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Nanotechnology and Biomedical Devices Used as a Novel Tool in Biosensing and Bioimaging of Disease

Muneeb UllahCollege of Pharmacy, Pusan National University, Busan, South KoreaAfraa WaleedDepartment of Biological Sciences, National University of Medical Sciences (NUMS), Islamabad, Punjab, PakistanShah HamayunDepartment of Cardiology, Pakistan Institute of Medical Sciences (PIMS) Islamabad, Punjab, PakistanAyesha ShaukatDepartment of Biological Sciences, National University of Medical Sciences (NUMS), Islamabad, Punjab, PakistanMishal SafdarDepartment of Biological Sciences, National University of Medical Sciences (NUMS), Islamabad, Punjab, PakistanMaheer HussainDepartment of Biological Sciences, National University of Medical Sciences (NUMS), Islamabad, Punjab, PakistanTaha WaleedDepartmenrt of Medical Lab Technology, National University of Medical Sciences (NUMS), Islamabad, Punjab, PakistanKiran AkberDepartment of Pharmacy, Riphah International University, Islamabad, Punjab, PakistanHaider AliDepartment of Pharmacy, Kohat University of Science and Technology, Kohat, Khyber Pakhtunkhwa, PakistanMudassar AmjadSaidu Medical College, Swat, Khyber Pakhtunkhwa (KPK), PakistanIbrar AhmedDepartment of Veterinary Pharmacology, College of Veterinary Medicine at Northeast Agricultural University, Harbin, China
2023en
ABI

Аннотация

Nanotechnology is a vast field used in medicine as well. “Nano” is a prefix that stands for 10-9 i.e., one billionth of a meter. Design and synthesis of efficient drug delivery systems are crucial for the medical, pharmaceutical, and healthcare industries. Nanotechnology involves physics, biology as well as chemistry. Many nanotechnology-based drug delivery systems such as biopolymers are used as anticancer, antibacterial, antiviral, antifungal, veterinary medicine, vaccine, and antitumor. Since most biological systems are nanoscale, nanoscale materials integrate well into biomedical equipment. Carbon nanotubes, liposomes, inorganic and metal nanoparticles, and metallic surfaces are the materials most frequently employed to create these nanotechnology goods. In this review, we will focus on the importance of nanotechnology as well as the biomedical devices used in the characterization and diagnosis of many diseases. In the future, we can use nanotechnology-based biomedical devices in the field of regenerative medicine in addition to drug delivery as well as in biosensing and bioimaging for disease diagnosis.

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