Publications

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T. B. Alina, H. B. Kirkpatrick, T. R. Ausec, E. N. Mueller, C. W. Shields IV, J. N. Cha,* andÌýA. P. Goodwin.*Ìý“Effect of Stabilizing Phospholipid on Acoustic Cavitation of Functionalized Mesoporous Silica Nanoparticles.â€ÌýACS Appl. Nano Mater.Ìý2023,Ìý6, 13720-13729.

S. A. Saemundsson, S. Ganguly, S. D. Curry,ÌýA. P. Goodwin, and J. N. Cha.* Controlling Cell Organization in 3D Co-Culture Spheroids Using DNA Interactions.â€ÌýACS Biomater. Sci.Ìý2023,Ìý9, 3185-3192.

E. N. Mueller,+ T. B. Alina,+ S. D. Curry, S. Ganguly, J. N. Cha,* andÌýA. P. Goodwin.* “Silica-Coated Gold Nanorods with Hydrophobic Modification Show Both Enhanced Two-Photon Fluorescence and Ultrasound Drug Release.â€ÌýJ. Mater. Chem. BÌý2022,Ìý10, 9789-9793.

S. Roy, S. D. Curry, C. Corbella Bagot, E. N. Mueller, A. M. Mansouri, W. Park, J. N. Cha,* andÌýA. P. Goodwin.* “Enzyme Prodrug Therapy with Photo-Cross-Linkable Anti-EGFR Affibodies Conjugated to Upconverting Nanoparticles.â€ÌýACS Nano2022,Ìý16, 15873–15883.

S. Roy, S. D. Curry, M. G. Bibbey, D. A. Chapnick, X. Liu,ÌýA. P. Goodwin,* and J. N. Cha.* “Effect of covalent photoconjugation of affibodies to epidermal growth factor receptor (EGFR) on cellular quiescence.â€ÌýBiotechnol.ÌýBioeng.Ìý2022,Ìý119, 187-198.

E. N. Mueller,+ M. Kuriakose,+ K. Ma, M. A. Inzunza-Ibarra, T. W. Murray,* J. N. Cha,* andÌýA. P. Goodwin.* “Hydrophobically Modified Silica-Coated Gold Nanorods for Generating Nonlinear Photoacoustic Signals.â€ÌýACS Appl. Nano Mater.ÌýÌý2021,Ìý4, 12073-12082.

S. Ganguly, S. Roy,ÌýA. P. Goodwin,Ìýand J. N. Cha.* “Generation of 3D Cellular Spheroids using DNA Modified Cell Receptors and Programmable DNA Interactions.â€ÌýBiomaterials Sci.Ìý2021,Ìý9, 7911-7920.

S. Movafaghi, A. L. Daniels, M. D. Kelly, C. Calderon, T. W. Randolph,* andÌýA. P. Goodwin.*Ìý“Hydrogel Coatings on Container Surfaces Reduce Protein Aggregation Caused by Mechanical Stress and Cavitation.â€ÌýACS Appl. Bio Materials.Ìý2021,Ìý4, 6949-6953.

H. Wu, S. Movafaghi, I. M. Francino Urdániz, T. M. Rowe,ÌýA. P. Goodwin,* and T. W. Randolph.* “Insulin Fibril Formation Caused by Mechanical Shock and Cavitation.â€ÌýJ. Phys. Chem. B.Ìý2021,Ìý125, 8021-8027.

A. V. Parameswar, K. V. Dikshit, S. Movafaghi, C. J. Bruns, andÌýA. P. Goodwin.*Ìý“Mechanochemistry Activated Covalent Conjugation Reactions in Soft Hydrogels Induced by Interfacial Failure.â€ÌýACS Appl. Mater. Interfaces.Ìý2021,Ìý13, 1486-1492.

A. W. Harris, S. Roy, S. Ganguly, A. V. Parameswar, F. W. d. S. Lucas, A. Holewinski,ÌýA. P. Goodwin, and J. N. Cha.* “Investigating the Use of Conducting Oligomers and Redox Molecules in CdS-MoFeP Biohybrids.â€ÌýNanoscale Adv.Ìý2021,Ìý3, 1392-1396.

S. Roy, J. N. Cha,* andÌýA. P. Goodwin.* “Non-genetic bioconjugation strategies for modifying cell membranes and membrane proteins: a review.â€ÌýBioconjugate Chem.Ìý2020,Ìý31, 2465-2475. (Invited review)

S. Movafaghi, H. Wu, I. M. Francino Urdániz, D. S. Bull, M. D. Kelly, T. W. Randolph,* andÌýA. P. Goodwin.* “The Effect of Container Surface Passivation on Aggregation of Intravenous Immunoglobulin Induced by Mechanical Shock.â€ÌýBiotechnol. J.Ìý2020,Ìý15, 2000096.

