Nathaniel L. Harris
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Also affiliated: Cincinnati Children's Hospital Medical Center (2004–2009); University of Cincinnati (2004–2020)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Nathaniel L. Harris's research has focused on the immune system and its role in disease, particularly in the context of the lungs. His work has investigated mechanisms of immune cell differentiation and activation, including the role of specific receptors like NKG2D and ligands expressed on stressed epithelial cells. Harris has studied how immune responses contribute to conditions such as Chronic Obstructive Pulmonary Disease (COPD)-like disease and the clearance of bacterial infections like Pseudomonas aeruginosa from the pulmonary system.
Further research by Harris has explored the development of regulatory T cells and the influence of specific receptors, such as the C5a receptor, on dendritic cell function. His publications also touch upon the anti-inflammatory activity of antibodies mediated by specific glycosylation patterns and receptor interactions. Collaborations include work with Charles W. Miller and Min Zou at the University of Arkansas at Fayetteville, and Sujan Ghosh at the University of Arkansas at Little Rock.
Metrics
- h-index: 12
- Publications: 17
- Citations: 1,105
Selected Publications
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Co-tuning ultrathin ZnO films and programmable 3D textures to control lunar dust simulant adhesion (2026)
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Controlling the Organization and Differentiation of Human Neural Stem Cells on Hilbert Microcapillary Scaffolds Fabricated via Two‐Photon Lithography (2025)
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A Versatile Platform for Designing and Fabricating Multi-Material Perfusable 3D Microvasculatures (2025)
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Tribological behavior of polydopamine/polytetrafluoroethylene coating on laser textured stainless steel with Hilbert curves (2022)
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Laser surface texturing of both thin polytetrafluoroethylene coatings and stainless steel substrates for improving tribological properties (2022)
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Interactions of E. coli with cylindrical micro-pillars of different geometric modifications (2021)
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The effect of coating thickness on the tribological properties of polydopamine/PTFE + graphite particle coatings on 60NiTi (2021)
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Improving the Tribological Performances of PDA + PTFE Nanocomposite Coatings by Hot Compaction (2021)
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Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation (2021)
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Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings (2021)
Collaboration Network
Top Collaborators
- Laser surface texturing of both thin polytetrafluoroethylene coatings and stainless steel substrates for improving tribological properties
- Tribological behavior of polydopamine/polytetrafluoroethylene coating on laser textured stainless steel with Hilbert curves
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- The effect of coating thickness on the tribological properties of polydopamine/PTFE + graphite particle coatings on 60NiTi
- Interactions of E. coli with cylindrical micro-pillars of different geometric modifications
Showing 5 of 9 shared publications
- Laser surface texturing of both thin polytetrafluoroethylene coatings and stainless steel substrates for improving tribological properties
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- The effect of coating thickness on the tribological properties of polydopamine/PTFE + graphite particle coatings on 60NiTi
- A Versatile Platform for Designing and Fabricating Multi-Material Perfusable 3D Microvasculatures
- Co-tuning ultrathin ZnO films and programmable 3D textures to control lunar dust simulant adhesion
- Laser surface texturing of both thin polytetrafluoroethylene coatings and stainless steel substrates for improving tribological properties
- Tribological behavior of polydopamine/polytetrafluoroethylene coating on laser textured stainless steel with Hilbert curves
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- Improving the Tribological Performances of PDA + PTFE Nanocomposite Coatings by Hot Compaction
- The effect of coating thickness on the tribological properties of polydopamine/PTFE + graphite particle coatings on 60NiTi
- Improving the Tribological Performances of PDA + PTFE Nanocomposite Coatings by Hot Compaction
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
- Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
- Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
- Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
- Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
- Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
- Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
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