Formulation and development of topical iron oxide nanoemulgel using Punica granatum extract and in vitro evaluation of anti-inflammatory potential in rheumatoid arthritis

Author:

Dheekshana Srinivasan1,Razia Muthuswamy1,Nallal Uma Maheshwari1,Prabha Kannan2,Priya Lakshminarayanan Srimathi3,Dinesh Ayyar4,Kabilan Babu56,Ayyar Manikandan56

Affiliation:

1. Department of Biotechnology , Mother Teresa Women’s University , Kodaikanal 624101 , Tamil Nadu , India

2. Department of Physics , Mother Teresa Women’s University , Kodaikanal 624101 , Tamil Nadu , India

3. Department of Natural Resource Management , Horticultural College and Research Institute (HC & RI), Tamil Nadu Agricultural University (TNAU) , Periyakulam , Theni 625604 , India

4. Department of Chemistry , Government Arts College for Men (Autonomous), Affiliated to the University of Madras , Chennai 600025 , Tamil Nadu , India

5. Department of Chemistry , Karpagam Academy of Higher Education , Coimbatore 641021 , Tamil Nadu , India

6. Centre for Material Chemistry , Karpagam Academy of Higher Education , Coimbatore 641021 , Tamil Nadu , India

Abstract

Abstract Rheumatoid Arthritis (RA) is regarded as a long-term autoimmune disorder, which triggers inflammation in joints and distresses the organs in the body. Nanotechnology, a science-based technique is a tremendously growing-field with numerous applications where nanoparticles are used to resolve the complications in the habitual life. While comparing to other metals, iron oxide nanoparticles (Fe2O3 NPs) were synthesized at minimal cost using eco-friendly natured materials and also has ability to deliver drug at a specific targeted site. In the present study, a topical nanoemulgel was formulated using Fe2O3 NPs synthesized from Punica granatum. The results of Fe2O3 NPs characterization divulged that the particles were sphere-shaped in nature and the bioactive compounds from the extract acted as capping and reducing agents. Nanoemulgels (F1 to F5) were formulated using different concentrations of Fe2O3 NPs and characterized. Among the formulations F4 nanoemulgel revealed good stability with a zeta potential charge of −53 mV and a polydispersity index of 0.24. L929 cells were treated with F4 formulation and this confirmed that the formulation was non-toxic to normal cells. F4 treated MG63 cell lines revealed the anti-inflammatory property (IC50 = 90.77 μg/ml) of the nanoemulgel. Thus, nanoemulgel containing Fe2O3 NPs synthesized from P. granatum can be an effective, eco-friendly and cost-effective approach to treat RA.

Publisher

Walter de Gruyter GmbH

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