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A pH-sensitive, stimuli-responsive, superabsorbent, smart hydrogel from psyllium (Plantago ovata) for intelligent drug delivery

Herein, we report a polysaccharide-based hydrogel isolated from psyllium husk (a well-known dietary fiber) and evaluated for its swelling properties in deionized water (DW) at different physiological pH values, i.e., 1.2, 6.8 and 7.4. Swelling of psyllium hydrogel (PSH) in DW under the influence of...

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Autores principales: Irfan, Jaffar, Hussain, Muhammad Ajaz, Haseeb, Muhammad Tahir, Ali, Arshad, Farid-ul-Haq, Muhammad, Tabassum, Tahira, Hussain, Syed Zajif, Hussain, Irshad, Naeem-ul-Hassan, Muhammad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9033674/
https://www.ncbi.nlm.nih.gov/pubmed/35479196
http://dx.doi.org/10.1039/d1ra02219a
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author Irfan, Jaffar
Hussain, Muhammad Ajaz
Haseeb, Muhammad Tahir
Ali, Arshad
Farid-ul-Haq, Muhammad
Tabassum, Tahira
Hussain, Syed Zajif
Hussain, Irshad
Naeem-ul-Hassan, Muhammad
author_facet Irfan, Jaffar
Hussain, Muhammad Ajaz
Haseeb, Muhammad Tahir
Ali, Arshad
Farid-ul-Haq, Muhammad
Tabassum, Tahira
Hussain, Syed Zajif
Hussain, Irshad
Naeem-ul-Hassan, Muhammad
author_sort Irfan, Jaffar
collection PubMed
description Herein, we report a polysaccharide-based hydrogel isolated from psyllium husk (a well-known dietary fiber) and evaluated for its swelling properties in deionized water (DW) at different physiological pH values, i.e., 1.2, 6.8 and 7.4. Swelling of psyllium hydrogel (PSH) in DW under the influence of temperature and at different concentrations of NaCl and KCl solutions was also examined. A pH-dependent swelling pattern of PSH was observed following the order DW > pH 7.4 > pH 6.8 > pH 1.2. Stimuli-responsive swelling and deswelling (on–off switching) behavior of PSH was observed in DW and ethanol, DW and normal saline, at pH 7.4 and pH 1.2 environments, respectively. Similar swelling behavior and on–off switching attribute of PSH-containing tablets indicated the unaltered nature of PSH even after compression. Scanning electron micrographs of swollen and then freeze-dried PSH via transverse and longitudinal cross-sections revealed hollow channels with an average pore size of 6 ± 2 μm. Furthermore, PSH concentration-dependent sustained release of theophylline from tablet formulation was witnessed for >15 h following the non-Fickian diffusion mechanism. Subacute toxicity studies revealed the non-toxic nature of PSH. Therefore, dietary fiber-based material, i.e., PSH could be a valuable pharmaceutical excipient for intelligent and targeted drug delivery.
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spelling pubmed-90336742022-04-26 A pH-sensitive, stimuli-responsive, superabsorbent, smart hydrogel from psyllium (Plantago ovata) for intelligent drug delivery Irfan, Jaffar Hussain, Muhammad Ajaz Haseeb, Muhammad Tahir Ali, Arshad Farid-ul-Haq, Muhammad Tabassum, Tahira Hussain, Syed Zajif Hussain, Irshad Naeem-ul-Hassan, Muhammad RSC Adv Chemistry Herein, we report a polysaccharide-based hydrogel isolated from psyllium husk (a well-known dietary fiber) and evaluated for its swelling properties in deionized water (DW) at different physiological pH values, i.e., 1.2, 6.8 and 7.4. Swelling of psyllium hydrogel (PSH) in DW under the influence of temperature and at different concentrations of NaCl and KCl solutions was also examined. A pH-dependent swelling pattern of PSH was observed following the order DW > pH 7.4 > pH 6.8 > pH 1.2. Stimuli-responsive swelling and deswelling (on–off switching) behavior of PSH was observed in DW and ethanol, DW and normal saline, at pH 7.4 and pH 1.2 environments, respectively. Similar swelling behavior and on–off switching attribute of PSH-containing tablets indicated the unaltered nature of PSH even after compression. Scanning electron micrographs of swollen and then freeze-dried PSH via transverse and longitudinal cross-sections revealed hollow channels with an average pore size of 6 ± 2 μm. Furthermore, PSH concentration-dependent sustained release of theophylline from tablet formulation was witnessed for >15 h following the non-Fickian diffusion mechanism. Subacute toxicity studies revealed the non-toxic nature of PSH. Therefore, dietary fiber-based material, i.e., PSH could be a valuable pharmaceutical excipient for intelligent and targeted drug delivery. The Royal Society of Chemistry 2021-06-01 /pmc/articles/PMC9033674/ /pubmed/35479196 http://dx.doi.org/10.1039/d1ra02219a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Irfan, Jaffar
Hussain, Muhammad Ajaz
Haseeb, Muhammad Tahir
Ali, Arshad
Farid-ul-Haq, Muhammad
Tabassum, Tahira
Hussain, Syed Zajif
Hussain, Irshad
Naeem-ul-Hassan, Muhammad
A pH-sensitive, stimuli-responsive, superabsorbent, smart hydrogel from psyllium (Plantago ovata) for intelligent drug delivery
title A pH-sensitive, stimuli-responsive, superabsorbent, smart hydrogel from psyllium (Plantago ovata) for intelligent drug delivery
title_full A pH-sensitive, stimuli-responsive, superabsorbent, smart hydrogel from psyllium (Plantago ovata) for intelligent drug delivery
title_fullStr A pH-sensitive, stimuli-responsive, superabsorbent, smart hydrogel from psyllium (Plantago ovata) for intelligent drug delivery
title_full_unstemmed A pH-sensitive, stimuli-responsive, superabsorbent, smart hydrogel from psyllium (Plantago ovata) for intelligent drug delivery
title_short A pH-sensitive, stimuli-responsive, superabsorbent, smart hydrogel from psyllium (Plantago ovata) for intelligent drug delivery
title_sort ph-sensitive, stimuli-responsive, superabsorbent, smart hydrogel from psyllium (plantago ovata) for intelligent drug delivery
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9033674/
https://www.ncbi.nlm.nih.gov/pubmed/35479196
http://dx.doi.org/10.1039/d1ra02219a
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