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Pain / Ion channels / Nociception / Sensory system / Nociceptor / TRPV1 / Neuropathic pain / Substance P / Dorsal root ganglion / Biology / Medicine / Mind


Dissociation of the Opioid Receptor Mechanisms that Control Mechanical and Heat Pain
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Document Date: 2013-05-02 16:34:51


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File Size: 1,91 MB

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Morinville / /

Company

Ge / Elsevier Inc. / Guan / Suzuki / /

Country

United States / /

Currency

franc / /

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Event

Product Recall / FDA Phase / Business Partnership / Product Issues / /

Facility

University of California / /

IndustryTerm

power confocal imaging / pain processing / antibody solution / heterologous expression systems / fluorescent-tagged secondary antibody solution / /

MedicalCondition

prolonged mechanical hypersensitivity / heat hypersensitivity / mechanical hypersensitivity / chronic pain / tissue injury / hypersensitivity / Dissociation / inflammatory pain / visceral organ dysfunction / nerve injury / inflammatory and neuropathic pain / nodose ganglion / chronic morphine / inflammatory pain model / spared nerve injury / pain / SNC80 Significantly Reduces Mechanical Hypersensitivity / Heat Hyperalgesia / inflammatory / chronic morphine treatment / /

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DOReGFP / /

NaturalFeature

Charles River / /

Organization

National Institute of Health / Institutional Animal Care and Use Committee / Intrathecal administration / Universite´ / Physiology and W. M. Keck Center for Integrative Neuroscience / University of California / San Francisco / /

Person

Gomes / Morphine As / Louis Pasteur / /

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Position

Cao / Fisher / reporter / /

Product

threshold / Intrathecal injection / CFA injection / SNC80 / /

ProvinceOrState

California / /

PublishedMedium

the NIH Guide / /

Technology

Neuroscience / antibodies / hybridization / detailed protocol / /

URL

http /

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