Development of Chitosan-Polyacrylic Acid Complex Systems for Enhanced Oral Delivery of Lactobacillus Gasseri and Bifidobacterium Bifidum Probiotics

O’la AL-Fawares,1 Areen Alshweiat,2 Alaa Abuawad3 1Department of Applied Biological Sciences, Faculty of Science, Al-Balqa Applied University, Al-salt, 19117, Jordan; 2Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, The Hashemite University, Zarqa, 1313...

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Main Authors: AL-Fawares O, Alshweiat A, Abuawad A
Format: Article
Language:English
Published: Dove Medical Press 2025-01-01
Series:Drug Design, Development and Therapy
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Online Access:https://www.dovepress.com/development-of-chitosan-polyacrylic-acid-complex-systems-for-enhanced--peer-reviewed-fulltext-article-DDDT
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author AL-Fawares O
Alshweiat A
Abuawad A
author_facet AL-Fawares O
Alshweiat A
Abuawad A
author_sort AL-Fawares O
collection DOAJ
description O’la AL-Fawares,1 Areen Alshweiat,2 Alaa Abuawad3 1Department of Applied Biological Sciences, Faculty of Science, Al-Balqa Applied University, Al-salt, 19117, Jordan; 2Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, The Hashemite University, Zarqa, 13133, Jordan; 3Department of Pharmaceutical Sciences and Pharmaceutics, Faculty of Pharmacy, ‎Applied ‎Science Private University, Amman, 11937, JordanCorrespondence: O’la AL-Fawares, Department of Applied Biological Sciences, Faculty of Science, Al-Balqa Applied University, P.O. Box 206, Al-salt, 19117, Jordan, Tel +9627997622457, Email ola.alfawares@bau.edu.joIntroduction: The beneficial effects of probiotics are encountered by their low viability in gastrointestinal conditions and their insufficient stability during manufacturing, throughut the gastrointestinal transit, and storage. Therefore, novel systems are highly required to improve probiotics delivery.Methods: In this study, Lactobacillus gasseri (L), Bifidobacterium bifidum (B), and a combination of L+B were encapsulated in chitosan (CS)-polyacrylic acid (PAA) complex systems (CS-PAA). The CS-PAA systems were analysed on basis of morphology, size, and zeta potential. The loaded CS-PAA systems were evaluated for their morphology, particle size, zetapotential, vaiability in both simulated gastroic and intestinal fluids, and stability at 4°C storage temparature. Moreover, the antibiofilm activity of the probiotics-loaded systems were evaluated againt Campylobacter jejuni, Pseudomonas aeruginosa and Escherichia coli.Results: Probiotic strains were successfully incorporated into the porous structures of the CS-PAA systems, either individually or in combination. The Loaded L, B, and L+B showed higher particle size than the unloaded particles and excellent viability in simulated gastric and intestinal fluids, where the free probiotic species were undetected. Additionally the loaded probiotic exhibited an anti-biofilm effect at 0.5 mg/mL concentration level.Conclusion: The CS-PAA complexes demonstrate a promising mechanism for the effective delivery of incorporated probiotics. The probiotics exhibited high viability and maintain stability under physiological conditions, and showed a remarkable anti-biofilm activity. These characteristics suggest that CS-PAA could serve as an alternative system for probiotics, enhancing gut microbiota health and offering a robust protection against microbial pathogens.Keywords: probiotics, Lactobacillus gasseri, Bifidobacterium bifidum, chitosan, encapsulation, polyacrylic acid
