SZ
Soheila Zamanlui Benisi
Stem Cell and Cell Therapy Research Center, Tissue Engineering & Regenerative Medicine Institute, and Assistant Professor of Tehran Central Branch, Islamic Azad University
Employment
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Stem Cell and Cell Therapy Research Center, Tissue Engineering & Regenerative Medicine Institute, and Assistant Professor of Tehran Central Branch, Islamic Azad University
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (15)
- Bead-free and tough electrospun PCL/gelatin/PGS ternary nanofibrous scaffolds for tissue engineering application Save
- Design and manufacturing a tubular structures based on poly(ɛ-caprolactone) / poly(glycerol-sebacic acid) biodegradable nanocomposite blends: suggested for applications in the nervous, vascular and renal tissue engineering Save
- Introducing a new approach to preparing bionanocomposite sponges based on poly(glycerol sebacate urethane) (PGSU) with great interconnectivity and high hydrophilicity properties for application in tissue engineering Save
- Electrically conductive biocompatible composite aerogel based on nanofibrillated template of bacterial cellulose/polyaniline/nano-clay Save
- Evaluation of dermal growth of keratinocytes derived from foreskin in co-culture condition with mesenchymal stem cells on polyurethane/gelatin/amnion scaffold Save
- Evaluation of the effects of starch on polyhydroxybutyrate electrospun scaffolds for bone tissue engineering applications Save
- Inflammatory Response Leads to Neuronal Death in Human Post-Mortem Cerebral Cortex in Patients with COVID-19 Save
- Combination of low intensity electromagnetic field with chondrogenic agent induces chondrogenesis in mesenchymal stem cells with minimal hypertrophic side effects Save
- Lightweight aerogels based on bacterial cellulose/silver nanoparticles/polyaniline with tuning morphology of polyaniline and application in soft tissue engineering Save
- Pulp ECM-derived macroporous scaffolds for stimulation of dental-pulp regeneration process Save