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AuthorIbrahim, Berivan Ajeel
AuthorHussein, Nozad Rashid
AuthorOmer, Huner Kamal
AuthorElhissi, Abdelbary
AuthorKhan, Iftikhar
Available date2025-10-05T07:42:12Z
Publication Date2025-05-28
Publication NameDrug Development and Industrial Pharmacy
Identifierhttp://dx.doi.org/10.1080/03639045.2025.2506651
CitationIbrahim, B. A., Hussein, N. R., Omer, H. K., Elhissi, A., & Khan, I. (2025). Enhancing gliclazide solubility using solid dispersions with carboxymethyl chitosan and polyvinylpyrrolidone K30 as polymeric carriers. Drug Development and Industrial Pharmacy, (just-accepted), 1-16.
ISSN0363-9045
URIhttps://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=105007015371&origin=inward
URIhttp://hdl.handle.net/10576/67683
AbstractBackground: Gliclazide (Glz) is a second-generation sulfonylurea antidiabetic drug, used to treat type II diabetes mellitus. Glz is a class II drug according to the biopharmaceutic classification system (BCS), indicating that it has high permeability and poor aqueous solubility. Objective: This study aimed to improve the solubility of Glz via the solid dispersion method. Methods: Solid dispersions of the drug were formulated using carboxymethyl chitosan (CMch) and polyvinyl pyrrolidone K30 (PVP K30) in varying drug to carrier ratios (1:1, 1:3, and 1:5 w/w) using kneading and solvent evaporation methods. The solubility of Glz solid dispersions was compared with the pure Glz and co-grounded mixtures of the drug. Results: Both carriers exhibited a noticeable increment in solubility and dissolution rate compared to the drug alone. Glz: CMch (1:5 w/w ratio) formulation made by the kneading method exhibited an increased solubility by approximately nine folds (337.79 ± 4.22 µg/ml) as compared to Glz alone (38.74 ± 4.69 µg/ml). However, the greatest improvement in drug dissolution rate was observed in the dispersion made with 1:5 w/w drug to PVP K30 using the solvent evaporation method, and the percentage drug release reached 100% after 30 min. Solid dispersions characterization manifested the compatibility between the drug and carriers, with alteration in particle morphology, and reduction in drug crystallinity. Conclusion: Overall, solid dispersion using CMch has shown to be an excellent approach for enhancing the solubility and dissolution of the class II drug Glz.
Languageen
PublisherTaylor and Francis
Subjectcarboxymethyl chitosan
class II drug
co-grinding
gliclazide
kneading
Solid dispersion
solubility
solvent evaporation
TitleEnhancing gliclazide solubility using solid dispersions with carboxymethyl chitosan and polyvinylpyrrolidone K30 as polymeric carriers
TypeArticle
Pagination1-16
Issue Number7
Volume Number51
ESSN1520-5762
dc.accessType Open Access


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