[HTML][HTML] The pig as a model for immunology research

R Pabst - Cell and tissue research, 2020 - Springer
The pig is an omnivorous, monogastric species with many advantages to serve as an animal
model for human diseases. There are very high similarities to humans in anatomy and …

Regenerative medicine, organ bioengineering and transplantation

L Edgar, T Pu, B Porter, JM Aziz… - Journal of British …, 2020 - academic.oup.com
Background Organ transplantation is predicted to increase as life expectancy and the
incidence of chronic diseases rises. Regenerative medicine-inspired technologies …

[HTML][HTML] Biomaterials and their biomedical applications: From replacement to regeneration

S Todros, M Todesco, A Bagno - Processes, 2021 - mdpi.com
The history of biomaterials dates back to the mists of time: human beings had always used
exogenous materials to facilitate wound healing and try to restore damaged tissues and …

Current progress in tendon and ligament tissue engineering

WL Lim, LL Liau, MH Ng, SR Chowdhury… - Tissue engineering and …, 2019 - Springer
Background: Tendon and ligament injuries accounted for 30% of all musculoskeletal
consultations with 4 million new incidences worldwide each year and thus imposed a …

Biomimetic trachea engineering via a modular ring strategy based on bone‐marrow stem cells and atelocollagen for use in extensive tracheal reconstruction

Y Xu, J Dai, X Zhu, R Cao, N Song, M Liu… - Advanced …, 2022 - Wiley Online Library
The fabrication of biomimetic tracheas with a architecture of cartilaginous rings alternately
interspersed between vascularized fibrous tissue (CRVFT) has the potential to perfectly …

Tissue-Engineered Trachea Consisting of Electrospun Patterned sc-PLA/GO-g-IL Fibrous Membranes with Antibacterial Property and 3D-Printed Skeletons with …

Y Kang, C Wang, Y Qiao, J Gu, H Zhang… - …, 2019 - ACS Publications
In this study, a tissue-engineered trachea, consisting of multilevel structural electrospun
polylactide (PLA) membranes enveloping 3D-printed thermoplastic polyurethane (TPU) …

[HTML][HTML] 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 …

[HTML][HTML] Transplantation of a 3D-printed tracheal graft combined with iPS cell-derived MSCs and chondrocytes

IG Kim, SA Park, SH Lee, JS Choi, H Cho, SJ Lee… - Scientific reports, 2020 - nature.com
For successful tracheal reconstruction, tissue-engineered artificial trachea should meet
several requirements, such as biocompatible constructs comparable to natural trachea …

The use of nanoscaffolds and dendrimers in tissue engineering

B Gorain, M Tekade, P Kesharwani, AK Iyer, K Kalia… - Drug discovery today, 2017 - Elsevier
Highlights•Tissue engineering may propose new hope for patients with injuries, or end-
stage organ failure.•Dendrimers have gained its importance in tissue engineering.•Recent …

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 …