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Innovative brain tumor therapy [electronic resource] : nanoparticle-based therapeutic strategies / Gerardo Caruso, Lucia Merlo, and Maria Caffo.

By: Contributor(s): Series: Woodhead Publishing series in biomedicinePublication details: Amersterdam : Elsevier Science, ò014.Description: 1 online resource (xiv, 180 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781908818744
  • 1908818743
  • 1322201641
  • 9781322201641
Subject(s): Genre/Form: Additional physical formats: Print version:: No titleDDC classification:
  • 616.99/48106 23
LOC classification:
  • RD663 .C37 2014
Online resources: Summary: Despite recent advances, therapeutic efforts have not been successful establishing a definitive strategy of treatment for brain gliomas, because of the presence of the blood-brain barrier. Innovative Brain Tumor Therapy presents a synopsis of the studies on nanoparticles as ideal devices for brain tumor treatment. Their nanometric size, electrostatic charge, and lipophilic characteristics allow them to penetrate into the brain tissue freely. Promising in-vitro results have been reported, but remain to be validated in humans. This title focuses on the blood-brain barrier pathophysiology in brain tumors, and the possibilities of overcoming this with nanoparticle-based systems. Relevant patents of nanoparticles used as drug delivery carriers are also reported, as well as future scenarios in nanoparticles and stem cells.
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Includes bibliographical references and index.

Despite recent advances, therapeutic efforts have not been successful establishing a definitive strategy of treatment for brain gliomas, because of the presence of the blood-brain barrier. Innovative Brain Tumor Therapy presents a synopsis of the studies on nanoparticles as ideal devices for brain tumor treatment. Their nanometric size, electrostatic charge, and lipophilic characteristics allow them to penetrate into the brain tissue freely. Promising in-vitro results have been reported, but remain to be validated in humans. This title focuses on the blood-brain barrier pathophysiology in brain tumors, and the possibilities of overcoming this with nanoparticle-based systems. Relevant patents of nanoparticles used as drug delivery carriers are also reported, as well as future scenarios in nanoparticles and stem cells.

Print version record.

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