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Neurotoxicity of nanomaterials and n...
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Jiang, Xinguo,
Neurotoxicity of nanomaterials and nanomedicine
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Neurotoxicity of nanomaterials and nanomedicine/ edited by Xinguo Jiang, Huile Gao.
其他作者:
Gao, Huile,
出版者:
London :Academic Press, : 2017.,
面頁冊數:
1 online resource
標題:
TECHNOLOGY & ENGINEERING - Biomedical. -
電子資源:
https://www.sciencedirect.com/science/book/9780128045985
ISBN:
9780128046203 (electronic bk.)
Neurotoxicity of nanomaterials and nanomedicine
Neurotoxicity of nanomaterials and nanomedicine
[electronic resource] /edited by Xinguo Jiang, Huile Gao. - London :Academic Press,2017. - 1 online resource
Includes bibliographical references and index.
1. The medical applications of nanomaterials in the central nervous system -- 2. The route of nanomaterials entering brain -- 3. The distribution and elimination of nanomaterials in brain -- 4. Current perspective on nanomaterial-induced adverse effects: neurotoxicity as a case example -- 5. Toxicity of titanium dioxide nanoparticles on brain -- 6. The application, neurotoxicity and related mechanism of iron oxide nanoparticles -- 7. The application, neurotoxicity and related mechanism of silver nanoparticles -- 8. The application, neurotoxicity and related mechanism of gold nanoparticles -- 9. The applications, neurotoxicity, and related mechanisms of managanese containing nanoparticles -- 10. The application, neurotoxicity and related mechanism of silica nanoparticles -- 11. The application, neurotoxicity and related mechanism of carbon nanotubes -- 12. The application, neurotoxicity and related mechanism of cationic polymers -- 13. to reduce neurotoxicity of nanomaterials and the corresponding mechanism.
Neurotoxicity of Nanomaterials and Nanomedicine presents an overview of the exciting research in neurotoxicity and nanomaterials. Nanomaterials have been extensively used in medicine, including diagnosis probes, drug carriers, and embedded materials. While some have been approved for clinical use, most nanomaterials are waiting to be transferred from lab to clinic. However, the toxicity is a main barrier that restricts the translation. This comprehensive book includes chapters on the most commonly used individual nanoparticles, with information on the applications, neurotoxicity, and related mechanisms of each, providing the most in-depth and current information available. The book examines the pathways that nanomaterials enter into, and eliminate, from the brain, along with the strategies that could reduce the neurotoxicity of nanomaterials. Providing a background to the subject, detailed information, and ideas for future directions in research, the book is essential for students and researchers in toxicology, and for those in medicine, neurology, pharmacology, pharmaceutical science, and materials science who are researching nanomaterials.
ISBN: 9780128046203 (electronic bk.)Subjects--Topical Terms:
827577
TECHNOLOGY & ENGINEERING
--Biomedical.Index Terms--Genre/Form:
554714
Electronic books.
LC Class. No.: R857.N34
Dewey Class. No.: 610.28
National Library of Medicine Call No.: QT 36.5
Neurotoxicity of nanomaterials and nanomedicine
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1. The medical applications of nanomaterials in the central nervous system -- 2. The route of nanomaterials entering brain -- 3. The distribution and elimination of nanomaterials in brain -- 4. Current perspective on nanomaterial-induced adverse effects: neurotoxicity as a case example -- 5. Toxicity of titanium dioxide nanoparticles on brain -- 6. The application, neurotoxicity and related mechanism of iron oxide nanoparticles -- 7. The application, neurotoxicity and related mechanism of silver nanoparticles -- 8. The application, neurotoxicity and related mechanism of gold nanoparticles -- 9. The applications, neurotoxicity, and related mechanisms of managanese containing nanoparticles -- 10. The application, neurotoxicity and related mechanism of silica nanoparticles -- 11. The application, neurotoxicity and related mechanism of carbon nanotubes -- 12. The application, neurotoxicity and related mechanism of cationic polymers -- 13. to reduce neurotoxicity of nanomaterials and the corresponding mechanism.
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Neurotoxicity of Nanomaterials and Nanomedicine presents an overview of the exciting research in neurotoxicity and nanomaterials. Nanomaterials have been extensively used in medicine, including diagnosis probes, drug carriers, and embedded materials. While some have been approved for clinical use, most nanomaterials are waiting to be transferred from lab to clinic. However, the toxicity is a main barrier that restricts the translation. This comprehensive book includes chapters on the most commonly used individual nanoparticles, with information on the applications, neurotoxicity, and related mechanisms of each, providing the most in-depth and current information available. The book examines the pathways that nanomaterials enter into, and eliminate, from the brain, along with the strategies that could reduce the neurotoxicity of nanomaterials. Providing a background to the subject, detailed information, and ideas for future directions in research, the book is essential for students and researchers in toxicology, and for those in medicine, neurology, pharmacology, pharmaceutical science, and materials science who are researching nanomaterials.
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https://www.sciencedirect.com/science/book/9780128045985
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