• 제목/요약/키워드: Polyamine receptor

검색결과 5건 처리시간 0.02초

A New Acetate Selective Polyamine Receptor Based on Anthracene and 4-Nitrophenyl Group

  • Lee, Sung-Kyu;Kang, Jong-Min
    • Bulletin of the Korean Chemical Society
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    • 제32권4호
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    • pp.1228-1230
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    • 2011
  • A new amine receptor 2 utilizing anthracene and nitrophenyl group as signaling group was designed and synthesized. The receptor 2 only utilizes four amine N-H's and 9-anthracenyl hydrogen to bind anions. The receptor 2 can bind anions through hydrogen bonds with a selectivity of $CH_3CO_2^-$ > $H_2PO_4^-$ > $F^-$ > $C_6H_5CO_2^-$ > $Cl^-$ in highly polar solvent such as DMSO without protonation of amine.

흰쥐 미숙 대뇌피질 신경세포에서 Quisqualate로 유발된 흥분성 세포독성에 대한 spermine의 영향 (Effects of Spermine on Quisqualate-induced Excitotoxicity in Rat Immature Cortical Neurons)

  • 조정숙
    • 약학회지
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    • 제43권4호
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    • pp.535-540
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    • 1999
  • Glutamate (Glu) receptor-mediated excitoxicity has been implicated in many acute and chronic types of neurological disorders. Exposure of mature rat cortical neurons (15-18 days in culture) to the various concentrations of Glu resulted in a marked neuronal death, whereas immature rat cortical neurons (4∼5 days in culture) were resistant to the Glu-induced toxicity. Glu receptor subtype-specific agonists showed differential extent of toxicity in the immature neurons. The neurons treated with NMDA or kainate (KA) did not exhibit damage. However, quisqualate (QA) treatment induced a considerable cell death (36.1%) in immature enurons. The non-NMDA antagonist DNQX did not reduce this response. Interestingly, the QA-induced toxicity was potentiated by spermine in a concentration-dependent manner. Again, the spermine-enhanced damage was not altered by the polyamine antagonist ifenprodil. Taken together, unlike NMDA or KA, QA can induce neurotoxicity in immature rat cortical neurons and the QA-induced toxicity was potentiated by spermine. The lack of antagonizing effects of DNQX and ifenprodil on QA-induced toxicity and the potentiated toxicity by spermine, respectively, implies that both QA receptor and the polyamine site of NMDA receptor may not mediate the neurotoxicity observed in this study, and that a distinct mechanism(s) may be involved in excitotoxicity in immature neurons.

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뇌허혈 손상에 있어서 해마-세포외액내 Glutamate와 Polyamine 농도의 변동에 관한 연구 (Changes of Glutamate and Polyamine Levels of Hippocampal Microdialysates in Response to Occlusion of Both Carotid Arteries in Mongolian Gerbils)

  • 신경호;김형건;최상현;조소현;천연숙;전보권
    • 대한약리학회지
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    • 제30권3호
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    • pp.273-289
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    • 1994
  • 뇌-허혈후 나타나는 신경세포의 손상에 glutamate의 과다한 유리와 그의 N-methyl-D-aspartate (NMDA) 수용체: calcium 통로 활성작용 및 polyamine중 putrescine의 증가로 인한 신경세포내 $[Ca^{2+}]$의 상승과 관련 있다는 보고들이 있다. 본 연구에서는 Mongolian gerbil에서 5분간 경동맥을 차단하여 뇌-허혈을 가한후 재관류시 해마의 세포외액내 polyamine, glutamate, acetylcholine농도, 해마의 $[^3H]MK-801$ 결합능의 변동 및 해마조직소견의 변동에 미치는 비가역성 ornithine decarboxylase (ODC) 억제제인 difluoromethylornithine (DFMO), diamine oxidase (DAO) 억제제인 aminoguanidine (AG), NMDA 수용체 길항제인 MK-801 및 calcium 통로 차단제인 nimodipine (NM)의 효과를 비교-검색하였다. 해마 세포외액내 polyamine, glutamate 및 acetylcholine은 microdialysis probe를 해마의 CA1부위에 위치시킨 후 나온 분취액을 HPLC와 luminometer를 사용하여 측정하였고, 해마조직에서 신경세포의 손상은 cresyl-violet 염색법으로 관찰하였다. 허혈후 해마 세포외액내 putrescine농도는 5분이내에 급속히 증가하여 뇌-허혈후 96시간까지 증가되는 경향을 보였으며 AG과 MK-801 처치시 saline 처치군에 비하여 증가정도가 상승되었으나 NM과 DFMO 처치로 putrescine의 증가는 감소되는 경향을 보였다. 해마 세포외액내 glutamate의 농도는 허혈후 5분 이내에 9배이상 유의하게 증가한 후 급격히 감소되어 25분후에는 정상치로 회복되었으나, 이같은 변동은 AG, DFMO 및 MK-801 처치로 영향을 받지 않았고 NM 처치로는 glutamate의 증가가 둔화되는 경향을 보였다. 해마 세포외액내 acetylcholine 농도는 허혈에 의하여 큰변동이 없었으나 허혈전 acetylcholine농도는 DFMO나 MK-801처치로 감소되는 경향을 보였다. 해마-synaptosome막의 $[^3H]MK-801$ 결합능은 saline 처치군에 비하여 AG과 MK-801 처치로 유의하게 감소되었다. 해마의 조직소견상 AG과 NM은 허혈후의 신경세포손상을 억제하고, MK-801은 손상의 예방에 별 영향을 주지 못하였으나 DFMO는 허혈에 의한 신경세포의 손상을 더욱 악화시키는 경향을 보였다. 이상의 결과로 미루어 NM과 다른기전으로 AG은 해마신경세포의 손상을 NMDA-수용체: calcium 통로의 활성화를 조절하여 허혈성 뇌손상을 억제할 수 있으리라 사료된다.

