نتایج جستجو برای: composite scaffold

تعداد نتایج: 144623  

Journal: Nanomedicine Journal 2019

Objective(s): Scaffolds are considered as biological substitutes in bone defects which improve and accelerate the healing process of surrounding tissue. In recent years a major challenge in biomaterials is to produce porous materials with properties similar to bone tissue. In this study, the natural bioactive hydroxyapatite scaffolds with nano Diopside /Forstrite coating was successfully synthe...

Journal: :Frontiers in bioscience 2017
Sanjay Kumar James A Stokes Derrick Dean Christian Rogers Elijah Nyairo Vinoy Thomas Manoj K Mishra

In bone tissue engineering, the organo-ceramic composite, electrospun polycaprolactone/hydroxyapatite (PCL/HA) scaffold has the potential to support cell proliferation, migration, differentiation, and homeostasis. Here, we report the effect of PCL/HA scaffold in tissue regeneration using human mesenchymal stem cells (hMSCs). We characterized the scaffold by fourier transform infrared spectrosco...

Journal: :Journal of materials science. Materials in medicine 2016
Sanaz Soleymani Eil Bakhtiyari Saeed Karbasi Ahmad Monshi Mahbobeh Montazeri

To emulate bone structure, porous composite scaffold with suitable mechanical properties should be designed. In this research the effects of nano-titania (nTiO2) on the bioactivity and mechanical properties of nano-bioglass-poly-3-hydroxybutyrate (nBG/P3HB)-composite scaffold were evaluated. First, nBG powder was prepared by melting method of pure raw materials at a temperature of 1400 °C and t...

2013
Sweta K. Gupta Amit K. Dinda Pravin D. Potdar Narayan C. Mishra

Decellularized goat-lung scaffold was fabricated by removing cells from cadaver goat-lung tissue, and the scaffold was modified with chitosan/nanohydroxyapatite composite for the purpose of bone tissue engineering applications. MTT assay with osteoblasts, seeded over the chitosan/nanohydroxyapatite-modified decellularized scaffold, demonstrated significantly higher cell growth as compared to th...

2013
Fupo He Jiandong Ye

In this study, a core/shell bi-layered calcium phosphate cement (CPC)-based composite scaffold with adjustable compressive strength, which mimicked the structure of natural cortical/cancellous bone, was fabricated. The dense tubular CPC shell was prepared by isostatic pressing CPC powder with a specially designed mould. A porous CPC core with unidirectional lamellar pore structure was fabricate...

Journal: :مجله دانشگاه علوم پزشکی ایلام 0
سعید رضا معتمدیان sr motamedian کیخسرو خسرویانی k khosraviani فرشاد قلی پور f gholipour پریسان غلامین p gholamin فهیمه فیلی f fili

currently autografts are gold standards for craniomaxillofacial bone regeneration. but autografts have some limitations. bone tissue engineering has been introduced to overcome these limitations. it consist three components: stem cells, growth factor, and scaffold. scaffold provides an environment for bone growth and simplifies cell adhesion, differentiation and proliferation. in this review, a...

2017
Shengqi Zang Lei Zhu Kefu Luo Rui Mu Feng Chen Xiaocui Wei Xiaodong Yan Biyao Han Xiaolei Shi Qintao Wang Lei Jin

The study aimed to develop a chitosan (CS)-based scaffold for repairing calvarial bone defects. We fabricated composite scaffolds made of CS and bovine-derived xenograft (BDX), characterized their physicochemical properties including pore size and porosity, absorption, degradation, and compressive strength, compared their efficacy to support in vitro proliferation and differentiation of human j...

اسدی, اسداله , سقا , محسن , منصوری زاده , فریبا , میری , وحیده , گل محمدی, محمدقاسم ,

Background and purpose: Natural bone is a combination of polymer and biological apatite, therefore, the composite scaffolds made of polymers and bioactive ceramics have found wide applications in bone tissue engineering studies. Among various polymers, the poly-L-lactic acid (PLLA) and hydroxyapatite (HA) have attracted much attention due to their optimal properties. In this study, using PLLA p...

2013
Marcello Pilia Teja Guda Mark Appleford

The need for a suitable tissue-engineered scaffold that can be used to heal load-bearing segmental bone defects (SBDs) is both immediate and increasing. During the past 30 years, various ceramic and polymer scaffolds have been investigated for this application. More recently, while composite scaffolds built using a combination of ceramics and polymeric materials are being investigated in a grea...

2015
Maryam Eslami Gholamreza Javadi Nasser Agdami Mohammad Ali Shokrgozar

OBJECTIVE The incidence of heart valve disease is increasing worldwide and the number of heart valve replacements is expected to increase in the future. By mimicking the main tissue structures and properties of heart valve, tissue engineering offers new options for the replacements. Applying an appropriate scaffold in fabricating tissue-engineered heart valves (TEHVs) is of importance since it ...

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