نتایج جستجو برای: 3d scaffold

تعداد نتایج: 210490  

2014
Hui Fan Junfeng Hui Zhiguang Duan Daidi Fan Yu Mi Jianjun Deng Hui Li

We investigated the feasibility of oleuropein as a cross-linking agent for fabricating three-dimensional (3D) porous composite scaffolds for bone tissue engineering. Human-like collagen (HLC) and nanohydroxyapatite (n-HAp) were used to fabricate the composite scaffold by way of cross-linking. The mechanical tests revealed superior properties for the cross-linked scaffolds compared to the uncros...

2008
Mircea Dreucean Mirela Toth-Tascau Lucian Rusu Dan Ioan Stoia Karoly Menyhardt

For a great number of medical applications the STEM cells offer new possibilities of healing and recovery. The present study uses a number of dogs and rabbits with induced defects at the femoris condylis on the purpose of being implanted with STEM cells in the side area of the knee articulation. The 3D reconstruction of the defect area based on CT scans is presented in the paper. The process of...

2011
Jonathan J. Campbell Natalia Davidenko Maria M. Caffarel Ruth E. Cameron Christine J. Watson

Studies on the stem cell niche and the efficacy of cancer therapeutics require complex multicellular structures and interactions between different cell types and extracellular matrix (ECM) in three dimensional (3D) space. We have engineered a 3D in vitro model of mammary gland that encompasses a defined, porous collagen/hyaluronic acid (HA) scaffold forming a physiologically relevant foundation...

Journal: :Biomaterials 2006
K Rezwan Q Z Chen J J Blaker Aldo Roberto Boccaccini

Biodegradable polymers and bioactive ceramics are being combined in a variety of composite materials for tissue engineering scaffolds. Materials and fabrication routes for three-dimensional (3D) scaffolds with interconnected high porosities suitable for bone tissue engineering are reviewed. Different polymer and ceramic compositions applied and their impact on biodegradability and bioactivity o...

2016
Aaron L Carlson Neal K Bennett Nicola L Francis Apoorva Halikere Stephen Clarke Jennifer C Moore Ronald P Hart Kenneth Paradiso Marius Wernig Joachim Kohn Zhiping P Pang Prabhas V Moghe

Cell replacement therapy with human pluripotent stem cell-derived neurons has the potential to ameliorate neurodegenerative dysfunction and central nervous system injuries, but reprogrammed neurons are dissociated and spatially disorganized during transplantation, rendering poor cell survival, functionality and engraftment in vivo. Here, we present the design of three-dimensional (3D) microtopo...

A. Soleimani N. Zareifard S. Bahmanpour, T. Talaei-Khozani

Alginate, a non-toxic polysaccharide isolated from brown algae, is a widely used 3-dimensional (3D) porous scaffold for the granulosa cell and follicle encapsulation. However, impurities in commercial alginate can lead to alginate biocompatibility reduction. The aim of this study was to evaluate in vitro behavior of the granulosa cells seeded on the purified alginate in varying concent...

Ahmad Hosseini, Mansooreh Jaberipour Soghra Bahmanpour, Tahereh Talaei-Khozani Zahra Khodabandeh Zahra Vojdani,

Background: Human Wharton’s jelly mesenchymal stem cells (HWJMSCs) express liver-specific markers such as albumin, alpha-fetoprotein, cytokeratin-19, cytokeratin-18, and glucose-6-phosphatase. Therefore, they can be considered as a good source for cell replacement therapy for liver diseases. This study aimed to evaluate the effects of various culture systems on the hepatocyte-specific gene expr...

2016
Kanchan Maji Sudip Dasgupta Krishna Pramanik Akalabya Bissoyi

The aim of the present study was to prepare and characterize bioglass-natural biopolymer based composite scaffold and evaluate its bone regeneration ability. Bioactive glass nanoparticles (58S) in the size range of 20-30 nm were synthesized using sol-gel method. Porous scaffolds with varying bioglass composition from 10 to 30 wt% in chitosan, gelatin matrix were fabricated using the method of f...

2013
Eunna Chung Seung Yun Nam Laura M Ricles Stanislav Y Emelianov Laura J Suggs

Evaluating the regenerative capacity of a tissue-engineered device in a noninvasive and synchronous manner is critical to determining the mechanisms for success in clinical applications. In particular, directly tracking implanted cells in a three-dimensional (3D) scaffold is desirable in that it enables the monitoring of cellular activity in a specific and localized manner. The authors' group h...

2013
Derek Juba Antonio Cardone Cheuk Yiu Ip Carl G Simon Christopher K Tison Girish Kumar Mary Brady Amitabh Varshney

There is a need for tools to classify cells based on their three-dimensional (3D) shape. Cells exist in vivo in 3D, cells are frequently cultured within 3D scaffolds in vitro and 3D scaffolds are used for cell delivery in tissue engineering therapies. Recent work indicates that the physical structure of a tissue engineering scaffold can direct stem cell function by driving stem cells into morph...

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