Michael O'Leary

  • 1170 Citations
  • 23 h-Index
1982 …2018
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Personal profile

Education/Academic qualification

Doctor of Philosophy, doctorate

Fingerprint Dive into the research topics where Michael O'Leary is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 2 Similar Profiles
Sodium Channels Medicine & Life Sciences
Spinal Ganglia Medicine & Life Sciences
Neurons Medicine & Life Sciences
Voltage-Gated Sodium Channels Medicine & Life Sciences
Synaptosomes Medicine & Life Sciences
Cocaine Medicine & Life Sciences
Sensory Receptor Cells Medicine & Life Sciences
para-Aminobenzoates Medicine & Life Sciences

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Projects 2015 2017

Research Output 1982 2018

  • 1170 Citations
  • 23 h-Index
  • 32 Article
  • 2 Review article
  • 1 Chapter
1 Citation (Scopus)

Mechanisms of drug binding to voltage-gated sodium channels

O'Leary, M. & Chahine, M., Jan 1 2018, Handbook of Experimental Pharmacology. Springer New York LLC, p. 209-231 23 p. (Handbook of Experimental Pharmacology; vol. 246).

Research output: Chapter in Book/Report/Conference proceedingChapter

Voltage-Gated Sodium Channels
Permeation
Electric potential
Channelopathies
Pharmaceutical Preparations
7 Citations (Scopus)

Animal models of rheumatoid pain: Experimental systems and insights

Fischer, B. D., Adeyemo, A., O'Leary, M. & Bottaro, A., Jun 30 2017, In : Arthritis Research and Therapy. 19, 1, 146.

Research output: Contribution to journalReview article

Chronic Pain
Arthritis
Animal Models
Pain
Spondylarthropathies
11 Citations (Scopus)
Sodium Channels
Electrophysiology
Hyperalgesia
Spinal Ganglia
Up-Regulation
17 Citations (Scopus)

Dysregulation of Kv3.4 channels in dorsal root ganglia following spinal cord injury

Ritter, D. M., Zemel, B. M., Hala, T. J., O'Leary, M. E., Lepore, A. C. & Covarrubias, M., Jan 21 2015, In : Journal of Neuroscience. 35, 3, p. 1260-1273 14 p.

Research output: Contribution to journalArticle

Spinal Ganglia
Spinal Cord Injuries
Neurons
Laminectomy
Protein Kinase C
2 Citations (Scopus)

MTSET modification of D4S6 cysteines stabilize the fast inactivated state of Nav1.5 sodium channels

O'Leary, M. & Chahine, M., Jan 1 2015, In : Frontiers in Pharmacology. 6, MAY, 118.

Research output: Contribution to journalArticle

Sodium Channels
Cysteine
S 6
methanethiosulfonate
Pharmacology