudu, Kilambi
Sheth, Navin
Direct and enhanced delivery of nanoliposomes of anti schizophrenic agent to the brain through nasal route
title Direct and enhanced delivery of nanoliposomes of anti schizophrenic agent to the brain through nasal route
title_full Direct and enhanced delivery of nanoliposomes of anti schizophrenic agent to the brain through nasal route
title_fullStr Direct and enhanced delivery of nanoliposomes of anti schizophrenic agent to the brain through nasal route
title_full_unstemmed Direct and enhanced delivery of nanoliposomes of anti schizophrenic agent to the brain through nasal route
title_short Direct and enhanced delivery of nanoliposomes of anti schizophrenic agent to the brain through nasal route
title_sort direct and enhanced delivery of nanoliposomes of anti schizophrenic agent to the brain through nasal route
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5357100/
https://www.ncbi.nlm.nih.gov/pubmed/28344488
http://dx.doi.org/10.1016/j.jsps.2016.07.003
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