Showing posts with label nanosynthesis. Show all posts
Showing posts with label nanosynthesis. Show all posts

Friday, March 26, 2021

ANTI INFLAMMATORY ACTIVITY OF LYCOPENE AND ITS BASED CHITOSAN NANOFORMULATION-AN In vitro STUDY | PLANT CELL BIOTECHNOLOGY AND MOLECULAR BIOLOGY

 Background: Nanotechnology has been emerging as an interdisciplinary field that is undergoing rapid development and has brought enormous changes in dentistry. Lycopene and chitosan is a naturally derived polymer with antimicrobial and anti-inflammatory properties. Since periodontal diseases occurs as a result of inflammatory process, this vitro study has been done to evaluate the anti-inflammatory activity of lycopene and its based chitosan nano formulations to incorporate into periodontics.

Materials and Methods: The collection and preparation of lycopene extract was done and stored for further use. Synthesis of chitosan nanoparticles was done with the addition of glacial acetic acid along with Sodium Tripolyphosphate (STPP). Centrifugation was done and characterisation of chitosan nanoparticles using ultraviolet (UV)-viz-spectroscopy spectroscopy. The anti-inflammatory activity of chitosan nanoparticles was measured and compared using the standard diclofenac sodium assay.

Results: The anti inflammatory activity of lycopene, chitosan and chitosan-lycopene nanoformulation increased with increase in concentrations. At 30 μL, 40 μL lycopene showed a higher antiinflammatory activity than standard, Chitosan has better anti-inflammatory activities at higher concentrations when compared to standard diclofenac sodium. However, the anti-inflammatory effect of the combination of lycopene and chitosan was lesser than the standard.

Conclusion: Chitosan nanoparticles have the better antiinflammatory activity when compared with lycopene and lycopene-chitosan nanoformulations. Further formulations of chitosan in various forms such as gel and microspheres can be potentially used for controlled drug delivery in the treatment of periodontitis.

Please see the link :-
https://www.ikprress.org/index.php/PCBMB/article/view/5559

Friday, January 15, 2021

In vitro ANTIOXIDANT ACTIVITY OF CHITOSAN NANOPARTICLES AND ITS INCORPORATED LYCOPENE | PLANT CELL BIOTECHNOLOGY AND MOLECULAR BIOLOGY

 Background: Nanotechnology has found its use in several applications including dental diagnosis, materials and therapeutics thus gaining increased popularity in the dental perspectives. Lycopene belongs to the carotenoids that show good pharmacological properties including antioxidant, anti-inflammatory and anticancer. Chitosan may be a biodegradable, biocompatible polymer considered safe for human dietary use and approved for wound dressing applications. In the field of dentistry, chitosan has been used for the prevention of tooth decay as it eliminates bacteria and provides bacteriostatic properties. Hence this study aims to identify the in vitro antioxidant activity of chitosan nanoparticles and its incorporated Lycopene.

Materials and Methods: This In vitro study was done at Saveetha Dental College and Hospitals. The collection and preparation of lycopene extract was done and stored for further use. Synthesis of chitosan nanoparticles was done with the addition of glacial acetic acid along with Sodium Tripolyphosphate (STPP). Centrifugation was done and characterization of chitosan nanoparticles was done using ultraviolet UV-Viz-spectroscopy. The antioxidant activity of chitosan nanoparticles was measured and compared using the standard ascorbic acid assay.

Results: The results of our study show that the antioxidant activity of chitosan nanoparticles and chitosan-lycopene nanocomposite solution has increased activity when compared to the standard ascorbic acid. Hence, these lycopene mediated chitosan nanoparticles have the potential to be used as an effective antioxidant agent.

Conclusion: As the above study showed effective activity of chitosan-lycopene solution, hence it can be used as an effective antioxidant agent for the management of chronic inflammatory diseases. Lycopene loaded chitosan nanoparticles may show a great promise for the development of a drug delivery system by enhancing the cellular accumulation of lycopene with chitosan.

Please see the link :-
https://www.ikprress.org/index.php/PCBMB/article/view/5321