Citric acid cross-linked glucuronoxylans: A pH-sensitive polysaccharide material for responsive swelling-deswelling vs various biomimetic stimuli and zero-order drug release
暂无分享,去创建一个
[1] S. Hashemi,et al. Characterizations and rheological study of the purified polysaccharide extracted from quince seeds. , 2018, Journal of the science of food and agriculture.
[2] Bilal Ahmad Lodhi,et al. Polysaccharide-Based Superporous, Superabsorbent, and Stimuli Responsive Hydrogel from Sweet Basil: A Novel Material for Sustained Drug Release , 2019, Advances in Polymer Technology.
[3] Gulzar Muhammad,et al. Quince Seed Mucilage: A Stimuli-Responsive/Smart Biopolymer , 2018, Polymers and Polymeric Composites: A Reference Series.
[4] S. Bashir,et al. Quince seed hydrogel (glucuronoxylan): Evaluation of stimuli responsive sustained release oral drug delivery system and biomedical properties , 2018, Journal of Drug Delivery Science and Technology.
[5] Ajay Kumar,et al. Network formation of Moringa oleifera gum by radiation induced crosslinking: Evaluation of drug delivery, network parameters and biomedical properties. , 2018, International journal of biological macromolecules.
[6] S. Bashir,et al. A superporous and superabsorbent glucuronoxylan hydrogel from quince (Cydonia oblanga): Stimuli responsive swelling, on-off switching and drug release. , 2017, International journal of biological macromolecules.
[7] S. N. Bukhari,et al. Mimosa pudica L., a High-Value Medicinal Plant as a Source of Bioactives for Pharmaceuticals. , 2016, Comprehensive reviews in food science and food safety.
[8] I. Hussain,et al. Polysaccharide based superabsorbent hydrogel from Mimosa pudica: swelling–deswelling and drug release , 2016 .
[9] S. Bashir,et al. Polysaccharides based superabsorbent hydrogel from Linseed: Dynamic swelling, stimuli responsive on-off switching and drug release. , 2016, Carbohydrate polymers.
[10] T. Vuorinen,et al. Cross-linking of cellulose and poly(ethylene glycol) with citric acid , 2015 .
[11] J. Maitra,et al. Cross-linking in Hydrogels - A Review , 2014 .
[12] Nilimanka Das. PREPARATION METHODS AND PROPERTIES OF HYDROGEL: A REVIEW , 2013 .
[13] S. Polat,et al. Effects of glyoxal cross-linking on baked starch foam , 2012 .
[14] Z. Zafar,et al. Effect of Cross Linker Concentration on Swelling Kinetics of a Synthesized Ternary Co-Polymer System , 2012 .
[15] S. Al-Deyab,et al. Hydrogel from crosslinked polyacrylamide/guar gum graft copolymer for sorption of hexavalent chromium ion , 2011 .
[16] Yuuki Takeda,et al. Role of boric acid for a poly (vinyl alcohol) film as a cross-linking agent: Melting behaviors of the films with boric acid , 2010 .
[17] Denis Labarre,et al. Improving Blood-Compatibility of Polymeric Surfaces , 2010 .
[18] L. Nicolais,et al. Novel superabsorbent cellulose‐based hydrogels crosslinked with citric acid , 2008 .
[19] H. Zou,et al. Application of cross‐linked β‐cyclodextrin polymer for adsorption of aromatic amino acids , 2006, Journal of molecular recognition : JMR.
[20] A. Pourjavadi,et al. Modified carrageenan. 5: Preparation, swelling behavior, salt- and ph-sensitivity of partially hydrolyzed crosslinked carrageenan-graft-polymethacrylamide superabsorbent hydrogel , 2004 .
[21] R. Lapasin,et al. Scleroglucan/borax: characterization of a novel hydrogel system suitable for drug delivery. , 2003, Biomaterials.
[22] Allan S Hoffman,et al. Hydrogels for biomedical applications. , 2002, Advanced drug delivery reviews.
[23] Nicholas A. Peppas,et al. A simple equation for description of solute release II. Fickian and anomalous release from swellable devices , 1987 .
[24] N. Peppas,et al. Mechanisms of solute release from porous hydrophilic polymers , 1983 .
[25] M Gibaldi,et al. Establishment of sink conditions in dissolution rate determinations. Theoretical considerations and application to nondisintegrating dosage forms. , 1967, Journal of pharmaceutical sciences.
[26] A. Rijke,et al. The swelling of cellulose acetate networks obtained by crosslinking in solution , 1962 .