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Nanotechnologists Seek Biological Niches
Cell


Biologists are embracing nanotechnology—the engineering and manipulating of entities in the 1 to 100 nm range—and are exploiting its potential to develop new therapeutics and diagnostics.

Selective Differentiation of Neural Progenitor Cells by High-Epitope Density Nanofibers

Silva, G. A.; Czeisler, C.; Niece, K. L.; Beniash, E.; Harrington, D. A.; Kessler, J. A.; Stupp, S. I. Science 2004, Science Express Reports.

Group Meetings

Thursday, May 25, 5:00 p.m., Nano 4026 - Undergraduate presentations

Saturday, June 10, 11:00 a.m., Cook 2058 - Marina Sofos and Hongzhou Jiang

Tuesday, June 20, 11:00 a.m., Cook 2058 - Shuming Zhang and Kanya Rajangam

Thursday, June 22, 11:00 a.m., Cook 2058 - Krista Niece and Melanie Disabb

Thursday, July 6, 11:00 a.m., Cook 2058 - Dan Bailey and Wenchung Feng

Tuesday, July 25, 11:00 a.m., Cook 2058 - Nathan Fry and Ian Tevis


The Stupp Laboratory
Cook Hall 1127
2220 Campus Drive
Evanston, IL 60208-3108

(847) 491-3002 phone
(847) 491-3010 facsimile

Samuel I. Stupp
Board of Trustees Professor of
Materials Science, Chemistry, & Medicine
Director, Institute for BioNanotechnology in Medicine

Sharon Jacknow
Research Administrator

Christopher Gilchrist
Program Assistant

 

Recently Published

Presentation and Recognition of Biotin on Nanofibers Formed by Branched Peptide Amphiphiles
Guler, M. O.; Soukasene, S.; Hulvat, J. F.; Stupp, S. I.
Nano Lett. 2005 , 5, 249-252.

One-dimensional Assembly of Lipophilic Inorganic Nanoparticles Templated by Peptide-Based Nanofibers with Binding Functionalities
Li, L.-S.; Stupp, S. I.
Angew. Chem. Int. Ed. 2005 , 44 , 2-4.

Charge Induced Pattern Formation on Surfaces: Segregation in Cylindrical Micelles of Cationic-Anionic Peptide-Amphiphiles
Solis F. J.; Stupp S. I.; de la Cruz, M. O.
Angew. Chem. Int. Ed. 2005 , 44 , 2-4.

Structural Modifications to Polystyrene via Self-Assembling Molecules
Stendahl, J. C.; Zubarev, E. R.; Arnold, M. S.; Hersam, M. C.; Sue, H.-J.; Stupp, S. I.
Adv. Funct. Mater.,
2005 , 15(3), 487-493.

Coassembly of Amphiphiles with Opposite Polarity into Nanofibers
Behanna, H. A., Donners, J. J. J. M.; Gordon, A. C.; Stupp, S. I.
J. Am. Chem. Soc.
2005, 127(4), 1193 - 1200.

Self-Assembly and Luminescence of Oligo(p-Phenylene Vinylene) Amphiphiles
Hulvat, J. F.; Sofos, M; Tajima, K; Stupp, S. I.
J. Am. Chem. Soc. 2005, 127(1), 366 - 372.

Self-Assembled Peptide Amphiphile Nanofibers Conjugated to MRI Contrast Agents
Bull, S. R.; Guler, M. O.; Bras, R. E.; Meade, T. J.; Stupp, S. I.
Nano Lett. 2005, 5(1) 1-4.

Synthesis of a Poly(L-lysine)-Calcium Phosphate Hybrid on Titanium Surfaces for Enhanced Bioactivity
Spoerke, E. D.; Stupp, S. I.
Biomaterials 2005 , 26(25) , 5120-5129.

Enrichment of Single Walled Carbon Nanotubes by Diameter in Density Gradients
Arnold, M. S.; Stupp, S. I.; Hersam, M. C.
Nano Lett. 2005 , 5(4) , 713-718.

Introduction: Functional Nanostructures
Stupp, S. I.
Chem. Rev. 2005 , 10 5(4), 023 - 1024.

 

 

 

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Northwestern University
Robert R. McCormick School of Engineering & Applied Science | Department of Materials Science & Engineering
Judd A. and Marjorie Weinberg College of Arts and Sciences | Department of Chemistry
Feinberg School of Medicine
| Institute for BioNanotechnology in Medicine
The Stupp Laboratory | Cook Hall 1127 | 2220 Campus Drive | Evanston, IL 60208 | U.S.A.
Phone: 847-491-3002 Fax: 847-491-3010
Last updated 02/09/2004 World Wide Web Disclaimer and University Policy Statement © 2004 The Stupp Laboratory