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Paper Title
Long-lasting analgesia via targeted in situ repression of Na<sub>V</sub>1.7 in mice.
PubMed
Paper Journal Title
Sci Transl Med
Paper Citation Count
52
Paper Publication Year
2021
Bio Mention
BzATP, CRISPR, NaV, NaV1, Neuro2A cells, analgesia, chronic pain, clustered regularly interspaced short palindromic repeats, dCas9, epigenome, humans, inflammatory, inflammatory pain, insensitivity to pain, lumbar, mice, mouse, neurodevelopmental alterations, neuropathic, neuropathic pain, nociceptive sensory afferents, paclitaxel, primary afferents, sodium, sodium channel protein, tactile allodynia, thermal hyperalgesia, zinc, zinc finger proteins
Mesh Descriptor
Analgesia, Animals, Chronic Pain, Ganglia, Spinal, Hyperalgesia, Mice, Neuralgia
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Author Name
Affiliation
Ana M Moreno
University of California San Diego
Fernando Alem??n
University of California San Diego
Glaucilene F Catroli
University of California San Diego
Matthew A Hunt
University of California San Diego
Michael Hu
University of California San Diego
Amir Dailamy (CM4AI)
University of California San Diego
Andrew Pla
University of California San Diego
Sarah A Woller
University of California San Diego
Nathan Palmer
University of California San Diego
Udit Parekh
University of California San Diego
Daniella McDonald
University of California San Diego
Daniella McDonald
University of California San Diego
Amanda J Roberts
Scripps Research Institute
Vanessa S Goodwill
University of California San Diego
Ian Dryden
University of California San Diego
Robert F Hevner
University of California San Diego
Lauriane Delay
University of California San Diego
Gilson Gon??alves Dos Santos
University of California San Diego
Tony L Yaksh
University of California San Diego
Prashant Mali (CM4AI)
University of California San Diego
1 - 20
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