• Title/Summary/Keyword: Cholecystokinin-octapeptide

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Therapeutic Effects of Electroacupuncture on Cholecystokinin-octapeptide-induced Acute Pancreatitis Models (급성 췌장염모델에서 전침의 치료효과)

  • Cheong, Sang-Su;Yoon, Ji-Won;Jeong, Kyoung-Ah;Lee, Jong-Deok;Bai, Sun-Joon;Cho, Zang-Hee;Sung, Kang-Kyung
    • Journal of Acupuncture Research
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    • v.22 no.5
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    • pp.57-66
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    • 2005
  • Objectives : We examined the effects of electroacupuncture on the cholecystokinin-octapeptide-induced acute pancreatitis in rats. Methods : Rats were administered with $75{\mu}g/kg$ cholecystokinin-octapeptide subcutaneously three times (1, 3 and 5h after shaving) for 5days. Three days after finishing cholecystokinin-octapeptide administration, high frequency electroacupuncture (100Hz) and low frequency electroacupuncture (2Hz) were applied to acupoint equivalent to ST36 (Zusanli) for 7 days. The author determined the pancreatic weight/body weight ratio, the levels of pancreatic heat shock protein HSP60 and HSP72. The author also assay the secretion of ${\beta}-amylase$, lipase and pro-inflammatory cytokines in serum. Repeated cholecysokinin-octapeptide treatment resulted in the typical laboratory and morphological changes of experimentally induced pancreatitis. Results : Eelectroacupuncture significantly decreased the pancreatic weight/body weight ratio in cholecystokinin-octapeptide-induced acute pancreatitis, increased the pancreatic levels of HSP60 and HSP72, and decreased ${\beta}-amylase$ and lipase levels in cholecystokinin-octapeptide-induced acute pancreatitis. Additionally, the secretion of $Interleukin-1{\beta}$ and tumor necrosis $factor-{\alpha}$ was decreased in the animals treated with electroacupuncture. Conclusion : These results suggest that electroacupuncture may have protective effects against cholecystokinin-octapeptide-induced acute pancreatitis.

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Studies on the Enzyme-releasing Mechanism of Aminoglycosides from Pancreas (Aminoglycosides의 취효소 분비항진기전에 관한 연구)

  • Shim, Ho-Shik;Kim, Kyung-Hwan;Hong, Sa-Suk
    • The Korean Journal of Pharmacology
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    • v.19 no.1
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    • pp.71-76
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    • 1983
  • Aminoglycoside antibiotics are reported to enhance the amylase release from isolated slices of pancreas in vitro and the mode of action of aminoglycosides on amylase release is considered different from those of acetylcholine or cholecystokinin(CCK), i.e., electronmicroscopically intact zymogen granules are appeared in the lumen of pancreatic acini by treatment of aminoglycosides. It is known that atropine blocks the secretagogue effect of acetylcholine, and phenoxybenzamine is reported to block the effects of CCK or its analogue caerulein. Present study was undertaken to investigate the mode of action of aminoglycosides on the amylase release using atropine, phenoxybenzamine and propranolol as a membrane stabilizing agent in slices of chicken pancreas. The results are summarized as follows : 1) Streptomycin and kanamycin increased the amylase release significantly from slices of chicken pancreas. 2) The effect of streptomycin was inhibited by atropine but not by phenoxybenzamine or propranolol. 3) The amylase release by acetylcholine was blocked by atropine tut the effect of cholecystokinin octapeptide(CCK-8) was not influenced by atropine, phenoxybenzamine or propranolol. 4) Pretreatment of streptomycin enhanced the secretagogue effect of acetylcholine or CCK-8. From these results it is suggested that amylase releasing effects of aminoglycosides are mediated in part by cholinergic stimulation and in part by membrane alteration and these effects are enhanced by acetylcholine or cholecystokinin.

