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Nanocarriers for Drug-Targeting Brain Tumors

Specificaties
Paperback, blz. | Engels
Elsevier Science | 2022
ISBN13: 9780323907736
Rubricering
Elsevier Science e druk, 2022 9780323907736
Onderdeel van serie Micro and Nano Technologies
€ 337,00
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Samenvatting

Nanocarriers for Drug-Targeting Brain Tumors covers different types of nanocarriers and  their design and development for targeting drugs to the brain. The book also presents case studies and the mechanism of action of nanocarriers in drug targeting to a specific site. This helps researchers and clinicians understand the design, development and mechanism of action of nanocarriers. As brain tumors continue to be a significant health problem globally, and very complex for targeting drugs, conventional dosage forms are not very effective and side-effects are a major concern. Functionalized nanocarriers can address these problems.

Furthermore, the targeting of nanocarriers is preferred for reducing toxicity and improving the effectiveness of the drugs. However, there is a need for understanding the design and development of formulation with the mechanism of action of nanocarriers for brain targeting.

Specificaties

ISBN13:9780323907736
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>Part A Anatomy and physiology of the brain<br>1. An overview of the anatomy and physiology of the brain<br>2. Blood-brain barrier and central nervous system drug delivery: Opportunities and challenges<br><br>Part B Pharmacological and clinical problems<br>3.Challenges in targeting to brain and brain tumors<br>4. Potential targeting sites in brain and brain tumors<br>5. Drug resistance problems in chemotherapy<br><br>Part C Introduction and biomedical applications of nanocarriers<br>6. An overview on nanocarriers <br>7. Biomedical applications of nanocarriers in brain tumor targeting<br><br>Part D Lipophilic nanocarriers<br>8. Solid lipid nanoparticle-based drug delivery for targeting brain tumors<br>9. Nanostructured lipid carriers as an alternative carrier with high drug loading for targeting to brain tumors <br>10. Design, development, and mechanism of liposomes in drug targeting to brain tumors <br>11. Niosomes based drug delivery in targeting brain tumors <br>12. Nanoemulsions as effective carriers for targeting brain tumors<br><br>Part E Polymeric nanocarriers<br>13. Mechanism of polymeric micelles for drug targeting to brain tumors <br>14. Dendrimers as carriers for active targeting of brain tumors <br>15. Multifunctional polymeric nanocarriers for targeting and treatment of brain tumors <br>16. Polymersomes for targeting to brain tumors <br><br>Part F Metallic nanocarriers systems<br>17. Development and applications of gold nanoparticles for drug targeting to brain tumors <br>18. Gold nanoparticles in cancer theranostics <br>19. Targeting of silver nanoparticles to brain tumors<br><br>Part G Hybrid nanocarriers<br>20. Hybrid nanoparticles to cross the blood–brain barrier<br>21. Targeting of lipid-polymer (hybrid) nanoparticles to brain tumors <br>22. Nano-enabled systems for neural tissue regenerative applications <br>23. Multifunctional liposome-quantum dot hybrid nanocarriers for drug targeting to brain tumors <br>24. Drug-loaded nanoclusters for brain targeting <br>25. Nano-enabled platforms for tropical diseases affecting the CNS <br>26. Phytoconstituents in brain delivery using nanodrug delivery <br>27. Multifunctional nanocarrier systems targeting brain tumors: A review<br><br>Part H Future directions and toxic concerns<br>28. Expert opinion on current challenges and future directions related to nanocarriers for drug targeting to the brain<br>29. Biological nanodrugs for brain targeting </p>
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        Nanocarriers for Drug-Targeting Brain Tumors