A. W. Harris, A. Harguindey, R. E. Patalano, S. Roy, O. Yehezkeli,ÌýA. P. Goodwin, and J. N. Cha.* “Investigating Protein-Nanocrystal Interactions for Photodriven Activity.â€ÌýACS Appl. Bio Materials.Ìý2020,Ìý3, 1026-1035.

S. Roy, M. Brasino, A. Harguindey, J. N. Cha,* andÌýA. P. Goodwin.*Ìý“Enzymes Photo-Cross-Linked to Live Cell Receptors Retain Activity and EGFR Inhibition after Both Internalization and Recycling.â€ÌýBioconjugate Chem.Ìý2020,Ìý31, 104-112.

N. T. Blum, C. M. Gyorkos,+ S. J. Narowetz,+ E. N. Mueller, andÌýA. P. Goodwin.*Ìý“Phospholipid-Coated Hydrophobic Mesoporous Silica Nanoparticles Enhance Thrombectomy by High Intensity Focused Ultrasound with Low Production of Embolism-Inducing Clot Debris.â€ÌýACS Appl. Mater. InterfacesÌý2019,Ìý11, 36324-36332.

D. S. Bull, D. F. Kienle, A. F. Chaparro-Sosa, N. Nelson, S. Roy, J. N. Cha, D. K. Schwartz, J. L. Kaar, andÌýA. P. Goodwin.*“Surface-Templated Nanobubbles Protect Proteins from Surface-Mediated Denaturation.â€ÌýJ. Phys. Chem. Lett.Ìý2019,Ìý10, 2641-2647.

G. R. Hafenstine,+ÌýR. E. Patalano,+ÌýA. W. Harris, G. Jiang, K. Ma,ÌýA. P. Goodwin,* and J. N. Cha.* "Solar Photocatalytic Phenol Polymerization and Hydrogen Generation for Flocculation of Wastewater Impurities."ÌýACS Appl. Polym. Mater.Ìý2019,1, 1451-1457.

N. T. Blum, A. Yildirim, C. Gyorkos, D. Shi, A. Cai, R. Chattaraj, andÌýA. P. Goodwin.*Ìý“Temperature-Responsive Hydrophobic Silica Nanoparticle Ultrasound Contrast Agents Directed by Phospholipid Phase Behavior.â€ÌýACS Appl. Mater. InterfacesÌý2019,Ìý11, 15233–15240.

A. Yildirim,* N. T. Blum, andÌýA. P. Goodwin.*Ìý“Colloids, Nanoparticles, and Materials for Imaging, Delivery, Ablation, andÌýTheranosticsÌýby High Intensity Focused Ultrasound (HIFU).â€ÌýTheranosticsÌý2019,Ìý9, 2572-2594.

A. Harguindey, S. Roy, A. W. Harris, B. D. Fairbanks,ÌýA. P. Goodwin, and J. N. Cha.* "Click Nucleic Acid Mediated Loading of Prodrug Activating Enzymes in PEG-PLGA Nanoparticles for Combination Chemotherapy.â€ÌýBiomacromolecules2019,Ìý20, 1683-1690.

R. Chattaraj,* N. T. Blum, andÌýA. P. Goodwin.*Ìý“Design and Application of Stimulus-Responsive Droplets and Bubbles Stabilized by Phospholipid Monolayers.â€ÌýCurr. Opin. Coll. Interface Sci.Ìý2019,Ìý40, 14-24.

A. Yildirim,* D. Shi, S. Roy, N. T. Blum, R. Chattaraj, J. N. Cha, andÌýA. P. Goodwin.*Ìý“Nanoparticle-Mediated Acoustic Cavitation Enables High Intensity Focused Ultrasound Ablation Without Tissue Heating.â€ÌýACS Appl. Mater. InterfacesÌý2018,Ìý10, 36786-36795.

M. Brasino, S. Roy, A. H. Erbse, L. He, C. Mao. W. Park, J. N. Cha,* andÌýA. P. Goodwin.*Ìý“Affibodies with Site-Specific Photocrosslinker Incorporation Show Both Directed Target-Specific Photoconjugation and Increased Retention in Tumors.â€ÌýJ. Am. Chem. Soc.Ìý2018,Ìý140, 11820-11828.

