Parinaz Fathi
Affiliations: | 2016-2020 | Bioengineering | University of Illinois, Urbana-Champaign, Urbana-Champaign, IL |
Area:
nanoparticles, microfluidics, biomaterials, tissue-on-a-chip, organ-on-a-chipWebsite:
www.parinazfathi.wixsite.com/researchGoogle:
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Publications
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R Alanagh H, Fathi P, Knox HJ, et al. (2024) Exploring Biliverdin's Molecular Interactions with Cu- and Fe-Based MOFs: A Unified In Vitro Study with Photoacoustic Analysis. Langmuir : the Acs Journal of Surfaces and Colloids |
Fathi P, Roslend A, Alafeef M, et al. (2022) In Situ Surface-Directed Assembly of 2D Metal Nanoplatelets for Drug-Free Treatment of Antibiotic-Resistant Bacteria. Advanced Healthcare Materials. e2102567 |
Srivastava I, Moitra P, Fayyaz M, et al. (2021) Rational Design of Surface-State Controlled Multicolor Cross-Linked Carbon Dots with Distinct Photoluminescence and Cellular Uptake Properties. Acs Applied Materials & Interfaces. 13: 59747-59760 |
Fathi P, Moitra P, McDonald MM, et al. (2021) Near-infrared emitting dual-stimuli-responsive carbon dots from endogenous bile pigments. Nanoscale. 13: 13487-13496 |
Fathi P, Roslend A, Mehta K, et al. (2021) UV-trained and metal-enhanced fluorescence of biliverdin and biliverdin nanoparticles. Nanoscale |
Fathi P, Holland G, Pan D, et al. (2020) Lymphatic Vessel on a Chip with Capability for Exposure to Cyclic Fluidic Flow. Acs Applied Bio Materials. 3: 6697-6707 |
Fathi P, Pan D. (2020) Current trends in pyrrole and porphyrin-derived nanoscale materials for biomedical applications. Nanomedicine (London, England) |
Hamideh RA, Akbari B, Fathi P, et al. (2020) Biodegradable MRI Visible Drug Eluting Stent Reinforced by Metal Organic Frameworks. Advanced Healthcare Materials. e2000136 |
Fathi P, Khamo JS, Huang X, et al. (2019) Bulk-state and single-particle imaging are central to understanding carbon dot photo-physics and elucidating the effects of precursor composition and reaction temperature. Carbon. 145 |
Fathi P, Capron G, Tripathi I, et al. (2019) Computed tomography-guided additive manufacturing of Personalized Absorbable Gastrointestinal Stents for intestinal fistulae and perforations. Biomaterials. 228: 119542 |