Evaluation of Antidiabetic Activity and Cytotoxic Effect of Strontium Nanoparticles Synthesized Using Mimosa Pudica

Author:

Vallinayaki KN1,Shanmugam Rajeshkumar1

Affiliation:

1. Nanobiomedicine Lab, Centre for Global Health Research, Saveetha Medical College and Hospital, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai, Tamil Nadu, India

Abstract

ABSTRACT Nanotechnology is emerging as a promising approach in the development of novel therapeutic strategies. Nanoparticles, due to their unique physicochemical properties and small size, have the potential to improve the delivery of therapeutic agents, enhance their bioavailability, and increase their efficacy. Among various types of nanoparticles, strontium nanoparticles have gained attention due to their potential antidiabetic activity and cytotoxic effects against cancer cells. Mimosa pudica, also known as “Sensitive Plant” or “Touch-Me-Not,” is a medicinal plant known for its diverse pharmacological activities, including antidiabetic and anticancer properties. Recent research has focused on the synthesis of strontium nanoparticles by using Mimosa pudica as a green and sustainable approach. These nanoparticles have shown promising results in terms of their antidiabetic activity and cytotoxic effects against cancer cells. Thus, in this study, the antidiabetic effect was studied using the alpha-amylase inhibitor assay, and the cytotoxic effect was studied using the brine shrimp lethality assay. In these assays, increasing concentration of Mimosa pudica-mediated strontium nanoparticles exhibited increasing antidiabetic and cytotoxic effects, which was similar to the standard used, which is acarbose. Hence, this can be used as a novel antidiabetic and cytotoxic agent in the future.

Publisher

Medknow

Reference15 articles.

1. Diagnosis and Management of Oral Lesions and Conditions: A Resource Handbook for the Clinician;BoD–Books on Demand,2014

2. Handbook of radiopharmaceuticals: radiochemistry and applications;John Wiley & Sons,2003

3. Biomedical applications of nanoparticles;William Andrew,2019

4. Development of polypyrrole/collagen/nano-strontium substituted bioactive glass composite for boost sciatic nerve rejuvenation in vivo;Lin;Artificial Cells, Nanomedicine, and Biotechnology,2019

5. Evaluation of wound healing activity of root of Mimosa pudica;Kokane;Journal of ethnopharmacology,2009

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