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Nanotechnology in Pediatric Neurology: Applications and Innovations

delete2026-08-13
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OA
AI
R
Raluca Ioana Teleanu
I
Ioana Alexandra Lungescu
A
Adelina-Gabriela Niculescu
A
Ana Cojocaru *
R
Radu Ștefan Perjoc
B
Bianca Teodora Chenescu
E
Eugenia Roza
O
Oana Aurelia Vladâcenco
A
Alexandru Mihai Grumezescu
D
Daniel Mihai Teleanu
DOI:10.3390/pharmaceutics18080999delete
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Abstract

Abstract

En 中文
Nanotechnology is rapidly transforming the perspective on pediatric neurology, enabling diagnostic, therapeutic, and monitoring strategies tailored to the unique features of neurological illnesses in children. This review acknowledges the problems caused by delays in diagnosis, the limitations of conventional procedures, and the need for new, focused approaches, highlighting recent advances in nanoscale materials and smart nanocarriers. Specifically, this paper summarizes advances in nanomaterials that can overcome physiological barriers, such as the developing blood–brain barrier (BBB) and age-dependent pharmacokinetics. We discuss innovations in stimuli-responsive delivery systems, theranostic platforms, and multimodal nanohybrids designed for precise targeting and real-time treatment monitoring. Special emphasis is placed on pediatric-specific considerations, including developmental differences in immune and metabolic responses, the necessity for age-adjusted dosing, and the potential long-term safety implications of nanoparticle exposure. Transformative applications are explored in various pediatric neurological conditions, including brain tumors, epilepsy, neurodevelopmental disorders, and rare degenerative diseases, emphasizing both achievements and challenges in translation. This paper evaluates various regulatory, ethical, and societal factors, alongside the integration of converging technologies such as AI-driven nanoparticle optimization, brain organoids, and digital twins to accelerate personalized therapy development. Conclusively, this paper emphasizes the importance of interdisciplinary collaboration, pediatric-focused clinical trial designs, and sustained investment to fully realize the potential of nanotechnology in improving neurological outcomes for children.
Keywords:
pediatric neurology
nanotechnology
smart nanocarriers
theranostics
pediatric pharmacokinetics
pediatric brain tumors
AI-driven nanomedicine
brain organoids
digital twins
clinical translation

Journal

Pharmaceutics cover
Pharmaceutics
IF:
5.5
Papers:
1.4W
Citations:
6.2W

Organization

C
carol davila university of medicine and pharmacy
Scholars:
1.7K
Papers: 617
Citations: 0
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