Kevin M. Honeywell
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Also affiliated: University of California, Santa Barbara (2022–2026); University of Memphis (2020–2024)
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Kevin M. Honeywell researches the development and application of aptamer-based biosensors, focusing on their use for detecting and monitoring drug concentrations in biological systems. His work has involved creating high-affinity aptamers for sensing cocaine and improving the calibration of electrochemical aptamer-based sensors. Honeywell has investigated the precise monitoring and feedback control of drug concentrations within the brains of freely moving rats. His research also extends to the pharmacological effects of central nervous system stimulants, including studies on the selective inhibition of PDE4B to reduce methamphetamine reinforcement. Additionally, his recent publications explore the interoceptive effects of lysergamides and the pharmacokinetic differences between brain subcompartments.
Metrics
- h-index: 4
- Publications: 8
- Citations: 201
Selected Publications
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Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide (2026)
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- Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide
- Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide
- Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide
- Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide
- Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide
- Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide
- Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide
- Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide
- Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide
- Interoceptive effects of N1-substituted lysergamides in rats: Role of agonist affinity at 5-hydroxytryptamine receptors and in vivo metabolism to lysergic acid diethylamide
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