• Title/Summary/Keyword: 혈압하강

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Depressor Responses of Rabbits to Atropine (Atropine의 가토혈압하강작용(家兎血壓下降作用)에 관하여)

  • Kim, Jeong-Ja
    • The Korean Journal of Pharmacology
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    • v.11 no.1 s.17
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    • pp.19-26
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    • 1975
  • 1. Atropine has recently been known to possess a sympathetic ganglion blocking effect. If atropine blocks the sympathetic ganglia innervating the blood vessels, the drug should cause depressor responses. The author attempted to verify this assumption in urethane-anesthetized rabbits having atropinesterase. 2. Ten and $50{\mu}g/kg$ of atropine produced little variation of the blood pressure; $250{\mu}g/kg$ slight depressor responses; $1,250{\mu}g/kg$ distinct ones. Under hexamethonium-infusion, 10 and $50{\mu}g/kg$ produced observable depressor responses; 250 and $1,250{\mu}g/kg$ produced more pronounced ones. 3. In experiments examining influence of phenoxybenzamine and bretylium on the atropine responses, the lowered blood pressure by these agents was raised by simultaneous infusion of angiotensin with hexamethonium. The depressor responses to atropine (10, 50 and $250{\mu}g/kg$) were slight after the administration of phenoxybenzamine and bretylium. 4. Propranolol did not affect the depressor responses to atropine. 5. In spinalized rabbits the lowered blood pressure was raised by the angiotensin-infusion. In these animals receiving the simultaneous hexamethonium-infusion, atropine (10, 50 and $250{\mu}g/kg$) produced little depressor responses. 6. From these results it is inferred that atropine produced the depressor responses by blocking the sympathetic ganglia innervating the blood vessels.

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Effect of Green Tea and Coffee Drinking after Meal on the Postprandial Fall of Blood Pressure in Elderly Person with Postprandial Hypotension (식후저혈압 노인에서 식후의 녹차와 커피 섭취가 혈압하강에 미치는 효과)

  • Son, Jung Tae
    • 한국노년학
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    • v.36 no.4
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    • pp.1141-1155
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    • 2016
  • The purpose of this study was to compare the preventive effects of green tea and coffee drinking on postprandial hypotension in the elderly. A total of 30 women ($81.2{\pm}6.8years$) who had experience of postprandial hypotension participated 3 interventions by random order allocation. During the experimental interventions, each participant had a cup of instant coffee (60mg caffeine), or green tea (15.8mg caffeine) after lunch, and control group had only their lunch. Systolic blood pressure (SBP), diastolic blood pressure (DBP), and heart rate (HR) were measured with 15 minute interval from 30 minutes before the meal to 120 minutes after the meal. The preprandial SBP and DBP were not significantly different between three groups. Postprandial SBP reduction measured at the 1 hour after meal was significantly smaller in coffee group compared to the control group, whereas green tea group was not ($-15.1{\pm}17.9mmHg$ vs $-13.4{\pm}22.4mmHg$ vs. $-4.1{\pm}18.6mmHg$ for control, green tea, and coffee group, respectively, p=.032). Likewise, DBP decrement at the 1 hour after meal was significantly smaller in coffee than control group ($-12.8{\pm}13.0mmHg$ vs $-6.9{\pm}16.6mmHg$ vs $-0.8{\pm}13.4mmHg$ respectively, p=.033). The HR response of the three groups were not significantly different throughout the intervention. Coffee drinking was potentially beneficial for preventing postprandial hypotension and resultant falling event.