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Agmatine이 GABAA 수용체 길항제로 유도한 촉각이질통에 미치는 효과 (Effects of Agmatine on GABAA Receptor Antagonist-induced Tactile Allodynia)

  • 이윤우;이시카와 토시쪼
    • The Korean Journal of Pain
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    • 제21권3호
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    • pp.173-178
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    • 2008
  • Background: The intrathecal (IT) $GABA_A$ receptor antagonist, bicuculline (BIC), results in tactile allodynia (TA) through disinhibition in the spinal cord. Such disinhibition is considered to be an important mechanism for neuropathic pain. Agmatine, an endogenous polyamine, has a neuro-protective effect in the central nervous system. We investigated the analgesic effects and mechanisms of agmatine action on BIC-induced TA. Methods: Male Sprague-Dawley rats, weighting 250-300 g, were subjected to implantations of PE-10 into the lumbar subarachnoid space for IT drug injection. Five days after surgery, either $10{\mu}l$ of normal saline (NS) or agmatine ($30{\mu}g$ or $10{\mu}g$) in $10{\mu}l$ NS were injected 10 min prior to BIC ($10{\mu}g$) or NMDA ($5{\mu}g$). We assessed the degree of TA (graded 0: no response, 1: mild response, 2: moderate response, 3: strong response) every 5 min for 30 min. Areas under curves and degree of TA were expressed as mean ${\pm}$ SEM. Results were analyzed using one-way ANOVA followed by a Tukey test for multiple comparisons. P < 0.05 was considered significant. Results: IT BIC-induced strong TA reached its peak and plateaued between 10 to 15 min. IT NS-NMDA induced mild transient TA for up to 15 min. Preemptive IT AG attenuated IT BIC-induced TA dose dependently and preemptive IT AG10 completely abolished the IT NMDA-induced TA. Conclusions: Preemptive IT AG attenuated the IT BIC-induced TA through inhibitory actions on postsynaptic NMDA receptor activation. AG might be a viable therapeutic option in the treatment of neuropathic pain.

Adenine attenuates lipopolysaccharide-induced inflammatory reactions

  • Silwal, Prashanta;Lim, Kyu;Heo, Jun-Young;Park, Jong IL;Namgung, Uk;Park, Seung-Kiel
    • The Korean Journal of Physiology and Pharmacology
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    • 제22권4호
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    • pp.379-389
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    • 2018
  • A nucleobase adenine is a fundamental component of nucleic acids and adenine nucleotides. Various biological roles of adenine have been discovered. It is not produced from degradation of adenine nucleotides in mammals but produced mainly during polyamine synthesis by dividing cells. Anti-inflammatory roles of adenine have been supported in IgE-mediated allergic reactions, immunological functions of lymphocytes and dextran sodium sulfate-induced colitis. However adenine effects on Toll-like receptor 4 (TLR4)-mediated inflammation by lipopolysaccharide (LPS), a cell wall component of Gram negative bacteria, is not examined. Here we investigated anti-inflammatory roles of adenine in LPS-stimulated immune cells, including a macrophage cell line RAW264.7 and bone marrow derived mast cells (BMMCs) and peritoneal cells in mice. In RAW264.7 cells stimulated with LPS, adenine inhibited production of pro-inflammatory cytokines $TNF-{\alpha}$ and IL-6 and inflammatory lipid mediators, prostaglandin $E_2$ and leukotriene $B_4$. Adenine impeded signaling pathways eliciting production of these inflammatory mediators. It suppressed $I{\kappa}B$ phosphorylation, nuclear translocation of nuclear factor ${\kappa}B$ ($NF-{\kappa}B$), phosphorylation of Akt and mitogen activated protein kinases (MAPKs) JNK and ERK. Although adenine raised cellular AMP which could activate AMP-dependent protein kinase (AMPK), the enzyme activity was not enhanced. In BMMCs, adenine inhibited the LPS-induced production of $TNF-{\alpha}$, IL-6 and IL-13 and also hindered phosphorylation of $NF-{\kappa}B$ and Akt. In peritoneal cavity, adenine suppressed the LPS-induced production of $TNF-{\alpha}$ and IL-6 by peritoneal cells in mice. These results show that adenine attenuates the LPS-induced inflammatory reactions.