• Mashup Score: 0

    Opioid neuropeptide’s interaction with a neuronal receptor detailed, potentially aiding the rational design of drugs for pain and ischemic stroke

    Tweet Tweets with this article
    • #Pain Pathway Study Finds Big Clues in #BigDynorphin https://t.co/XzIv3Jad7f via @GENbio #BigDyn and #ASIC, a proton-gated cation #channel, work together to send pain signals through the #brain. ASIC’s acidic pocket could be an important site for ASIC-targeting #analgesics. https://t.co/a7Fw3EA7LT

  • Mashup Score: 0

    Opioid neuropeptide’s interaction with a neuronal receptor detailed, potentially aiding the rational design of drugs for pain and ischemic stroke

    Tweet Tweets with this article
    • #Pain Pathway Study Finds Big Clues in #BigDynorphin https://t.co/XzIv3Jad7f via @GENbio #BigDyn and #ASIC, a proton-gated cation #channel, work together to send pain signals through the #brain. ASIC’s acidic pocket could be an important site for ASIC-targeting #analgesics. https://t.co/a7Fw3EA7LT

  • Mashup Score: 0

    Opioid neuropeptide’s interaction with a neuronal receptor detailed, potentially aiding the rational design of drugs for pain and ischemic stroke

    Tweet Tweets with this article
    • #Pain Pathway Study Finds Big Clues in #BigDynorphin https://t.co/XzIv3Jad7f via @GENbio #BigDyn and #ASIC, a proton-gated cation #channel, work together to send pain signals through the #brain. ASIC’s acidic pocket could be an important site for ASIC-targeting #analgesics. https://t.co/a7Fw3EA7LT