• 제목/요약/키워드: A3 agonist

검색결과 495건 처리시간 0.022초

Streptozotocin으로 당뇨병을 유발시킨 쥐의 지방세포에 나타나는 $A_{1}$, Adenosine Receptor-Adenylyl Cyclase System의 변화 (Changes in $A_{1}$, Adenosine Receptor-Adenylyl Cyclase System of Rat Adipocytes Fellowing Induction of Experimental Diabetes by Streptozotocin Treatment)

  • 박경선;이명순;김경환
    • 대한약리학회지
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    • 제29권1호
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    • pp.97-105
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    • 1993
  • 흰쥐의 지방세포에 존재하는 아데노신 수용체는 $A_{1}$, subclass로 알려져 있다. 따라서 효현제 (Agonist)에 의해 자극되면 adenylyl cyclase가 억제되고 결과적으로 지방분해가 억제된다. 본 연구에서는 당뇨병으로 인하여 생기는 쥐의 지방세포의 $A_{1]$, 아데노신 수용체-adenylyl cyclase 시스템의 변화를 규명하고자 하였다. 흰쥐에 streptozotocin을 투여하여 당뇨병을 유발시킨 후 1주일이 되는 날, 굶기지 않은 쥐에 서 collagenase를 사용하여 지방세포를 분리하였다. 분리한 지방세포에 1 unit/ml adenosine deaminase와 $1\;{\mu}M$ isoproterenol을 가한 후 $37^{\circ}C$에서 1시간 동안 incubation하여 생성되는 glycerol을 측정하였을 때, 당뇨병군에서는 대조군에 비해 $A_{1}$, 아데노신 수용체의 효현제인 $(-)-N^{6}-(R-phenylisopropyl)$ adenosine (PIA)에 의해 지방분해가 약 두배 더 억제되었다. 그 기전을 밝히기 위하여 지방세포막의 $[{^3}H]PIA$ binding을 측정하였는데, 친화력이나 수용체의 수는 당뇨병군과 대조군 사이에 통계적으로 유의한 차이가 없었다 (대조군의 $K_{d}$$0.51{\pm}0.09\;nM$이었고 $B_{max}$$1.60{\pm}0.12\;pmoles/mg$ protein이었다. 당뇨병군의 $K_{d}$$0.54{\pm}0.21\;nM$이었고 $B_{max}$$1.72{\pm}10.31\;pmoles/mg$ protein이었다). 그러나 $100\;{\mu}M$ isoproterenol 자극에 의한 adenylyl cyclase activity의 PIA에 의한 억제를 비교하여 보았을 때 당뇨병군에서의 억제는 대조군의 1.9배로 나타났다. 이상의 결과로 보아 당뇨병군의 지방세포에 나타나는 변화, 즉 지방 분해가 PIA와 같은 $A_{1}$, 아데노신 수용체의 효현제에 의해 더욱 억제되는 것은 지방세포막의 수용체 자체의 변화때문이 아니라 수용체 이후의 신호전달 체계의 변화때문인 것으로 생각된다.

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흰쥐 해마에서 Norepinephrine 유리에 미치는 $N^6-cyclopentyladenosine$ 및 Forskolin의 영향 (Interaction of Forskolin with the Effect of $N^6-cyclopentyladenosine$ on Norepinephrine Release in Rat Hippocampus)

