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Review
. 2025 May 21;17(20):28982-29001.
doi: 10.1021/acsami.5c02810. Epub 2025 May 9.

Advances in Ultrasmall Inorganic Nanoparticles for Nanomedicine: From Diagnosis to Therapeutics

Affiliations
Review

Advances in Ultrasmall Inorganic Nanoparticles for Nanomedicine: From Diagnosis to Therapeutics

Jun Yong Oh et al. ACS Appl Mater Interfaces. .

Abstract

Inorganic nanoparticles possess unique physicochemical properties that make them attractive candidates for diverse applications in nanomedicine, including as contrast agents and as therapeutics. However, many inorganic nanoparticles are composed of high-atomic-number elements, raising safety concerns due to potential long-term retention in the body. However, ultrasmall inorganic nanoparticles (UINPs), i.e., those that are less than ∼5 nm in diameter, can offer the advantage of rapid renal clearance from the body, reducing toxicity risks associated with prolonged exposure and thereby creating a path toward clinical translation. In this review, we discuss current knowledge on the design and functionalization of UINPs, exploring their capabilities from diagnosis to therapeutics, with examples including radiosensitization, photothermal, and anti-inflammatory catalytic therapies. In addition, we discuss their limitations, the approaches taken to solve their limitations, and progress of UINPs toward clinical translation. Through this discussion, we aim to provide a comprehensive perspective on how UINPs are advancing the field of nanomedicine, underscoring their potential to significantly improve bioimaging and therapeutic outcomes.

Keywords: Inorganic nanoparticle; imaging; nanomedicine; therapeutics; ultrasmall nanoparticle.

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Conflict of interest statement

The authors declare no competing financial interest.

References

    1. Bhatia SN; Chen X; Dobrovolskaia MA; Lammers T Cancer Nanomedicine. Nat. Rev. Cancer 2022, 22 (10), 550–556. DOI: 10.1038/s41568-022-00496-9. - DOI - PMC - PubMed
    1. Elumalai K; Srinivasan S; Shanmugam A Review of the Efficacy of Nanoparticle-Based Drug Delivery Systems for Cancer Treatment. Biomed. Technol 2024, 5, 109–122. DOI: 10.1016/j.bmt.2023.09.001. - DOI
    1. Davis ME; Chen Z; Shin DM Nanoparticle Therapeutics: An Emerging Treatment Modality for Cancer. Nat. Rev. Drug Discov 2008, 7 (9), 771–782. DOI: 10.1038/nrd2614. - DOI - PubMed
    1. Oh JY; Kim HS; Palanikumar L; Go EM; Jana B; Park SA; Kim HY; Kim K; Seo JK; Kwak SK; et al. Cloaking Nanoparticles with Protein Corona Shield for Targeted Drug Delivery. Nat. Commun 2018, 9 (1), 4548. DOI: 10.1038/s41467-018-06979-4. - DOI - PMC - PubMed
    1. Unnikrishnan G; Joy A; Megha M; Kolanthai E; Senthilkumar M Exploration of Inorganic Nanoparticles for Revolutionary Drug Delivery Applications: A Critical Review. Discov. Nano 2023, 18 (1), 157. DOI: 10.1186/s11671-023-03943-0. - DOI - PMC - PubMed

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