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Bradley D. Smith
Researcher at University of Notre Dame
Publications - 309
Citations - 12948
Bradley D. Smith is an academic researcher from University of Notre Dame. The author has contributed to research in topics: Membrane & Rotaxane. The author has an hindex of 58, co-authored 293 publications receiving 12010 citations. Previous affiliations of Bradley D. Smith include Nara Institute of Science and Technology & Pennsylvania State University.
Papers
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Journal ArticleDOI
Clinical experience over 48 years with pheochromocytoma.
Richard E. Goldstein,James A. O'Neill,George Holcomb,Walter M. Morgan,Wallace W. Neblett,John A. Oates,Nancy J. Brown,John H. Nadeau,Bradley D. Smith,David L. Page,Naji N. Abumrad,H. William Scott +11 more
TL;DR: It is suggested that patients with extraadrenal pheochromocytomas have the same risk of malignancy and the same overall survival as patients with adrenal p heochromocrytomas.
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Anion recognition using dimetallic coordination complexes
TL;DR: In this article, the authors describe advances made over the past three years in anion recognition using coordination complexes, with a specific focus on dimetallic architectures that utilize a bridging mechanism.
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Development of synthetic membrane transporters for anions
TL;DR: This tutorial review is on synthetic chloride transport systems that operate in vesicle and cell membranes that have applications as reagents for cell biology research and as potential chemotherapeutic agents.
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Squaraine-Derived Rotaxanes: Sterically Protected Fluorescent Near-IR Dyes
TL;DR: It should be possible to prepare squaraine-derived rotaxanes with improved properties for a wide range of photophysical, photochemical, and biomedical applications.
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Optical Imaging of Bacterial Infection in Living Mice Using a Fluorescent Near-Infrared Molecular Probe
W. Matthew Leevy,Seth T. Gammon,Hua Jiang,James R. Johnson,Dustin J. Maxwell,Erin Jackson,Manuel Marquez,Manuel Marquez,David Piwnica-Worms,Bradley D. Smith +9 more
TL;DR: An optical imaging probe was synthesized by attaching a near-infrared carbocyanine fluorophore to an affinity group containing two zinc(II) dipicolylamine (Zn-DPA) units, and it was used to image infections of Gram-positive S. aureus and Gram-negative E. coli bacteria in living nude mice.