Chemical and Biomedical Engineering

Publications of Professor Nolan B. Holland

1. Biomimetic Engineering of Non-Adhesive Glycocalyx-Like Surfaces Using Oligosaccharide Surfactant Polymers
Nolan B. Holland, Yongxing Qiu, Mark Ruegsegger & Roger E. Marchant
Nature 392:799-801 (1998)
DOI 10.1038/33894

2. Alkyl Group Dependence of the Surface-Induced Assembly of Nonionic Disaccharide Surfactants
Nolan B. Holland, Mark Ruegsegger & Roger E. Marchant
Langmuir 14:2790-2795 (1998)
DOI 10.1021/la971141q

3. Intermolecular Force Mapping of Platelet Surfaces on Collagen Substrata
Nolan B. Holland, Christopher A. Siedlecki & Roger E. Marchant
J Biomed Mater Res 45:167-174 (1999)
DOI 10.1002/(SICI)1097-4636(19990605)45:3<167::AID-JBM2>3.0.CO;2-7

4. Biomimetic Surface Engineering: Synthesis and Surface Induced Assembly of Novel Oligosaccharide Surfactants
Yongxing Qiu, Nolan B. Holland, Mark Ruegsegger & Roger E. Marchant
ACS Symp Ser 736:180-193 (1999)
DOI 10.1021/bk-1999-0736.ch012

5. Individual Plasma Proteins Detected on Rough Biomaterials by Phase Imaging AFM
Nolan B. Holland & Roger E. Marchant
J Biomed Mater Res 51:307-315 (2000)
DOI 10.1002/1097-4636(20000905)51:3<307::AID-JBM3>3.0.CO;2-H

6. Conformations of Short-Chain Polyethylene Oxide Lipopolymers at the Air-Water Interface: A Combined Film Balance and Surface Tension Study
Zhong Xu, Nolan B. Holland & Roger E. Marchant
Langmuir 17:377-383 (2001)
DOI 10.1021/la0006770

7. The Structure of Polyethylene Oxide Surfactant Polymers at Air-Water and Solid-Water Interfaces
Nolan B. Holland, Zhong Xu, Katanchalee Vacheethasanee & Roger E. Marchant
Macromolecules 34:6424-6430 (2001)
DOI 10.1021/ma001215w

8. Single Molecule Force Spectroscopy by AFM-Related Techniques
Markus Seitz, Thorsten Hugel, Nolan B. Holland & Hermann E. Gaub
in Nanotechnology towards the Organic Photonics, Ed. H.Sasabe, GOOTech Ltd.:Chitose, Japan (2002)

9. Single-Molecule Optomechanical Cycle
Thorsten Hugel, Nolan B. Holland, Anna Cattani, Luis Moroder, Markus Seitz & Hermann E. Gaub
Science 296:1103-1106 (2002)
DOI 10.1126/science.1069856

10. Single Molecule Force Spectroscopy of Azobenzene Polymers: Switching Elasticity of Single Photochromic Macromolecules
Nolan B. Holland, Thorsten Hugel, Gregor Neuert, Anna Cattani-Scholz, Christian Renner, Dieter Oesterhelt, Luis Moroder, Markus Seitz & Hermann E. Gaub
Macromolecules 36:2015-2023 (2003)
DOI 10.1021/ma021139s

11. Activity of a Two-Domain Antifreeze Protein Is Not Dependent on Linker Sequence
Nolan B. Holland, Yoshiyuki Nishimiya, Sakae Tsuda & Frank D. Sönnichsen
Biophysical Journal, 92:541-546 (2007)
DOI 10.1529/biophysj.106.091710


12. Two Domains of Antifreeze Protein Diffuse Independently
Nolan B. Holland, Yoshiyuki Nishimiya, Sakae Tsuda & Frank D. Sönnichsen
Biochemistry 47:5935-5941 (2008)
DOI 10.1021/bi8001924


13. Modified Langmuir Isotherm for a Two-Domain Adsorbate: Derivation and Application to Antifreeze Proteins
Özge Can & Nolan B. Holland
Journal of Colloid and Interface Science 329:24-30 (2009)
DOI 10.1016/j.jcis.2008.10.001


