Increased use of reconstruction procedures in orthopedics, due to trauma, tumor, deformity, degeneration and an aging population, has caused a blossom, not only in surgical …
The engineering of tissues under a three-dimensional (3D) microenvironment is a great challenge and needs a suitable supporting biomaterial-based scaffold that may facilitate cell …
R Dimitriou, GI Mataliotakis, GM Calori, PV Giannoudis - BMC medicine, 2012 - Springer
Abstract Treatment of large bone defects represents a great challenge in orthopedic and craniomaxillofacial surgery. Although there are several methods for bone reconstruction …
A Higuchi, QD Ling, Y Chang, ST Hsu… - Chemical …, 2013 - ACS Publications
Millions of people lose or damage their organs or tissues due to disease, birth defects, or accidents each year. Stem cells, such as embryonic stem cells (ESCs), induced pluripotent …
Y Zare, I Shabani - Materials Science and Engineering: C, 2016 - Elsevier
Polymer/metal nanocomposites consisting of polymer as matrix and metal nanoparticles as nanofiller commonly show several attractive advantages such as electrical, mechanical and …
M Norouzi, SM Boroujeni… - Advanced …, 2015 - Wiley Online Library
The paucity of cellular and molecular signals essential for normal wound healing makes severe dermatological ulcers stubborn to heal. The novel strategies of skin regenerative …
The development of smart biomaterials for tissue regeneration has become the focus of intense research interest. More opportunities are available by the composite approach of …
A Padhi, AS Nain - Annals of biomedical engineering, 2020 - Springer
Stem cell regenerative potential owing to the capacity to self-renew as well as differentiate into other cell types is a promising avenue in regenerative medicine. Stem cell niche not …
This paper provides a comprehensive overview of nanofibrous structures for tissue engineering purposes and the role of non-thermal plasma technology (NTP) within this field …