Alginate nanoformulation: influence of process and selected variables

Nanocarriers are defined as structures and devices that are constructed using nanomaterials which add functionality to the encapsulants. Being small in size and having a customized surface, improved solubility and multi-functionality, it is envisaged that nanoparticles will continue to create new...

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Main Authors: Hazem, Choukaife, Doolaanea, Abd Almonem, Alfatama, Mulham
Format: Article
Language:English
English
English
Published: MDPI AG 2020
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spelling my.iium.irep.879272021-01-19T12:32:07Z http://irep.iium.edu.my/87927/ Alginate nanoformulation: influence of process and selected variables Hazem, Choukaife Doolaanea, Abd Almonem Alfatama, Mulham RS192 Materia Medica-Pharmaceutical Technology Nanocarriers are defined as structures and devices that are constructed using nanomaterials which add functionality to the encapsulants. Being small in size and having a customized surface, improved solubility and multi-functionality, it is envisaged that nanoparticles will continue to create new biomedical applications owing to their stability, solubility, and bioavailability, as well as controlled release of drugs. The type and physiochemical as well as morphological attributes of nanoparticles influence their interaction with living cells and determine the route of administration, clearance, as well as related toxic effects. Over the past decades, biodegradable polymers such as polysaccharides have drowned a great deal of attention in pharmaceutical industry with respect to designing of drug delivery systems. On this note, biodegradable polymeric nanocarrier is deemed to control the release of the drug, stabilize labile molecules from degradation and site-specific drug targeting, with the main aim of reducing the dosing frequency and prolonging the therapeutic outcomes. Thus, it is essential to select the appropriate biopolymer material, e.g., sodium alginate to formulate nanoparticles for controlled drug delivery. Alginate has attracted considerable interest in pharmaceutical and biomedical applications as a matrix material of nanocarriers due to its inherent biological properties, including good biocompatibility and biodegradability. Various techniques have been adopted to synthesize alginate nanoparticles in order to introduce more rational, coherent, efficient and cost-effective properties. This review highlights the most used and recent manufacturing techniques of alginate-based nanoparticulate delivery system, including emulsification/gelation complexation, layer-by-layer, spray drying, electrospray and electrospinning methods. Besides, the effects of the main processing and formulation parameters on alginate nanoparticles are also summarized MDPI AG 2020-11 Article PeerReviewed application/pdf en http://irep.iium.edu.my/87927/1/87927_Alginate%20nanoformulation%20influence%20of%20process.pdf application/pdf en http://irep.iium.edu.my/87927/2/87927_Alginate%20nanoformulation%20influence%20of%20process_SCOPUS.pdf application/pdf en http://irep.iium.edu.my/87927/3/87927_Alginate%20nanoformulation%20influence%20of%20process_WoS.pdf Hazem, Choukaife and Doolaanea, Abd Almonem and Alfatama, Mulham (2020) Alginate nanoformulation: influence of process and selected variables. Pharmaceuticals, 13 (11). pp. 1-35. ISSN 1424-8247 https://www.mdpi.com/1424-8247/13/11/335/htm 10.3390/ph13110335
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
English
English
topic RS192 Materia Medica-Pharmaceutical Technology
spellingShingle RS192 Materia Medica-Pharmaceutical Technology
Hazem, Choukaife
Doolaanea, Abd Almonem
Alfatama, Mulham
Alginate nanoformulation: influence of process and selected variables
description Nanocarriers are defined as structures and devices that are constructed using nanomaterials which add functionality to the encapsulants. Being small in size and having a customized surface, improved solubility and multi-functionality, it is envisaged that nanoparticles will continue to create new biomedical applications owing to their stability, solubility, and bioavailability, as well as controlled release of drugs. The type and physiochemical as well as morphological attributes of nanoparticles influence their interaction with living cells and determine the route of administration, clearance, as well as related toxic effects. Over the past decades, biodegradable polymers such as polysaccharides have drowned a great deal of attention in pharmaceutical industry with respect to designing of drug delivery systems. On this note, biodegradable polymeric nanocarrier is deemed to control the release of the drug, stabilize labile molecules from degradation and site-specific drug targeting, with the main aim of reducing the dosing frequency and prolonging the therapeutic outcomes. Thus, it is essential to select the appropriate biopolymer material, e.g., sodium alginate to formulate nanoparticles for controlled drug delivery. Alginate has attracted considerable interest in pharmaceutical and biomedical applications as a matrix material of nanocarriers due to its inherent biological properties, including good biocompatibility and biodegradability. Various techniques have been adopted to synthesize alginate nanoparticles in order to introduce more rational, coherent, efficient and cost-effective properties. This review highlights the most used and recent manufacturing techniques of alginate-based nanoparticulate delivery system, including emulsification/gelation complexation, layer-by-layer, spray drying, electrospray and electrospinning methods. Besides, the effects of the main processing and formulation parameters on alginate nanoparticles are also summarized
format Article
author Hazem, Choukaife
Doolaanea, Abd Almonem
Alfatama, Mulham
author_facet Hazem, Choukaife
Doolaanea, Abd Almonem
Alfatama, Mulham
author_sort Hazem, Choukaife
title Alginate nanoformulation: influence of process and selected variables
title_short Alginate nanoformulation: influence of process and selected variables
title_full Alginate nanoformulation: influence of process and selected variables
title_fullStr Alginate nanoformulation: influence of process and selected variables
title_full_unstemmed Alginate nanoformulation: influence of process and selected variables
title_sort alginate nanoformulation: influence of process and selected variables
publisher MDPI AG
publishDate 2020
url http://irep.iium.edu.my/87927/1/87927_Alginate%20nanoformulation%20influence%20of%20process.pdf
http://irep.iium.edu.my/87927/2/87927_Alginate%20nanoformulation%20influence%20of%20process_SCOPUS.pdf
http://irep.iium.edu.my/87927/3/87927_Alginate%20nanoformulation%20influence%20of%20process_WoS.pdf
http://irep.iium.edu.my/87927/
https://www.mdpi.com/1424-8247/13/11/335/htm
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score 13.15806