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Nanoceria in Soft Tissue Engineering

von Hooshmand, Sara   (Autor)

Several biocompatible materials have been applied for managing soft tissue lesions; cerium oxide nanoparticles (CNPs, or nanoceria) are among the most promising candidates due to their outstanding properties, including antioxidant, anti-inflammatory, antibacterial, and angiogenic activities. Much attention should be paid to the physical properties of nanoceria, since most of its biological characteristics are directly determined by some of these relevant parameters, including the particle size and shape. Nanoceria, either in bare or functionalized forms, showed the excellent capability of accelerating the healing process of both acute and chronic wounds. The skin, heart, nervous system, and ophthalmic tissues are the main targets of nanoceria-based therapies, and the other soft tissues may also be evaluated in upcoming experimental studies. For the repair and regeneration of soft tissue damage and defects, nanoceria-incorporated film, hydrogel, and nanofibrous scaffolds have been proven to be highly suitable replacements with satisfactory outcomes.

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Produktbeschreibung

Several biocompatible materials have been applied for managing soft tissue lesions; cerium oxide nanoparticles (CNPs, or nanoceria) are among the most promising candidates due to their outstanding properties, including antioxidant, anti-inflammatory, antibacterial, and angiogenic activities. Much attention should be paid to the physical properties of nanoceria, since most of its biological characteristics are directly determined by some of these relevant parameters, including the particle size and shape. Nanoceria, either in bare or functionalized forms, showed the excellent capability of accelerating the healing process of both acute and chronic wounds. The skin, heart, nervous system, and ophthalmic tissues are the main targets of nanoceria-based therapies, and the other soft tissues may also be evaluated in upcoming experimental studies. For the repair and regeneration of soft tissue damage and defects, nanoceria-incorporated film, hydrogel, and nanofibrous scaffolds have been proven to be highly suitable replacements with satisfactory outcomes. 

Autoreninfo

Dr. Sara Hooshmand is a postdoctoral researcher in Pharmacological Research Center of Medicinal Plants, Mashhad University of Medical Sciences, Iran. She has obtained both her MSc and PhD in Analytical Chemistry and published her first book "Sol-gel Chemistry and Its Application in Nanotechnology" (ISBN: 978-600-5202-28-1) in 2011. 

Mehr vom Autor:

Hooshmand, Sara

Produktdetails

Medium: Buch
Format: Kartoniert
Seiten: 56
Sprache: Englisch
Erschienen: November 2020
Maße: 220 x 150 mm
Gewicht: 102 g
ISBN-10: 6203028754
ISBN-13: 9786203028751

Bestell-Nr.: 30342919 
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LIBRI: 097 Print on Demand. Lieferbar innerhalb von 7 bis 10 Tagen * EK = ohne MwSt.

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KNO: 88717402
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KNOABBVERMERK: 2020. 56 S. 220 mm
Einband: Kartoniert
Sprache: Englisch
Beilage(n): Paperback

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