Abstract
With an ageing population and increasing prevalence of central-nervous system (CNS) disorders new approaches are required to sustain the development and successful delivery of therapeutics into the brain and CNS. CNS drug delivery is challenging due to the impermeable nature of the brain microvascular endothelial cells that form the blood-brain barrier (BBB) and which prevent the entry of a wide range of therapeutics into the brain. This review examines the role intranasal delivery may play in achieving direct brain delivery, for small molecular weight drugs, macromolecular therapeutics and cell-based therapeutics, by exploitation of the olfactory and trigeminal nerve pathways. This approach is thought to deliver drugs into the brain and CNS through bypassing the BBB. Details of the mechanism of transfer of administrated therapeutics, the pathways that lead to brain deposition, with a specific focus on therapeutic pharmacokinetics, and examples of successful CNS delivery will be explored.
Keywords: Blood-brain barrier, brain, central nervous system, nasal, neuron, olfactory, pharmacokinetics, trigeminal.
Graphical Abstract
Current Drug Delivery
Title:Improving Brain Drug Targeting Through Exploitation of The Nose-to- Brain Route: A Physiological and Pharmacokinetic Perspective
Volume: 11 Issue: 4
Author(s): R.K.S. Badhan, M. Kaur, S. Lungare and S. Obuobi
Affiliation:
Keywords: Blood-brain barrier, brain, central nervous system, nasal, neuron, olfactory, pharmacokinetics, trigeminal.
Abstract: With an ageing population and increasing prevalence of central-nervous system (CNS) disorders new approaches are required to sustain the development and successful delivery of therapeutics into the brain and CNS. CNS drug delivery is challenging due to the impermeable nature of the brain microvascular endothelial cells that form the blood-brain barrier (BBB) and which prevent the entry of a wide range of therapeutics into the brain. This review examines the role intranasal delivery may play in achieving direct brain delivery, for small molecular weight drugs, macromolecular therapeutics and cell-based therapeutics, by exploitation of the olfactory and trigeminal nerve pathways. This approach is thought to deliver drugs into the brain and CNS through bypassing the BBB. Details of the mechanism of transfer of administrated therapeutics, the pathways that lead to brain deposition, with a specific focus on therapeutic pharmacokinetics, and examples of successful CNS delivery will be explored.
Export Options
About this article
Cite this article as:
Badhan R.K.S., Kaur M., Lungare S. and Obuobi S., Improving Brain Drug Targeting Through Exploitation of The Nose-to- Brain Route: A Physiological and Pharmacokinetic Perspective, Current Drug Delivery 2014; 11 (4) . https://dx.doi.org/10.2174/1567201811666140321113555
DOI https://dx.doi.org/10.2174/1567201811666140321113555 |
Print ISSN 1567-2018 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5704 |
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
Related Articles
-
Editorial from Guest Editor [Hot topic: Community-Acquired Pneumonia – Evolving Changes in Our Understanding and How This Impacts on Management (Guest Editor: Grant Waterer)]
Current Respiratory Medicine Reviews Patents on Non-Viral Mediated Gene Delivery
Recent Patents on DNA & Gene Sequences Application of NMR Spectroscopy in Medicinal Chemistry and Drug Discovery
Current Topics in Medicinal Chemistry Morphofunctional Aspects of the Blood-Brain Barrier
Current Drug Metabolism Somatostatin and its Analogs
Current Drug Targets Moderate Hypothermia in the Management of Severe Traumatic Brain Injury: A Good Idea Proved Ineffective?
Current Pharmaceutical Design Peripheral and Central Glutamate Dyshomeostasis in Neurodegenerative Disorders
Current Neuropharmacology Nicotinamide Phosphoribosyltransferase (Nampt): A Link Between NAD Biology, Metabolism, and Diseases
Current Pharmaceutical Design Management of Glia-Mediated Neuroinflammation and Related Patents
Recent Patents on Inflammation & Allergy Drug Discovery Advances in Sickle Cell Disease Treatment: from Drug Discovery Until the Patient Monitoring
Cardiovascular & Hematological Agents in Medicinal Chemistry An Umbrella Review of Nuts Intake and Risk of Cardiovascular Disease
Current Pharmaceutical Design Biomarkers for Systemic Therapy in Ovarian Cancer
Current Cancer Drug Targets Dengue Virus RNA Polymerase NS5: A Potential Therapeutic Target?
Current Drug Targets Transmembrane Phosphatases and Cancer Development, the Role of Protein Tyrosine Phosphatase-kappa (PTPκ) and Protein Tyrosine Phosphatase-mu (PTPμ)
Current Signal Transduction Therapy Targeting Kinase-activating Genetic Lesions to Improve Therapy of Pediatric Acute Lymphoblastic Leukemia
Current Medicinal Chemistry The Contribution of Nitric Oxide and Carbon Monoxide to Neuronal Function and Development
Central Nervous System Agents in Medicinal Chemistry Epigenetic Effects of Cadmium in Cancer: Focus on Melanoma
Current Genomics Biologic Therapy in Inflammatory Eye Conditions (Ophtalmology): Safety Profile
Current Drug Safety Trends and Prospects of Plant Proteases in Therapeutics
Current Medicinal Chemistry Pharmacoperones: A New Therapeutic Approach for Diseases Caused By Misfolded G Protein-Coupled Receptors
Recent Patents on Endocrine, Metabolic & Immune Drug Discovery (Discontinued)