• Title/Summary/Keyword: $N_2:O_2$ Mixture Gas

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동방결절 활동전압에 대한 아데노신 효과 (Effects of Adenosine on the Action Potentials of Rabbit SA Nodal Cells)

  • 김기환;호원경
    • The Korean Journal of Physiology
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    • 제18권1호
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    • pp.19-35
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    • 1984
  • Since the first report of Drury and $Szent-Gy{\ddot{o}}rgyi$ in 1929, the inhibitory influences of adenosine on the heart have repeatedly been described by many investigators. These studies have shown that adenosine and adenine nucleotides have overall depressant effects, similar to those of acetylcholine. Heart beats become slow and weak. It is also well known that adenosine is a potent endogenous coronary vasodilator. Many investigations on the working mechanisms of adenosine have been focused mainly on the effects of the coronary blood flow. However, the cellular mechanisms underlying the inhibitory action of adenosine on sinus node are not well understood yet. Thus, this study was undertaken to examine the behavior of rabbit SA node under influence of adenosine. In these series of experiments three kinds of preparations were used: whole atrial pair, left atrial strip, and isolated SA node preparations. The electrical activity of SA node was recorded with conventional glass microelectrodes 30 to 50 $M{\Omega}$. The preparations were superfused with bicarbonate-buffered Tyrode solution of pH 7.35 and aerated with a gas mixture of $3%\;CO_2-97%\;O_2$ at $35^{\circ}C$. In whole atrial pair, adenosine suppressed sinoatrial rhythm in a dose-dependent manner. Effect of adenosine on atrial rate appeared at the concentration of $10^{-5}M$ and was enhanced in parallel with the increase in adenosine concentration. Inhibitory action of adenosine on pacemaker activity was more prominent in the preparation pretreated with norepinephrine, which can steepen the slope of pacemaker potential by increasing permeability of $Ca^{+2}$. Calcium ions in perfusate slowly produced a marked change in sinoatrial rhythm. Elevation of the calcium concentration from 0.3 to 8 mM increased the atrial rate from 132 to 174 beats/min, but over 10 mM $Ca^{+2}$ decreased. The inhibitory effect of adenosine on sinoatrial rhythm developed very rapidly. Atrial rate was recovered promptly from the adenosine-induced suppression by the addition of norepinephrine, but extra $Ca^{+2}$ was less suitable to restore the suppression of atrial rate. Adenosine suppressed also atrial contractility in the same dosage range that restricted pacemaker activity, even in the reserpinized preparation. In isolated SA node preparation, spontaneous firing rate of SA node at $35^{\circ}C$(mean{\pm}SEM, n=16) was $154{\pm}3.3\;beats/min. The parameters of action potentials were: maximum diastolic potential(MDP), $-73{\pm}1.7\;mV: overshoot(OS), $9{\pm}1.4\;mV: slope of pacemaker potential(SPP), $94{\pm}3.0\;mV/sec. Adenosine suppressed the firing rate of SA node in a dose-dependent manner. This inhibitory effect appeared at the concentration of $10^{-6}M$ and was in parallel with the increase in adenosine concentration. Changes in action potential by adenosine were dose-dependent increase of MDP and decrease of SPP until $10^{-4}M$. Above this concentration, however, the amplitude of action potential decreased markedly due to the simultaneous decrease of both MDP and OS. All these effects of adenosine were not affected by pretreatment of atropine and propranolol. Lowering extra $Ca^{2+}$ irom 2 mM to 0.3 mM resulted in a marked decrease of OS and SPP, but almost no change of MDP. However, increase of perfusate $Ca^{2+}$ from 2 mM to 6 or 8 mM produced a prominent decrease of MDP and a slight increase of OS and SPP. Dipyridamole(DPM), which is known to block the adenosine transport across the cell membrane, definately potentiated the action of adenosine. The results of this experiment suggest that adenosine suppressed pacemaker activity and atrial contractility simultaneously and directly, by decreasing $Ca^{2+}-permeability$ of nodal and atrial cell membranes.

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생약복합제의 Streptozotocin 유발 당뇨 및 대사성증후군 모델 동물에서의 혈당에 미치는 효과 (Effects of Herbal Complex on Blood Glucose in Streptozotocin-induced Diabetic Rats and in Mice Model of Metabolic Syndrome)

  • 박한석;이연실;최세진;김진규;이윤열;김현근;구삼회;구대희;기승일;임순성
    • 생약학회지
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    • 제40권3호
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    • pp.196-204
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    • 2009
  • 당뇨병 치료 및 예방에 전통적으로 사용되어온 생약 및 식품 소재로 구성된 생약복합제인 백강잠, 산약, 쥐눈이콩, 청국장가루의 복합물을 대상으로 실험관 및 동물실험을 통하여 혈당강하 효과를 확인하였다. 생약복합제 $H_2O$추출물은 당흡수에 관여하는 $\alpha$-glucosidase효소를 비교약물인 acarbose ($IC_{50}$=0.39 mg/mL)과 비교하여 1/3배 정도의 활성을 보였으며 ($IC_{50}$=1.24 mg/mL), ethanol추출물은 인슐린 내성에 관여하는 $PTP1{\beta}$ 효소작용을 ($IC_{50}=498.46{\mu}g$/mL) 효과적으로 억제하였다. $PTP1{\beta}$ 효소를 억제하는 n-hexane 분획을 대상으로 하여 GC-MS로 성분 분석한 결과 지방산유도체인 것으로 나타났다. 고지방식이와 저용량 STZ (35 mg/kg)으로 유발시킨 당뇨모델에서 OGTT 실험결과 비교약물인 rosiglitazone(당부하 30분 후 평균 60 mg/dL 의 감소)과 생약복합제 투여군의 경구 당부하능 개선효과를(당부하 30분 후 평균 30 mg/dL의 감소) 확인하였다. 또한, 대사성 증후군 모델에서는 체중증가의 감소 효과와 공복혈당의 증가를 현저히 억제함을 확인하였으며, OGTT에서도 후반부에 현저한 경구당부하능 개선 효과를 관찰 할 수 있었다. 이 결과를 바탕으로 산약, 백강잠, 쥐눈이콩, 청국장으로 조제한 생약복합제는 당뇨 및 대사성 증후군의 혈당을 조절하는 데 도움을 줄 수 있을 것이라 판단된다.