Biomedical grafts for tracheal tissue repairing and regeneration “Tracheal tissue engineering: an overview”

A Dhasmana, A Singh, S Rawal - Journal of tissue engineering …, 2020 - Wiley Online Library
Airway system is a vital part of the living being body. Trachea is the upper respiratory portion
that connects nostril and lungs and has multiple functions such as breathing and entrapment …

Advanced strategies for tissue engineering in regenerative medicine: A biofabrication and biopolymer perspective

CR Lynch, PPD Kondiah, YE Choonara - Molecules, 2021 - mdpi.com
Tissue engineering is known to encompass multiple aspects of science, medicine and
engineering. The development of systems which are able to promote the growth of new cells …

Experimental tracheal replacement using 3-dimensional bioprinted artificial trachea with autologous epithelial cells and chondrocytes

JH Park, JK Yoon, JB Lee, YM Shin, KW Lee, SW Bae… - Scientific reports, 2019 - nature.com
Various treatment methods for tracheal defects have been attempted, such as artificial
implants, allografts, autogenous grafts, and tissue engineering; however, no perfect method …

In-vivo characterization of a 3D hybrid scaffold based on PCL/decellularized aorta for tracheal tissue engineering

F Ghorbani, L Moradi, MB Shadmehr… - Materials Science and …, 2017 - Elsevier
Introduction As common treatments for long tracheal stenosis are associated with several
limitations, tracheal tissue engineering is considered as an alternative treatment. Aim of …

Application of a bilayer tubular scaffold based on electrospun poly (l-lactide-co-caprolactone)/collagen fibers and yarns for tracheal tissue engineering

T Wu, H Zheng, J Chen, Y Wang, B Sun… - Journal of Materials …, 2017 - pubs.rsc.org
A bilayer tubular scaffold (BLTS) consisting of poly (L-lactide-co-caprolactone)(P (LLA–
CL))/collagen submicron sized fibers and micron sized yarns, was prepared via …

Novel electrospun poly (ε-caprolactone)/type I collagen nanofiber conduits for repair of peripheral nerve injury

CM Yen, CC Shen, YC Yang, BS Liu… - Neural regeneration …, 2019 - journals.lww.com
Recent studies have shown the potential of artificially synthesized conduits in the repair of
peripheral nerve injury. Natural biopolymers have received much attention because of their …

Human placenta/umbilical cord derivatives in regenerative medicine–Prospects and challenges

A Biswas, R Rajasekaran, B Saha, K Dixit… - Biomaterials …, 2023 - pubs.rsc.org
The human placenta and umbilical cord, natural birth biowaste, are a housing unit for
numerous bioactive macromolecules, growth factors, collagen and GAGs, with an array of …

Comparison of polyglycolic acid, polycaprolactone, and collagen as scaffolds for the production of tissue engineered intestine

Y Liu, T Nelson, J Chakroff, B Cromeens… - … Research Part B …, 2019 - Wiley Online Library
Cell‐seeded scaffolds play critical roles in the production of tissue engineered intestine
(TEI), a potential strategy for the treatment of short bowel syndrome. The current study …

Improved chondrogenic performance with protective tracheal design of Chitosan membrane surrounding 3D-printed trachea

H Kim, JY Lee, H Han, WW Cho, H Han, A Choi… - Scientific reports, 2021 - nature.com
In recent tracheal tissue engineering, limitations in cartilage reconstruction, caused by
immature delivery of chondrocyte-laden components, have been reported beyond the …

Tissue engineering applications in otolaryngology—The state of translation

WL Niermeyer, C Rodman, MM Li… - Laryngoscope …, 2020 - Wiley Online Library
While tissue engineering holds significant potential to address current limitations in
reconstructive surgery of the head and neck, few constructs have made their way into routine …