Pressor Action of Intracerebroventricular Nicotine and Muscarine in the Rabbit (가토 측뇌실내 Nicotine 및 Muscarine의 혈압상승작용에 관하여)

  • Lee, Choong-Kyoung
    • The Korean Journal of Pharmacology
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    • v.27 no.1
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    • pp.21-31
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    • 1991
  • When administered intracerebroventricularly (icv), cholinergic nicotinic agents, nicotine and DMPP, as well as cholinergic muscarinic agents, muscarine and bethanechol, produced pressor responses in urethane-anesthetized vagotomized rabbits. The response patterns to nicotine and to DMPP were similar, while the bethanechol response resembled the muscarine pattern. The pressor response to nicotine and DMPP was markedly inhibited by icv mecamylamine but not by icv pirenzepine, whereas the response to muscarine and bethanechol was inhibited by icv pirenzepine but not by icv mecamylamine, suggesting that both nicotinic and muscarinic receptors in the brain are involved in the action. Intravenous pretreatments of animals with regitine, reserpine, enalapril, saralasin, both regitine and enalapril, both regitine and saralasin, SK&F-100273 did not prevent the pressor response to nicotine and muscarine. Iv pretreatments with both regitine and SK&F-100273 inhibited the nicotine response without affecting the muscarine response, whereas pretreatments with three agents, regitine, enalapril and SK&F-100273, inhibited the muscarine response. The nicotine-induced elevated blood pressure as well as the muscarine-induced were lowered by regitine but not by enalapril or by SK&F-100273. Enalapril was without effect on the nicotine hypertension in rabbits treated with regitine or both regitine and SK&F-100273, whereas SK&F-100273 lowered the nicotine hypertension in regitine-treated animals. Enalapril did not enhance the lowering effect of SK&F-100273 in regitine-treated ones, nor did it cause a fall of the muscarine hypertension induced in regitine-treated rabbits, but it did lower the blood pressure in animals treated with both regitine and SK&F-100273. Likewise, SK&F-100273 did not cause a fall of the muscarine hypertension induced in regitine-treated rabbits, but it did lower the blood pressure in animals treated with both regitine and enalapril. These data suggest that the nicotine-induced hypertensive state is related to at least two systems in the periphery-sympathetic and vasopressin, whereas in the muscarine-induced hypertensive state three systems in the periphery are involved, i.e., the sympathetic, vasopressin and angiotensin system. The hypotensive effect of regitine on basal arterial blood pressure levels of rabbits was not influenced by pretreatment with either of enalapril or SK&F-100273, but significantly potentiated by treating with both enalapril and SK&F-100273, suggesting participation of the sympathetic and the renin-angiotensin system as well as the vasopressin system in maintenance of arterial blood pressure.

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Change of Blood Pressure on Medical Examination (진단시의 혈압변화 - 재측정에 의한 초기혈압의 변화에 대해 -)

  • Park, Sung-Soo;Lee, Shin-Whi
    • The Journal of the Korean life insurance medical association
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    • v.17
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    • pp.69-75
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    • 1998
  • 삼성생명의 지방을 비롯한 총 7개 의무실에서 1997년 11월 1일부터 11월 30일까지 동일 진단시에 5-10분 이상의 시간 간격을 두고 혈압측정을 2회 실시한 757예에 대해 측정치의 변화를 검토하여 다음과 같은 결과를 얻었다. 1) 진단시의 혈압은 1회 측정치 보다 2회 측정치가 낮게 나타났다. 2) 혈압치의 저하율은 조건체 상당의 혈압치를 나타낸 고혈압치군과 고연령층에서 높게 나타났다. 3) 고혈압치군 436예중에서는 170예(39.0%)가 무조건체로까지 혈압이 하강하였다. 4) 중증의 고혈압으로 보험가입이 거절된 27예의 경우는 현저한 혈압의 하강은 없었다. 이상의 결과로 진단시에 일정간격의 시간차를 둔 혈압의 재측정이 계약확대의 관점과 혈압측정의 정확성 측면에서 진사실무에 적용하는 것이 필요하다.

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Postprandial Blood Pressure in Hypertensive and Normotensive Elderly and Young Adult Subjects (고혈압노인과 정상혈압노인 및 청년의 식후혈압 변화 비교)