  • 최봉규;김도경;손용;양의종
    • The Korean Journal of Physiology and Pharmacology
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    • 제1권3호
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    • pp.225-231
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    • 1997
  • As it has been reported that the depolarization-induced norepinephrine (NE) release is modulated by activation of presynaptic $A_1-adenosine$ heteroreceptor and various lines of evidence indicate the involvement of adenylate cyclase system in $A_1-adenosine$ post-receptor mechanism in hippocampus, it was attempted to delineate the role of adenylate cyclase system in the $A_1-receptor-mediated$ control of NE release in this study. Slices from rat hippocampus were equilibrated with $[^3H]-NE$ and the release of the labelled products was evoked by electrical stimulation.(3 Hz, $5Vcm^{-1}$, 2 ms, rectangular pulses). The influence of various agents on the evoked tritium-outflow was investigated. $N^6-Cyclopentyladenosine$ (CPA), a specific $A_1-adenosine$ receptor agonist, in concentrations Tanging from 0.1 to $10{\mu}M$ decreased the $[^3H]-NE$ release in a dose-dependent mauler without any change of basal rate of release. 8-Cyclopentyl-1,3-dipropylxanthine (DPCPX, $2{\mu}M$), a selective $A_1-receptor$ antagonist, inhibited the CPA effect. The responses to N-ethylmaleimide $(3&10{\mu}M)$, a SH-alkylating agent of G-protein, were characterized by increments of the evoked NE-release and the CPA effects were completely abolished by NEM pretreatment. Forskolin, a specific adenylate cyclase activator, in concentrations ranging from 0.1 to $30{\mu}M$ increased the evoked and basal rate of NE release in a dose-dependent manner and the CPA effects were inhibited by forskolin pretreatment. Rolipram $(1&10{\mu}M)$, a phosphodiesterase inhibitor, did not affect the evoked NE release but reduced the CPA effect. And 8-bromo-cAMP $(100&300{\mu}M)$, a membrane permeable cAMP analogue inhibited the CPA effect significantly. These results suggest that the $A_1-adenosine$ heteroreceptor plays an important role in NE-release via nucleotide-binding protein $G_i$ in the rat hippocampus and that the adenylate cyclase system might be participated in this process.

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Oviposition Patterns Associated with Prolactin Concentration in Domestic Chicken (Gallus domesticus)

  • David, C.G.;Reddy, I.J.;Khub, Singh
    • Asian-Australasian Journal of Animal Sciences
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    • 제16권11호
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    • pp.1565-1571
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    • 2003
  • Physiological mechanisms, involved in unusual ovulatory sequences in domestic hen are remaining undefined. One hundred individually caged white leghorn birds were divided into two equal groups viz. control and treatment, and 2-bromo-$\alpha$-ergocryptine, was administered to birds in the treatment group to modulate prolactin (PRL) secretion from anterior pituitary gland. The effect of modulation of PRL concentrations on egg production, sequence length and intersequence pause length were studied by analysis of oviposition records of the birds from 24 to 72 weeks of age. The surviving 48 birds in the control and treatment groups averaged $34.58{\pm}1.7$ and $25.67{\pm}1.15$ sequences of oviposition, with a mean sequence length of $9.92{\pm}0.63$ and ${\pm}1.12$ days respectively. Most of the birds had a single characteristically long sequence during the entire reproductive cycle, which averaged $46.04{\pm}3.09$ days in the control birds and $59.33{\pm}4.44$ days in the treated birds. 2-bromo-$\alpha$-ergocriptine treatments had significantly decreased (p$\leq$0.01) the circulating concentrations of PRL compared to the birds of the control group. This resulted in a significant increase (p$\leq$0.01) in the number of laying days in birds of the treatment group with a concomitant decrease in the intersequence pause length. The decreased PRL levels during prime sequences in birds of the both groups, reveals the negative role of the circulating PRL levels on egg production with concomitant shorter intersequence pause length. Hence, modulation of PRL with dopamine agonist may enhance the reproductive efficiency of hens later in life.

