• 제목/요약/키워드: Intracellular calcium mobilization

검색결과 57건 처리시간 0.035초

Influence of 5′-(N′-Ethylcarboxanlido) Adenosine on Catecholarnine Secretion Evoked by Cholinergic Stimulation and Membrane Depolarization in the Rat Adrenal Gland

  • Lim, Dong-Yoon;Oh, Hyeong-Geun;Woo, Seong-Chang
    • Biomolecules & Therapeutics
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    • 제8권4호
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    • pp.338-348
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    • 2000
  • The present study was attempted to determine the effect of 5'-(N'-ethylcarboxamido) adenosine (NECA), which is an potent $A_2$-adenosine receptor agonist, on catecholamine (CA) secretion evoked by cholinergic stimulation, membrane depolarization and calcium mobilization from the isolated perfused rat adrenal gland. NECA (20 nM) perfused into the adrenal vein for 60 min produced a time-related inhibition in CA secretion evoked by ACh (5.32x10$^{-3}$ M), high $K^{+}$(5.6x10$^{-2}$ M), DMPP (10$^{-4}$ M for 2 min), McN-A-343 (10$^{-4}$ M for 2 min), cyclopiazonic acid (10$^{-5}$ M for 4 min) and Bay-K-8644 (10$^{-5}$ M for 4 min). Also, in the presence of $\beta$,${\gamma}$-methylene adenosine-5'-triphosphate (MATP), which is also known to be a selective $P_{2x}$-purinergic receptor agonist, showed a similar inhibition elf CA release evoked by ACh, high potassium, DMPP, McN-A-343, Bay-K-8644 and cyclopiazonic acid. However, in adrenal glands preloaded with 20$\mu$M NECA for 20 min under the presence of 20$\mu$M 3-isobutyl-1-methyl-xanthine (IBMX), an adenosine receptors antagonist, CA secretory responses evoked by ACh, high potassium, DMPP, McN-A-343, Bay-K-8644 and cyclopiazonic acid were much recovered in comparison to the case of NECA-treatment only. Taken together, these results indicate that NECA causes the marked inhibition of CA secretion evoked by stimulation of cholinergic (both nicotinic and muscarinic) receptors as well as by membrane depolarization. This inhibitory effect may be mediated by inhibiting influx of extracellular calcium and release in intracellular calcium in the rat adrenomedullary chromaffin cells through the adenosine receptor stimulation. Therefore, it is suggested that the inhibitory mechanism of adenosine receptor stimulation may play a modulatory role in regulating CA secretion.n.n.

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Mechanism of Pituitary Adenylate Cyclase-Activating Polypeptide-Induced Inhibition on Catecholamine Secretion Evoked by Cholinergic Stimulation and Membrane Depolarization in the Rat Adrenal Gland

  • Lim, Dong-Yoon;Kang, Jeong-Won;Kim, Young-Jo
    • The Korean Journal of Physiology and Pharmacology
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    • 제3권3호
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    • pp.339-350
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    • 1999
  • The present study was attempted to examine the effect of pituitary adenylate cyclase-activating polypeptide (PACAP) on catecholamine (CA) secretion evoked by cholinergic stimulation, membrane depolarization and calcium mobilization from the isolated perfused rat adrenal gland. The perfusion of PACAP (10 nM) into an adrenal vein for 60 min produced a great inhibition in CA secretion evoked by ACh $(5.32{\times}10^{-3}\;M),$ high $K^+\;(5.6{\times}10^{-2}\;M),$ DMPP $(10^{-4}\;M\;for\;2\;min),$ McN-A-343 $(10^{-4}\;M\;for\;2\;min),$ cyclopiazonic acid $(10^{-5}\;M\;for\;4\;min)$ and Bay-K-8644 $(10^{-5}\;M\;for\;4\;min).$ Also, in the presence of neuropeptide (NPY), which is known to be co-localized with norepinephrine in peripheral sympathetic nerves, CA secretory responses evoked by ACh, high potassium, DMPP, McN-A-343, Bay-K-8644 and cyclopiazonic acid were also significantly depressed. However, in adrenal glands preloaded with PACAP (10 nM) under the presence of VIP antagonist $[(Lys^1,\;Pro^{2.5},\;Arg^{3.4},\;Tyr^6)-VIP\;(3\;{\mu}M)]$ for 20 min, CA secretory responses evoked by ACh, high potassium, DMPP, McN-A-343, Bay-K-8644 and cyclopiazonic acid were not altered greatly in comparison to the case of PACAP-treatment only. Taken together, these results suggest that PACAP causes the marked inhibition of CA secretion evoked by stimulation of cholinergic (both nicotinic and muscarinic) receptors as well as by membrane depolarization, indicating that this effect may be mediated by inhibiting influx of extracellular calcium and release in intracellular calcium in the rat adrenomedullary chromaffin cells.

