• 제목/요약/키워드: Muscle Contraction

검색결과 1,234건 처리시간 0.032초

적출된 토끼와 자라심장에서의 $Ca^{++}$ Pool ($Ca^{++}$ Polls in Isolated Rabbit and Turtle Heart)

  • 김인교;이중우;강두희
    • The Korean Journal of Physiology
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    • 제9권1호
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    • pp.13-22
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    • 1975
  • From the study of movements of $Ca^{++}$ in frog cardiac muscle, Niedergerke (1963) postulated that $Ca^{++}$ necessary for the cardiac contraction is stored in a specific pool. Langer et al (1967) and DeCaro (1967) also found a close relationship between the change of $Ca^{++}$ flux kinetics and the change of contractile force. According to the studies of several investigators, Ca II (Bailey and Dressel 1968) or phase I and II (Langer 1965, Langer et al 1967, 1971) in the $Ca^{++}$ washout curve was associated with cardiac contractility. This investigation was aimed to elucidate the anatomical region of the contractile active $Ca^{++}$ pool. At the same time, it was assumed in this study that $Ca^{++}$ in the sarcoplasmic reticulumn represents one of the major intracellular $Ca^{++}$ pool and cardiac contractility was also dependent on the intracellular $Ca^{++}$ concentration. Consequently, this experiment was performed at different temperatures to activate to activate inhibit the deactivating process of activated $Ca^{++}$ in the intracellular space to see if changes in the contractility decay curve existed at different temperatures. The isolated hearts of rabbits and turtles (Amyda maackii) were attached to the perfusion apparatus according to the method employed by Bailey and Dressel (1968). The isolated hearts were initally perfused with a full Ringer solution containing 2 mg/ml of inulin for 1 hr, and then $Ca^{++}$ and inulin-free Ringer solution was perfused while the isometric tension was recorded and a serial sample of perfusion fluid dripping from the cardiac apex was collected for 10 sec throughout experimental period. The above procedure was performed at $23^{\circ}C$, $30^{\circ}C$ and $38^{\circ}C$ on the rabbit heart and $10{\sim}13^{\circ}C$, $10^{\circ}C$, $25^{\circ}C$, $30^{\circ}C$ and $35^{\circ}C$ on the turtle heart. After determination of $Ca^{++}$ and inulin concentration of the samples, the $Ca^{++}$, inulin washout curve and the contractile tensin decay curve were analysed according to the method of Riggs (1963). The results were summarized as follows; 1. In the rabbit heart, there are 2 inulin compartments, 3 $Ca^{++}$ compartments and sing1e exponential decay of contractile tension. In the turtle heart, there are $1{\sim}2$ inulin compartments, $1{\sim}2$ $Ca^{++}$ compartments and $1{\sim}2$ phases of contractile tension decay. The fact that the inulin space was divided into 3 compartments in the washout curve in these hearts indicates the presence of heterogeneity in cardiac perfusion, i.e., overfused and underperfused area. 2. Ca I a9d Ca II in these hearts were found to have $Ca^{++}$ in the ECF compartments because their half times in the washout curves were far smaller than those of the inulin washout curves in the rabbit heart and similar to those of the inulin washout curves in the turtle heart. Ca III in the rabbit heart may have originated from the intracellular $Ca^{++}$ store. But no Ca III in the turtle heart was found. This may be due to the fact that the iutracellular $Ca^{++}$ pool in the turtle heart was too small to detect using this experimental procedure since sarcoplasmic reticulumn in the turtle heart is poorly developed. 3. In the rabbit heart, there were no chages in the half time of Ca I, Ca II, inulin I and inulin II at different temperatures, but the half time of Ca III was significantly prolonged at lower temperatures, and the half time of the contractile tension decay tended to be prolonged at lower temperatures but this was not significant. In the turtle heart, there were no changes in the half time of Ca I, Ca II, inulin 1, inulin II and phase I of the contractile tension decay at different temperatures, but the half time of phase II of the contractile tension decay was significantly prolonged at lower temperatures. This finding indicates that intracellu!ar $Ca^{++}$ in these hearts was also responsible particulary for maintaining the cardiac contractility at the lower temperatures. 4. The half times of contractile tension decay were shorter than those of Ca II in the $Ca^{++}$ washout curves in both animal hearts. According to the above results it was shown that $Ca^{++}$ in ECF is primarily and $Ca^{++}$ in the intracellular space is partially associated with the cardic contractility.

