The present study reports the formulations of biocompatible nanocomposite hydrogels using chitosan (CH), poly(vinyl alcohol) (PVA), oleo polyol, and fumed silica (SiO2) via a free radical polymerization method for anti-cancer drug delivery. Structural, morphological, and mechanical analyses were conducted using FT-IR spectroscopy, scanning electron microscopy, transmission electron microscopy, and rheological techniques. The effect of SiO2 concentration on mechanical strength, swelling ratios, morphological, and drug delivery behavior was investigated. The incorporation of SiO2 nanoparticles in hydrogels resulted in a significant enhancement in its properties. MTT assay of human embryonic kidney (HEK-293) and human colon (HCT116) cancer ce...
The incorporation of both nitric oxide (NO) donor (S-nitrosoglutathione, GSNO) and silica nanopartic...
pH-responsive nanogels have played an increasingly momentous role in tumor treatment. The focus of t...
Sodium alginate and gelatin are biocompatible & biodegradable natural polymer hydrogels, which are w...
Nanocomposite hydrogels have found a wide scope in regenerative medicine, tissue engineering, and sm...
The present work was conducted to develop a biocompatible polymer based an inexpensive, pH-sensitive...
Introduction: With the development of hydrogels from half a century ago, their application in variou...
Local skin cancer recurrence occurs in ∼12% of the patients post-surgery due to persistent growth of...
In the current research work, pH-sensitive hydrogels were prepared via a free radical polymerization...
Hydrogels constructed from naturally derived polymers provide an aqueous environment that encourages...
A novel hydrogel based on 2-hydroxyethylmethacrilate and SiO2 nanoparticles was prepared. The filler...
Nanogels are hydrogels having size in nanoregime, which is composed of cross-linked polymer networks...
In this study, an effective, biocompatible and biodegradable co-polymer comprising of chitosan (CS) ...
(1) Background: Chitosan-gelatin-based thermosensitive hydrogel containing 5FU-alginate nanoparticle...
Hydrogels based on natural and synthetic polymers and inorganic nanoparticles proved to be a viable ...
Regarding the development of stimuli-responsive microgels as drug delivery systems for cancer therap...
The incorporation of both nitric oxide (NO) donor (S-nitrosoglutathione, GSNO) and silica nanopartic...
pH-responsive nanogels have played an increasingly momentous role in tumor treatment. The focus of t...
Sodium alginate and gelatin are biocompatible & biodegradable natural polymer hydrogels, which are w...
Nanocomposite hydrogels have found a wide scope in regenerative medicine, tissue engineering, and sm...
The present work was conducted to develop a biocompatible polymer based an inexpensive, pH-sensitive...
Introduction: With the development of hydrogels from half a century ago, their application in variou...
Local skin cancer recurrence occurs in ∼12% of the patients post-surgery due to persistent growth of...
In the current research work, pH-sensitive hydrogels were prepared via a free radical polymerization...
Hydrogels constructed from naturally derived polymers provide an aqueous environment that encourages...
A novel hydrogel based on 2-hydroxyethylmethacrilate and SiO2 nanoparticles was prepared. The filler...
Nanogels are hydrogels having size in nanoregime, which is composed of cross-linked polymer networks...
In this study, an effective, biocompatible and biodegradable co-polymer comprising of chitosan (CS) ...
(1) Background: Chitosan-gelatin-based thermosensitive hydrogel containing 5FU-alginate nanoparticle...
Hydrogels based on natural and synthetic polymers and inorganic nanoparticles proved to be a viable ...
Regarding the development of stimuli-responsive microgels as drug delivery systems for cancer therap...
The incorporation of both nitric oxide (NO) donor (S-nitrosoglutathione, GSNO) and silica nanopartic...
pH-responsive nanogels have played an increasingly momentous role in tumor treatment. The focus of t...
Sodium alginate and gelatin are biocompatible & biodegradable natural polymer hydrogels, which are w...