نتایج جستجو برای: caprolactone scaffold

تعداد نتایج: 26001  

Ali Reza Sadegpour Amir Mohammad Navali, Dariush Shanehbandi, Daryoush Mohammad Nejad Hajar Shafaei, Jafar Soleimani Rad, Leila Roshangar Nasser Samadi, Parisa Nikpou,

Objective(s): Three-dimensional biomimetic scaffolds have widespread applications in biomedical tissue engineering due to similarity of their nanofibrous architecture to native extracellular matrix. Co-culture system has stimulatory effect on chondrogenesis of adult mesenchymal stem cells. This work presents a co-culture strategy using human articular chondrons and adipose-derived stem cells (A...

A. Doustgani E. Vasheghani-Farahani M. Soleimani S. Hashemi-Najafabadi

Nanofibrous scaffolds produced by electrospinning have attracted much attention, recently. Aligned and random nanofibrous scaffolds of poly (vinyl alcohol) (PVA), poly (ε-caprolactone) (PCL) and nanohydroxyapatite  (nHA) were fabricated by electrospinning method in this study. The composite nanofibrous scaffolds were subjected to detailed analysis. Morphological investigations revealed that the...

2017
Kuo-Yang Tsai Hung-Yang Lin Yi-Wen Chen Cheng-Yao Lin Tuan-Ti Hsu Chia-Tze Kao

In this study, we manufacture and analyze bioactive magnesium-calcium silicate/poly-ε-caprolactone (Mg-CS/PCL) 3D scaffolds for bone tissue engineering. Mg-CS powder was incorporated into PCL, and we fabricated the 3D scaffolds using laser sintering technology. These scaffolds had high porosity and interconnected-design macropores and structures. As compared to pure PCL scaffolds without an Mg-...

2014
Si-Eun Kim Jia Wang Alex M. Jordan LaShanda T. J. Korley Eric Baer Jonathan K. Pokorski

A photochemical modification of melt-extruded polymeric nanofibers is described. A bioorthogonal functional group is used to decorate fibers made exclusively from commodity polymers, covalently attach fluorophores and peptides, and direct cell growth. Our process begins by using a layered coextrusion method, where poly(ε-caprolactone) (PCL) nanofibers are incorporated within a macroscopic poly(...

2017
Arkadiusz Jundziłł Marta Pokrywczyńska Jan Adamowicz Tomasz Kowalczyk Maciej Nowacki Magdalena Bodnar Andrzej Marszałek Małgorzata Frontczak-Baniewicz Grzegorz Mikułowski Tomasz Kloskowski James Gatherwright Tomasz Drewa

BACKGROUND Electrospun nanofibers have widespread putative applications in the field of regenerative medicine and tissue engineering. When compared to naturally occurring collagen matrices, electrospun nanofiber scaffolds have two distinct advantages: they do not induce a foreign body reaction and they are not at risk for biological contamination. However, the exact substrate, structure, and pr...

2015
Paul P. Bonvallet Matthew J. Schultz Elizabeth H. Mitchell Jennifer L. Bain Bonnie K. Culpepper Steven J. Thomas Susan L. Bellis

Electrospun scaffolds serve as promising substrates for tissue repair due to their nanofibrous architecture and amenability to tailoring of chemical composition. In this study, the regenerative potential of a microporous electrospun scaffold pre-seeded with dermal fibroblasts was evaluated. Previously we reported that a 70% collagen I and 30% poly(Ɛ-caprolactone) electrospun scaffold (70:30 col...

Journal: :Acta biomaterialia 2012
Xu Jiang Hao Qing Cao Li Ya Shi Shi Yan Ng Lawrence W Stanton Sing Yian Chew

Stem cells hold great promise in enhancing nerve regeneration. In particular, human mesenchymal stem cells (MSC) represent a clinically viable cell source due in part to their abundance and accessibility. Unfortunately, current methods to direct the fate of stem cells remains largely limited to biochemical-based approaches on two-dimensional substrates with restricted efficacies. Here we have e...

2017
Michael Grau Julia Matena Michael Teske Svea Petersen Pooyan Aliuos Laura Roland Niels Grabow Hugo Murua Escobar Nils-Claudius Gellrich Heinz Haferkamp Ingo Nolte

Titanium is widely used as a bone implant material due to its biocompatibility and high resilience. Since its Young's modulus differs from bone tissue, the resulting "stress shielding" could lead to scaffold loosening. However, by using a scaffold-shaped geometry, the Young's modulus can be adjusted. Also, a porous geometry enables vascularisation and bone ingrowth inside the implant itself. Ad...

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