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Elise DESIMONE | PhD Student | MS in Biomedical Engineering | University of  Bayreuth, Bayreuth | Department of Biomaterials | Research profile
Elise DESIMONE | PhD Student | MS in Biomedical Engineering | University of Bayreuth, Bayreuth | Department of Biomaterials | Research profile

Surface Features of Recombinant Spider Silk Protein eADF4(κ16)‐Made  Materials are Well‐Suited for Cardiac Tissue Engineering - Petzold - 2017 - Advanced  Functional Materials - Wiley Online Library
Surface Features of Recombinant Spider Silk Protein eADF4(κ16)‐Made Materials are Well‐Suited for Cardiac Tissue Engineering - Petzold - 2017 - Advanced Functional Materials - Wiley Online Library

Nanobiomed2017 Abstract Book by Phantoms Foundation - Issuu
Nanobiomed2017 Abstract Book by Phantoms Foundation - Issuu

Nanomaterials | February-1 2023 - Browse Articles
Nanomaterials | February-1 2023 - Browse Articles

(PDF) Recombinant spider silk protein eADF4(C16)-RGD coatings are suitable  for cardiac tissue engineering
(PDF) Recombinant spider silk protein eADF4(C16)-RGD coatings are suitable for cardiac tissue engineering

Aqueous electrospinning of recombinant spider silk proteins - ScienceDirect
Aqueous electrospinning of recombinant spider silk proteins - ScienceDirect

Designed Spider Silk-Based Drug Carrier for Redox- or pH-Triggered Drug  Release | Biomacromolecules
Designed Spider Silk-Based Drug Carrier for Redox- or pH-Triggered Drug Release | Biomacromolecules

Microneedle‐Array Patch Fabricated with Enzyme‐Free Polymeric Components  Capable of On‐Demand Insulin Delivery | Request PDF
Microneedle‐Array Patch Fabricated with Enzyme‐Free Polymeric Components Capable of On‐Demand Insulin Delivery | Request PDF

Kaveh ROSHANBINFAR | Postdoctoral Researcher | Dr. rer. nat. |  Universitätsklinikum Erlangen, Erlangen | Nephropathologische Abteilung |  Research profile
Kaveh ROSHANBINFAR | Postdoctoral Researcher | Dr. rer. nat. | Universitätsklinikum Erlangen, Erlangen | Nephropathologische Abteilung | Research profile

Biomolecules | Free Full-Text | Sequence Identification, Recombinant  Production, and Analysis of the Self-Assembly of Egg Stalk Silk Proteins  from Lacewing Chrysoperla carnea
Biomolecules | Free Full-Text | Sequence Identification, Recombinant Production, and Analysis of the Self-Assembly of Egg Stalk Silk Proteins from Lacewing Chrysoperla carnea

PDF) Hydration‐Induced β‐Sheet Crosslinking of α‐Helical‐Rich Spider  Prey‐Wrapping Silk
PDF) Hydration‐Induced β‐Sheet Crosslinking of α‐Helical‐Rich Spider Prey‐Wrapping Silk

Assembly of functionalized silk together with cells to obtain proliferative  3D cultures integrated in a network of ECM-like microfibers | Scientific  Reports
Assembly of functionalized silk together with cells to obtain proliferative 3D cultures integrated in a network of ECM-like microfibers | Scientific Reports

Recombinant spider silk protein eADF4(C16)-RGD coatings are suitable for  cardiac tissue engineering | Scientific Reports
Recombinant spider silk protein eADF4(C16)-RGD coatings are suitable for cardiac tissue engineering | Scientific Reports

Spider Silk Scaffolds as a Material for new Biomedical Applications
Spider Silk Scaffolds as a Material for new Biomedical Applications

Biomolecules | Free Full-Text | Sequence Identification, Recombinant  Production, and Analysis of the Self-Assembly of Egg Stalk Silk Proteins  from Lacewing Chrysoperla carnea
Biomolecules | Free Full-Text | Sequence Identification, Recombinant Production, and Analysis of the Self-Assembly of Egg Stalk Silk Proteins from Lacewing Chrysoperla carnea

Surface Features of Recombinant Spider Silk Protein eADF4(κ16)‐Made  Materials are Well‐Suited for Cardiac Tissue Engineering - Petzold - 2017 - Advanced  Functional Materials - Wiley Online Library
Surface Features of Recombinant Spider Silk Protein eADF4(κ16)‐Made Materials are Well‐Suited for Cardiac Tissue Engineering - Petzold - 2017 - Advanced Functional Materials - Wiley Online Library

Self-Rolling Refillable Tubular Enzyme Containers Made of Recombinant  Spider Silk and Chitosan | ACS Applied Materials & Interfaces
Self-Rolling Refillable Tubular Enzyme Containers Made of Recombinant Spider Silk and Chitosan | ACS Applied Materials & Interfaces

Bioinspired Materials: Advanced Materials: Vol 30, No 19
Bioinspired Materials: Advanced Materials: Vol 30, No 19

Biomolecules | Free Full-Text | Sequence Identification, Recombinant  Production, and Analysis of the Self-Assembly of Egg Stalk Silk Proteins  from Lacewing Chrysoperla carnea
Biomolecules | Free Full-Text | Sequence Identification, Recombinant Production, and Analysis of the Self-Assembly of Egg Stalk Silk Proteins from Lacewing Chrysoperla carnea

Bioinspired Materials: Advanced Materials: Vol 30, No 19
Bioinspired Materials: Advanced Materials: Vol 30, No 19

Therapeutic multifunctional carbon and 2D nanomaterials — IBMC
Therapeutic multifunctional carbon and 2D nanomaterials — IBMC

Materials Science and Engineering: C | Vol 106, January 2020 |  ScienceDirect.com by Elsevier
Materials Science and Engineering: C | Vol 106, January 2020 | ScienceDirect.com by Elsevier

Surface Features of Recombinant Spider Silk Protein eADF4(κ16)‐Made  Materials are Well‐Suited for Cardiac Tissue Engineering - Petzold - 2017 - Advanced  Functional Materials - Wiley Online Library
Surface Features of Recombinant Spider Silk Protein eADF4(κ16)‐Made Materials are Well‐Suited for Cardiac Tissue Engineering - Petzold - 2017 - Advanced Functional Materials - Wiley Online Library

Prof. Dr. Thomas Scheibel
Prof. Dr. Thomas Scheibel