نتایج جستجو برای: caprolactone scaffold

تعداد نتایج: 26001  

2012
Hoda Jahani Saeid Kaviani Majid Hassanpour-Ezatti Masoud Soleimani Zeinab Kaviani Zahra Zonoubi

OBJECTIVE The development of combining mesenchymal stem cells (MSCs) with surface modified three-dimensional (3D) biomaterial scaffold provides a desirable alternative for replacement of damaged and diseased tissue. Nanofibrous scaffolds serve as suitable environment for cell attachment and proliferation due to their similarity to the physical dimension of the natural extracellular matrix. In t...

Journal: :Biomedical sciences instrumentation 2011
Rula M Allaf Iris V Rivero

Several widely used techniques for the fabrication of three dimensional (3D) scaffolds utilize the particulate leaching method to achieve a porous structure. This method involves the selective leaching of a mineral or an organic compound to generate pores. However, scaffolds prepared by this technique tend to exhibit limited interconnectivity. Therefore, to enhance the interconnectivity of the ...

2002
Danielson Tuan

Introduction Differentiated chondrocytes have been widely employed in studies of cartilage regeneration and tissue engineering. However, the low cell density of cartilage poses the problem of low cell yield following isolation for direct seeding onto scaffolds. To overcome this problem, chondrocytes are usually expanded in monolayer cell culture before seeding on any scaffold. This approach int...

Journal: :Journal of materials science. Materials in medicine 2010
Pinar Yilgor Rui A Sousa Rui L Reis Nesrin Hasirci Vasif Hasirci

The aim of this study was to develop 3-D tissue engineered constructs that mimic the in vivo conditions through a self-contained growth factor delivery system. A set of nanoparticles providing the release of BMP-2 initially followed by the release of BMP-7 were incorporated in poly(ε-caprolactone) scaffolds with different 3-D architectures produced by 3-D plotting and wet spinning. The release ...

2016
Jae Yeon Lee Soo Jin Son Jun Sik Son Seong Soo Kang Seok Hwa Choi

Bone defects are repaired using either natural or synthetic bone grafts. Poly(ϵ-caprolactone) (PCL), β-tricalcium phosphate (TCP), and poly(lactic-co-glycolic acid) (PLGA) are widely used as synthetic materials for tissue engineering. This study aimed to investigate the bone-healing capacity of PCL/PLGA/duck beak scaffold in critical bone defects and the oxidative stress status of the graft sit...

2016
Yu Jun Tan Xipeng Tan Wai Yee Yeong Shu Beng Tor

Polymeric fibrous scaffolds for guiding cell growth are designed to be potentially used for the tissue engineering (TE) of tubular organs including esophagi, blood vessels, tracheas, etc. Tubular scaffolds were fabricated via melt-drawing of highly elastic poly(l-lactide-co-ε-caprolactone) (PLC) fibers layer-by-layer on a cylindrical mandrel. The diameter and length of the scaffolds are customi...

Journal: :Biomaterials 2012
Paul H Ousema Franklin T Moutos Bradley T Estes Arnold I Caplan Donald P Lennon Farshid Guilak J Brice Weinberg

Tissue-engineered constructs designed to treat large cartilage defects or osteoarthritic lesions may be exposed to significant mechanical loading as well as an inflammatory environment upon implantation in an injured or diseased joint. We hypothesized that a three-dimensionally (3D) woven poly(ε-caprolactone) (PCL) scaffold seeded with bone marrow-derived mesenchymal stem cells (MSCs) would pro...

2015
Wei Zhu Nathan J. Castro Xiaoqian Cheng Michael Keidar Lijie Grace Zhang Wan-Ju Li

Articular cartilage is prone to degeneration and possesses extremely poor self-healing capacity due to inherent low cell density and the absence of a vasculature network. Tissue engineered cartilage scaffolds show promise for cartilage repair. However, there still remains a lack of ideal biomimetic tissue scaffolds which effectively stimulate cartilage regeneration with appropriate functional p...

Journal: :Iranian biomedical journal 2012
Leila Beigom Hejazian Banafshe Esmaeilzade Fatima Moghanni Ghoroghi Fatemeh Moradi Marzieh Beigom Hejazian Anahita Aslani Mehrdad Bakhtiari Masoud Soleimani Maliheh Nobakht

BACKGROUND The aim of this study was to fabricate the poly caprolactone (PCL) aligned nanofiber scaffold and to evaluate the survival, adhesion, proliferation, and differentiation of rat hair follicle stem cells (HFSC) in the graft material using electrospun PCL nanofiber scaffold for tissue engineering applications. METHODS The bulge region of rat whisker was isolated and cultured in DMEM: n...

Journal: :Tissue engineering. Part C, Methods 2012
Weilun Sun Dorien M Tiemessen Marije Sloff Rianne J Lammers Eric L W de Mulder Jöns Hilborn Bhuvanesh Gupta Wout F J Feitz Willeke F Daamen Toin H van Kuppevelt Paul J Geutjes Egbert Oosterwijk

Adequate cellular in-growth into biomaterials is one of the fundamental requirements of scaffolds used in regenerative medicine. Type I collagen is the most commonly used material for soft tissue engineering, because it is nonimmunogenic and a highly porous network for cellular support can be produced. However, in general, adequate cell in-growth and cell seeding has been suboptimal. In this st...

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