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결장뉴 전기활동도에 대한 Ouabain과 Vanadate의 작용 (Effects of Ouabain and Vanadate on the Spontaneous Contractions and Electrical Activity in Guinea-pig Taenia Coli)

  • 박종규;김기환;서인석
    • The Korean Journal of Physiology
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    • 제22권2호
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    • pp.189-206
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    • 1988
  • The effects of ouabain on the contractile and electrical activities were investigated in the isolated preparations of guinea-pig taenia coli, and compared with those of vanadate. Spontaneous contractions were recorded with force transducer, and electrical activites were measured by use of suction electrode, or single sucrose-gap technique. The contractions were induced by the electrical stimulation for 5 seconds every 1 minute with alternating current (60 Hz, 3.0 V/cm) through the platinum electrodes located in parallel with the long axis of the preparation. All experiments were performed in tris-buffered Tyrode solution which was aerated with $100%{\;}O_2$ and kept at $35^{\circ}C$. The results obtained were as follows: 1) Responses of spontaneous contractions to ouabain were concentration-dependent; $10^{-7}M$ ouabain caused a rise of basal tone. Above the concentration of $10^{-6}M$ ouabain, an initial increase followed by a decrease in tension was observed. 2) A continuous spike discharge was induced by the administration of $10^{-7}M$ ouabain. Above $10^{-6}M$ ouabain, a transient initial increase followed by a decrease in spike frequency and amplitude was produced, and finally membrane potential was sustained at a certain level without a spike discharge. 3) The characteristic response to $10^{-7}M$ ouabain was not blocked by the pretreatment with $10^{-7}M$ atropine. 4) The electrically induced contractions were completely suppressed at the concentration of $2{\times}10^{-7}M$ ouabain. These contractions were blocked more rapidly in paralled with the increase in ouabain concentration. 5) Effects of vanadate on the spontaneous activities were quite different from those of ouabain; $10^{-6}M$ vanadate increased the amplitude of contractions and $10^{-5}M$ vanadate increased slightly both amplitude and frequency of spontaneous contractions. $10^{-4}M$ vanadate showed irregular phasic contractions superimposed on the increased basal tone. 6) $10^{-5}M$ vanadate depolarized the membrane potential and shortened the interval between the bursts of spike discharge, whereas $10^{-4}M$ vanadate induced continuous spike discharge with membrane depolarization. 7) Vanadate caused a characteristic inhibitory response to the contractions induced by electrical stimulation; An initial rapid inhibition of tension development and then gradual recovery to a certain level. From the above results, the following conclusions could be made: 1) The rise of basal tone at $10^{-7}M$ ouabain is due to continuous spike discharge without a silent period. The continuous spike discharge is likely to be associated with a slight membrane depolarization caused by the blockage of Na pump. 2) The biphasic response induced by above $10^{-6}M$ ouabain seems to occur by the different mechanisms. The initial increase in tension is associated with depolarization along with an increase in spike frquency, whereas the subsequent relaxation occurs through a non-electrical mechanism. 3) The characteristic response to $10^{-7}M$ ouabain is resulted not from the action on intrinsic nerve terminal, but from its direct action on the membrane of smooth muscle cells. 4) The phasic contractions superimposed on the increased basal tone at the concentration of $10^{-4}M$ vanadate is resulted from the continuous spike discharge with membrane depolarization, of which mechanism remains unknown. 5) The inhibitory action of ouabain on the electrically induced contractions suggests that the increasein intracellular Na in some way inhibits the electrically induced $Ca^{2+}$ influx. The mechanism of vanadate action on the induced contractions remains unknown.