L. He, C. Mao, M. Brasino, A. Harguindey, W. Park,ÌýA. P. Goodwin, and J. N. Cha.* “TiO2 Capped Gold Nanorods for Plasmon-Enhanced Production of Reactive Oxygen Species and Photothermal Delivery of Chemotherapeutic Agents.â€ÌýACS Appl. Mater. InterfacesÌý2018,Ìý10, 27965–27971.

A. V. Parameswar, K. R. Fitch, D. S. Bull, V. R. Duke, andÌýA. P. Goodwin.*Ìý“Polyacrylamide Hydrogels Produce Hydrogen Peroxide from Osmotic Swelling in Aqueous Media.â€ÌýBiomacromoleculesÌý2018,Ìý19, 3421-3426.

D. S. Bull, N. Nelson, D. Konetski, C. N. Bowman, D. K. Schwartz, andÌýA. P. Goodwin.*Ìý“Contact Line Pinning is Not Required for Nanobubble Stability on Copolymer Brushes.â€ÌýJ. Phys. Chem. Lett.Ìý2018,Ìý9, 4239-4244.

G. R. Hafenstine, A. W. Harris, K. Ma, J. N. Cha,* andÌýA. P. Goodwin.*Ìý“Tandem Catalysis for Converting Ethanol to 2-Ethylhexenal Under Ambient Conditions Using Biphasic Media.â€ÌýACS Sustainable Chem. Eng.Ìý2017,Ìý5, 10483-10489

A. W. Harris, O. Yehezkeli,* G. R. Hafenstine,ÌýA. P. Goodwin,*Ìýand J. N. Cha.* “Light Driven Catalytic Upgrading in a Biohybrid Photoelectrochemical System.â€ÌýACS Sustainable Chem. Eng.Ìý2017,Ìý5, 8199-8204.Ìý

A. Yildirim,* R. Chattaraj, N. T. Blum, D. Shi, K. Kumar, andÌýA. P. Goodwin.*Ìý“Phospholipid Capped Mesoporous Nanoparticles for Targeted High Intensity Focused Ultrasound Ablation.â€ÌýAdv. Healthcare Mater.Ìý2017,Ìý6, 1700514.

L. He,* M. Brasino, C. Mao, S. Cho, W. Park,ÌýA. P. Goodwin, and J. N. Cha.* “DNA-Assembled Core-Satellite Upconverting-Metal Organic Framework Nanoparticle Superstructures for Efficient Photodynamic Therapy.â€ÌýSmall.Ìý2017,Ìý13, 1700504.

N. T. Blum, A. Yildirim, R. Chattaraj, andÌýA. P. Goodwin.*Ìý“Nanoparticles Formed by Acoustic Destruction of Microbubbles and Their Utilization for Imaging and Effects on Therapy by High Intensity Focused Ultrasound.â€ÌýTheranostics.Ìý2017,Ìý7, 694-702.

G. R. Hafenstine, K. Ma, A. W. Harris, O. Yehezkeli, E. Park, D. W. Domaille, J. N. Cha,* andÌýA. P. Goodwin.*“Multicatalytic Light-Driven Upgrading of Butanol to 2-Ethylhexenal and Hydrogen at Mild Aqueous Conditions.â€ÌýACSCatalysis.Ìý2017,Ìý7, 568-572.

R. Chattaraj, G. M. Goldscheitter, A. Yildirim, andÌýA. P. Goodwin.*Ìý"Enhanced Acoustic Vaporization of Perfluorocarbon Nanodroplets due to Phase Behavior of Mixed Lipid Monolayers."ÌýRSC Adv.Ìý2016,Ìý6, 111318–111325.

A. Yildirim,* R. Chattaraj,+ÌýN. T. Blum,+ÌýA. P. Goodwin.*Ìý“Understanding Acoustic Cavitation Initiation by Porous Nanoparticles: Toward Nanoscale Agents for Ultrasound Imaging and Therapy.â€ÌýChem. Mater.Ìý2016,Ìý28, 5962–5972.

L. He, J. Dragavon, S. Cho, C. Mao, A. Yildirim, K. Ma, R. Chattaraj,ÌýA. P. Goodwin, W. Park, and J. N. Cha.* “Self-Assembled Gold Nanostar-NaYF4:Yb/Er Clusters for Multimodal Imaging, Photothermal and Photodynamic Therapy.â€ÌýJ. Mater. Chem. B.Ìý2016,Ìý4, 4455-4461.