EP2 Induces p38 Phosphorylation via the Activation of Src in HEK 293 Cells

  • Chun, Kyung-Soo;Shim, Minsub
    • Biomolecules & Therapeutics
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    • 제23권6호
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    • pp.539-548
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    • 2015
  • Prostaglandin $E_2$ ($PGE_2$), a major product of cyclooxygenase, binds to four different prostaglandin $E_2$ receptors (EP1, EP2, EP3, and EP4) which are G-protein coupled transmembrane receptors (GPCRs). Although GPCRs including EP receptors have been shown to be associated with their specific G proteins, recent evidences suggest that GPCRs can regulate MAPK signaling via non-G protein coupled pathways including Src. EP2 is differentially expressed in various tissues and the expression of EP2 is induced by extracellular stimuli. We hypothesized that an increased level of EP2 expression may affect MAPK signaling. The overexpression of EP2 in HEK 293 cells resulted in significant increase in intracellular cAMP levels response to treatment with butaprost, a specific EP2 agonist, while overexpression of EP2 alone did not increase intracellular cAMP levels. However, EP2 overexpression in the absence of $PGE_2$ induced an increase in the level of p38 phosphorylation as well as the kinase activity of p38, suggesting that up-regulation of EP2 may promote p38 activation via non-G protein coupled pathway. Inhibition of Src completely blocked EP2-induced p38 phosphorylation and overexpression of Src increased the level of p38 phosphorylation, indicating that Src is upstream kinase for EP2-induced p38 phosphorylation. EP2 overexpression also increased the Src activity and EP2 protein was co-immunoprecipitated with Src. Furthermore, sequential co-immunoprecipitation studies showed that EP2, Src, and ${\beta}$-arrestin can form a complex. Our study found a novel pathway in which EP2 is associated with Src, regulating p38 pathway.

The effects of intra-articular resiniferatoxin on monosodium iodoacetate-induced osteoarthritic pain in rats

  • Kim, Youngkyung;Kim, Eun-hye;Lee, Kyu Sang;Lee, Koeun;Park, Sung Ho;Na, Sook Hyun;Ko, Cheolwoong;Kim, Junesun;Yooon, Young Wook
    • The Korean Journal of Physiology and Pharmacology
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    • 제20권1호
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    • pp.129-136
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    • 2016
  • This study was performed to investigate whether an intra-articular injection of transient receptor potential vanilloid 1 (TRPV1) receptor agonist, resiniferatoxin (RTX) would alleviate behavioral signs of arthritic pain in a rat model of osteoarthritis (OA). We also sought to determine the effect of RTX treatment on calcitonin gene-related peptide (CGRP) expression in the spinal cord. Knee joint inflammation was induced by intra-articular injection of monosodium iodoacetate (MIA, $8mg/50{\mu}l$) and weight bearing percentage on right and left hindpaws during walking, paw withdrawal threshold to mechanical stimulation, and paw withdrawal latency to heat were measured to evaluate pain behavior. Intra-articular administration of RTX (0.03, 0.003 and 0.0003%) at 2 weeks after the induction of knee joint inflammation significantly improved reduction of weight bearing on the ipsilateral hindlimb and increased paw withdrawal sensitivity to mechanical and heat stimuli. The reduction of pain behavior persisted for 3~10 days according to each behavioral test. The MIA-induced increase in CGRP immunoreactivity in the spinal cord was decreased by RTX treatment in a dose-dependent manner. The present study demonstrated that a single intra-articular administration of RTX reduced pain behaviors for a relatively long time in an experimental model of OA and could normalize OA-associated changes in peptide expression in the spinal cord.

Inhibitory Effects of Dihydrexidine on Catecholamine Release from the Rat Adrenal Medulla