14. Thermo-Reversible Micelle Formation Using a Three-Armed Star Elastin-like Polypeptide
Ali Ghoorchian, James T. Cole & Nolan B. Holland
Macromolecules 43:4340-4345 (2010)
DOI 10.1021/ma100285v


15. Conjugation of Type I Antifreeze Protein to Polyallylamine Increases Thermal Hysteresis Activity
Özge Can & Nolan B. Holland
Bioconjugate Chemistry 22:2166-2171 (2011)
DOI 10.1021/bc2004318


16. Molecular Architecture Influences the Thermally Induced Aggregation Behavior of Elastin-like Polypeptides
Ali Ghoorchian & Nolan B. Holland
Biomacromolecules 12:4022-4029 (2011)
DOI 10.1021/bm201031m


17. Size and Shape Characterization of Thermoreversible Micelles of Three-Armed Star Elastin-Like Polypeptides
Ali Ghoorchian, Kaitlin Vandemark, Krista Freeman, Sumit Kambow, Nolan B. Holland & Kiril A. Streletzky
The Journal of Physical Chemistry B 117:8865-8874 (2013)
DOI 10.1021/jp312591j


18. Utilizing Avidity to Improve Antifreeze Protein Activity: Type III Antifreeze Protein Trimer Exhibits Increased Thermal Hysteresis
Özge Can & Nolan B. Holland
Biochemistry 52:8745-8752 (2013)
DOI 10.1021/bi401345b


19. Multifunctional Nanoparticles for Use in Theranostic Applications
James T. Cole & Nolan B. Holland
Drug Delivery and Translational Research (2015)
DOI 10.1007/s13346-015-0218-2


20. Solvent Properties of Water in Aqueous Solutions of Elastin-like Polypeptide
Luisa A. Ferreira, James T. Cole, Christian Reichardt, Nolan B. Holland, Vladimir N. Uversky & Boris Y. Zaslavsky
International Journal of Molecular Sciences 16:13528-13547 (2015)
DOI 10.3390/ijms160613528


21. Thermoswitchable Nanoparticles Based on Elastin-like Polypeptides
Bettina Kracke, James T. Cole, Christoph J. O. Kaiser, Björn Hellenkamp, Stefanie Krysiak, Ali Ghoorchian, Gary B. Braun, Nolan B. Holland & Thorsten Hugel
Macromolecules 48:5868–5877 (2015)
DOI 10.1021/acs.macromol.5b00932


22. A Self-Assembled Active Plasmonic Waveguide with a Peptide-based Thermo-Mechanical Switch
Kilian Vogele, Jonathan List, Günther Pardatscher, Nolan B. Holland, Friedrich C. Simmel & Tobias Pirzer
ACS Nano 10:11377–11384 (2016)
DOI 10.1021/acsnano.6b06635


23. Preparing Genes for Repetitive Elstin-Like Polypeptides Using Gibson Assembly
James K. Deyling, Edward M. Turk & Nolan B. Holland
Methods in Molecular Biology 1798:265–275 (2018)
DOI 10.1007/978-1-4939-7893-9_20


24. Periodic Operation of a Dynamic DNA Origami Structure Utilizing the Hydrophilic-Hydrophobic Phase-Transition of Stimulus-Sensitive Polypeptides
Marisa A. Goetzfried, Kilian Vogele, Andrea Mückl, Marcus Kaiser, Nolan B. Holland, Friedrich C. Simmel & Tobias Pirzer
Small 15:1903541 (2019)
DOI 10.1002/smll.201903541



Last updated September 18, 2019

engaged learning
    Mailing Address
    Chemical and Biomedical Engineering Department
    Washkewicz College of Engineering
    Cleveland State University
    2121 Euclid Ave., FH 455
    Cleveland, Ohio 44115-2214
Campus Location
Fenn Hall Room 455
1980 East 24th Street
Phone: 216.687.2569
Fax: 216.687.9220
Nolan B. Holland, Ph.D.
Phone: 216.687.2572

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