Your browser doesn't support javascript.
loading
pH-Responsive Cellulose/Silk/Fe3O4 Hydrogel Microbeads Designed for Biomedical Applications.
Weon, Seung Hyeon; Na, Yuhyeon; Han, Jiwoo; Lee, Jeong Woo; Kim, Hyung Joo; Park, Saerom; Lee, Sang Hyun.
Afiliação
  • Weon SH; Department of Biological Engineering, Konkuk University, Seoul 05029, Republic of Korea.
  • Na Y; Department of Biological Engineering, Konkuk University, Seoul 05029, Republic of Korea.
  • Han J; Department of Biological Engineering, Konkuk University, Seoul 05029, Republic of Korea.
  • Lee JW; Department of Biological Engineering, Konkuk University, Seoul 05029, Republic of Korea.
  • Kim HJ; Department of Biological Engineering, Konkuk University, Seoul 05029, Republic of Korea.
  • Park S; Department of Biological Engineering, Konkuk University, Seoul 05029, Republic of Korea.
  • Lee SH; Department of Biological Engineering, Konkuk University, Seoul 05029, Republic of Korea.
Gels ; 10(3)2024 Mar 16.
Article em En | MEDLINE | ID: mdl-38534618
ABSTRACT
In this study, cellulose/Fe3O4 hydrogel microbeads were prepared through the sol-gel transition of a solvent-in-oil emulsion using various cellulose-dissolving solvents and soybean oil without surfactants. Particularly, 40% tetrabutylammonium hydroxide (TBAH) and 40% tetrabutylphosphonium hydroxide (TBPH) dissolved cellulose at room temperature and effectively dispersed Fe3O4, forming cellulose/Fe3O4 microbeads with an average diameter of ~15 µm. Additionally, these solvents co-dissolved cellulose and silk, allowing for the manufacture of cellulose/silk/Fe3O4 hydrogel microbeads with altered surface characteristics. Owing to the negatively charged surface characteristics, the adsorption capacity of the cellulose/silk/Fe3O4 microbeads for the cationic dye crystal violet was >10 times higher than that of the cellulose/Fe3O4 microbeads. When prepared with TBAH, the initial adsorption rate of bovine serum albumin (BSA) on the cellulose/silk/Fe3O4 microbeads was 18.1 times higher than that on the cellulose/Fe3O4 microbeads. When preparing TBPH, the equilibrium adsorption capacity of the cellulose/silk/Fe3O4 microbeads for BSA (1.6 g/g) was 8.5 times higher than that of the cellulose/Fe3O4 microbeads. The pH-dependent BSA release from the cellulose/silk/Fe3O4 microbeads prepared with TBPH revealed 6.1-fold slower initial desorption rates and 5.2-fold lower desorption amounts at pH 2.2 than those at pH 7.4. Cytotoxicity tests on the cellulose and cellulose/silk composites regenerated with TBAH and TBPH yielded nontoxic results. Therefore, cellulose/silk/Fe3O4 microbeads are considered suitable pH-responsive supports for orally administered protein pharmaceuticals.
Palavras-chave

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article