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Review on Nanoparticles and Nanostructured Materials: Bioimaging, Biosensing, Drug Delivery, Tissue Engineering, Antimicrobial, and Agro-Food Applications

Vancha HarishSchool of Pharmaceutical Sciences, Lovely Professional University, Phagwara, Punjab 144401, IndiaDevesh TewariSchool of Pharmaceutical Sciences, Lovely Professional University, Phagwara, Punjab 144401, IndiaManish GaurCentre of Biotechnology, University of Allahabad, Prayagraj, Uttar Pradesh 211002, IndiaAwadh Bihari YadavCentre of Biotechnology, University of Allahabad, Prayagraj, Uttar Pradesh 211002, IndiaShiv SwaroopDepartment of Biochemistry, Central University of Rajasthan, Ajmer 305817, IndiaMikhaël BechelanyInstitut Européen des Membranes, IEM UMR 5635, University Montpellier, ENSCM, CNRS, 34730 Montpellier, FranceAhmed BarhoumNanoStruc Research Group, Chemistry Department, Faculty of Science, Ain Helwan, Cairo 11795, Egypt
2022en
ABI

Аннотация

In the last few decades, the vast potential of nanomaterials for biomedical and healthcare applications has been extensively investigated. Several case studies demonstrated that nanomaterials can offer solutions to the current challenges of raw materials in the biomedical and healthcare fields. This review describes the different nanoparticles and nanostructured material synthesis approaches and presents some emerging biomedical, healthcare, and agro-food applications. This review focuses on various nanomaterial types (e.g., spherical, nanorods, nanotubes, nanosheets, nanofibers, core-shell, and mesoporous) that can be synthesized from different raw materials and their emerging applications in bioimaging, biosensing, drug delivery, tissue engineering, antimicrobial, and agro-foods. Depending on their morphology (e.g., size, aspect ratio, geometry, porosity), nanomaterials can be used as formulation modifiers, moisturizers, nanofillers, additives, membranes, and films. As toxicological assessment depends on sizes and morphologies, stringent regulation is needed from the testing of efficient nanomaterials dosages. The challenges and perspectives for an industrial breakthrough of nanomaterials are related to the optimization of production and processing conditions.

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