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Inhibitory Mechanism of Bromocriptine on Catecholamine Release Evoked by Cholinergic Stimulation and Membrane Depolarization from the Rat Adrenal Medulla

  • Lim, Dong-Yoon;Lee, Yong-Gyoon;Kim, Il-Hwan
    • Archives of Pharmacal Research
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    • 제25권4호
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    • pp.511-521
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    • 2002
  • The purpose of this study was to determine whether bromocriptine affects the catecholamines (CA) secretion evoked in isolated perfused rat adrenal glands, by cholinergic stimulation, membrane depolarization and calcium mobilization, and to establish the mechanism of its action. The perfusion of bromocriptine ($1~10{\;}{\mu}M$) into an adrenal vein, for 60 min, produced relatively dose-dependent inhibition in the secretion of catecholamines (CA) evoked by acetylcholine (ACh, 5.32 mM), DMPP ($100{\;}{\mu}M$ for 2 min), McN-A-343 ($100{\;}{\mu}M$ for 2 min), cyclopiazonic acid (CPA, $10{\;}{\mu}M$ for 4 min) and Bay-K-8644 ($10{\;}{\mu}M$ for 4 min). High $K^+$ (56 mM)-evoked CA release was also inhibited, although not in a dose-dependent fashion. Also, in the presence of apomorphine ($100{\;}{\mu}M$), which is also known to be a selective $D_2$-agonist, the CA secretory responses evoked by ACh, high potassium, DMPP, McN-A-343, Bay-K-8644 and cyclopiazonic acid were also significantly depressed. However, in adrenal glands preloaded with bromocriptine ($3{\;}{\mu}M$) in the presence of metoclopramide ($15{\;}{\mu}M$), a selective $D_2$-antagonist, the CA secretory responses evoked by ACh, high potassium, DMPP, McN-A-343, Bay-K-8644 and cyclopiazonic acid considerably recovered as compared to that of bromocriptine only. Taken together, these results suggest that bromocriptine can inhibit the CA secretion evoked by stimulation of cholinergic receptors, as well as by membrane depolarization, in the perfused rat adrenal medulla. It is thought this inhibitory effect of bromocriptine may be mediated by inhibiting the influx of extracellular calcium and the release from intracellular calcium stores, through the activation of dopaminergic $D_2$-receptors located in the rat adrenomedullary chromaffin cells. Furthermore, these findings also suggest that the dopaminergic $D_2$-receptors may play an important role in regulating adrenomedullary CA secretion.

