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  1. 1.   Extracellular Matrix Scaffold-Assisted Tumor Vaccines Induce Tumor Regression And Long-Term Immune Memory
  2. Pal,Sanjay; Chaudhari, Rohan; Baurceanu,Iris; Hill,Brenna; Nagy,Bethany; Wolf,Matthew
  3. Advanced Materials (Deerfield Beach, Fla.). 2024, Feb 01; e2309843.
  1. 2.   A bioengineered in situ ovary (ISO) supports follicle engraftment and live-births post-chemotherapy
  2. Buckenmeyer,Michael; Sukhwani, Meena; Iftikhar, Aimon; Nolfi, Alexis L; Xian, Ziyu; Dadi, Srujan; Case, Zachary W; Steimer, Sarah R; D'Amore, Antonio; Orwig, Kyle E; Brown, Bryan N
  3. Journal of Tissue Engineering. 2023, Jan-Dec; 14: 20417314231197282.
  1. 3.   Peptide hydrogels for affinity-controlled release of therapeutic cargo: Current and potential strategies
  2. Nambiar,Monessha; Schneider,Joel
  3. Journal of Peptide Science. 2021, Nov 7; e3377.
  1. 4.   Type 2 immunity induced by bladder extracellular matrix enhances corneal wound healing
  2. Wang, Xiaokun; Chung, Liam; Hooks, Joshua; Maestas, David R. Jr Jr; Lebid, Andriana; Andorko, James; Huleihel, Luai; Chin, Alexander F.; Wolf,Matthew; Remlinger, Nathaniel T.; Stepp, Mary Ann; Housseau, Franck; Elisseeff, Jennifer H.
  3. SCIENCE ADVANCES. 2021, Apr; 7(16):
  1. 5.   Biological scaffold-mediated delivery of myostatin inhibitor promotes a regenerative immune response in an animal model of Duchenne muscular dystrophy
  2. Estrellas, Kenneth M.; Chung, Liam; Cheug, Lindsay A.; Sadtler, Kaitlyn; Majumdar, Shoumyo; Mula,Jyothi; Wolf, Matthew T.; Elisseeff, Jennifer H.; Wagner, Kathryn R.
  3. JOURNAL OF BIOLOGICAL CHEMISTRY. 2018, OCT 5; 293(40): 15594-15605.
  1. 6.   Development and Evaluation of Stimuli-Responsive Chimeric Nanostructures
  2. Naziris, Nikolaos; Pippa, Natassa; Stellas, Dimitrios; Chrysostomou, Varvara; Pispas, Stergios; Demetzos, Costas; Libera, Marcin; Trzebicka, Barbara
  3. AAPS PharmSciTech. 2018, Oct; 19(7): 2971-2989.
  1. 7.   Controlled biodegradation of Self-assembling beta-hairpin Peptide hydrogels by proteolysis with matrix metalloproteinase-13
  2. Giano, M. C.; Pochan, D. J.; Schneider, J. P.
  3. Biomaterials. 2011, Sep; 32(27): 6471-6477.
  1. 8.   Enhanced Mechanical Rigidity of Hydrogels Formed from Enantiomeric Peptide Assemblies
  2. Nagy, K. J.; Giano, M. C.; Jin, A.; Pochan, D. J.; Schneider, J. P.
  3. Journal of the American Chemical Society. 2011, Sep; 133(38): 14975-14977.
  1. 9.   Materials from peptide assembly: towards the treatment of cancer and transmittable disease
  2. Branco, M. C.; Sigano, D. M.; Schneider, J. P.
  3. Current Opinion in Chemical Biology. 2011, Jun; 15(3): 427-434.
  1. 10.   Zinc-Triggered Hydrogelation of a Self-Assembling beta-Hairpin Peptide
  2. Micklitsch, C. M.; Knerr, P. J.; Branco, M. C.; Nagarkar, R.; Pochan, D. J.; Schneider, J. P.
  3. Angewandte Chemie-International Edition. 2011, Feb 11; 50(7): 1577-1579.
  1. 11.   Self assembled bi-functional peptide hydrogels with biomineralization-directing peptides
  2. Gungormus, M.; Branco, M.; Fong, H.; Schneider, J. P.; Tamerler, C.; Sarikaya, M.
  3. Biomaterials. 2010, Oct; 31(28): 7266-7274.
  1. 12.   De Novo Design of a Shear-Thin Recoverable Peptide-Based Hydrogel Capable of Intrafibrillar Photopolymerization
  2. Rughani, R. V.; Branco, M. C.; Pochan, D.; Schneider, J. P.
  3. Macromolecules. 2010, Oct; 43(19): 7924-7930.
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