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spelling doaj-art-34ef3619bed943ceaee6e975946638f32025-01-27T18:05:33ZengDove Medical PressDrug Design, Development and Therapy1177-88812025-01-01Volume 1958559899599Development of Chitosan-Polyacrylic Acid Complex Systems for Enhanced Oral Delivery of Lactobacillus Gasseri and Bifidobacterium Bifidum ProbioticsAL-Fawares OAlshweiat AAbuawad AO’la AL-Fawares,1 Areen Alshweiat,2 Alaa Abuawad3 1Department of Applied Biological Sciences, Faculty of Science, Al-Balqa Applied University, Al-salt, 19117, Jordan; 2Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, The Hashemite University, Zarqa, 13133, Jordan; 3Department of Pharmaceutical Sciences and Pharmaceutics, Faculty of Pharmacy, ‎Applied ‎Science Private University, Amman, 11937, JordanCorrespondence: O’la AL-Fawares, Department of Applied Biological Sciences, Faculty of Science, Al-Balqa Applied University, P.O. Box 206, Al-salt, 19117, Jordan, Tel +9627997622457, Email ola.alfawares@bau.edu.joIntroduction: The beneficial effects of probiotics are encountered by their low viability in gastrointestinal conditions and their insufficient stability during manufacturing, throughut the gastrointestinal transit, and storage. Therefore, novel systems are highly required to improve probiotics delivery.Methods: In this study, Lactobacillus gasseri (L), Bifidobacterium bifidum (B), and a combination of L+B were encapsulated in chitosan (CS)-polyacrylic acid (PAA) complex systems (CS-PAA). The CS-PAA systems were analysed on basis of morphology, size, and zeta potential. The loaded CS-PAA systems were evaluated for their morphology, particle size, zetapotential, vaiability in both simulated gastroic and intestinal fluids, and stability at 4°C storage temparature. Moreover, the antibiofilm activity of the probiotics-loaded systems were evaluated againt Campylobacter jejuni, Pseudomonas aeruginosa and Escherichia coli.Results: Probiotic strains were successfully incorporated into the porous structures of the CS-PAA systems, either individually or in combination. The Loaded L, B, and L+B showed higher particle size than the unloaded particles and excellent viability in simulated gastric and intestinal fluids, where the free probiotic species were undetected. Additionally the loaded probiotic exhibited an anti-biofilm effect at 0.5 mg/mL concentration level.Conclusion: The CS-PAA complexes demonstrate a promising mechanism for the effective delivery of incorporated probiotics. The probiotics exhibited high viability and maintain stability under physiological conditions, and showed a remarkable anti-biofilm activity. These characteristics suggest that CS-PAA could serve as an alternative system for probiotics, enhancing gut microbiota health and offering a robust protection against microbial pathogens.Keywords: probiotics, Lactobacillus gasseri, Bifidobacterium bifidum, chitosan, encapsulation, polyacrylic acidhttps://www.dovepress.com/development-of-chitosan-polyacrylic-acid-complex-systems-for-enhanced--peer-reviewed-fulltext-article-DDDTprobioticslactobacillus gasseribifidobacterium bifidumchitosanencapsulationpolyacrylic acid.
spellingShingle AL-Fawares O
Alshweiat A
Abuawad A
Development of Chitosan-Polyacrylic Acid Complex Systems for Enhanced Oral Delivery of Lactobacillus Gasseri and Bifidobacterium Bifidum Probiotics
Drug Design, Development and Therapy
probiotics
lactobacillus gasseri
bifidobacterium bifidum
chitosan
encapsulation
polyacrylic acid.
title Development of Chitosan-Polyacrylic Acid Complex Systems for Enhanced Oral Delivery of Lactobacillus Gasseri and Bifidobacterium Bifidum Probiotics
title_full Development of Chitosan-Polyacrylic Acid Complex Systems for Enhanced Oral Delivery of Lactobacillus Gasseri and Bifidobacterium Bifidum Probiotics
title_fullStr Development of Chitosan-Polyacrylic Acid Complex Systems for Enhanced Oral Delivery of Lactobacillus Gasseri and Bifidobacterium Bifidum Probiotics
title_full_unstemmed Development of Chitosan-Polyacrylic Acid Complex Systems for Enhanced Oral Delivery of Lactobacillus Gasseri and Bifidobacterium Bifidum Probiotics
title_short Development of Chitosan-Polyacrylic Acid Complex Systems for Enhanced Oral Delivery of Lactobacillus Gasseri and Bifidobacterium Bifidum Probiotics
title_sort development of chitosan polyacrylic acid complex systems for enhanced oral delivery of lactobacillus gasseri and bifidobacterium bifidum probiotics
topic probiotics
lactobacillus gasseri
bifidobacterium bifidum
chitosan
encapsulation
polyacrylic acid.
url https://www.dovepress.com/development-of-chitosan-polyacrylic-acid-complex-systems-for-enhanced--peer-reviewed-fulltext-article-DDDT
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