Synthesis and biological activities of alcohol extract of black cumin seeds (Bunium persicum)-based gold nanoparticles and their catalytic applications

Author:

Bahattab Omar1,Khan Ibrahim2,Bawazeer Sami3,Rauf Abdur2,Qureshi Muhammad Nasimullah2,Al-Awthan Yahya S.14,Muhammad Naveed5,Khan Ajmal6,Akram Muhammad7,Islam Mohammad Nazmul8,Bin Emran Talha9

Affiliation:

1. Department of Biology, Faculty of Science, University of Tabuk , Tabuk , Saudi Arabia

2. Department of Chemistry, University of Swabi , Swabi , Anbar, KPK , Pakistan

3. Pharmacognosy Department, College of Pharmacy, Umm Al-Qura University , Makkah , Saudi Arabia

4. Department of Biology, Faculty of Science, Ibb University , Ibb , Yemen

5. Department of Pharmacy, Abdul Wali Khan University , Malakand , KPK , Pakistan

6. Natural and Medical Sciences Research Center, University of Nizwa , P.O. Box 33, Birkat Al Mauz 616 , Nizwa , Oman

7. Government Post Graduate College Charsadda , Charsadda , KPK , Pakistan

8. Department of Pharmacy, International Islamic University Chittagong , Chittagong , 4318 , Bangladesh

9. Department of Pharmacy, BGC Trust University Bangladesh , Chittagong , 4381 , Bangladesh

Abstract

Abstract Fast, simple, and environmentally friendly gold nanoparticles (Au-NPs) capped and stabilized with black cumin (Bunium persicum) seed alcohol extract are reported. The aqueous gold ions (Au3+) were treated with B. persicum (BP) seed extract, which resulted in a rapid color change to red, indicating the synthesis of Au-NPs. UV-Vis spectroscopy, FTIR, SEM, energy dispersive X-ray (EDX), and X-ray diffraction (XRD) techniques were used to further characterize the Au-NPs. Its stability was assessed against various pH levels and sodium chloride levels (NaCl), different salts of same concentration as well as at a range of temperature (30–100°C). The UV-Vis spectrum in the Au-NPs produced a 540 nm plasmon surface resonance, and a 25–50 nm range of particulates was shown in the SEM analysis. In addition, the FTIR spectra confirmed the inclusion in the capping and decrease of Au-NPs of amines, amide groups, and alcohols. The EDX analysis confirmed the presence of element Au. Furthermore, Au-NPs were tested for enzyme inhibition and antibacterial and antifungal activities and showed remarkable response. These findings have concluded that BP seed extract is an effective bio-reductant of gold nanoparticle synthesis, which can be further applied in different biomedical and pharmaceutical industries.

Publisher

Walter de Gruyter GmbH

Subject

Health, Toxicology and Mutagenesis,Industrial and Manufacturing Engineering,Fuel Technology,Renewable Energy, Sustainability and the Environment,General Chemical Engineering,Environmental Chemistry

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