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Roadmap on atomic-scale semiconductor devices
Journal article   Open access   Peer reviewed

Roadmap on atomic-scale semiconductor devices

Steven R Schofield, Andrew J Fisher, Eran Ginossar, Nguyen Chi Thanh, Joseph W Lyding, Richard Silver, Fan Fei, Pradeep Namboodiri, Jonathan Wyrick, Mateus G Masteghin, …
Nano futures, Vol.9(1), 012001
31/03/2025

Abstract

atomic devices biocompatibility and safety devices diagnostics and therapeutics dopants lipid nanoparticles qubit semiconductor surface functionalization Drug Delivery Systems

Lipid nanoparticles (LNPs) have become a critical tool in modern medicine, particularly in diagnostics and therapy. Various synthesis techniques, including ultrasonication, high-pressure homogenization, solvent evaporation, and microemulsion, have been employed to produce LNPs with desired properties. Modification techniques such as surface functionalization, polymer coating, PEGylation, and ligand conjugation further enhance their efficacy and biocompatibility. This study highlights the recent advances in the application of LNPs for improving diagnostic accuracy and therapeutic outcomes. In diagnostics, LNPs enhance visualization, bioimaging, and analytical methods, especially through genomic, proteomic, and immunoassay-based techniques, as well as plasmonic biosensors. In therapy, LNPs are utilized in innovative treatments such as plasmonic photothermal and photodynamic therapies, antibacterial applications, and drug delivery systems. These LNPs serve as effective carriers for drugs, genes, and antibodies, improving targeted delivery and therapeutic efficacy. Despite their promising potential, challenges related to safety, scalability, and long-term impacts remain, and this research outlines future perspectives on overcoming these barriers to further integrate LNPs into clinical applications.

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Published (Version of record) Open Access CC BY V4.0
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https://doi.org/10.1088/2399-1984/ada900View
Published (Version of record) Open CC BY V4.0

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