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fabrication of a biomimetic injectable hydrogel with improved mechanical properties for cartilage tissue engineering
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DOR
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20.1001.2.9718091706.1397.16.1.294.1
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نویسنده
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shojarazavi nastaran ,mashayekhan shohreh
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منبع
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كنگره مهندسي شيمي - 1397 - دوره : 16 - شانزدهمین کنگره ملی مهندسی شیمی - کد همایش: 97180-91706
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چکیده
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Since cartilage has limited self-regeneration, in-situ forming hydrogels can act as an ideal scaffold for cartilage tissue engineering to fill the defect gap due to their ability to homogeneously encapsulate the desired cells, efficient mass transfer and minimally invasive characteristics in this project an injectable hydrogel with improved structure by adding silk fibroin (sf) nanofibers and better biochemical properties by employing cartilage extracellular matrix (ecm) was fabricated the in-situ forming hydrogel is consisted of different concentrations of ionic crosslinked alginate incorporated with different concentrations of sf nanofibers and 1% w/v enzymatically digested decellularized cartilage ecm the result showed that increasing the alginate concentration caused an increase in the compressive young’s modulus and gelation time of the samples however, increasing the sf nanofiber concentration could not necessarily increase the mechanical stiffness because it may act as a barrier for crosslinkers diffusion within the hydrogel bulk scanning electron microscope (sem) images showed that sf nanofibers were homogenously dispersed in the hydrogel, mimicking the natural cartilage environment it can be concluded from the obtained results that the hydrogel with alginate and sf nanofiber with concentrations of 1651% w/v and 2662% w/v, respectively, has the optimum compressive young’s modulus and gelation time, which may have potential to be applied as an injectable hydrogel in articular cartilage defects
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کلیدواژه
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cartilage tissue engineering ,injectable hydrogels ,alginate ,extracellular matrix ,silk fibroin ,mechanical properties
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آدرس
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sharif university of technology, iran, sharif university of technology, iran
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Authors
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