نتایج جستجو برای: electrospun

تعداد نتایج: 5454  

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: :International journal of clinical and experimental pathology 2014
Ziming Yuan Xin Zhao Xiaohu Wang Wangwang Qiu Xinliang Chen Qi Zheng Wenguo Cui

Drug-loaded electrospun PLLA membranes are not conducive to adhesion between materials and tissues due to the strong hydrophobicity of PLLA, which possibly attenuate the drugs' effect loaded on the materials. In the present work, we developed a facile method to improve the hydrophilicity of doxorubicin (DOX)-loaded electrospun PLLA fibrous membranes, which could enhance the anti-tumor effect at...

2014

Articular cartilage connects diarthrodial joints, lubricates surface between bones, transfers and withstands repetitive load over the lifetime, which is prone to degeneration by various diseases, trauma and injuries. Once degeneration takes place, the avascular structure of human cartilage makes the self-healing extremely challenging. Therefore, the main objective of this study is to fabricate ...

Journal: :Journal of biomedical materials research. Part A 2008
Andrea R Tan Jamie L Ifkovits Brendon M Baker Darren M Brey Robert L Mauck Jason A Burdick

Electrospun fibrous scaffolds are being developed for the engineering of numerous tissues. Advantages of electrospun scaffolds include the similarity in fiber diameter to elements of the native extracellular matrix and the ability to align fibers within the scaffold to control and direct cellular interactions and matrix deposition. To further expand the range of properties available in fibrous ...

2016
Salem Seif Florian Graef Sarah Gordon Maike Windbergs

Electrospun fiber mats are currently gaining attention as advanced drug delivery systems. Dissolution testing for such systems is generally performed in small vials by immersing the fiber mats in buffered solutions. Defined aliquots of dissolution medium are withdrawn at predefined time points, and the dissolved drug is quantified. However, this procedure is associated with several drawbacks. T...

2014
Anna K Blakney Emily A Krogstad Yonghou H Jiang Kim A Woodrow

BACKGROUND Electrospun drug-eluting fabrics have enormous potential for the delivery of physicochemically diverse drugs in combination by controlling the underlying material chemistry and fabric microarchitecture. However, the rationale for formulating drugs at high drug loading in the same or separate fibers is unknown but has important implications for product development and clinical applica...

2013
Lynda V. Thomas Prabha D. Nair

A reliable and cost-effective scaffold for tissue-engineered vascular graft that would not only support cell proliferation and growth but also maintain cell phenotype has been a long-term challenge. In this study, we propose a biodegradable and biomimetic copolymer of gelatin with vinyl acetate synthesized via a graft copolymerization technique to generate tubular scaffolds for vascular tissue ...

Journal: :Biomicrofluidics 2012
Patric Wallin Carl Zandén Björn Carlberg Nina Hellström Erkenstam Johan Liu Julie Gold

The properties of a cell's microenvironment are one of the main driving forces in cellular fate processes and phenotype expression invivo. The ability to create controlled cell microenvironments invitro becomes increasingly important for studying or controlling phenotype expression in tissue engineering and drug discovery applications. This includes the capability to modify material surface pro...

Journal: :Biomedical materials 2010
Deming Xie Huamei Huang Keith Blackwood Sheila MacNeil

Both chitosan and polylactide/polyglycolide have good biocompatibility and can be used to produce tissue engineering scaffolds for cultured cells. However the synthetic scaffolds lack groups that would facilitate their modification, whereas chitosan has extensive active amide and hydroxyl groups which would allow it to be subsequently modified for the attachment of peptides, proteins and drugs....

2013
Jing Wang Qin-shu Kang Xiao-guang Lv Jia Song Na Zhan Wei-guo Dong Wei-hua Huang

Cancer has become the leading cause of death worldwide; early diagnosis and treatment of cancers is critical for the survival of the patients. The concentration of cancer markers in easy-to-access biological fluids can provide great assistance in screening for occult primary cancers, distinguishing malignant from benign findings, determining prognosis and prediction for cancer patients. The mul...

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