نتایج جستجو برای: biodegradable mgzn scaffold

تعداد نتایج: 36064  

2012
Goki Matsumura Naotaka Nitta Shojiro Matsuda Yuki Sakamoto Noriko Isayama Kenji Yamazaki Yoshito Ikada

We have developed a new biodegradable scaffold that does not require any cell seeding to create an in-situ tissue-engineering vasculature (iTEV). Animal experiments were conducted to test its characteristics and long-term efficacy. An 8-mm tubular biodegradable scaffold, consisting of polyglycolide knitted fibers and an L-lactide and ε-caprolactone copolymer sponge with outer glycolide and ε-ca...

Journal: :Orthopaedics & traumatology, surgery & research : OTSR 2014
H Bouyarmane P Beaufils N Pujol J Bellemans S Roberts T Spalding S Zaffagnini M Marcacci P Verdonk M Womack R Verdonk

BACKGROUND Segmental tissue loss in the lateral meniscus is associated with pain and increased risk of osteoarthritis even when indications have been carefully considered. HYPOTHESIS Repairing the defect using a novel biodegradable scaffold will reduce pain and restore the knee function. METHODS In this prospective multicenter study, a total of 54 patients (37 males/17 females; mean age: 28...

Journal: :Journal of the mechanical behavior of biomedical materials 2016
Georges Limbert Rodaina Omar Hugo Krynauw Deon Bezuidenhout Thomas Franz

Electro-spun biodegradable polymer fibrous structures exhibit anisotropic mechanical properties dependent on the degree of fibre alignment. Degradation and mechanical anisotropy need to be captured in a constitutive formulation when computational modelling is used in the development and design optimisation of such scaffolds. Biodegradable polyester-urethane scaffolds were electro-spun and under...

Journal: :ZHurnal «Patologicheskaia fiziologiia i eksperimental`naia terapiia» 2018

Journal: :International Journal of Advances in Medical Biotechnology 2022

The development of metal alloys with porosity controlled by powder metallurgy has shown to be suitable for obtaining biomaterials the control mechanical strength and modulus elasticity, in addition possibility controlling open porosity, which is essential osseointegration. Magnesium have encouraging results when used as tissue engineering scaffolds. Although a considerable number studies encour...

2016
Cancan Xu Yihui Huang Gerardo Yepez Zi Wei Fuqiang Liu Alejandro Bugarin Liping Tang Yi Hong

Conductive biodegradable materials are of great interest for various biomedical applications, such as tissue repair and bioelectronics. They generally consist of multiple components, including biodegradable polymer/non-degradable conductive polymer/dopant, biodegradable conductive polymer/dopant or biodegradable polymer/non-degradable inorganic additives. The dopants or additives induce materia...

2013
Hui-Min Wang Yi-Ting Chou Zhi-Hong Wen Zhao-Ren Wang Chun-Hong Chen Mei-Ling Ho

Skin wound healing is an important lifesaving issue for massive lesions. A novel porous scaffold with collagen, hyaluronic acid and gelatin was developed for skin wound repair. The swelling ratio of this developed scaffold was assayed by water absorption capacity and showed a value of over 20 g water/g dried scaffold. The scaffold was then degraded in time- and dose-dependent manners by three e...

2015
Doo Yeon Kwon Jin Seon Kwon Seung Hun Park Ji Hun Park So Hee Jang Xiang Yun Yin Jeong-Ho Yun Jae Ho Kim Byoung Hyun Min Jun Hee Lee Wan-Doo Kim Moon Suk Kim

A computer-designed, solvent-free scaffold offer several potential advantages such as ease of customized manufacture and in vivo safety. In this work, we firstly used a computer-designed, solvent-free scaffold and human dental pulp stem cells (hDPSCs) to regenerate neo-bone within cranial bone defects. The hDPSCs expressed mesenchymal stem cell markers and served as an abundant source of stem c...

نمودار تعداد نتایج جستجو در هر سال

با کلیک روی نمودار نتایج را به سال انتشار فیلتر کنید