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NO/cGMP Pathway is Involved in Exocrine Secretion from Rat Pancreatic Acinar Cells

  • Ahn, Seong-Hoon;Seo, Dong-Wan;Ko, Young-Kwon;Sung, Kae-Suk;Bae, Gyu-Un;Yoon, Jong-Woo;Hong, Sung-Youl;Han, Jeung-Whan;Lee, Hyang-Woo
    • Archives of Pharmacal Research
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    • v.21 no.6
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    • pp.657-663
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    • 1998
  • The enzyme responsible for the synthesis of nitric oxide (NO) from L-arginine in mammalian tissues is known as nitric oxide synthase (NOS) (EC.1.14.13.39). In the present study, the role of NO in the regulation of exocrine secretion was investigated in rat pancreatic acinar cells. Treatment of rat pancreatic acinar cells with cholecystokinin-octapeptide (CCK-OP) resulted in an increase in the arginine conversion to citrulline, the amount of $NO_X$, the release of amylase, and the level of CGMP. Especially, CCK-OP-stimulated increase of arginine to citrulline transformation, the amount of $NO_X$, and CGMP level were completely counteracted by the inhibitor of NOS, NG-monomethyl-L-arginine (MMA), by contrast, that of amylase release was partially reduced. Furthermore, MMA-induced decrease of NOS activity and amylase release showed dose-dependent pattern. The data on the time course of CCK-OP-induced citrulline formation and CGMP rise indicate that NOS and guanylate cyclase were activated by treatment of CCK-OP. However, the mechanism of agonist-stimulated guanylate cyclase activation in acinar cells remains unknown. Therefore, activation of NOS is one of the early events in receptor-mediated cascade of reactions in pancreatic acinar cells and NO, not completely, but partially mediate pancreatic enzyme exocrine secretion.

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DAMGO, a ${\mu}-Opioid$ Agonist and Cholecystokinin-Octapeptide Have Dual Modulatory Effects on Capsaicin-Activated Current in Rat Dorsal Root Ganglion Neurons

  • Eun, Su-Yong;Kim, Ji-Mok;Lee, Ji-Hye;Jung, Sung-Jun;Park, Joo-Min;Park, Yun-Kyung;Kim, Dong-Kwan;Kim, Sang-Jeong;Kwak, Ji-Yeon;Kim, Jun
    • The Korean Journal of Physiology and Pharmacology
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    • v.5 no.1
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    • pp.71-78
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    • 2001
  • Capsaicin, a pungent ingredient of hot pepper, elicits an intense burning pain when applied cutaneously and intradermally. Activation of capsaicin-gated channel in C-type dorsal root ganglion (DRG) neurons produces nonselective cationic currents. Although electrophysiological and biochemical properties of capsaicin-activated current $(I_{CAP})$ were studied, the regulatory mechanism and intracellular signaling pathway are still unclear. In the present study, we investigated the modulations of $I_{CAP}$ by DAMGO $({\mu}-opioid\;agonist)$ and cholecystokinin octapeptide (CCK-8). In 18 out of 86 cells, the amplitude of $I_{CAP}$ was significantly increased by DAMGO and completely reversed after washout, while $I_{CAP}$ was decreased by DAMGO in 25 cells. In 43 cells, DAMGO had no effect on $I_{CAP}$. Mean action potential duration was significantly different between 'increased-by-DAMGO' group and 'decreased-by-DAMGO' group. Mean amplitudes of $I_H$ were not significantly different between both groups. CCK-8 reversibly enhanced the amplitude of $I_{CAP}$ (5/13). DAMGO also increased $I_{CAP}$ amplitude significantly in the same cells. The amplitude of $I_{CAP}$ was increased in additive manner by combined applications of DAMGO and CCK-8 in these cells. These results suggest that DAMGO and CCK-8 can either increase or decrease $I_{CAP}$ presumably depending on the subtypes of DRG cells and classified by electrophysiological properties.

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Effects of Cholecystokinin Octapeptide on Neuronal Activities in the Rat Nucleus Tractus Solitarius

