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2023Mediation of mPFC‐LHb pathway in acupuncture inhibition of cocaine psychomotor activity
Suchan Chang, Hyung Kyu Kim, Hyung Kyu Kim, Yeonhee Ryu, Han Byeol Jang, Danbi Ahn, Bong Hyo Lee, Dong‐ho Youn, Bae Hwan Lee, Hee Young Kim, Hee Young Kim
IF 3.1 (2023)
Addiction Biology
The medial prefrontal cortex (mPFC) and the lateral habenula (LHb) play roles in drug addiction and cognitive functions. Our previous studies have suggested that acupuncture at Shenmen (HT7) points modulates mesolimbic reward system in order to suppress drug-induced addiction behaviours. To explore whether an mPFC-LHb circuit mediates the inhibitory effects of acupuncture on addictive behaviours, we examined the projection from mPFC to LHb, excitation of mPFC neurons during acupuncture stimulation, the effects of optogenetic modulation of mPFC-LHb on HT7 inhibition of cocaine-induced locomotion and the effect of mPFC lesion on HT7 inhibition of nucleus accumbens (NAc) dopamine release. Acupuncture was applied at bilateral HT7 points for 20 s, and locomotor activity was measured in male Sprague-Dawley rats. Although cocaine injection significantly increased locomotor activity, HT7 acupuncture suppressed the cocaine-induced locomotion. The inhibitory effect of HT7 on cocaine-enhanced locomotion was blocked by optogenetic silencing of the mPFC-LHb circuit. In vivo extracellular recordings showed that HT7 acupuncture evoked an increase in the action potentials of mPFC neurons. Optopatch experiment proved glutamatergic projections from mPFC to LHb. HT7 acupuncture suppressed NAc dopamine release following cocaine injection, which was blocked by electrolytic lesion of mPFC. These results suggest the mediation of mPFC-LHb circuit in the inhibitory effects of acupuncture on cocaine psychomotor activity in rats.
https://doi.org/10.1111/adb.13321
Neuroscience
Prefrontal cortex
Optogenetics
Premovement neuronal activity
Dopamine
Inhibitory postsynaptic potential
Nucleus accumbens
Psychology
Addiction
Glutamatergic
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2023Peptides derived from high voltage-gated calcium channel β subunit reduce blood pressure in rats
Hyung Kyu Kim, Jiyeon Jun, Tae Wan Kim, Dong‐ho Youn
IF 1.6 (2023)
Korean Journal of Physiology and Pharmacology
The β subunits of high voltage-gated calcium channels (HGCCs) are essential for optimal channel functions such as channel gating, activation-inactivation kinetics, and trafficking to the membrane. In this study, we report for the first time the potent blood pressure-reducing effects of peptide fragments derived from the β subunits in anesthetized and non-anesthetized rats. Intravenous administration of 16-mer peptide fragments derived from the interacting regions of the β1 [cacb1(344-359)], β2 [cacb2(392-407)], β3 [cacb3(292-307)], and β4 [cacb4(333-348)] subunits with the main α-subunit of HGCC decreased arterial blood pressure in a dose-dependent manner for 5-8 min in anesthetized rats. In contrast, the peptides had no effect on the peak amplitudes of voltage-activated Ca<sup>2+</sup> current upon their intracellular application into the acutely isolated trigeminal ganglion neurons. Further, a single mutated peptide of cacb1(344-359)-cacb1(344-359)<sub>K357R</sub>-showed consistent and potent effects and was crippled by a two-amino acid-truncation at the N-terminal or C-terminal end. By conjugating palmitic acid with the second amino acid (lysine) of cacb1(344-359)<sub>K357R</sub> (named K2-palm), we extended the blood pressure reduction to several hours without losing potency. This prolonged effect on the arterial blood pressure was also observed in non-anesthetized rats. On the other hand, the intrathecal administration of acetylated and amidated cacb1(344-359)<sub>K357R</sub> peptide did not change acute nociceptive responses induced by the intradermal formalin injection in the plantar surface of rat hindpaw. Overall, these findings will be useful for developing antihypertensives.
http://dx.doi.org/10.4196/kjpp.2023.27.5.481
Blood pressure
Chemistry
Pharmacology
Dorsal root ganglion
Voltage-dependent calcium channel
Peptide
Calcium channel
Calcium
Medicine
Endocrinology
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인용수 14
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2022Spinal orexin A attenuates opioid-induced mechanical hypersensitivity in the rat
Dong‐ho Youn, Jiyeon Jun, Tae‐Wan Kim, Ki Beom Park
IF 2.8 (2022)
The Korean journal of pain
Spinal orexin A attenuates mechanical hyperalgesia induced by repetitive intradermal injections of DAMGO through OX1R. These data suggest that OIH can be potentially treated by activating the orexin A-OX1R pathway in the spinal dorsal horn.
https://doi.org/10.3344/kjp.2022.35.4.433
DAMGO
Dynorphin
Medicine
Orexin
Hyperalgesia
Dynorphin A
Opioid
Agonist
Anesthesia
Orexin-A