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Christopher S. Callam

The Ohio State University · US
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Area of research
Organic Chemistry · Pharmacology
Research interest
Research topics from publications: 4-Amidophenol Quinone Methide Precursors: Effective and Broad-Scope Nonoxime Reactivators of Organophosphorus-Inhibited Cholinesterases and Resurrectors of Organophosphorus-Aged Acetylcholinesterase; Treatment of Organophosphorus Poisoning with 6-Alkoxypyridin-3-ol Quinone Methide Precursors: Resurrection of Methylphosphonate-Aged Acetylcholinesterase. Representative work: Acetylcholinesterase (AChE) inhibition by organophosphorus (OP) compounds poses a serious health risk to humans. While many therapeutics have been tested for treatment after OP exposure, there is still a need for efficient reactivation against all kinds of OP compounds, and current oxime therapeutics have poor blood–brain barrier penetration into the central nervous system, while offering no recovery in activity from the OP-aged forms of AChE. Herein, we report a novel library of 4-amidophenol quinone methide precursors (QMP) that provide effective reactivation against multiple OP-inhibited forms of AChE in addition to resurrecting the aged form of AChE after exposure to a pesticide or some Organophosphorus (OP) nerve agents inhibit acetylcholinesterase (AChE), creating a cholinergic crisis in which death can occur. The phosphylated serine residue spontaneously dealkylates to the OP-aged form, which current therapeutics cannot reverse. Soman’s aging half-life is 4.2 min, so immediate recovery (resurrection) of OP-aged AChE is needed. In 2018, we showed pyridin-3-ol-based quinone methide precursors (QMPs) can resurrect OP-aged electric eel AChE in vitro, achieving 2% resurrection after 24 h of incubation (pH 7, 4 mM). We prepared 50 unique 6-alkoxypyridin-3-ol QMPs with 10 alkoxy groups and five amine leaving groups to improve AChE resurrection. These compounds are predicted in
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Recent publications

4-Amidophenol Quinone Methide Precursors: Effective and Broad-Scope Nonoxime Reactivators of Organophosphorus-Inhibited Cholinesterases and Resurrectors of Organophosphorus-Aged Acetylcholinesterase
ACS Chemical Neuroscience 2024cited by 9position: middledoi
Treatment of Organophosphorus Poisoning with 6-Alkoxypyridin-3-ol Quinone Methide Precursors: Resurrection of Methylphosphonate-Aged Acetylcholinesterase
Chemical Research in Toxicology 2024cited by 4position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Nathan A. Ward · Florida State University2 papers (2024–2024)Craig A. McElroy · The Ohio State University2 papers (2024–2024)Christopher M. Hadad · The Ohio State University2 papers (2024–2024)Anne K. Buck · Boston University2 papers (2024–2024)Alex R. Lovins · Florida State University1 papers (2024–2024)D. Sophia Ensey · Florida State University1 papers (2024–2024)Rose K. Homoelle · Florida State University1 papers (2024–2024)Megan C. Murtha · Florida State University1 papers (2024–2024)Liam A. Shanahan · Florida State University1 papers (2024–2024)Dalyanne N. Hernández Sánchez · Florida State University1 papers (2024–2024)Kenny Q. Nguyen · Florida State University1 papers (2024–2024)Benjamin Clark · Florida State University1 papers (2024–2024)Yiran He · Florida State University1 papers (2024–2024) · 1 papers (2024–2024)Aishwarya Sriraman · University of Illinois Chicago1 papers (2024–2024)W. Clay · Florida State University1 papers (2024–2024)Kevin A. Miller · Florida State University1 papers (2024–2024)Gopichand Gutti · The Ohio State University1 papers (2024–2024)Ryan J. Sapia · Florida State University1 papers (2024–2024)Jeremy M. Lear · The Ohio State University1 papers (2024–2024)
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