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June 4, 2026Journal of drug targeting0 citations

Chitosan-based nanocarriers in Alzheimer’s disease therapy: Recent developments and future perspectives

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DSDinesh Kumar SharmaCPChandra Shekhar Prasad

Key Points

  • Examine the potential of chitosan-based nanocarriers in delivering therapies for Alzheimer's disease.
  • Review of various chitosan-based delivery platforms, including nanoparticles and nanogels.
  • Analysis of mechanisms of blood-brain barrier penetration and drug-loading capacity.
  • Evaluation of therapeutic efficacy and controlled-release behaviours of these systems.
  • Chitosan-based systems show improved brain bioavailability and reduced toxicity.
  • Demonstrated effectiveness in intranasal delivery of Alzheimer’s therapeutics.
  • Chitosan platforms support multifunctional and stimuli-responsive therapeutic options.

Abstract

Alzheimer's disease (AD) is a neurological condition that worsens with time and causes behavioral problems, memory loss, and cognitive decline. It is a major global health concern. Alzheimer's complexity and the blood-brain barrier (BBB) limit effective disease-modifying treatments despite extensive research. The primary goal of conventional pharmacotherapies is to relieve symptoms; however, they frequently have low absorption, a short half-life, and peripheral adverse effects. The use of anti-Alzheimer medications in nanoparticles (NPs) is a potential remedy for these issues. Although many NPs are biocompatible and nontoxic, many are not biodegradable, making them unsuitable for CNS targeting. Chitosan (CS)-based NPs stand out among polymeric nanocarriers as stable, biodegradable delivery systems for central nervous system drugs. In this review, we examine the design, mechanisms of BBB penetration, drug-loading capacity, controlled-release behaviour, and therapeutic efficacy of CS-based delivery platforms, including nanoparticles, nanogels, lipid nanoparticles, polymeric micelles, nanoemulsions, and acetylcholinesterase inhibitor-loaded systems. Furthermore, the benefits of CS-based systems, including improved brain bioavailability, reduced toxicity, intranasal delivery, and support for multifunctional and stimuli-responsive therapeutics, are highlighted. All things considered, chitosan-based drug delivery systems offer a flexible and promising strategy for enhancing AD treatment results.

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Cite This Study

Sharma et al. (2026) studied this question.

synapsesocial.com/papers/6a2116fad499ed480b16fd48https://doi.org/10.1080/1061186x.2026.2683967
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