Airway tissue engineering for congenital laryngotracheal disease

Regenerative medicine offers hope of a sustainable solution for severe airway disease by the creation of functional, immunocompatible organ replacements. When considering fetuses and newborns, there is a specific spectrum of airway pathologies that could benefit from cell therapy and tissue engineer...

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Published inSeminars in pediatric surgery Vol. 25; no. 3; pp. 186 - 190
Main Authors Maughan, Elizabeth, Lesage, Flore, Butler, Colin R, Hynds, Robert E, Hewitt, Richard, Janes, Sam M, Deprest, Jan A, Coppi, Paolo De
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.06.2016
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Abstract Regenerative medicine offers hope of a sustainable solution for severe airway disease by the creation of functional, immunocompatible organ replacements. When considering fetuses and newborns, there is a specific spectrum of airway pathologies that could benefit from cell therapy and tissue engineering applications. While hypoplastic lungs associated with congenital diaphragmatic hernia (CDH) could benefit from cellular based treatments aimed at ameliorating lung function, patients with upper airway obstruction could take advantage from a de novo tissue engineering approach. Moreover, the international acceptance of the EXIT procedure as a means of securing the precarious neonatal airway, together with the advent of fetal surgery as a method of heading off postnatal co-morbidities, offers the revolutionary possibility of extending the clinical indication for tissue-engineered airway transplantation to infants affected by diverse severe congenital laryngotracheal malformations. This chapter outlines the necessary basic components for regenerative medicine solutions in this potential clinical niche.
AbstractList Regenerative medicine offers hope of a sustainable solution for severe airway disease by the creation of functional, immunocompatible organ replacements. When considering fetuses and newborns, there is a specific spectrum of airway pathologies that could benefit from cell therapy and tissue engineering applications. While hypoplastic lungs associated with congenital diaphragmatic hernia (CDH) could benefit from cellular based treatments aimed at ameliorating lung function, patients with upper airway obstruction could take advantage from a de novo tissue engineering approach. Moreover, the international acceptance of the EXIT procedure as a means of securing the precarious neonatal airway, together with the advent of fetal surgery as a method of heading off postnatal co-morbidities, offers the revolutionary possibility of extending the clinical indication for tissue-engineered airway transplantation to infants affected by diverse severe congenital laryngotracheal malformations. This article outlines the necessary basic components for regenerative medicine solutions in this potential clinical niche.
Regenerative medicine offers hope of a sustainable solution for severe airway disease by the creation of functional, immunocompatible organ replacements. When considering fetuses and newborns, there is a specific spectrum of airway pathologies that could benefit from cell therapy and tissue engineering applications. While hypoplastic lungs associated with congenital diaphragmatic hernia (CDH) could benefit from cellular based treatments aimed at ameliorating lung function, patients with upper airway obstruction could take advantage from a de novo tissue engineering approach. Moreover, the international acceptance of the EXIT procedure as a means of securing the precarious neonatal airway, together with the advent of fetal surgery as a method of heading off postnatal co-morbidities, offers the revolutionary possibility of extending the clinical indication for tissue-engineered airway transplantation to infants affected by diverse severe congenital laryngotracheal malformations. This chapter outlines the necessary basic components for regenerative medicine solutions in this potential clinical niche.
Author Janes, Sam M
Lesage, Flore
Coppi, Paolo De
Maughan, Elizabeth
Deprest, Jan A
Butler, Colin R
Hynds, Robert E
Hewitt, Richard
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Issue 3
Keywords Tissue engineering
Stem cell
Transplantation
Perinatal surgery
Fetal therapy
Trachea
Congenital disease
Language English
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Snippet Regenerative medicine offers hope of a sustainable solution for severe airway disease by the creation of functional, immunocompatible organ replacements. When...
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SubjectTerms Congenital disease
Fetal Therapies - methods
Fetal therapy
Guided Tissue Regeneration
Humans
Infant, Newborn
Laryngeal Diseases - congenital
Laryngeal Diseases - surgery
Larynx - abnormalities
Larynx - surgery
Pediatrics
Perinatal surgery
Respiratory System Abnormalities - surgery
Stem cell
Surgery
Tissue engineering
Tissue Engineering - methods
Tissue Transplantation
Trachea
Trachea - abnormalities
Trachea - surgery
Tracheal Diseases - congenital
Tracheal Diseases - surgery
Transplantation
Title Airway tissue engineering for congenital laryngotracheal disease
URI https://www.clinicalkey.es/playcontent/1-s2.0-S1055858616000263
https://dx.doi.org/10.1053/j.sempedsurg.2016.02.012
https://www.ncbi.nlm.nih.gov/pubmed/27301606
https://search.proquest.com/docview/1797543533
Volume 25
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