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Hany El-Hamshary - هاني الهمشري

Associate Professor

Faculty Member of Chemistry Department - عضو هيئة تدريس بقسم الكيمياء

كلية العلوم
Building 5 / Ground Floor / Office No. AA 6 - مبنى 5 / الدور الأرضي / رقم المكتب أأ6
المنشورات
مقال فى مجلة
2016

Superabsorbent 3D scaffold based on electrospun nanofibers for cartilage tissue engineering

Electrospun nanofibers have been used for various biomedical applications. However, electrospinning commonly produces two-dimensional (2D) membranes, which limits the application of nanofibers for the 3D tissue engineering scaffold. In the present study, a porous 3D scaffold (3DS-1) based on electrospun gelatin/PLA nanofibers has been prepared for cartilage tissue regeneration. To further improve the repairing effect of cartilage, a modified scaffold (3DS-2) cross-linked with hyaluronic acid (HA) was also successfully fabricated. The nanofibrous structure, water absorption, and compressive mechanical properties of 3D scaffold were studied. Chondrocytes were cultured on 3D scaffold, and their viability and morphology were examined. 3D scaffolds were also subjected to an in vivo cartilage regeneration study on rabbits using an articular cartilage injury model. The results indicated that 3DS-1 and 3DS-2 exhibited superabsorbent property and excellent cytocompatibility. Both these scaffolds present elastic property in the wet state. An in vivo study showed that 3DS-2 could enhance the repair of cartilage. The present 3D nanofibrous scaffold (3DS-2) would be promising for cartilage tissue engineering application

رقم المجلد
8
رقم الانشاء
37
مجلة/صحيفة
ACS Applied Materials & Interfaces
الصفحات
24415-24425
مزيد من المنشورات
publications

Fungal biofilms have caused several medical problems, resulting in significant morbidity and mortality as well as poor response to antifungal drugs.

2021
publications

Cellulose has been one of the most widespread materials due to its renewability, excellent mechanical properties, biodegradability, high absorption ability, biocompatibility and cheapness.

2021
publications

The burst release of drug is a problem associated with the use of common blending electrospinning. This problem can be avoided via fabrication of core–shell nanofibers where drug can be coated…

2021