نتایج جستجو برای: nanofibrous scaffolds

تعداد نتایج: 19750  

Journal: :Tissue engineering. Part A 2011
Brendon M Baker Roshan P Shah Alice H Huang Robert L Mauck

Fibrocartilaginous tissues such as the meniscus serve critical load-bearing roles, relying on arrays of collagen fibers to resist tensile loads experienced with normal activity. As these structures are frequently injured and possess limited healing capacity, there exists great demand for tissue-engineered replacements. Toward recreating the structural features of these anisotropic tissues in vi...

2015
Mahboubeh Kabiri Saeed Oraee-Yazdani Masumeh Dodel Hana Hanaee-Ahvaz Sara Soudi Ehsan Seyedjafari Mohammad Salehi Masoud Soleimani

The purpose of this study was to fabricate a conductive aligned nanofibrous substrate and evaluate its suitability and cytocompatibility with neural cells for nerve tissue engineering purposes. In order to reach these goals, we first used electrospinning to fabricate single-walled carbon-nanotube (SWCNT) incorporated poly(L-lactic acid) (PLLA) nanofibrous scaffolds and then assessed its cytocom...

Journal: :Philosophical transactions. Series A, Mathematical, physical, and engineering sciences 2010
J Venugopal Molamma P Prabhakaran Yanzhong Zhang Sharon Low Aw Tar Choon S Ramakrishna

The fracture of bones and large bone defects owing to various traumas or natural ageing is a typical type of tissue malfunction. Surgical treatment frequently requires implantation of a temporary or permanent prosthesis, which is still a challenge for orthopaedic surgeons, especially in the case of large bone defects. Mimicking nanotopography of natural extracellular matrix (ECM) is advantageou...

Journal: :international journal of nano dimension 0
e. biazar department of chemistry, islamic azad university tonekabon branch , mazandaran, iran m.t. khorasani biomaterial department of iran, polymer and petrochemical institute, tehran, iran. d. zaeifi department of genetic, islamic azad university-tonekabon branch, mazandaran, iran.

peripheral nerve injuries (pni) can lead to lifetime loss of function and disfigurement. different methods such as conventional allograft procedures and using of biological tubes have problems for damaged peripheral nerves reconstruction. designed scaffolds with natural and synthetic materials are now widely used in the reconstruction of damaged tissues. utilization of absorbable and non-absorb...

Journal: :Current Directions in Biomedical Engineering 2018

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