  • Rhim, Hye-Whon;Park, Chan-Woong
    • The Korean Journal of Physiology and Pharmacology
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    • v.4 no.4
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    • pp.275-281
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    • 2000
  • Cholecystokinin (CCK) is a gastrointestinal hormone which plays an important role in satiety and gastric motility. It is also widely distributed throughout the central nervous system, where it appears to be involved in the central control of anxiety, feeding behavior and nociception. Two distinct CCK receptor types, $CCK_A$ and $CCK_B,$ have been found in the brain. Both CCK receptors coexist in the rat nucleus tractus solitarius (NTS), which is the primary center for the coordination of peripheral and central activities related to gastrointestinal, cardiovascular and respiratory functions. In order to study ionic actions of CCK on each type of receptor, we investigated the effects of CCK-8S on neurons located in the NTS of the rat using whole-cell patch-clamp recordings in brainstem slices. Application of CCK-8S, under current clamp, produced a membrane depolarization accompanied by action potential firing. This CCK-evoked excitation was dose-dependent $(10\;nM{\sim}10\;{\mu}M)$ and observed in more than 60% of NTS neurons. Under voltage clamp conditions, CCK-8S induced an inward current with a notably increased spontaneous excitatory synaptic activity. However, CCK-8S did not significantly change the amplitude of pharmacologically isolated and evoked EPSP(C)s. Using selective $CCK_A$ and $CCK_B$ receptor antagonists, we observed two different effects of CCK-8S, which suggest $CCK_A$ receptor-mediated inhibitory and $CCK_B$ receptor-mediated excitatory effects in the NTS. These results may help to explain the ability of CCK to modulate gastrointestinal and other reflex systems in the NTS.

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Cellular Pathways in Agonist-induced Gallbladder Muscle Contraction in the Cat (고양이의 담낭근 수축에 있어서 세포내 기전)

  • Rhim, Byung-Yong;Kim, Chi-Dae;Kim, Dong-Heon;Biancani, Piero;Behar, Jose
    • The Korean Journal of Pharmacology
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    • v.32 no.1
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    • pp.67-74
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    • 1996
  • Cholecystokinin octapeptide (CCK-8), acetylcholine (ACh) and KCl caused a dose dependent contraction in muscle cells enzymatically digested from cat gallbladder. Maximal contraction was obtained at concentration of $10^{-9}M$ for CCK-8, $10^{-5}M$ for ACh and 20mM for KCl. CCK-8 induced contraction was unaffected in calcium free physiological salt solution (PSS) and was completely blocked by strontium substitution for calcium (p<0.001). In contrast, KCl evoked contraction was blocked in calcium free PSS (p<0.01) but was unaffected by strontium replacement of calcium. The contraction elicited by ACh was only slightly reduced in calcium free PSS (p<0.05) and was unaltered by strontium. Muscle cells permeabilized with saponin contracted in response to inositol 1,4.5-trisphosphate $(IP_3)$ and CCK-8. The contraction was blocked by the calmodulin antagonist CGS 9343B (p<0.001), whereas heparin completely blocked the effect of $IP_3$ (p<0.001). The protein kinase C (PKC) antagonist H7 had no effect on either agonist. We conclude that CCK-8 induced gallbladder muscle contraction is mediated by $IP_3$ dependent intracellular calcium release from intracellular stores and a calmodulin dependent pathway; ACh may utilize both extracellular and intracellular calcium. KCl causes muscle contracrion through influx of extracellular calcium and a calmodulin independent machanism.

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Exocrine Secretory Responsiveness of Dispersed Pancreatic Acini to Secretagogues in Camostat-treated Rats (Camostat 투여 흰쥐 이자 외분비선의 분비자극물질에 대한 반응성)

  • Kim, Chul;Kim, Dong-Goo;Kim, Kyung-Hwan
    • The Korean Journal of Pharmacology
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    • v.30 no.2
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    • pp.205-215
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    • 1994
  • It is well known that chronic stimulation with CCK gives rise to growth of exocrine pancreas and to increased content of enzyme proteins in pancreas. However, littls Is known about changes of the secretory function of exocrine pancreas which has been chronically stimulated with CCK, especially about the responsiveness to secretagogues such as CCK, caerulein and carbachol. The present study was performed to investigate the effect of camostat on secretory profiles and the responsiveness to secretagogues of exocrine pancreas by observing in vitro amylase release stimulated by cholecystokinin-octapeptide(CCK-8) and carbachol in dispersed isolated pancreatic acini from camostat-treated rats for 4 or 10 days. The results summarized as follows : 1) The maximal effective concentration of CCK-8 in amylase release in the camostat treated group was greater than control group, but that of carbachol was not different between groups. 2) Analysis of the stimulated amylase release as the percentage of the maximal response revealed that camostat treatment caused right-shift of the dose-response curve of CCK-8. Camostat did not cause significant changes in the dose-response curve of carbachol. 3) There were considerable increases in the amylase release in the camostat-treated group, compared to the control when acini were stimulated with CCK-8 $10^{-9}\;M$ and carbaochol $10^{-6}\;M$, and higher concentrations. 4) There was a reverse correlation between the tissue content and the maximal release(percent of the total content) of amylase. These results suggest that chronic exposure of exocrine pancreas to increased endogenous CCK can enhance the responsiveness of exocrine enzyme secretion to secretagogues, especially at higher concentrations of CCK and carbachol.

