ArticleDiscover nano2025
Nose to brain delivery of nanostructured lipid carriers loaded with rivastigmine and nilotinib for treating Alzheimer's disease: preparation, cell line study, and in vivo evaluation.
Article in Discover nano, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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Who cites it
7 citing papers in PubMed.
- Intranasal drug delivery to the brain for neurodegenerative diseases: Current efforts and challenges in delivery platforms and modeling.Advanced drug delivery reviews · 2026Review
- Disease mechanisms and translational barriers guide nanocarrier design for nose to brain delivery in Alzheimer's disease.Discover nano · 2026Review
- Nanostructured Lipid Carriers Enhance Brain Delivery and Antioxidant Efficacy of a Small-Molecule MAO B Inhibitor for Neurodegenerative Disease Therapy.Molecular pharmaceutics · 2026Article
- Challenges and Opportunities of Drug Delivery for Treatment of Alzheimer's Disease.AAPS PharmSciTech · 2026Review
- Optimization of Ionic Liquid Based NLC for Nose-To-Brain Delivery of Tetrabenazine Hydrochloride.AAPS PharmSciTech · 2026Article
- Breaking barriers: nanosystems to overcome solubility and permeability challenges of second-generation tyrosine kinase inhibitors.Beilstein journal of nanotechnology · 2026Review
- Overcoming the blood-brain barrier in Alzheimer's disease: translational perspectives on advanced drug delivery platforms.Frontiers in neuroscience · 2026Review
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Authors and funding
11 authors.
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Abstract
Alzheimer's disease (AD) is a complex neurodegenerative that affects over 55 million people worldwide, a number expected to double by 2050 due to aging populations. This growing prevalence imposes immense societal and economic burdens on healthcare systems and caregivers. AD is challenging to treat with monotherapy, making combination therapy a more effective approach. This study focuses on delivering Rivastigmine tartrate (RIV), and Nilotinib hydrochloride monohydrate (NIL), to the brain to achieve synergistic effects against AD. The optimal ratio of the drug combination was determined using the combination index that was performed using the Neuro2a cells line. It was found to be 1:1, emphasizing the synergistic effect against the cell lines. So, nanostructured lipid carriers (NLCs) were loaded with RIV and NIL, both individually and in combination, developed and optimized in this study. The developed formulations were thoroughly characterized for globule size, polydispersity index (PDI), and entrapment efficiency (EE) for each drug and the combination. The globule size was > 200 nm, PDI > 0.3; EE < 85% in all the developed formulations. On performing an in vitro cell availability study it was found that developed NLCs showed a 1.3 to 1.4-fold increase in the viability of the cells. On conducting an in vivo study, the concentration in the brain following administration of different formulations was in the order of RIV-NIL-NLC > NIL-NLC > RIV-NLC > RIV-NIL SUS > NIL-SUS > RIV-SUS. There was a 3.5 to 5-fold increase in the concentration of RIV and NIL in the brain when administered as RIV-NIL-NLC. So, it can be concluded that the NLCs with combined drugs showed promising results, enhancing drug permeability through the intranasal route, therefore could be used for treating AD.
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