Paper 2 of the paediatric regenerative medicine Series focuses on recent advances in postnatal approaches. New gene, cell, and niche-based technologies and their combinations allow structural and functional reconstitution and simulation of complex postnatal cell, tissue, and organ hierarchies. Organoid and tissue engineering advances provide human disease models and novel treatments for both rare paediatric diseases and common diseases affecting all ages, such as COVID-19. Preclinical studies for gastrointestinal disorders are directed towards oesophageal replacement, short bowel syndrome, enteric neuropathy, biliary atresia, and chronic end-stage liver failure. For respiratory diseases, beside the first human tracheal replacement, more complex tissue engineering represents a promising solution to generate transplantable lungs. Genitourinary tissue replacement and expansion usually involve application of biocompatible scaffolds seeded with patient-derived cells. Gene and cell therapy approaches seem appropriate for rare paediatric diseases of the musculoskeletal system such as spinal muscular dystrophy, whereas congenital diseases of complex organs, such as the heart, continue to challenge new frontiers of regenerative medicine.

Tam, P., Wong, K., Atala, A., Giobbe, G.g., Booth, C., Gruber, P.j., et al. (2022). Regenerative medicine: postnatal approaches. THE LANCET CHILD & ADOLESCENT HEALTH, 6(9), 654-666 [10.1016/s2352-4642(22)00193-6].

Regenerative medicine: postnatal approaches

de Coppi, Paolo
2022-09-01

Abstract

Paper 2 of the paediatric regenerative medicine Series focuses on recent advances in postnatal approaches. New gene, cell, and niche-based technologies and their combinations allow structural and functional reconstitution and simulation of complex postnatal cell, tissue, and organ hierarchies. Organoid and tissue engineering advances provide human disease models and novel treatments for both rare paediatric diseases and common diseases affecting all ages, such as COVID-19. Preclinical studies for gastrointestinal disorders are directed towards oesophageal replacement, short bowel syndrome, enteric neuropathy, biliary atresia, and chronic end-stage liver failure. For respiratory diseases, beside the first human tracheal replacement, more complex tissue engineering represents a promising solution to generate transplantable lungs. Genitourinary tissue replacement and expansion usually involve application of biocompatible scaffolds seeded with patient-derived cells. Gene and cell therapy approaches seem appropriate for rare paediatric diseases of the musculoskeletal system such as spinal muscular dystrophy, whereas congenital diseases of complex organs, such as the heart, continue to challenge new frontiers of regenerative medicine.
set-2022
Pubblicato
Rilevanza internazionale
Review
Sì, ma tipo non specificato
Settore MEDS-20/A - Pediatria generale e specialistica
English
Tam, P., Wong, K., Atala, A., Giobbe, G.g., Booth, C., Gruber, P.j., et al. (2022). Regenerative medicine: postnatal approaches. THE LANCET CHILD & ADOLESCENT HEALTH, 6(9), 654-666 [10.1016/s2352-4642(22)00193-6].
Tam, Pkh; Wong, Kky; Atala, A; Giobbe, Gg; Booth, C; Gruber, Pj; Mononen, M; Rafii, S; Rando, Ta; Vacanti, J; Comer, Cd; Elvassore, N; Grikscheit, T; ...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/417434
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