Match tier
Listed
Presence
Current · Arkansas
Last published
2026
Sources
OpenAlex · ORCID
Refreshed
2026-10-05
A
Anna O. Pinson
Role not yet determined Is this you? Add your title
Also affiliated: University of Arizona (2020); Washington University in St. Louis (2020); Conway School of Landscape Design (2020)
3 h-index
4 pubs
33 cited
Research Areas
Biomedical Subjects
Links
Biography and Research Information
Metrics
- h-index: 3
- Publications: 4
- Citations: 33
Selected Publications
-
Significance of Multiple Bioactivation Pathways for Meclofenamate as Revealed through Modeling and Reaction Kinetics (2020)
-
Significance of Competing Metabolic Pathways for 5F-APINACA Based on Quantitative Kinetics (2020)
-
Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity (2020)
-
Oxidative Metabolism and Comparative Analysis of Synthetic Cannabinoid N‐(1‐adamantyl)‐1‐(5‐fluoropentyl)indazole‐3‐carboxamide (5F‐AKB‐48) and the Unfluorinated Analog AKB‐48 (2019)
Collaboration Network
Top Collaborators
Paul L. Prather
University of Arkansas for Medical Sciences
3 shared publications
In database
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
- Significance of Competing Metabolic Pathways for 5F-APINACA Based on Quantitative Kinetics
- Oxidative Metabolism and Comparative Analysis of Synthetic Cannabinoid N‐(1‐adamantyl)‐1‐(5‐fluoropentyl)indazole‐3‐carboxamide (5F‐AKB‐48) and the Unfluorinated Analog AKB‐48
William E. Fantegrossi
University of Arkansas for Medical Sciences
3 shared publications
In database
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
- Significance of Competing Metabolic Pathways for 5F-APINACA Based on Quantitative Kinetics
- Oxidative Metabolism and Comparative Analysis of Synthetic Cannabinoid N‐(1‐adamantyl)‐1‐(5‐fluoropentyl)indazole‐3‐carboxamide (5F‐AKB‐48) and the Unfluorinated Analog AKB‐48
Anna Radomińska‐Pandya
University of Arkansas for Medical Sciences
3 shared publications
In database
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
- Significance of Competing Metabolic Pathways for 5F-APINACA Based on Quantitative Kinetics
- Oxidative Metabolism and Comparative Analysis of Synthetic Cannabinoid N‐(1‐adamantyl)‐1‐(5‐fluoropentyl)indazole‐3‐carboxamide (5F‐AKB‐48) and the Unfluorinated Analog AKB‐48
Azure L. Yarbrough
University of Arkansas at Little Rock
2 shared publications
In database
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
- Oxidative Metabolism and Comparative Analysis of Synthetic Cannabinoid N‐(1‐adamantyl)‐1‐(5‐fluoropentyl)indazole‐3‐carboxamide (5F‐AKB‐48) and the Unfluorinated Analog AKB‐48
John M. Bush
University of Arkansas at Little Rock
2 shared publications
In database
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
- Oxidative Metabolism and Comparative Analysis of Synthetic Cannabinoid N‐(1‐adamantyl)‐1‐(5‐fluoropentyl)indazole‐3‐carboxamide (5F‐AKB‐48) and the Unfluorinated Analog AKB‐48
Ryoichi Fujiwara
University of Arkansas for Medical Sciences (US)
2 shared publications
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
- Oxidative Metabolism and Comparative Analysis of Synthetic Cannabinoid N‐(1‐adamantyl)‐1‐(5‐fluoropentyl)indazole‐3‐carboxamide (5F‐AKB‐48) and the Unfluorinated Analog AKB‐48
Mary A. Schleiff
Harding University Main Campus (US)
2 shared publications
- Significance of Multiple Bioactivation Pathways for Meclofenamate as Revealed through Modeling and Reaction Kinetics
- Significance of Competing Metabolic Pathways for 5F-APINACA Based on Quantitative Kinetics
Gunnar Boysen
Harding University Main Campus
2 shared publications
In database
- Significance of Multiple Bioactivation Pathways for Meclofenamate as Revealed through Modeling and Reaction Kinetics
- Significance of Competing Metabolic Pathways for 5F-APINACA Based on Quantitative Kinetics
Grover P. Miller
Harding University Main Campus
2 shared publications
In database
- Significance of Multiple Bioactivation Pathways for Meclofenamate as Revealed through Modeling and Reaction Kinetics
- Significance of Competing Metabolic Pathways for 5F-APINACA Based on Quantitative Kinetics
Christian V. Cabanlong
University of Arkansas for Medical Sciences (US)
1 shared publication
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
Amal Shoeib
University of Arkansas for Medical Sciences
1 shared publication
In database
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
Bailey K. Jackson
University of Arkansas for Medical Sciences
1 shared publication
In database
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
Saki Fukuda
University of Arkansas for Medical Sciences
1 shared publication
In database
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
Jyoti Gogoi
University of Arkansas for Medical Sciences
1 shared publication
In database
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity
Keith R. McCain
University of Arkansas for Medical Sciences
1 shared publication
In database
- Metabolism, CB1 cannabinoid receptor binding and in vivo activity of synthetic cannabinoid 5F-AKB48: Implications for toxicity