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배뇨장애(排尿障碍)에 대한 침구치료(鍼灸治療)의 연구동향(硏究動向) (Recent study of Acupuncture in Treatment of Urianry Disturbance)

  • 김경태;고영진;김용석;김창환
    • Journal of Acupuncture Research
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    • 제22권3호
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    • pp.123-135
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    • 2005
  • 국내외 학술지중 배뇨장애에 대한 침치료의 연구 동향을 문헌고찰 연구, 생리적 기전 연구, 임상효과 연구로 나누어 분석한 결과 다음과 같은 결과를 얻었다. 1. 23 편의 논문 중 review study가 3편, experimental study 6편, clinical study가 14 편이었다. 다양한 Journal에 발표되고 있었는데, review study는 모두 국내 학술지에 게재 된 논문이었고, 2000년 이후로 점차 연구의 양과 관심이 증대되고 있는 추세였다. 2. 배뇨장애는 하부요로증상의 다양한 증상을 포괄하는 것으로 한의학적인 측면에서는 융폐, 소편부금(小便不禁), 빈요(頻尿), 급박요(急迫尿), 요실금(尿失禁), 림증(淋證), 야뇨(夜尿), 난요(難尿), 점적요(點滴尿), 지연요(遲延尿)등에 해당하는데, 그 대부분의 유발 원인은 신기부족(腎氣不足)등의 하초허한(下焦虛寒)에 기인하는 것으로 판단되며, 간기울결(肝氣鬱結)등의 정서적 자극과 습열(濕熱) 및 어혈(瘀血)등의 원인에 의해서도 발생할 수 있다. 3. 배뇨장애에 대한 침구치료의 생리적 기전을 대략적으로 요약한다면 침자극에 의해 부교감 신경, 대뇌의 수면-각성 체계, 뇌교 및 척추 배뇨 센타, 음부신경/골반신경을 통해 방광에 영향을 주어 방광용량의 확장 또는 배뇨 수축의 억제작용을 하는 한편, 척추 환상 회로 나 신경연접부의 지속성 흥분을 통하여 요도주의 근육에 영향을 주는 것으로 생각되어 진다. 4. 배뇨장애에 대한 침구치료의 임상효과를 요약 한다면, 융폐, 소편부통(小便不通)에 속하는 신경인성 방광(Neurogenic Bladder), 소편부금(小便不禁), 빈요(頻尿), 급박뇨(急迫尿)에 해당하는 요실금(尿失禁)(Incontinence), 림증(淋證)에 해당하는 방광염(Cycitis), 액요(液尿) (Nocturnal Enuresis), 잡요(雜尿), 점적요(點滴尿), 지연요(遲延尿)에 해당하는 전립선염/골반통 증후군 (Prostatitis/Pelvic Pain Syndrom)등의 하부 요로증상에 침구치료는 유의미한 효과가 있다. 이상으로 국내 및 해외 연구는 최근들어 더욱 활발히 연구되고 있는데, 특히 해외연구는 배뇨 장애의 침구치료의 생리적 기전 분야에서 다양 하게 시도되고 있었다. 향후 고령화 사회로 진입 하는등 사회여건상 이와같은 다양한 배뇨장애 환자의 증가는 물론 치료욕구의 증대가 예상되는 바 이러한 생리적 치료기전의 연구 및 다양한 질환에 대한 임상연구를 시도함으로써 표준적인 치료기술의 개발이 필요할 것으로 사료된다.