  • Son, Jung Tae
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.12
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    • pp.5849-5859
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    • 2012
  • The aim of this study was to find out the impact of age and hypertensive status on postprandial hypotension(PPH). Twenty-six hypertensive elderly ($77.7{\pm}7.2$ years old), twenty-five normotensive elderly ($80.2{\pm}6.8$ years old) and twenty-six young adults ($20.0{\pm}1.5$ years old) took part in the study. The blood pressure (BP) and heart rates (HR) were measured every 15 minutes, from 30 minutes before a meal to 90 minute after a meal in sitting position, using an ambulatory blood pressure monitor. In the hypertensive group, postprandial reduction in systolic BP continued from 30minutes to 90minutes. The reductuion rate of systolic BP of hypertensive elderly group was significantly greater than other groups (p<.05). However, there were no significant differences in trend of HR change between the groups (p=.082). The incidence of PPH was significantly higher in the hypertensives than other groups (73.1% vs 24% vs 0%, respectively, p=.001). In conclusion, age and hypertensive status had a significant impact on PPH. Elderly persons require more intensive BP monitoring and nursing intervention.

뇌혈류 자가조절과 내인성 $K^{+}$ channel 개방물질에 대한 연구

  • 홍기완
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1993.04a
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    • pp.85-85
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    • 1993
  • 뇌동맥계는 일과성 저혈압에 반응하여 혈관확장이 야기되고, 혈압 상승시에는 혈관수축이 일어남으로서 뇌혈류가 일정하게 조절된다. 이러한 자가조절은 뇌손상 등의 병적 상태에서 야기된다. 연구의 목적은 \circled1 Cromakalim, CGRP(calcitonin-gene related peptide), 및 substance P에 의하여 뇌연막동맥의 직경이 어떻게 변동하는가를 관찰하고 \circled2 이들 신경성 peptide의 작용에 대하여 $K^{+}$ 통로 개방 봉쇄제인 glibenclamide의 전처치 효과를 검색하고 \circled3 Capsaicin 전처치가 뇌혈류 자가조절에 어떻게 영향을 미치는가를 검색하였다. 그 결과는 다음과 같다. 1. 뇌혈류 자가조절은 대퇴동맥을 통한 사혈에 의하여 혈압하강을 일으킬 때 뇌연막 동맥은 이완하였고, reservoir내의 혈액을 체내로 주입함로서 혈압반전을 일으켰을 때는 혈관 수축이 일어났다. 2. 연막동맥은 glibenclamide (1~3$\mu$M)의 관류에 의하여는 영향을 받아니하였다. 3. 혈압변동에 따른 혈관직경의 변화를 회기직선으로 분석하였다. Glibenclamide 1과 3$\mu$M의 전처치 관류에 의하여 혈압하강에 따른 혈관 이완경사도와 혈압반전에 따른 혈관수축 경사도가 대조군에 비하여 현저히 약화되었다. 4. Cromakalim (0.1-30$\mu$M)의 각 농도를 대뇌표면에 관류시 연막동맥의 기초직경은 약물농도에 의존하여 증가되었고, 이는 glibenclamide (1$\mu$M) 전처치 관류에 의하여 억제되었다. 5. CGRP (0.1~100 nM)와 substance P (0.1~10nM)도 용량에 의존하여 혈관이완을 일으켰다. 전자는 glibenclamide (1$\mu$M) 전처치 관류에 의하여 억제되었으나 후자는 영향을 받지 아니하였다. 6. Capsaicin(50 nmol: intracisternally) 주사에 의하여 뇌혈류자가조절의 변동이 초래되었다. 이상의 결과들을 종합하면 CGRP가 혈압변동에 의하여 반사적으로 유리되고, 이는 glibenclamide-sensitive $K^{+}$ 통로에 작용하는 것으로 시사된다.

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Cholinergic Mechanisms on Cardiovascular Regulation in the Ventrolateral Medulla of the Rat (흰쥐 복외측 연수에서 심혈관 조절에 대한 Choline성 기전)

