Process Optimization for the Bioinspired Synthesis of Gold Nanoparticles Using Cordyceps militaris, Its Characterization, and Assessment of Enhanced Therapeutic Efficacy

Author:

Gawas Girish1,Ayyanar Muniappan2ORCID,Gurav Nilambari3,Hase Dinesh4ORCID,Murade Vaishali5,Nadaf Sameer6ORCID,Khan Mohd Shahnawaz7,Chikhale Rupesh8ORCID,Kalaskar Mohan9ORCID,Gurav Shailendra1ORCID

Affiliation:

1. Department of Pharmacognosy, Goa College of Pharmacy, Goa University, Panaji 403001, India

2. Department of Botany, A.V.V.M. Sri Pushpam College (Autonomous), Affiliated to Bharathidasan University, Poondi 613503, India

3. PES’s Rajaram and Tarabai Bandekar College of Pharmacy, Goa University, Ponda 403401, India

4. Department of Pharmacognosy, Amrutwahini College of Pharmacy, Sangamner 422608, India

5. Department of Chemistry and Research Centre, Padmashri Vikhe Patil College Pravaranagar, Loni 445001, India

6. Bharati Vidyapeeth College of Pharmacy, Palus 416310, India

7. Department of Biochemistry, College of Science, King Saud University, Riyadh 11451, Saudi Arabia

8. UCL School of Pharmacy, 29–39 Brunswick Square, London WC1N 1AX, UK

9. R. C. Patel Institute of Pharmaceutical Education and Research, Shirpur 425405, India

Abstract

The promising therapeutic implications of nanoparticles have spurred their development for biomedical applications. An eco-friendly methodology synthesizes gold nanoparticles using Cordyceps militaris, an edible mushroom (Cord-Au-NPs), using a quality-by-design approach (central composite design). UV-visible spectroscopy analysis revealed an absorption peak at 540–550 nm, thus confirming the synthesis of gold nanoparticles. Cord-Au-NPs have a crystalline structure, as evidenced by the diffraction peaks. The zeta potential value of −19.42 mV signifies the stability of Cord-Au-NPs. XRD study shows gold facets and EDX analysis revealed a strong peak of spherical nanoparticles in the gold region with a mean particle size of 7.18 nm and a polydispersity index of 0.096. The obtained peaks are closely associated with phenolic groups, lipids, and proteins, as examined by FTIR, suggesting that they function as the reducing agent. Cord-Au-NPs exhibited dose-dependent antioxidant, antidiabetic, and antibacterial activity. The method is eco-friendly, nontoxic, less time-consuming, and does not use synthetic materials, leading to higher capabilities in biomedical applications.

Funder

King Saud University

Publisher

MDPI AG

Subject

Drug Discovery,Pharmaceutical Science,Molecular Medicine

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