In vitro anti-cancer and antimicrobial effects of manganese oxide nanoparticles synthesized using the Glycyrrhiza uralensis leaf extract on breast cancer cell lines

Author:

Althobiti Maryam Musleh1,Alzahrani Badr2,Elderdery Abozer Y.2ORCID,Alzerwi Nasser A. N.3,Rayzah Musaed3,Elkhalifa Ahmed M. E.45,Idrees Bandar6,Bakhsh Ebtisam7,Alabdulsalam Abdulrahim A.8,Mohamedain A.89,Kumar Suresh S.10,Mok Pooi Ling11

Affiliation:

1. Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, Shaqra University , Shaqra , Saudi Arabia

2. Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, Jouf University , Sakaka , Saudi Arabia

3. Department of Surgery, College of Medicine, Majmaah University , P. O. Box 66 , Al-Majmaah 11952, Riyadh , Kingdom of Saudi Arabia

4. Department of Public Health, College of Health Sciences, Saudi Electronic University , Riyadh , Kingdom of Saudi Arabia

5. Department of Haematology, Faculty of Medical Laboratory Sciences, University of El Imam El Mahdi , Kosti , Sudan

6. Department of Surgery, Prince Sultan Military Medical City in Riyadh , Makkah Al Mukarramah Rd , As Sulimaniyah , Saudi Arabia

7. Clinical Sciences Department, College of Medicine, Princess Nourah Bint Abdulrahman University , Riyadh , Saudi Arabia

8. Department of Biomedical Sciences, College of Medicine, King Faisal University , Alhofuf , Saudi Arabia

9. Department of Biochemistry, Faculty of Medicine, Khartoum University , Khartoum , Sudan

10. Centre for Materials Engineering and Regenerative Medicine, Bharath Institute of Higher Education and Research , Chennai , India

11. Department of Biomedical Sciences, Faculty of Medicine and Health Sciences, Universiti Putra Malaysia , 43400 UPM Serdang , Selangor , Malaysia

Abstract

Abstract In this study, we evaluated the antiproliferative and apoptotic properties of Pluronic-F127-containing manganese oxide nanoparticles (PF-127-coated Mn2O3 NPs) derived from the leaf extract of Glycyrrhiza uralensis (GU) on breast adenocarcinoma, MCF7, and MDA-MB-231 cell lines. The leaf extract of GU contains bioactive molecules that act as a reducing or capping agent to form Mn2O3 NPs. Various analytical techniques were used to characterize the physiochemical properties of PF-127-coated Mn2O3 NPs, including spectroscopy (ultralight-Vis, Fourier transform infrared, photoluminescence), electron microscopy (field emission scanning electron microscopy and transmission electron microscopy), X-ray diffraction (XRD), electron diffracted X-ray spectroscopy (EDAX), and dynamic light scattering. The average crystallite size of Mn2O3 NPs was estimated to be 80 nm, and the NPs had a cubic crystalline structure. PF127-encapsulated Mn2O3 NPs significantly reduce MDA-MB-231 and MCF-7 cell proliferation, while increasing endogenous ROS and lowering mitochondrial matrix protein levels. DAPI, EtBr/AO dual staining, and Annexin-V-FITC-based flow cytometry analysis revealed that PF127-coated Mn2O3 NP-treated breast cancer cells exhibit nuclear damage and apoptotic cell death, resulting in cell cycle arrest in the S phase. Furthermore, PF127-encapsulated Mn2O3 NPs show strong antimicrobial efficacy against various strains. As a result, we can conclude that PF127-coated Mn2O3 NPs may be effective as future anticancer agents and treatment options for breast cancer.

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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