흰쥐 적출 방광 배뇨근의 수축성에 대한 Imipramine의 작용과 Calcium동원 기전과의 관계 (Mechanism of Inhibitory Effect of Imipramine on Isolated Rat Detrusor Muscle in Relation to Calcium Modulation)

  • 이종범;유계준;하정희;권오철;이광윤;김원준
    • 대한약리학회지
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    • 제28권1호
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    • pp.81-89
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    • 1992
  • 항우울제에 속하는 imipramine은 유뇨증에 대한 치료제로서도 널리 사용되고 있다. Imipramine이 유뇨증 치료제로서의 명백한 치료효과를 보이기는 하나, 그 작용기전에 대해서는 아직 논란이 많다. 그 중 가장 유력한 설은 말초성 자율신경에 대한 작용으로서 무스카린성 길항작용과 교감신경말단에서의 catecholamine 재섭취 방해작용 및 직접적인 방광근 이완 작용 등이 제시되고 있다. 또 최근에는 방광 평활근에 대한 직접작용에 칼슘 이동 억압 작용이 중요한 역할을 한다고 주장되고 있다. 이에 본 실험에서는 흰쥐의 적출방광 배뇨근 절편을 사용하여 imipramine의 항유뇨작용과 calcium동원과의 관련성을 추구하여 다음과 같은 결과를 얻었다. 1. 배뇨근 절편은 전기장자극에 의해 주파수의존적으로 수축하였는데, 이 전기장자극 유발 수축반응은 imipramine에 의해 농도 의존적으로 억제되었고 고농도에서는 완전히 소실되었으나, atropine에 의해서는 고농도에서도 소실되지 않았다. 2. Imipramine은 자발수축 및 기본 장력에 대하여 이들을 농도 의존적인 양상으로 억제하였으며, 이 억제작용은 diltiazem에 의한 억제와 유사하였다. 그러나 atropine은 배뇨근절편의 기본장력이나 자발수축에 아무런 영향도 미치지 않았다. 3. $^*Imipramine$은 bethanechol 유발수축과 adenosine triphosphate (ATP) 유발수축을 농도의존적으로 억압하였다. 4. Imipramine은 칼슘배제용액에서 칼슘 첨가에의한 수축성의 회복을 억제하였는데, 이러한 작용은 diltiazem보다 그 효력이 낮았으나 그 작용양상은 유사하였다. 5. Imipramine에 의해 감소되었던 배뇨근절편의 기본장력은 calcium ionophore인 A23187에 의해 회복되었다. 칼슘배제 영양액에 장시간 노출됨으로써 기본장력은 소실되었으며, imipramine을 전처치한 경우는 A23187첨가에 의해 장력이 회복되지 않았으나, 세포내칼슘 유리억제제인 trimethoxybenzoic acid 8-(diethylamino)octyl ester [TMB-8]을 전처치한 경우 A23187은 배뇨근의 기본장력을 현저히 회복시켰다. 이상의 결과로 미루어 보아 imipramine의 배뇨근 수축 억제작용의 기전에는 무스카린성 및 퓨린성 수용체봉쇄작용도 관여하나, 주된 기전은 평활근세포에 직접 작용하여 세포외 칼슘의 유입을 억제하는 것으로 사료된다.

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Antiplatelet effects of scoparone through up-regulation of cAMP and cGMP on U46619-induced human platelets

  • Lee, Dong-Ha
    • Journal of Applied Biological Chemistry
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    • 제62권4호
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    • pp.425-431
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    • 2019
  • Platelet activation is essential for hemostatic process on blood vessel damage. However, excessive platelet activation can cause some cardiovascular diseases including atherosclerosis, thrombosis, and myocardial infarction. Scoparone is commonly encountered in the roots of genus Artemisia or Scopolia, and has been studied for its potential pharmacological properties including immunosuppression and vasorelaxation, but antiplatelet effects of scoparone have not been reported yet. We investigated the effect of scoparone on human platelet activation prompted by an analogue of thromboxane A2, U46619. As the results, scoparone dose-dependently increased cyclic adenosine monophosphate (cAMP) levels as well as cyclic guanosine monophosphate (cGMP) levels, both being aggregation-inhibiting molecules. In addition, scoparone strongly phosphorylated inositol 1, 4, 5-triphosphate receptor (IP3R) and vasodilator-stimulated phosphoprotein (VASP), substrates of cAMP dependent kinase and cGMP dependent kinase. Phosphorylation of IP3R by scoparone resulted in inhibition of Ca2+ mobilization in calcium channels in a dense tubular system, and phosphorylation of VASP by scoparone led to an inability of fibrinogen being able to bind to αIIb/β3. Finally, scoparone inhibited thrombin-induced fibrin clotting, thereby reducing thrombus formation. Therefore, we suggest that scoparone has a strong antiplatelet effect and is highly probable to prevent platelet-derived vascular disease.

