Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Multi-responsive chitosan-based hydrogels for controlled release of vincristine

View through CrossRef
AbstractAs medical research progresses, the derivation and development of biological materials such as hydrogels have steadily gained more interest. The biocompatibility and non-toxicity of chitosan make chitosan hydrogels potential carriers for drug delivery. This work aims to develop two multi-reactive, safe, and highly swellable bio-hydrogels consisting of chitosan-graft-glycerol (CS-g-gly) and carboxymethyl chitosan-graft-glycerol (CMCS-g-gly), for sustained and controlled drug release, improved bioavailability along with entrapment in nanocarriers, which reduces side effects of vincristine sulphate. CS-g-gly and CMCS-g-gly are successfully prepared and fully characterized using analytical techniques. Under various conditions, the prepared hydrogels exhibit a high swelling ratio. Vincristine-loaded CS-g-gly (VCR/CS-g-gly), and CMCS-g-gly (VCR/CMCS-g-gly) show high encapsulation efficiency between 72.28-89.97%, and 56.97-71.91%, respectively. VCR/CS-g-gly show a sustained release behavior, and the maximum release of VCR from hydrogels reached 82% after 120 h of incubation. MCF-7 (breast cancer cell line) and MCF-10 (normal breast cell line) are evaluated for cell viability and apoptosis induction. The in-vitro anti-tumor efficacy is investigated using flow cytometry. The tetrazolium-based MTT assay of hydrogels shows no evidence of significant cytotoxicity in MCF-7 and MCF-10 cells. According to these findings, these hydrogels can effectively deliver drugs to MCF-7 and other breast cancer cells.
Title: Multi-responsive chitosan-based hydrogels for controlled release of vincristine
Description:
AbstractAs medical research progresses, the derivation and development of biological materials such as hydrogels have steadily gained more interest.
The biocompatibility and non-toxicity of chitosan make chitosan hydrogels potential carriers for drug delivery.
This work aims to develop two multi-reactive, safe, and highly swellable bio-hydrogels consisting of chitosan-graft-glycerol (CS-g-gly) and carboxymethyl chitosan-graft-glycerol (CMCS-g-gly), for sustained and controlled drug release, improved bioavailability along with entrapment in nanocarriers, which reduces side effects of vincristine sulphate.
CS-g-gly and CMCS-g-gly are successfully prepared and fully characterized using analytical techniques.
Under various conditions, the prepared hydrogels exhibit a high swelling ratio.
Vincristine-loaded CS-g-gly (VCR/CS-g-gly), and CMCS-g-gly (VCR/CMCS-g-gly) show high encapsulation efficiency between 72.
28-89.
97%, and 56.
97-71.
91%, respectively.
VCR/CS-g-gly show a sustained release behavior, and the maximum release of VCR from hydrogels reached 82% after 120 h of incubation.
MCF-7 (breast cancer cell line) and MCF-10 (normal breast cell line) are evaluated for cell viability and apoptosis induction.
The in-vitro anti-tumor efficacy is investigated using flow cytometry.
The tetrazolium-based MTT assay of hydrogels shows no evidence of significant cytotoxicity in MCF-7 and MCF-10 cells.
According to these findings, these hydrogels can effectively deliver drugs to MCF-7 and other breast cancer cells.

Related Results

Synthesis and Investigation into Apatite-forming Ability of Hydroxyapatite/Chitosan-based Scaffold
Synthesis and Investigation into Apatite-forming Ability of Hydroxyapatite/Chitosan-based Scaffold
In this study, porous scaffolds were fabricated using inorganic material-hydroxyapatite and chitosan for bone-tissue engineering. The combination of hydroxyapatite and chitosan may...
Multi-Responsive Chitosan-Based Hydrogels for Controlled Release of Vincristine: Design, Characterization, and Safety Evaluation
Multi-Responsive Chitosan-Based Hydrogels for Controlled Release of Vincristine: Design, Characterization, and Safety Evaluation
Abstract As medical research has progressed, the derivation and development of biological materials such as hydrogels have steadily gained more interest. The biocompatibili...
Chinese Herbs of Shenghe Powder Reverse Multidrug Resistance of Gastric Carcinoma SGC-7901
Chinese Herbs of Shenghe Powder Reverse Multidrug Resistance of Gastric Carcinoma SGC-7901
The objective of this study was to investigate the reversal effect of Chinese herbs of Shenghe Powder on the multidrug resistance of the human SGC-7901 gastric carcinoma cell line ...
Characterization of chitosan/alginate/lovastatin nanoparticles and investigation of their toxic effects in vitro and in vivo
Characterization of chitosan/alginate/lovastatin nanoparticles and investigation of their toxic effects in vitro and in vivo
AbstractIn this study, chitosan and alginate were selected to prepare alginate/chitosan nanoparticles to load the drug lovastatin by the ionic gelation method. The synthesized nano...
BIODEGRADATION OF CHITOSAN MEMBRANE SCALES OF HARUAN FISH (Channa striata)-HYDROXYAPATITE IN ARTIFICIAL SALIVA SOLUTION
BIODEGRADATION OF CHITOSAN MEMBRANE SCALES OF HARUAN FISH (Channa striata)-HYDROXYAPATITE IN ARTIFICIAL SALIVA SOLUTION
Background: Membrane materials for surgical procedures using Guided Tissue Regeneration (GTR) are Polytetrafluoroethylene (PTFE) and collagen, but have the disadvantage of requirin...
Vincristine‐induced unilateral ptosis
Vincristine‐induced unilateral ptosis
AbstractPurpose To report the ocurrence of an unilateral ptosis in a 2‐year‐old girl treated by vincristine for a vaginal rhabdomyosarcoma.Methods Our young patient developed a vag...
Investigating the Mesoscale of β-lactoglobulin Fibril Hydrogels
Investigating the Mesoscale of β-lactoglobulin Fibril Hydrogels
<p><b>The objective of this doctoral thesis was to investigate the relationship between the architecture of protein fibril networks and their macroscopic properties. Th...
Characterization of Chitosan-Acrylamide Hydrogels as Soil Conditioner
Characterization of Chitosan-Acrylamide Hydrogels as Soil Conditioner
Hydrogels can be used as soil conditioner which acts as water reservoirs and release water depending upon the need of plant roots. Soil conditioner based hydrogels were synthesized...

Back to Top