نتایج جستجو برای: electrospun scaffolds

تعداد نتایج: 22956  

2013
Liang Chen Yi Bai Guiying Liao Ejun Peng Bolin Wu Yuxi Wang Xiaoyong Zeng Xiaolin Xie

The essence of tissue engineering is the fabrication of autologous cells or induced stem cells in naturally derived or synthetic scaffolds to form specific tissues. Polymer is thought as an appealing source of cell-seeded scaffold owing to the diversity of its physicochemical property and can be electrospun into nano-size to mimic natural structure. Poly (L-lactic acid) (PLLA) and poly (ε-capro...

Journal: :International Journal of Nanomedicine 2007
YZ Zhang B Su J Venugopal S Ramakrishna CT Lim

Electrospinning is an enabling technology that can architecturally (in terms of geometry, morphology or topography) and biochemically fabricate engineered cellular scaffolds that mimic the native extracellular matrix (ECM). This is especially important and forms one of the essential paradigms in the area of tissue engineering. While biomimesis of the physical dimensions of native ECM's major co...

2016
Edgar Moyers-Montoya Perla García-Casillas René Escobedo-González Carlos A. Martínez-Pérez

Electrospun scaffolds of neat poly-ε-caprolactone (PCL), poly-ε-caprolactone/βcyclodextrin inclusion complex (PCL/β-CD) and poly-ε-caprolactone amino derivative inclusion complex (PCL/β-CD-NH2) were prepared by the electrospinning technique. The obtained mats were analyzed by a theoretical model using the Hartree–Fock method with an STO-3G basis set, and characterized by X-ray diffraction (XRD)...

Journal: :Polymers 2021

Periodontitis is a set of inflammatory conditions affecting the tissues surrounding teeth predominantly sustained by bacterial infections. The aim work was design and development scaffolds based on biopolymers to be inserted in periodontal pocket restore tissue integrity treat Nanofibrous were prepared means electrospinning. Gelatin considered as base component associated low high molecular wei...

2014
A. C. Baptista I. Ferreira J. P. Borges

The development of nanoscaled materials has deserved a remarkable interest for biomedical applications. Biological tissues are essentially composite materials with particular mechanical properties that should be carefully considered during the design of innovative biomedical scaffolds. Electrospun membranes are often found in medical applications due to its high specific surface which creates a...

Journal: :Acta biomaterialia 2012
Kathryn A McKenna Monica T Hinds Rebecca C Sarao Ping-Cheng Wu Cheryl L Maslen Robert W Glanville Darcie Babcock Kenton W Gregory

The development of vascular grafts has focused on finding a biomaterial that is non-thrombogenic, minimizes intimal hyperplasia, matches the mechanical properties of native vessels and allows for regeneration of arterial tissue. In this study, the structural and mechanical properties and the vascular cell compatibility of electrospun recombinant human tropoelastin (rTE) were evaluated as a pote...

2014
Jennifer Sims-Mourtada Rohina A Niamat Shani Samuel Chris Eskridge Eric B Kmiec

A small population of highly tumorigenic breast cancer cells has recently been identified. These cells, known as breast-cancer stem-like cells (BCSC), express markers similar to mammary stem cells, and are highly resistant to chemotherapy. Currently, study of BCSC is hampered by the inability to propagate these cells in tissue culture without inducing differentiation. Recently, it was reported ...

Journal: :Biomedical materials 2015
Svenja Hinderer Nian Shena Léa-Jeanne Ringuette Jan Hansmann Dieter P Reinhardt Sara Y Brucker Elaine C Davis Katja Schenke-Layland

Elastic fibers are essential for the proper function of organs including cardiovascular tissues such as heart valves and blood vessels. Although (tropo)elastin production in a tissue-engineered construct has previously been described, the assembly to functional elastic fibers in vitro using human cells has been highly challenging. In the present study, we seeded primary isolated human vascular ...

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