Ginsenoside $Rg_3$의 혈소판 응집 억제 효과 및 그 작용기전에 관한 연구 (Inhibitory Effects of Ginsenoslde $Rg_3$ on Platelet Aggregation and its Mechanism of Action)

  • 이소라;박정일
    • Journal of Ginseng Research
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    • 제21권2호
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    • pp.132-140
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    • 1997
  • The effects of ginsenosides purified from red ginseng on platelet aggregation were investigated. Preincubation of washed platelets from rats with either ginsenoside Rg3, ginsenosides non-polar fraction (G-NPF), ginsenoside Rg1(Rg1) or ginsenosides polar fraction(G-PF) reduced the plytelet aggrelation induced by collagen in a dose-dependent manner, whereas ginsenoside Rg2 failed to inhibit the aggregation. Their IC50 values of Rg3, G-NPF, Rgl, and G-PF were 8.7$\pm$1.0, 150.3$\pm$0.1, 369.9$\pm$ 1.0, 606.211.3 $\mu\textrm{g}$/ml, respectively. Aggrelation induced by thrombin was also inhibited by Rg3 and G-NPF with IC50 being 5.2$\pm$ 1.1 and 66.5$\pm$0.8 $\mu\textrm{g}$/ml, respectively. The alterations of Intracellular Ca2+ concentration in platelets were monitored using fura-2 as a fluorescent Ca2+ indicator. Both Ca2+ release from internal stores and Ca2+ influx into cytosol were suppressed by Rg3. Rg3 also inhibited granular release of ATP and TXA2 formation induced by thrombin in a dose-dependent manner in the washed platelets. Rg3 also inhibited Aggregation and ATP release from human platelets induced by collagen to a similar extent as were observed in rat platelets. In conclusion, Rg3 is a Potent anti-aggregating component in ginsenosides and may exert its anti-aggrega1ing activity by decreasing TXAa formation and granular secretion in platelets, most likely by inhibiting Ca2+ influx and Ca2+ mobilization from intracellular stores. Thus ginseng may contribute to the prevention and treatment of thrombosis.

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생쥐 부정소 정자의 첨체반응 유도의 Calcium 비의존성 (Calcium-Independent Acrosome Reaetion by Methyl Beta Cyclodextrin in Mouse Epididymal Sperm In Vitro)

  • 최진국;계명찬
    • 한국발생생물학회지:발생과생식
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    • 제5권1호
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    • pp.53-57
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    • 2001
  • 정자의 수정능력획득과 첨체반응은 Ca$^{2+}$에 의존적으로 일어나며, 수정능력획득 과정에서는 원형질막으로부터 cholesterol이 방출되어 첨체반응이 일어나기 쉬운 상태로 전환된다. 최근 세포막으로부터 cholesterol 방출을 촉진하는 methyl beta cyclodextrin (MBCD)이 첨체반응을 유발함이 알려졌으나 정자 주변의 Ca$^{2+}$ 농도와 관계없이 cholesterol 방출만으로 첨체반응이 유발되는지의 여부는 확인되지 않았다. 본 연구에서는 생쥐 정자에서 MBCD에 의한 첨체반응의 Ca$^{2+}$ 의존성을 조사하였다. 첨가된 Ca$^{2+}$이 없는 경우에도 MBCD는 농도 의존적으로 첨체반응을 증가시켰다. 저농도 (100 ${\mu}$M)의 Ca$^{2+}$의 존재시 MBCD에 의한 첨체반응이 유의하게 증가하였다. Ca$^{2+}$을 첨가하지 않은 배양액에 100 ${\mu}$M의 EGTA를 첨가한 경우 자발적 첨체반응을 유의하게 억제되었다. 같은 조건하에서 1 mM MBCD는 첨체반응을 유의하게 증가시켰으나 EGTA 비처리군보다 유의하게 낮아 MBCD에 의해 유발되는 첨체반응에 정자내부의 Ca$^{2+}$이 관여하는 것으로 사료된다. 이상의 결과에서 외부의 Ca$^{2+}$이 존재하지 않더라도 MBCD를 이용하여 첨체반응을 유발할 수 있으며 정자 내부의 Ca$^{2+}$이 원형질막 cholesterol의 방출에 따른 첨체반응 조절에 관여함을 알 수 있다.

