Agarose/succinoglycan hydrogels were prepared as pH-responsive drug delivery systems with significantly improved flexibility, thermostability, and porosity compared to agarose gels alone. Agarose/succinoglycan hydrogels were made using agarose and succinoglycan, a polysaccharide directly isolated from Sinorhizobium meliloti. Mechanical and physical properties of agarose/succinoglycan hydrogels were investigated using various instrumental methods such as rheological measurements, attenuated total reflection–Fourier transform infrared (ATR-FTIR) spectroscopic analysis, X-ray diffraction (XRD), and field-emission scanning electron microscopy (FE-SEM). The results showed that the agarose/succinoglycan hydrogels became flexible and stable networ...
Although there was great interest in the biocompatible and stimuli responsive polymeric materials in...
In the current research work, pH-sensitive hydrogels were prepared via a free radical polymerization...
Hydrogels are three-dimensional, hydrophilic, polymeric networks, with chemical or physical cross-li...
We prepared the self-healing and temperature/pH-responsive hydrogels using oxidized succinoglycan (O...
Carboxymethyl cellulose (CMC)-based hydrogels are generally superabsorbent and biocompatible, but th...
Novel pH sensitive N-succinyl chitosan-g-poly (acrylic acid) hydrogels were synthesized through free...
Environmentally sensitive hydrogels have been investigated as smart drug delivery systems capable to...
There has been significant progress in the last few decades in addressing the biomedical application...
Over the last years of research on drug delivery systems (DDSs), natural polymer-based hydrogels hav...
<p>Agar–gelatin-based co-hydrogels were prepared with different compositions of the agar and the gel...
The development of biodegradable polysaccharide hydrogel matrices for cytostatic delivery can improv...
The pH-responsive hydrogels were obtained through successive carboxymethylation and phosphorylase el...
In this study, novel pH-responsive polymeric β-cyclodextrin-graft-poly(acrylic acid/itaconic acid) h...
Agarose is a prominent marine polysaccharide representing reversible thermogelling behavior, outstan...
Due to their unique physical and chemical properties, hygrogels have been applied in various industr...
Although there was great interest in the biocompatible and stimuli responsive polymeric materials in...
In the current research work, pH-sensitive hydrogels were prepared via a free radical polymerization...
Hydrogels are three-dimensional, hydrophilic, polymeric networks, with chemical or physical cross-li...
We prepared the self-healing and temperature/pH-responsive hydrogels using oxidized succinoglycan (O...
Carboxymethyl cellulose (CMC)-based hydrogels are generally superabsorbent and biocompatible, but th...
Novel pH sensitive N-succinyl chitosan-g-poly (acrylic acid) hydrogels were synthesized through free...
Environmentally sensitive hydrogels have been investigated as smart drug delivery systems capable to...
There has been significant progress in the last few decades in addressing the biomedical application...
Over the last years of research on drug delivery systems (DDSs), natural polymer-based hydrogels hav...
<p>Agar–gelatin-based co-hydrogels were prepared with different compositions of the agar and the gel...
The development of biodegradable polysaccharide hydrogel matrices for cytostatic delivery can improv...
The pH-responsive hydrogels were obtained through successive carboxymethylation and phosphorylase el...
In this study, novel pH-responsive polymeric β-cyclodextrin-graft-poly(acrylic acid/itaconic acid) h...
Agarose is a prominent marine polysaccharide representing reversible thermogelling behavior, outstan...
Due to their unique physical and chemical properties, hygrogels have been applied in various industr...
Although there was great interest in the biocompatible and stimuli responsive polymeric materials in...
In the current research work, pH-sensitive hydrogels were prepared via a free radical polymerization...
Hydrogels are three-dimensional, hydrophilic, polymeric networks, with chemical or physical cross-li...