The series was also revived in 2017
These experiments were performed in triplicate
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All experimental procedures and animal care in this study were monitored and approved by the National Research Councils Guide for the Care and Use of Laboratory Animals and permitted by the Research Ethics Committee, Faculty of Pharmacy, Beni-Suef University (BSU-IACUC) (Number: 022-360)
In summary, inorganic nanoparticles can be synthesized through mechanical techniques such as ball milling, lithography, sol-gel synthesis, chemical vapor deposition, microemulsion methods, hydrothermal synthesis, green chemistry approaches, gas-to-solid methods, liquid-phase synthesis, precipitation methods, in situ characterization, and microfluidic devices ( 3.3.1 Iron oxide nanoparticles Iron oxide nanoparticles exhibit exceptional biocompatibility, non-toxicity, stability, and biodegradability, making them extensively utilized in electronics, biotechnology, biomedicine, and energy owing to their responsiveness to magnetic fields