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사람 중성호성 백혈구의 기능에 있어서 Arachidonic Acid의 활성화 기전 (Activation Mechanism of Arachidonic Acid in Human Neutrophil Function)

  • 심재건;이정수;신용규;이광수
    • 대한약리학회지
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    • 제28권1호
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    • pp.91-102
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    • 1992
  • 칼슘을 함유하는 반응액에서 arachidonic acid는 뚜렷하게 superoxide와 $H_2O_2$의 생성을 자극하였고 NADPH oxidase를 활성화하였다. 칼슘이 없는 반응액에서 NADPH oxidase에 대한 arachidonic acid의 자극 작용은 나타나지 않았다. Arachidonic acid에 의하여 자극된 respiratory burst는 EGTA, TMB-8, verapamil, diltiazem, nifedipine, dibucaine, lidocaine, CCCP, 2,4-dinitrophenol, sodium arsenate, chlorpromazine, theophylline, $HgCl_2$, PCMB와 PCMBSA에 의하여 억제되었으나, tetrodotoxin, tetraethyl ammonium chloride와 procaine의 영향은 받지 않았다. EGTA는 거의 완전히 arachidonic acid에 의한 ${\beta}-glucuronidase$의 유리를 억제하였으며, verapamil, CCCP와 theophylline은 약간 억제하였으나, 이에 반하여 dibucaine은 유의한 효과를 나타내지 않았다. Arachidonic acid는 중성호성 백혈구로 부터 칼슘을 유리시켰으며, 이는 TMB-8에 의하여 감소되었다. Arachidonic acid에 의한 세포내 유리 칼슘 농도의 상승은 EGTA와 CCCP에 의하여 억제되었고 TMB-8에 의하여 약간 억제되었다. Arachidonic acid와 verapamil 또는 arachidonic acid와 dibucaine의 동시 첨가에 의하여 상승된 세포내 유리 칼슘 농도의 양은 arachidonic acid 단독에 의한 것보다 현저하였다. 이상의 결과로 부터 다양한 생화학적 변화가 arachidonic acid에 의하여 활성화된 중성호성 백혈구의 기능 표현에 관여할 것으로 시사된다. Arachidonic acid는 세포내 칼슘 저장고로부터 칼슘유리를 자극하여 세포내 유리 칼슘 농도를 상승시킬 것으로 추정된다. 중성호성 백혈구의 활성화증에 칼슘 유입과 유출은 동시에 이루어질 것으로 추정된다.

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가토 신동맥 평활근에서 Barium의 수축작용 (Contractile Action of Barium in the Rabbit Renal Artery)