  • Kim, Seong-Yun;Koh, Taek-Lip;Lee, Sang-Bok
    • The Korean Journal of Pharmacology
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    • v.23 no.2
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    • pp.77-85
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    • 1987
  • This study was carried out to determine the role of cholinoceptors in the ventrolateral medulla on central control of blood pressure (BP) and heart rate (HR). In rats anesthetized with urethane and paralyzed, microinjections of the neuroexcitatory amino acid L-glutamate (300 ng/site) were performed to functionally identity the vasopressor area (VLPA) and the vasodepressor area (VLDA) in the ventrolateral medulla oblongata. 1. The bilateral microinjection of carbachol (300 ng/site) into the VLPA produced significantly an increase in BP and HR which was not blocked by bilateral pretreatment of hexamethoium ($4\;{\mu}g/site$). 2. The bilateral microinjection of physostigmine (200 ng/site) and oxotremorine (300 ng/site) into the VLPA produced significantly an increase in BP respectively. 3. The bilateral microinjection of atropine ($4\;{\mu}g/site$) into the VLPA produced significantly a decrease in BP and HR. 4. The bilateral micro injection of acetylcholine (500 ng/site) and dimethylphenylpiperazinium (500 ng/site) into the VLDA produced significantly a decrease in BP and HR respectively. 5. The depressor and bradycardiac responses elicited by the bilateral microinjection of acetylcholine (500 ng/site) into the VLDA were blocked by bilateral pretreatment of hexamethonium ($4\;{\mu}g/site$). The results suggest that the activation of cholinoceptors in VLPA produce hypertensive and tachycardiac responses which may be mediated by muscarinic receptors, and the activation of cholinoceptors in VLDA produce hypotensive and bradycardiac responses which may be mediated by nicotinic receptors.

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Studies on the Changes in Heart Rate and Blood Pressure Induced by Central Norepinephrine and Clonidine (뇌내(腦內) Norepinephrine, Clonldine에 의한 심박(心搏) 및 혈압변동(血壓變動)에 관한 연구(硏究))

  • Lee, Jung-Chung
    • The Korean Journal of Pharmacology
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    • v.14 no.1_2
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    • pp.13-23
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    • 1978
  • 1) It was attempted to clarify the sites of action of central (either intraventricular or intracisternal) norepinephrine(NE) and clonidine to cause cardiac slowing and hypotension in urethane-anesthetized rabbits. 2) NE produced cardiac slowing but indistinct effect on blood pressure. Clonidine produced cardiac slowing and hypotension. 3) Intraventricular and intracisternal administration of NE, clonidine, phenylephrine and isoproterenol did not make difference in their effects, except that the onset of cardiac slowing by intracisternal NE was more rapid than intraventricular NE. 4) Upon repeated administration of NE at the intervals of about two hours, blood pressure responses changed to the pressor ones, the cardiac slowing unchanged. By this procedure the cardiac slowing as well as the hypotension by clonidine were gradually diminished. 5) Clonidine, when given during the NE effects were persisting, did not produce the lowering of blood pressure and further decrease of heart rate. NE, when given during the clonidine effects were persisting, produced marked elevation of blood pressure but did not produce further decrease of heart rate. 6) After intraventricular administration of regitine or desmethylimipramine, the cardiac slowing effect of NE and the clonidine effects were not observed, whereas NE produced marked elevation of blood pressure. 7) Reserpinized rabbits showed pressor and cardiac accelerating responses to NE; slight pressor, and little cardiac responses to clonidine. 8) It seems that the cardiac slowing by both clonidine and NE as well as the hypotetsion by clonidine are mediated by the presynaptic ${\alpha}$-adrenoceptor in the brain but the pressor responses to NE and clonidine are mediated by other site(s) than the presynaptic ones.

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Influence of Blockade of Sympathetic Nervous System, Renin-Angiotensin System, and Vasopressin System on Basal Blood Pressure Levels and on Pressor Response to Norepinephrine, Angiotensin II, and Vasopressin (교감신경계, Renin-Angiotensin계, Vasopressin계의 차단이 혈압 및 Norepinephrine, Angiotensin II 및 Vasopressin의 승압효과에 미치는 영향)

