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- W4200323497 abstract "This chapter spotlights the feasibility of silicon-based nanoparticles (NPs) for biomedical applications date, nanotechnology-based drug delivery systems have gained substantial interest in various avenues of biomedical technology, such as cancer therapy, vaccination, pregnancy control, and diagnosis of multiple diseases ranging from bacterial infection to HIV to influenza. Nanoparticles in general improve the effectiveness of medication and eliminate side effects by being highly specific to the cause. Conventional medicine has highly specific bioavailability to controlled time intervals, whereas nanoparticles can utilize their small size and tunable surface charge to remain in circulation without being attacked by the host’s immune cells for days. This feature allows researchers to nitpick on the secondary requirements of how much dosage is expected over what period. Large surface area mesoporous silicon nanoparticles (MSNPs) have high pore capacity, tunable pore size, abundant surface chemistry, suitable biocompatibility, and other specific advantages that are considered potential candidates for cancer detection treatment. Because of their superior physicochemical properties, such as well-organized porous structure, a higher number of surface pores, and low in vivo toxicity, MSNs have large specifications for effective drug delivery. Since carriers can be generated with different morphologies and chemical surface properties, such materials can also facilitate adsorption/desorption from the gastrointestinal tract to systematic circulation as per the requirements. Recent developments in the synthesis and surface functionalization of MSNs for biomedical applications are reviewed in this study." @default.
- W4200323497 created "2021-12-31" @default.
- W4200323497 creator A5016367624 @default.
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- W4200323497 creator A5022061981 @default.
- W4200323497 creator A5039428066 @default.
- W4200323497 creator A5042891483 @default.
- W4200323497 date "2022-01-01" @default.
- W4200323497 modified "2023-09-24" @default.
- W4200323497 title "Biomedical applications" @default.
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