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흡연자의 기도 과민반응에 대한 비타민 C의 효과 (Effects of Vitamin C on Airway Hyperresponsiveness in Heavy Smokers)

  • 이상갑;김기량;임정욱;김흥업;이상수;정이영;김휘종;이종덕;황영실
    • Tuberculosis and Respiratory Diseases
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    • 제45권4호
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    • pp.723-735
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    • 1998
  • 배 경: 비타민 C가 동물실험에서 기도 과민성을 감소시키는 역할을 하는 것으로 보고되고 있는데 이는 비타민 C가 히스타민 분해를 촉진하고, cyclooxygenase 통로를 $PGF_{2\alpha}$에서 $PGE_2$로 이동시키며 평활근 수축을 감소시키고, 산화물의 환원제로 작용하는 사실에 기인한다고 한다. 또한 비흡연자에 비하여 흡연자에서 혈중 비타민 C 농도가 감소하는데 이는 비타민 C가 흡연시 생성되는 산화물의 환원제로 소모되며, 니코틴에 의해 분비되는 catecholamine, serotonin의 합성에 관여하며, 결핍된 식이로 인한 것으로 알려져있다. 연구자들은 기도 과민성이 있는 흡연자와 대조군인 비흡연지를 대상으로 비타민 C의 기도 과민반응에 대한 효과를 알아보고 비타민 C의 기도 과민성에 대한 역할을 알아보고자 본 연구를 시행하였다. 방 법: 17명의 흡연자와 8명의 비흡연자에서 기도 과민반응에 대한 비타민 C의 급성 효과를 알아보기 위하여 혈중 비타민 C 농도 측정을 위한 채혈과 폐기능 검사와 메타콜린 기관지 유발검사를 시행하고 비타민 C 3 g 투여 후 1시간 뒤에 상기 검사들을 다시 시행하였고 1주 후 기도 과민반응에 대한 비타민 C의 만성 효과를 알아보기 위하여 17명의 흡연자에서 1주 동안 매일 비타민 1 g 투여 후 혈중 비타민 C 농도 측정을 위한 채혈과 폐기능 검사와 메타콜린 기관지 유발검사를 시행하였다. 또한 기도 과민성에 대한 비타민 C 의 역할을 알아보기 위하여 l주 후 메타콜린에 반응하는 15명중 12명의 흡연자에서 비타민 C 3 g과 cyclooxygenase 억제제인 indomethacin 100 mg을 동시 투여 후 폐기능 검사와 메타콜린 기관지 유발검사를, 1 주 후 메타콜린에 반응하는 12명의 흡연자에서 indomethacin 100 mg만 단독 투여 후 폐기능 검사와 메타콜린 기관지 유발 검사를 시행하였다. 결 과: 전혈 비타민 C 농도를 측정한 결과 흡연자, 비흡연자 각각 $1.17{\pm}:0.22$ mg/dL, $1.14{\pm}:0.19$ mg/dL로 유의한 차이는 없었다(p>0.05). 흡연자 17명중 15명(88.2%)이 메타콜린 기관지 유발검사 양성이었고 이중 10명은 $PC_{20}FEV_1$이 8mg/mL 이하였고, 비흡연자군 8명중 7명(87.5%)이 기관지 유발검사 음성이었다. 기관지 유발집사 양성인 15명의 흡연자중 13명에서 비타민 C 3 g 복용 1 시간 후 기관지 반응이 유의하게 감소하였고 l일 비타민 C 1 g 씩 1 주간 복용 후에도 기관지 반응의 감소가 계속 유지되었다. 흡연자의 $PC_{20}FEV_1$과 전혈 비타민 C 농도 사이에는 유의한 상관관계는 없었다. 비타민 C 3 g 투여 후 흡연자에서 관찰할 수 있었던 기관지 반응의 유의한 감소가 indomethacin 100 mg 첨가 후 소실되었다(p>0.05). 결 론: 이상의 결과로 볼 때 혈중 비타민 C 농도는 흡연자군, 비흡연자군에 있어서 유의한 차이가 없지만 흡연자군은 비흡연자군에 비하여 기도 과민성이 유의하게 증가되어 있었으며, 비타민 C 투여에 의해 증가된 기도 과민성이 유의하게 감소하고 indomethacin 첨가 후 비타민 C의 이러한 효과가 소실됨으로 보아 비타민 C가 arachidonic acid 대사작용에 관여함으로 기도 과민성이 감소되리라 사료된다.

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