Sepiolite reinforced alginate-based hydrogels for drug delivery applications

Abstract Cephradine is a first-generation bactericidal cephalosporin widely used for the treatment of urinary, respiratory and skin infections. When it is taken with the amount of 8–17%, this drug binds to serum, whereas almost 83–92% of it is released via the urinary tract without producing therapeutic action. The alginate-based hydrogels demonstrate lower stabilities and less drug loading efficacy. However, in the present work, we have prepared sepiolite (SEP) reinforced sodium alginate (SA)/poly(ethylene glycol) (PEG) hydrogels cross-linked with 3-aminopropyl(triethoxy)silane (APTES) cross-linker. The fabricated hydrogels were characterized by Fourier transform infrared spectroscopy (FTIR) and thermal gravimetric analysis, which confirmed the development of the hydrogel interfaces. The hydrogels exhibited good swelling capability in distilled water that obeyed non-Fickian diffusion processes. The maximum swelling was exhibited at pH 8 in buffer and non-buffer solutions. In addition, swelling abilities of the hydrogels decreased with the increase in the amount of APTES. Degradation test confirmed their degradable nature for up to 7 days. In 7h, 81.32% of the cephradine was released and determined using a UV-visible spectrophotometer. Therefore, the biodegradable and pH-responsive SA/PEG/SEP hydrogel platform can be a valuable choice for the sustained delivery of drugs to deal with urinary and lower gastrointestinal infections.

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Publication Details

Journal
Royal Society Open Science
Published
2026-08-26
DOI
https://doi.org/10.1098/rsos.251763
Primary Topic
Hydrogels: synthesis, properties, applications
Type
article
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article

Sepiolite reinforced alginate-based hydrogels for drug delivery applications

Muhammad Anees Ur Rehman Qureshi, Atif Islam, Muhammad Shoaib Ali Gill, Muhammad Shoaib Butt et al.
Royal Society Open Science
Hydrogels: synthesis, properties, applications
article

Sepiolite reinforced alginate-based hydrogels for drug delivery applications

Muhammad Anees Ur Rehman Qureshi, Atif Islam, Muhammad Shoaib Ali Gill, Muhammad Shoaib Butt, Atta Rasool, Muhammad Naqeeb Ur Rehman Qureshi, Muhammad Jahanzaib Javaid, Ibrar Hassan
article en

Abstract

Abstract Cephradine is a first-generation bactericidal cephalosporin widely used for the treatment of urinary, respiratory and skin infections. When it is taken with the amount of 8–17%, this drug binds to serum, whereas almost 83–92% of it is released via the urinary tract without producing therapeutic action. The alginate-based hydrogels demonstrate lower stabilities and less drug loading efficacy. However, in the present work, we have prepared sepiolite (SEP) reinforced sodium alginate (SA)/poly(ethylene glycol) (PEG) hydrogels cross-linked with 3-aminopropyl(triethoxy)silane (APTES) cross-linker. The fabricated hydrogels were characterized by Fourier transform infrared spectroscopy (FTIR) and thermal gravimetric analysis, which confirmed the development of the hydrogel interfaces. The hydrogels exhibited good swelling capability in distilled water that obeyed non-Fickian diffusion processes. The maximum swelling was exhibited at pH 8 in buffer and non-buffer solutions. In addition, swelling abilities of the hydrogels decreased with the increase in the amount of APTES. Degradation test confirmed their degradable nature for up to 7 days. In 7h, 81.32% of the cephradine was released and determined using a UV-visible spectrophotometer. Therefore, the biodegradable and pH-responsive SA/PEG/SEP hydrogel platform can be a valuable choice for the sustained delivery of drugs to deal with urinary and lower gastrointestinal infections.

Royal Society Open ScienceVol. 13(8)
Services Institute of Medical Sciences (PK), University of the Punjab (PK), Allama Iqbal Open University (PK), Pir Mehr Ali Shah Arid Agriculture University (PK), National University of Technology (PK), University of Veterinary and Animal Sciences (PK)
Openalex Percentile: Top 18%
Hydrogels: synthesis, properties, applications
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