Rheological assessments on alginate and carrageenan as nanoparticle carriers for topical oral cancer drug

Commercially available topical oral drugs in current markets have low efficacy in delivery active load to the infected site due to poor formulation. Delivery of the active ingredients proven to be challenging as compared to skin due the presence of saliva and low shear. The aim of this project to im...

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Bibliographic Details
Main Authors: Che Othman, Siti Fairuz, Burhan, Nurul Najihah, Hamzah, Nurasyikin, Zakaria, Siti Fatimah, Mohamed Suffian, Izzat Fahimuddin
Format: Article
Language:English
English
Published: Brawijaya University 2023
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Online Access:http://irep.iium.edu.my/104833/7/104833_Rheological%20assessments%20on%20alginate%20and%20carrageenan.pdf
http://irep.iium.edu.my/104833/8/104833_Rheological%20assessments%20on%20alginate%20and%20carrageenan_Scopus.pdf
http://irep.iium.edu.my/104833/
https://jtrolis.ub.ac.id/index.php/jtrolis/article/view/2593/643
https://doi.org/10.11594/jtls.13.02.02
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Summary:Commercially available topical oral drugs in current markets have low efficacy in delivery active load to the infected site due to poor formulation. Delivery of the active ingredients proven to be challenging as compared to skin due the presence of saliva and low shear. The aim of this project to improve formulation and characterised suit-able hydrogels which later will be incorporated with nanoparticle drug for oral cancer. The gels are formulated at different pH values (4, 7, 10) and concentrations as such (0.1%, 0.15%, 0.2%, 0.25%, 0.5% and 1.0% for alginate whereas kappa-carrageenan and iota-carrageenan were formulated with 0.25%, 0.5% and 1.0%). The viscosity and zeta potential of the formulated gels are studied using HAAKE™ MARS™ rheometer and Zetasiser Nano-Z respectively. Findings revealed both 1% of kappa-carrageenan and 1% iota-carrageenan of pH 4 and pH 7 are the best candidates for nanoparticle drug delivery as the viscosity and zeta potential for 1% kappa-carrageenan (pH 4), 1% kappa-carrageenan (pH 7), 1% iota-carrageenan (pH 4), and 1% iota-carrageenan (pH 7) amongst the highest as such 70.507±6.190, 61.040±3.199, 59.490±7.799, 67.953±2.034 Pa·s, correspondingly with zeta potential value of -19.4 mV, -20.6 mV, -33.1 mV and -30.4 mV. All hydrogels formulated with different concentration were affected by pH values, by having pH value 4 and 7 appeared to have high viscosity with pseudoplastic behaviour based on the rheological profile, except for alginate due to high density sodium alginate was used in this study.