  • 전병화;김상섭;김세훈;장석종
    • The Korean Journal of Physiology
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    • 제24권2호
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    • pp.293-303
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    • 1990
  • The contractile action of barium $(Ba^{2+})$ was investigated in the arterial strip of rabbit renal artery. The helical strip of isolated renal artery was immersed in the Tris-buffered Tyrode's solution equilibrated with 100% $O_2$ at $37^{\circ}C$ and its isometric tension was measured. $Ba^{2+}-induced$ contraction of arterial strip was dose-dependent and its maximal tension corresponded to $92.1{\pm}4.5%$ of tension by $K^+(100\;mM)$. $Ba^{2+}-induced$ contraction did not show the tachyphylactic phenomenon in the normal Tyrode's solution. $Ba^{2+}$ induced the tonic contraction in the $Ca^{2+}-free$ tyrode's solution and that was increased by the extracellula addition of $Ca^{2+}$. During the repeated exposure of the same dose of $Ba^{2+}\;(10\;mM)$ in the $Ca^{2+}-free$ Tyrode's solution, $Ba^{2+}-induced$ contraction was progressively decreased. Even though the intracellular NE-and caffeine-sensitive $Ca^{2+}$ was depleted, $Ba^{2+}$ induced the tonic contraction. After the pretreatment of lanthnum or verapamil, $Ba^{2+}$ did not induce contraction. $Ba^{2+}-induced$contraction was suppressed by extracellular $K^+$ in the normal Tyrode's solution and that was dependent on $K^+$ concentration. Suppressive effect of $K^+\;(14\;mM)$ on the $Ba^{2+}-induced$ contraction was also dependent on the intracellular $Ca^{2+}$ concentration. From the above resuts, it is suggested that $Ba^{2+}$ activate indirectly the contractile process by promoting the mobilization of intracellular $Ca^{2+}$ and the influx of extracellular $Ca^{2+}$. It is also suggested that action of $Ba^{2+}$ on the $Ca^{2+}-activated$ $K^+$ channel can result in the depolarization of cell membrane in the rabbit renal artery.

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Influence of SKF81297 on Catecholamine Release from the Perfused Rat Adrenal Medulla

  • Choi, Deok-Ho;Cha, Jong-Hee;Lim, Dong-Yoon
    • The Korean Journal of Physiology and Pharmacology
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    • 제11권5호
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    • pp.197-206
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    • 2007
  • The aim of the present study was to investigate the effects of 6-chloro-7,8-dihydroxy-1-phenyl-2,3,4,5-tetrahydro-1H-3-benzazepine(SKF81297), a selective agonist of dopaminergic $D_1$ receptor, on the secretion of catecholamines(CA) evoked by cholinergic stimulation and membrane-depolarization in the isolated perfused rat adrenal gland, and also to elucidate the mechanism involved. SKF81297($10{\sim}100{\mu}M$) perfused into an adrenal vein for 60 min produced dose- and time-dependent inhibition of CA secretory responses evoked by ACh(5.32 mM), high $K^+$(56 mM), DMPP($100{\mu}M$) and McN-A-343($100{\mu}M$). Also, in adrenal glands loaded with SKF81297($30{\mu}M$), the CA secretory responses evoked by Bay-K-8644($10{\mu}M$), an activator of L-type $Ca^{2+}$ channels and cyclopiazonic acid($10{\mu}M$), an inhibitor of cytoplasmic $Ca^{2+}$-ATPase were also inhibited. However, in the presence of the dopamine $D_1$ receptor antagonist, (R)-(+)-8-chloro-2,3,4,5-tetrahydro-3-methyl-5-phenyl-1H-benzazepine-7-ol(SCH23390, $3{\mu}M$), which is a selective antagonist of dopaminergic $D_1$ receptor, the inhibitory responses of SKF81297($30{\mu}M$) on the CA secretion evoked by ACh, high $K^+$, DMPP, McN-A-343, Bay-K-8644, and cyclopiazonic acid were significantly reduced. Collectively, these experimental results suggest that SKF81297 inhibits the CA secretion from the rat adrenal medulla evoked by cholinergic stimulation(both nicotininc and muscarinic receptors) and membrane depolarization. This inhibitory of SKF81297 seems to be mediated by stimulation of dopaminergic $D_1$ receptors located on the rat adrenomedullary chromaffin cells, which are relevant to extra- and intracellular calcium mobilization. Therefore, it is thought that the presence of the dopaminergic $D_1$ receptors may be involved in regulation of CA release in the rat adrenal medulla.