Preparation of Fe2O3 Nanoparticles from Mixing Henna Extract With Ferric Chloride to Cytotoxic Assay on Cancer Cell Line

المؤلفون

  • Duha A. Kadhim, Muslim A. Abid 1. Department of Physics, College of Science, Al-Mustansiriyah University, Baghdad- Iraq مؤلف
  • Abdul JabarKhalil Ibrahim Plant Protection Department, Faculty of Agriculture, University of Mosul مؤلف
  • Zaynab S. Abdulghany Iraqi Center for Cancer and Medical Genetics Researches, Al-Mustansiriyah University Baghdad, Iraq مؤلف
  • L.A. Latif 1. Department of Physics, College of Science, Al-Mustansiriyah University, Baghdad- Iraq مؤلف
  • Jehan Yahya Alhatem Education College for Girls, Department of Biology, University of Mosul, Iraq مؤلف
  • , Mohammed F. Al-Marjani 5. Department of Biology, College of Science, Al-Mustansiriyah University, Baghdad- Iraq مؤلف
  • Osama Abdul Azeez Dakhil, Wisam J. Aziz 1. Department of Physics, College of Science, Al-Mustansiriyah University, Baghdad- Iraq مؤلف
  • Safaa M. Khalf Department of Psychiatric Mental Health Nursing, College of Nursing, University of Baghdad, Baghdad, Iraq. مؤلف

الكلمات المفتاحية:

Fe2O3 NPs; henna extract; green synthesis; Cytotoxic assay

الملخص

Green synthesis of cytotoxic assay of iron oxide nanoparticles (Fe2O3) NPs was on cancer cell line prepared from mixing (henna) extract with iron chloride (III) salts at 200 oC for 2 hours by simple chemical method. (Fe2O3) NPs were identified using X-ray diffraction, filed Emission-Scanning Electron Microscopy, Ultravolite visble, and Photoluminescence. XRD measurements explained crystalline size (30) nm with (hexagonal) structure for (Fe2O3) NPs using henna extract. FE-SEM showed average grain size of (Fe2O3) NPs were (18.61) nm. (Fe2O3) NPs were tested for their cytotoxic effect against human cancer cells and inhibition rate % results were very high. Results of inhibition rate % for (Fe2O3) NPs using henna extract for human cancer cells were (78.9%).

التنزيلات

تنزيل البيانات ليس متاحًا بعد.

التنزيلات

منشور

2021-12-31

إصدار

القسم

Physics