Richard d'Arcy

Affiliations: 
2019-2024 Biomedical Engineering Vanderbilt University, Nashville, TN 
 2024- Arizona State University, Tempe, AZ, United States 
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"Richard d'Arcy"
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Parents

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Nicola Tirelli grad student University of Manchester
Craig L. Duvall research scientist Vanderbilt (Biomechanics Tree)
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Fletcher RB, Stokes LD, Kelly IB, et al. (2023) Nonviral Delivery of CRISPR-Cas9 Using Protein-Agnostic, High-Loading Porous Silicon and Polymer Nanoparticles. Acs Nano
Siani A, Infante-Teixeira L, d'Arcy R, et al. (2023) Polysulfide nanoparticles inhibit fibroblast-to-myofibroblast transition via extracellular ROS scavenging and have potential anti-fibrotic properties. Biomaterials Advances. 153: 213537
Patel SS, Hoogenboezem EN, Yu F, et al. (2023) Core polymer optimization of ternary siRNA nanoparticles enhances in vivo safety, pharmacokinetics, and tumor gene silencing. Biomaterials. 297: 122098
Turhan ZY, d'Arcy R, El Mohtadi F, et al. (2023) Dual Thermal- and Oxidation-Responsive Polymers Synthesized by a Sequential ROP-to-RAFT Procedure Inherently Temper Neuroinflammation. Biomacromolecules
d'Arcy R, El Mohtadi F, Francini N, et al. (2022) A Reactive Oxygen Species-Scavenging 'Stealth' Polymer, Poly(thioglycidyl glycerol), Outperforms Poly(ethylene glycol) in Protein Conjugates and Nanocarriers and Enhances Protein Stability to Environmental and Biological Stressors. Journal of the American Chemical Society
Patil P, Russo KA, McCune JT, et al. (2022) Reactive oxygen species-degradable polythioketal urethane foam dressings to promote porcine skin wound repair. Science Translational Medicine. 14: eabm6586
Scoponi G, Francini N, Paradiso V, et al. (2021) Versatile Preparation of Branched Polylactides by Low-Temperature, Organocatalytic Ring-Opening Polymerization in -Methylpyrrolidone and Their Surface Degradation Behavior. Macromolecules. 54: 9482-9495
Brooker C, d'Arcy R, Mele E, et al. (2021) Designing responsive dressings for inflammatory skin disorders; encapsulating antioxidant nanoparticles into biocompatible electrospun fibres. Soft Matter
Vanderburgh J, Hill JL, Gupta MK, et al. (2020) Tuning Ligand Density to Optimize Pharmacokinetics of Targeted Nanoparticles for Dual Protection against Tumor-Induced Bone Destruction. Acs Nano
El Mohtadi F, d'Arcy R, Burke J, et al. (2019) A 'tandem' nanomedicine approach against osteoclastogenesis. Polysulfide micelles synergically scavenge ROS and release rapamycin. Biomacromolecules
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