نتایج جستجو برای: nanofibrous scaffold

تعداد نتایج: 25397  

The main objective of this paper was to manipulate the Nano Fibrous Scaffold "NFS" surface roughness to achieve a new transdermal drug release profile. To assess the intrinsic mechanical properties of Nylon 6 or polycaprolactam, such as its proper resiliency, it was considered as the matrix. Cetirizine was used as a drug model and was loaded (1% w/v) to polymer solution (30%w/v) before spinning...

The main objective of this paper was to manipulate the Nano Fibrous Scaffold "NFS" surface roughness to achieve a new transdermal drug release profile. To assess the intrinsic mechanical properties of Nylon 6 or polycaprolactam, such as its proper resiliency, it was considered as the matrix. Cetirizine was used as a drug model and was loaded (1% w/v) to polymer solution (30%w/v) before spinning...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2012
Brendon M Baker Roshan P Shah Amy M Silverstein John L Esterhai Jason A Burdick Robert L Mauck

The fibrous tissues prevalent throughout the body possess an ordered structure that underlies their refined and robust mechanical properties. Engineered replacements will require recapitulation of this exquisite architecture in three dimensions. Aligned nanofibrous scaffolds can dictate cell and matrix organization; however, their widespread application has been hindered by poor cell infiltrati...

2018
Jun Ma Yunfei He Xilin Liu Weiming Chen An Wang Chia-Ying Lin Xiumei Mo Xiaojian Ye

Introduction Herniation of the nucleus pulposus (NP) because of defects in the annulus fibrosus (AF) is a well-known cause of low back pain. Defects in the AF thus remain a surgical challenge, and efforts have been made to develop new techniques for closure and repair. In this study, we developed an electrospun aligned nanoyarn scaffold (AYS) and nanoyarn/three-dimensional porous nanofibrous hy...

2014
Mohammad Kazemi Pilehrood Mandana Dilamian Mina Mirian Hojjat Sadeghi-Aliabadi Laleh Maleknia Pertti Nousiainen Ali Harlin

3D nanofibrous chitosan-polyethylene oxide (PEO) scaffolds were fabricated by electrospinning at different processing parameters. The structural characteristics, such as pore size, overall porosity, pore interconnectivity, and scaffold percolative efficiency (SPE), were simulated by a robust image analysis. Mouse fibroblast cells (L929) were cultured in RPMI for 2 days in the presence of variou...

2015
Yuan Yu Lijun Kong Lan Li Naie Li Peng Yan

The drug-loaded composite electrospun nanofiber has attracted more attention in biomedical field, especially in cancer therapy. In this study, a composite nanofiber was fabricated by electrospinning for cancer treatment. Firstly, the carbon nanotubes (CNTs) were selected as carriers to load the anticancer drug-doxorubicin (DOX) hydrochloride. Secondly, the DOX-loaded CNTs (DOX@CNTs) were incorp...

Journal: :Journal of materials science. Materials in medicine 2011
Lihong Lao Yingjun Wang Yang Zhu Yuying Zhang Changyou Gao

Poly(lactide-co-glycolide) (PLGA) nanofibrous composite scaffolds having nano-hydroxyapatite particles (HAp) in the fibers were prepared by electrospinning of PLGA and HAp with an average diameter of 266.6 ± 7.3 nm. Microscopy and spectroscopy characterizations confirmed integration of the crystalline HAp in the scaffolds. Agglomerates gradually appeared and increased on the fiber surface along...

2011
Kui-Hua Zhang Qiao-Zhen Yu Xiu-Mei Mo

The native extracellular matrix (ECM) is composed of a cross-linked porous network of multifibril collagens and glycosaminoglycans. Nanofibrous scaffolds of silk fibroin (SF) and hydroxybutyl chitosan (HBC) blends were fabricated using 1,1,1,3,3,3-hexafluoro-2-propanol (HFIP) and trifluoroacetic acid (TFA) as solvents to biomimic the native ECM via electrospinning. Scanning electronic microscop...

2006
Peter G Alexander Wan-Ju Li David M. Lutton Geoffrey Kaung Paul A Manner Rocky S Tuan

INTRODUCTION: Over sixty million Americans currently suffer from diagnosed osteoarthritis (OA). Because articular cartilage has a limited capacity for self-renewal, the ultimate remedy for many patients with OA is a total joint replacement. As the population lives longer, more active lives, many patients will outlive their prostheses. Tissue engineering offers the promise of tissue regeneration...

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