K. Kumar, E. J. Castano, A. R. Weidner, andÌýA. P. Goodwin.*Ìý“Depolymerizable Poly(vinyl carbamate-alt-sulfones) as Customizable Macromolecular Mucosal Drug Delivery Scaffolds.â€ÌýACS Macro Lett.Ìý2016,Ìý5, 636-640.Ìý

A. Yildirim, R. Chattaraj, N. T. Blum, G. M. Goldscheitter, andÌýA. P. Goodwin.*Ìý"Stable Encapsulation of Air in Mesoporous Silica Nanoparticles: Fluorocarbon-Free Nanoscale Ultrasound Contrast Agents."ÌýAdv. Healthcare Mater.Ìý2016,Ìý5, 1290-1298.

D. W. Domaille,* G. R. Hafenstine, M. A. Greer,ÌýA. P. Goodwin,*Ìýand J. N. Cha.* “Catalytic Upgrading in Bacteria-Compatible Conditions via a Biocompatible Aldol Condensation.â€ÌýACS Sustainable Chem. Eng.Ìý2016,Ìý4, 671-675.

R. Chattaraj,+ÌýP. Mohan,+ÌýC. R. Livingston, J. D. Besmer, K. Kumar, andÌýA. P. Goodwin.*Ìý“Mutually-Reactive, Fluorogenic Reporter Molecules for In-Solution Biosensing via Droplet Association.â€ÌýACS Appl. Mater. Inter.Ìý2016,Ìý8, 802-808.

K. Kumar andÌýA. P. Goodwin.*Ìý“Alternating Sulfone Copolymers Depolymerize in Response to Both Chemical and Mechanical Stimuli.â€ÌýACS Macro Lett.Ìý2015,Ìý4, 907-911.Ìý

R. Chattaraj, P. Mohan, J. D. Besmer, andÌýA. P. Goodwin.*Ìý“Selective Vaporization of Superheated Nanodroplets for Rapid, Sensitive Acoustic Biosensing.â€ÌýAdv. Healthcare Mater.Ìý2015,Ìý4, 1790-1795.

A. P. Goodwin,*ÌýM. A. Nakatsuka, and R. F. Mattrey.* “Stimulus-Responsive Ultrasound Contrast Agents for Clinical Imaging: Motivations, Demonstrations, and Future Directions.â€ÌýWIREs Nanomed. Nanobiotechnol.Ìý2015,Ìý7, 111-123.

G. R. Hafenstine, D. W. Domaille, J. N. Cha,* andÌýA. P. Goodwin.* “Self-Assembly and Reassembly of Fiber-forming Dipeptides for pH-Triggered DNA Delivery.â€ÌýJ. Polym. Sci. A.Ìý2015,Ìý53, 183-187.

K. R. Fitch andÌýA. P. Goodwin.*Ìý“A Mechanochemical Reaction Cascade for Sensitive Detection of Covalent Bond Breakage in Hydrogels.â€ÌýChem. Mater.Ìý2014,Ìý26, 6771-6776.

P. Mohan, P. S. Noonan, M. A. Nakatsuka, andÌýA. P. Goodwin.* “On-Demand Droplet Fusion: A Strategy for Stimulus-Responsive Biosensing in Solution.â€ÌýLangmuir.Ìý2014,Ìý30, 12321–12327.

P. S. Noonan, P. Mohan,ÌýA. P. Goodwin, and D. K. Schwartz.* “DNA Hybridization-Mediated Liposome Fusion at the Aqueous-Liquid Crystal Interface.â€ÌýAdv. Func. Mater.Ìý2014,Ìý24, 3206-3214.Ìý

H. Noh, S. Goodman, P. Mohan,ÌýA. P. Goodwin, P. Nagpal, and J. N. Cha.* "Direct conjugation of DNA to quantum dots for scalable assembly of photoactive thin films."ÌýRSCÌýAdv.ÌýÌý2014,Ìý4, 8064-8071.

M. A. Nakatsuka, C. V. Barback, K. R. Fitch, A. R. Farwell, R. F. Mattrey, S. C. Esener, J. N. Cha, andÌýA. P. Goodwin.*ÌýÌý“In Vivo Ultrasound Visualization of Non-Occlusive Blood Clots with Thrombin-Sensitive Contrast Agents.â€ÌýÌýBiomaterials.2013,Ìý34, 9559-9565.

P. F. Xu, H. Noh, J. H. Lee, D. W. Domaille, M. A. Nakatsuka,ÌýA. P. Goodwin,*Ìýand J. N. Cha.* "Imparting the unique properties of DNA into complex material architectures and functions."ÌýMater. Today.Ìý2013,Ìý16, 290-296.