  • Chung, Haeng-Nam
    • The Korean Journal of Pharmacology
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    • v.28 no.1
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    • pp.61-74
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    • 1992
  • Influence of the blockade of the three major pressor systems-sympathetic nervous system (SNS), renin-angiotensin system (RAS) and vasopressin system-on the pressor responsiveness to norepinephrine (NE), angiotensin II (AII), and vasopressin (VP) as well as on basal blood pressure (BP) levels was investigated in urethane-anesthetized rabbits. To block the SNS and RAS, chlorisondamine (CS) and pirenzepine (PZ), sympathetic ganglionic blockers, and enalapril (ENAL), an inhibitor of angiotensin converting enzyme, respectively were used. And for suppressing the VP system bremazocine (BREM), a kappa opiate receptor agonist shown to suppress plasma levels of VP, was employed. Each of CS (0.4 mg/kg), ENAL (2 mg/kg), and BREM (0.25 mg/kg) produced almost same levels of steady hypotensive state. The hypotensive effect of BREM was significantly attenuated by desmopressin, a synthetic VP-like analogue, suggesting the hypotension being at least in part due to suppression of plasma levels of VP. CS, ENAL and BREM elicited further fall of the BP which had been lowered by ENAL or BREM, CS or BREM, and CS or ENAL, respectively. The hypotension produced by both CS and PZ together with either of ENAL or BREM was more marked than that produced by the three drugs other than CS. CS potentiated the pressor response not only to NE but to AII and VP. The pressor effect of AII was increased by ENAL and BREM, too. The pressor response to VP was also enhanced by BREM. Blockade of ${\alpha}-adrenergic$ receptors with phentolamine or phenoxybenzamine potentiated the pressor response to AII and that to VP. The results on basal BP levels indicate that the three major pressor systems are all participating in control of BP, but SNS has the greatest potential for supporting BP. The finding that blockade of one of the pressor systems induced enhanced pressor responsiveness to the pressor hormone of that particular system as well as to the pressor hormone(s) of the other systems(s) provides evidence for important interactions among the three major pressor systems.

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Effects of Yohimbine on the Pressor Response to Raised Intracranial Pressure in Rabbits (Yohimbine이 가토두개내압상승(家兎頭蓋內壓上昇)에 따른 혈압상승(血壓上昇)에 미치는 영향(影響))

  • Kim, Jong-Moon
    • The Korean Journal of Pharmacology
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    • v.19 no.1
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    • pp.123-131
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    • 1983
  • 1) To delineate the role of central ${\alpha}_2-adrenoceptors$ in the pressor response to raised intracranial pressure(ICP), the influence of yohimbine, an ${alpha}_2-adrenoceptor$ antagonist, on the pressor response to raised ICP was investigated in urethane-anesthetized rabbits. 2) The ICP was raised by infusing saline into a balloon placed in the epidural space. The rise of ICP was slow in the beginning of the infusion but it became sharp as the infusion proceeded. 3) In response to raised ICP, blood pressure(BP) tended to decrease slightly in the beginning and then increased sharply. BP, however, fell abruptly and markedly if ICP was raised further. The maximal pressor response to raised ICP was the increase of $49{\pm}2.4%$ of the original $BP(mean{\pm}SE\;in\;32\;experiments)$, and at this point the volume of saline infused into the balloon was $1.22{\pm}0.15\;ml$, and the ICP $165{\pm}6.4\;mmHg$. 4) Intraventricular yohimbine $(50{\mu}g)$ by itself did not affect BP. After the administration of this dose of yohimbine the increase of both ICP and BP was observed after the infusion of much smaller volume of saline than in the control animals, i.e., after the infusion of $0.83{\pm}0.02\;ml$ of saline the maximal increase of preesor response$(57{\pm}4.5%\;in\;6\;experiments)$ appeared and at this state the ICP was $164{\pm}9.6\;mmHg$. 5) Intraventricular $clonidine(30{\mu}g)$ markedly decreased BP by itself, and in the clonidine-treated rabbits the increase of ICP induced by the infusion was much less than in the control group and the pressor response to raised ICP was hardly seen. 6) The hypotensive effect of intraventricular clonidine was reversed by a susequent intraventricular $yohimbine(500\;{\mu}g)$. At this state the pressor response to raised ICP appeared as in the control animals. 7) These results show that the pressor response to raised ICP was facilitated when ${\alpha}_2-adrenoceptors$ in the rabbit brain was blocked by yohimbine and that yohimbine antagonized the inhibitory effect of clonidine on the pressor response to raised ICP.

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