  • Lee, Jae-Hwang;Lim, Hyo-Jeong;Lim, Dong-Yoon
    • Biomolecules & Therapeutics
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    • 제17권1호
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    • pp.32-42
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    • 2009
  • The purpose of the present study was to examine the effect of dihydrexidine, a full $D_1$ receptor agonist, on the secretion of catecholamines (CA) from the perfused model of the rat adrenal gland, and to establish its mechanism of action. Dihydrexidine (10-100 ${\mu}M$), perfused into an adrenal vein for 60 min, relatively produced dose- and time-dependent inhibition in the CA secretory responses evoked by ACh (5.32 mM), high $K^+$ (56 mM), DMPP (100 ${\mu}M$) and McN-A-343 (100 ${\mu}M$). Dihydrexidine itself did fail to affect basal CA output. Also, in adrenal glands loaded with dihydrexidine (30 ${\mu}M$), the CA secretory responses evoked by Bay-K-8644 (10 ${\mu}M$), an activator of L-type $Ca^{2+}$ channels, cyclopiazonic acid (10 ${\mu}M$), an inhibitor of cytoplasmic $Ca^{2+}$-ATPase, and veratridine, an activator of voltage-dependent $Na+$ channels (10 ${\mu}M$), were also markedly inhibited, respectively. However, in the simultaneous presence of dihydrexidine (30 ${\mu}M$) and R (+)-SCH23390 (a selective antagonist of $D_1$ receptor, 3 ${\mu}M$), the CA secretory responses evoked by ACh, high K+, DMPP, McN-A-343, Bay-K-8644, cyclopiazonic acid and veratridine were considerably recovered to the extent of the corresponding control secretion compared with the inhibitory responses by dihydrexidinetreatment alone. In conclusion, these experimental results suggest that dihydrexidine significantly inhibits the CA secretion evoked by cholinergic stimulation (both nicotinic and muscarinic receptors) and membrane depolarization from the rat adrenal medulla. It seems that this inhibitory effect of dihydrexidine may be mediated by inhibiting influx of both $Ca^{2+}$ and $Na^+$ into the cytoplasm as well as by suppression of $Ca^{2+}$ release from cytoplasmic calcium store through activation of dopaminergic $D_1$ receptors located on the rat adrenomedullary chromaffin cells.

TERT mRNA Expression is Up-Regulated in MCF-7 Cells and a Mouse Mammary Organ Culture (MMOC) System by Endosulfan Treatment

  • Je Kang Hoon;Kim Ki Nam;Nam Kung Woo;Cho Myung Haing;Mar Woong Chon
    • Archives of Pharmacal Research
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    • 제28권3호
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    • pp.351-357
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    • 2005
  • Endosulfan is one of the organochlorine pesticides, which are well-known endocrine disruptors (EDs), and it acts as an estrogen agonist. Estrogen is a group of hormones that play an important role in mammary gland function and are implicated in mammary carcinogenesis. In the present study, we studied the effects of endosulfan on nodule like alveolar lesion (NLAL) formation in mouse mammary gland development using a mouse mammary gland organ culture (MMOC) system. Although endosulfan-treated mammary glands did not form NLALs, more alveolar buds were formed in this group than in the negative control (vehicle-treated) group. In addition, telomerase reverse transcriptase (TERT) mRNA expression levels were increased in endosulfan-treated mammary glands in a dose-dependent manner. Telomerase can be activated by estrogen, therefore, we examined the effects of endosulfan on telomerase activity, and found that the telomerase activity in estrogen receptor-positive MCF-7 cells was up-regulated by endosulfan treatment. Moreover, this activation was accompanied by the up­regulation of the TERT mRNA expression. Also, transient expression assays using CAT reporter plasm ids containing various fragments of the TERT promoter showed that this imperfect palindromic estrogen-responsive element is almost certainly responsible for the transcriptional activation by endosulfan. These results may help elucidate the endocrine disrupting mechanism of endosulfan.

레이저 제2형 당뇨동물모델에서 macelignan과 한약제 열수 추출물의 병용효과 (The Hypoglycemic Effect of Complex of Chinese Traditional Herbs (CTH) and Macelignan in Type 2 Diabetic Animal Model)

  • 여지영;조수인;정명호
    • 생명과학회지
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    • 제20권7호
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    • pp.1113-1120
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    • 2010
  • 본 연구는 macelignan과 CTH를 제2형 당뇨병동물모델에 3주간 병용 투여하여 macelignan을 단독으로 투여했을 때보다 더 나은 효과가 있는지를 살펴 보았다. Macelignan과 CTH의 병용 투여는 공복혈당과 내당능을 비롯하여 혈중 free fatty acids, HTR, 그리고 AI에서는 macelignan 단독 투여군과 비교하여 유의적으로 나타나는 큰 차이를 발견할 수는 없었다. 그러나, HbA1c, insulin 민감도, 그리고 혈중 triglyceride 함량에서는 유의적인 변화를 보이며 효과가 있는 것으로 나타났다. 따라서, macelignan의 단독 투여보다 CTH를 병용 투여하는 것이 당뇨병 합병증을 예방하거나 개선시킬 수 있는 잠재력이 있을 것으로 판단된다. 이에 보다 명확하게 검증하기 위해 혈당 및 대사조절 기전연구를 위한 further study가 진행되어야 할 것으로 사료된다.