S. Chapman,* M. Dobrovolskaia, K. Farahani,ÌýA. P. Goodwin, A. Joshi, H. Lee, T. Meade, M. Pomper, K. Ptak, J. Rao, R. Singh, S. Sridhar, S. Stern, A. Wang, J. B. Weaver, G. Woloschak,* and L. Yang. “Nanoparticles for cancer imaging: The good, the bad, and the promise.â€ÌýNano Today.Ìý2013,Ìý8, 454-460.

M. A. Nakatsuka, R. F. Mattrey, S. C. Esener, J. N. Cha,* andÌýA. P. Goodwin.*ÌýÌý“Aptamer-Crosslinked Microbubbles: Smart Contrast Agents for Thrombin-Activated Ultrasound Imaging.â€ÌýÌýAdv. Mater.ÌýÌý2012,Ìý24, 6010-6016.

M. A. Nakatsuka, M. J. Hsu, S. C. Esener,* J. N. Cha,* andÌýA. P. Goodwin.*ÌýÌý“DNA-Coated Microbubbles with Biochemically-Tunable Ultrasound Contrast Activity.â€ÌýAdv. Mater.ÌýÌý2011,Ìý23, 4908-4912.

M. A. Nakatsuka, J. H. Lee, E. Nakayama, A. M. Hung, M. J. Hsu, R. F. Mattrey, S. C. Esener,* J. N. Cha,* andÌýA. P. Goodwin.*ÌýÌý“Facile One-Pot Synthesis of Polymer-Phospholipid Composite Microbubbles with Enhanced Drug Loading Capacity for Ultrasound-Triggered Therapy.â€ÌýÌýSoft Matter.ÌýÌýÌý2011,Ìý7, 1656-1659.

M. J. Hsu, M. Eghtedari,ÌýA. P. Goodwin, R. F. Mattrey, D. J. Hall, and S. C. Esener.ÌýÌý“Characterization of individual ultrasound microbubble dynamics with a light-scattering system.â€ÌýÌýJ. Biomed. Opt.Ìý2011,Ìý16, 067002.

A. P. Goodwin, S. M. Tabakman, K. Welsher, S. P. Sherlock, G. Prencipe, and H. Dai.ÌýÌý“Phospholipid-Dextran with a Single Coupling Point: a Useful Amphiphile for Functionalization of Nanomaterials.â€ÌýÌýJ. Am. Chem. Soc.ÌýÌý2009,Ìý131, 289-296.

Z. Chen, S. M. Tabakman,ÌýA. P. Goodwin, M. G. Kattah, D. Daranciang, X. Wang, G. Zhang, X. Li, Z. Liu, P. J. Utz, K. L. Jiang, S. S. Fan, and H. Dai.ÌýÌý“Protein microarrays with carbon nanotubes as multicolor Raman labels.â€ÌýÌýNature Biotechnol.Ìý2008,Ìý26, 1285-1292.

A. P. Goodwin, S. S. Lam, J. M. J. Fréchet.ÌýÌý“Rapid, Efficient Synthesis of Heterobifunctional Biodegradable Dendrimers.â€ÌýJ. Am. Chem. Soc.ÌýÌý2007,Ìý129, 6994-6995.

J. L. Mynar,ÌýA. P. Goodwin, J. A. Cohen, Y-Z. Ma, G. R. Fleming, J. M. J. Fréchet.ÌýÌý“Two-photon degradable supramolecular assemblies of linear-dendritic copolymers.â€ÌýÌýChem. Commun.Ìý2007,Ìý20, 2081-2082.Ìý

A. P. Goodwin, J. L. Mynar, Y-Z. Ma, G. R. Fleming, J. M. J. Fréchet.ÌýÌý“Synthetic Micelle Sensitive to IR Light Via a Two-Photon Process.â€ÌýÌýJ. Am. Chem. Soc.ÌýÌý2005,Ìý127, 9952-9953.

Y. J. Kwon, S. M. Standley,ÌýA. P. Goodwin, E. R. Gillies, J. M. J. Fréchet. “Directed Antigen Presentation Using Polymeric Microparticulate Carriers Degradable at Lysosomal pH for Controlled Immune Responses.â€ÌýÌýMol. Pharm.Ìý2005,Ìý2, 83-91.

E. R. Gillies,ÌýA. P. Goodwin, J. M. J. Fréchet.ÌýÌý“Acetals as pH-Sensitive Linkages for Drug Delivery.â€ÌýÌýBioconjugate Chem.ÌýÌý2004,Ìý15, 1254-1263.

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