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Exploring the Journey of Zinc Oxide Nanoparticles (ZnO-NPs) toward Biomedical Applications

Fahadul IslamDepartment of Pharmacy, Faculty of Allied Health Sciences, Daffodil International University, Dhaka 1207, BangladeshSheikh ShohagDepartment of Biochemistry and Molecular Biology, Faculty of Life Science, Bangabandhu Sheikh Mujibur Rahman Science and Technology University, Gopalganj 8100, BangladeshMd Jalal UddinDepartment of Biochemistry and Molecular Biology, Faculty of Life Science, Bangabandhu Sheikh Mujibur Rahman Science and Technology University, Gopalganj 8100, BangladeshMd. Rezaul IslamDepartment of Pharmacy, Faculty of Allied Health Sciences, Daffodil International University, Dhaka 1207, BangladeshMohamed H. NafadyFaculty of Applied Health Science Technology, Misr University for Science and Technology, Giza 12568, EgyptAklima AkterDepartment of Pharmacy, Faculty of Allied Health Sciences, Daffodil International University, Dhaka 1207, BangladeshSaikat MitraDepartment of Pharmacy, Faculty of Pharmacy, University of Dhaka, Dhaka 1000, BangladeshArpita RoyDepartment of Biotechnology, School of Engineering & Technology, Sharda University, Greater Noida 201310, IndiaTalha Bin EmranDepartment of Pharmacy, BGC Trust University Bangladesh, Chittagong 4381, BangladeshSimona CavaluFaculty of Medicine and Pharmacy, University of Oradea, 400087 Oradea, Romania
2022en
ABI

Аннотация

The field of nanotechnology is concerned with the creation and application of materials having a nanoscale spatial dimensioning. Having a considerable surface area to volume ratio, nanoparticles have particularly unique properties. Several chemical and physical strategies have been used to prepare zinc oxide nanoparticles (ZnO-NPs). Still, biological methods using green or natural routes in various underlying substances (e.g., plant extracts, enzymes, and microorganisms) can be more environmentally friendly and cost-effective than chemical and/or physical methods in the long run. ZnO-NPs are now being studied as antibacterial agents in nanoscale and microscale formulations. The purpose of this study is to analyze the prevalent traditional method of generating ZnO-NPs, as well as its harmful side effects, and how it might be addressed utilizing an eco-friendly green approach. The study's primary focus is on the potential biomedical applications of green synthesized ZnO-NPs. Biocompatibility and biomedical qualities have been improved in green-synthesized ZnO-NPs over their traditionally produced counterparts, making them excellent antibacterial and cancer-fighting drugs. Additionally, these ZnO-NPs are beneficial when combined with the healing processes of wounds and biosensing components to trace small portions of biomarkers linked with various disorders. It has also been discovered that ZnO-NPs can distribute and sense drugs. Green-synthesized ZnO-NPs are compared to traditionally synthesized ones in this review, which shows that they have outstanding potential as a potent biological agent, as well as related hazardous properties.

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