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Fingerprint The Fingerprint is created by mining the titles and abstracts of the person's research outputs and projects/funding awards to create an index of weighted terms from discipline-specific thesauri.

  • 27 Similar Profiles
Hyperalgesia Medicine & Life Sciences
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Research Output 1990 2019

AAV-mediated gene delivery to the enteric nervous system by intracolonic injection

Gore, R., Riedl, M. S., Kitto, K. F., Fairbanks, C. A. & Vulchanova, L., Jan 1 2019, Methods in Molecular Biology. Humana Press Inc., p. 407-415 9 p. (Methods in Molecular Biology; vol. 1950).

Research output: Chapter in Book/Report/Conference proceedingChapter

Enteric Nervous System
Neurons
Injections
Genes
Spinal Ganglia

AAV-mediated gene delivery to the spinal cord by intrathecal injection

Peterson, C. D., Skorput, A. G. J., Kitto, K. F., Wilcox, G. L., Vulchanova, L. & Fairbanks, C. A., Jan 1 2019, Methods in Molecular Biology. Humana Press Inc., p. 199-207 9 p. (Methods in Molecular Biology; vol. 1950).

Research output: Chapter in Book/Report/Conference proceedingChapter

Spinal Injections
Spinal Cord
Genetic Therapy
Genes
Spinal Puncture
1 Citation (Scopus)

Detailed method for intrathecal delivery of gene therapeutics by direct lumbar puncture in mice

Pflepsen, K. R., Peterson, C. D., Kitto, K. F., Vulchanova, L., Wilcox, G. L. & Fairbanks, C. A., Jan 1 2019, Methods in Molecular Biology. Humana Press Inc., p. 305-312 8 p. (Methods in Molecular Biology; vol. 1937).

Research output: Chapter in Book/Report/Conference proceedingChapter

Spinal Puncture
Rodentia
Genetic Therapy
Genes
Catheters

Involvement of the VGF-derived peptide TLQP-62 in nerve injury-induced hypersensitivity and spinal neuroplasticity

Skorput, A. G. J., Zhang, X., Waataja, J. J., Peterson, C. D., Riedl, M. S., Kitto, K. F., Truong, H., Huffman, C., Salton, S. R., Fairbanks, C. A., Honda, C. N. & Vulchanova, L., Sep 1 2018, In : Pain. 159, 9, p. 1802-1813 12 p.

Research output: Contribution to journalArticle

Neuronal Plasticity
Hypersensitivity
Neuralgia
Peptides
Spinal Cord
7 Citations (Scopus)

Bivalent ligand that activates mu opioid receptor and antagonizes mGluR5 receptor reduces neuropathic pain in mice

Peterson, C. D., Kitto, K. F., Akgun, E., Lunzer, M. M., Riedl, M. S., Vulchanova, L., Wilcox, G. L., Portoghese, P. S. & Fairbanks, C. A., Jan 1 2017, In : Pain. 158, 12, p. 2431-2441 11 p.

Research output: Contribution to journalArticle

Metabotropic Glutamate 5 Receptor
Oxymorphone
mu Opioid Receptor
Neuralgia
Ligands