Multiple Signaling Molecules are Involved in Expression of CCL2 and IL-$1{\beta}$ in Response to FSL-1, a Toll-Like Receptor 6 Agonist, in Macrophages

  • Won, Keunsoo;Kim, Sun-Mi;Lee, Sae-A;Rhim, Byung-Yong;Eo, Seong-Kug;Kim, Koanhoi
    • The Korean Journal of Physiology and Pharmacology
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    • 제16권6호
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    • pp.447-453
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    • 2012
  • TLR6 forms a heterodimer with TLR2 and TLR4. While proinflammatory roles of TLR2 and TLR4 are well documented, the role of TLR6 in inflammation is poorly understood. In order to understand mechanisms of action of TLR6 in inflammatory responses, we investigated the effects of FSL-1, the TLR6 ligand, on expression of chemokine CCL2 and cytokine IL-$1{\beta}$ and determined cellular factors involved in FSL-1-mediated expression of CCL2 and IL-$1{\beta}$ in mononuclear cells. Exposure of human monocytic leukemia THP-1 cells to FSL-1 resulted not only in enhanced secretion of CCL2 and IL-$1{\beta}$, but also profound induction of their gene transcripts. Expression of CCL2 was abrogated by treatment with OxPAPC, a TLR-2/4 inhibitor, while treatment with OxPAPC resulted in partially inhibited expression of IL-$1{\beta}$. Treatment with FSL-1 resulted in enhanced phosphorylation of Akt and mitogen-activated protein kinases and activation of protein kinase C. Treatment with pharmacological inhibitors, including SB202190, SP6001250, U0126, Akt inhibitor IV, LY294002, GF109203X, and RO318220 resulted in significantly attenuated FSL-1-mediated upregulation of CCL2 and IL-$1{\beta}$. Our results indicate that activation of TLR6 will trigger inflammatory responses by upregulating expression of CCL2 and IL-$1{\beta}$ via TLR-2/4, protein kinase C, PI3K-Akt, and mitogen-activated protein kinases.

Autism-Like Behavioral Phenotypes in Mice Treated with Systemic N-Methyl-D-Aspartate

  • Adil, Keremkleroo Jym;Gonzales, Edson Luck;Remonde, Chilly Gay;Boo, Kyung-Jun;Jeon, Se Jin;Shin, Chan Young
    • Biomolecules & Therapeutics
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    • 제30권3호
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    • pp.232-237
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    • 2022
  • Autism spectrum disorder (ASD) having core characteristics of social interaction problems and repetitive behaviors and interests affects individuals at varying degrees and comorbidities, making it difficult to determine the precise etiology underlying the symptoms. Given its heterogeneity, ASD is difficult to treat and the development of therapeutics is slow due to the scarcity of animal models that are easy to produce and screen with. Based on the theory of excitation/inhibition imbalance in the brain with ASD which involves glutamatergic and/or GABAergic neurotransmission, a pharmacologic agent to modulate these receptors might be a good starting point for modeling. N-methyl-D-aspartic acid (NMDA) is an amino acid derivative acting as a specific agonist at the NMDA receptor and therefore imitates the action of the neurotransmitter glutamate on that receptor. In contrast to glutamate, NMDA selectively binds to and regulates the NMDA receptor, but not other glutamate receptors such as AMPA and kainite receptors. Given this role, we aimed to determine whether NMDA administration could result in autistic-like behavior in adolescent mice. Both male and female mice were treated with saline or NMDA (50 and 75 mg/kg) and were tested on various behavior experiments. Interestingly, acute NMDA-treated mice showed social deficits and repetitive behavior similar to ASD phenotypes. These results support the excitation/inhibition imbalance theory of ASD and that NMDA injection can be used as a pharmacologic model of ASD-like behaviors.