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Review
. 2025 Apr 5:287:117357.
doi: 10.1016/j.ejmech.2025.117357. Epub 2025 Feb 5.

Inorganic nanoparticles and blood-brain barrier modulation: Advancing targeted neurological therapies

Affiliations
Review

Inorganic nanoparticles and blood-brain barrier modulation: Advancing targeted neurological therapies

Zahra Sadat Razavi et al. Eur J Med Chem. .

Abstract

The blood-brain barrier (BBB) is a protective barrier that complicates the treatment of neurological disorders. Pharmaceutical compounds encounter significant challenges in crossing the central nervous system (CNS). Nanoparticles (NPs) are promising candidates for treating neurological conditions as they help facilitate drug delivery. This review explores the diverse characteristics and mechanisms of inorganic NPs (INPs), including metal-based, ferric-oxide, and carbon-based nanoparticles, which facilitate their passage through the BBB. Emphasis is placed on the physicochemical properties of NPs such as size, shape, surface charge, and surface modifications and their role in enhancing drug delivery efficacy, reducing immune clearance, and improving BBB permeability. Specific synthesis approaches are demonstrated, with an emphasis on the influence of each one on NP property, biological activity and the capability of an NP for its intended application. As for the advances in the field, the review emphasizes those characterized the NP formulation and surface chemistry that conquered the BBB and tested the need for its alteration. Current findings indicate that NP therapy can in the future enable effective targeting of specific brain disorders and eventually evolve this drug delivery system, which would allow for lower doses with less side effects.

Keywords: Blood-brain barrier (BBB); Drug delivery; Inorganic nanoparticles (INPs); Neurological therapy; Surface modification; Synthesis approaches.

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Conflict of interest statement

Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

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