• Fredrik Bajers Vej 3, B, 2-203

    9220 Aalborg Ø

    Denmark

  • Denmark

20052019
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Personal profile

Keywords

  • Biomedical Engineering

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  • 3 Similar Profiles
Stem Cells Medicine & Life Sciences
Stem cells Chemical Compounds
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Boron Medicine & Life Sciences
Diamond films Chemical Compounds
Wound Healing Medicine & Life Sciences
Biocompatible Materials Chemical Compounds

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Projects 2011 2011

Research Output 2005 2019

Design and Characterization of a Tissue-Engineered Trilayer Chitosan, and PLA Based Scaffold for Urethral Tissue Repair

Abbas, T. & Pennisi, P., 2019, 30th Congress of the ESPU: Abstract Book. Lyon: ESPU Congress, p. 47 S1-6

Research output: Contribution to book/anthology/report/conference proceedingConference abstract in proceedingResearchpeer-review

Fabrication and characterization of extracellular matrix scaffolds obtained from adipose-derived stem cells

Riis, S., Hansen, A. C., Johansen, L., Lund, K., Pedersen, C., Pitsa, A., Hyldig, K., Zachar, V., Fink, T. & Pennisi, C. P., 9 Jul 2019, In : Methods.

Research output: Contribution to journalJournal articleResearchpeer-review

Stem cells
Scaffolds
Extracellular Matrix
Stem Cells
Wound Healing
18 Downloads (Pure)

From Acellular Matrices to Smart Polymers: Degradable Scaffolds that are Transforming the Shape of Urethral Tissue Engineering

Abbas, T. O., Yalcin, H. C. & Pennisi, C. P., 10 Apr 2019, In : International Journal of Molecular Sciences . 20, 7

Research output: Contribution to journalReview articleResearchpeer-review

Open Access
File
tissue engineering
Tissue Engineering
Scaffolds (biology)
Tissue engineering
Scaffolds

In Vivo Assessment of the Biomechanics of Rabbit Urethra: an Important Aid in Optimized Translatable Urethral Regenerative Medicine Experiment

Abbas, T. & Pennisi, P., 2019, 30th Congress of the ESPU: Abstract Book. Lyon: ESPU Congress, p. 47 S1-5

Research output: Contribution to book/anthology/report/conference proceedingConference abstract in proceedingResearchpeer-review

3 Citations (Scopus)

Pectin Methacrylate (PEMA) and Gelatin-Based Hydrogels for Cell Delivery: Converting Waste Materials into Biomaterials

Mehrali, M., Thakur, A., Kadumudi, F. B., Pierchala, M. K., Cordova, J. A. V., Shahbazi, M-A., Mehrali, M., Pennisi, C. P., Orive, G., Gaharwar, A. K. & Dolatshahi-Pirouz, A., 13 Mar 2019, In : ACS Applied Materials & Interfaces. 11, 13, p. 12283-12297 15 p.

Research output: Contribution to journalJournal articleResearchpeer-review

Hydrogels
Methacrylates
Biocompatible Materials
Gelatin
Biomaterials

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1 item of Media coverage

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1 item of Media coverage

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