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Inhibitory Effect of Aacute Pancreatitis by Patriniae Herba (패장(敗醬)의 급성 췌장염 억제 효과)

  • Park, Sung-Joo;Jeong, Jong-Gil;Seo, Sang-Wan;Hwang, Sang-Wook;Kim, Yong-Woo;Song, Dal-Soo;Chae, Young-Seok;Shin, Min-Kyo;Song, Ho-Joon
    • The Korea Journal of Herbology
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    • v.20 no.3
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    • pp.93-100
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    • 2005
  • Objective : Patriniae Herba (PH) has long been used as a remedy for treating infectious diseases in Korea. In the present experiments, the author examined the effects of PH on the cholecystokinin-octapeptide (CCK)-induced acute pancreatitis (AP) in rats. Methods : Male Wistar rat weighing 200 to 250 g were divided into three groups. Normal untreated group, in treatment with PH group; PH (1g/kg) was administered orally, followed by $75\;{\mu}g/kg$ CCK subcutaneously three times, after 1, 3 and 5 h. This whole procedure was repeated for 5 days. In treatment with saline group, the protocol was the same as in treatment group with PH. The author determined the pancreatic weight/body weight ratio, the levels of pancreatic HSP60, HSP72 and the secretion of pro-inflammatory cytokines. Methods : Repeated CCK treatment resulted in the typical laboratory and morphological changes of experimentally induced pancreatitis. PH was significantly decreased the pancreatic weight/body weight ratio in CCK-induced AP. Futhermore, the author demonstrated that PH increased HSP60 and HSP72 compared with CCK-induced AP. Additionally, the secretion of $TNF-{\alpha},\;IL-1{\beta}$ and IL-6 the levels of amylase and lipase were lower than that saline. Conclusions : These results suggest that PH may has a inhibitory effect against CCK-induced AP.

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Dual Effect of $H_2O_2$ on the Regulation of Cholecystokinin-induced Amylase Release in Rat Pancreatic Acinar Cells

  • An, Jeong-Mi;Rhie, Jin-Hak;Seo, Jeong-Taeg
    • International Journal of Oral Biology
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    • v.31 no.4
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    • pp.127-133
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    • 2006
  • [ $H_2O_2$ ], a member of reactive oxygen species (ROS), is known to be involved in the mediation of physiological functions in a variety of cell types. However, little has been known about the physiological role of $H_2O_2$ in exocrine cells. Therefore, in the present study, the effect of $H_2O_2$ on cholecystokinin (CCK)-evoked $Ca^{2+}$ mobilization and amylase release was investigated in rat pancreatic acinar cells. Stimulation of the acinar cells with sulfated octapeptide form of CCK (CCK-8S) induced biphasic increase in amylase release. Addition of $30\;{\mu}M\;H_2O_2$ enhanced amylase release caused by 10 pM CCK-8S, but inhibited the amylase release induced by CCK-8S at concentrations higher than 100 pM. An ROS scavenger, $10\;{\mu}M$ Mn(III)tetrakis(4-benzoic acid)porphyrin chloride, increased amylase release caused by CCK-8S at concentrations higher than 100 pM, although lower concentrations of CCK-8S-induced amylase release was not affected. To examine whether the effect of $H_2O_2$ on CCK-8S-induced amylase release was exerted via modulation of intracellular $Ca^{2+}$ signaling, we measured the changes in intracellular $Ca^{2+}$ concentration $([Ca^{2+}]_i)$ in fura-2 loaded acinar cells. Although $30\;{\mu}M\;H_2O_2$ did not induce any increase in $[Ca^{2+}]_i$ by itself, it increased the frequency and amplitude of $[Ca^{2+}]_i$ oscillations caused by 10 pM CCK-8S. However, $30\;{\mu}M\;H_2O_2$ had little effect on 1 nM CCK-8S-induced increase in $[Ca^{2+}]_i$. ROS scavenger, 1 mM N-acetylcysteine, did not affect $[Ca^{2+}]_i$ changes induced by 10 pM or 1 nM CCK-8S. Therefore, it was concluded that $30\;{\mu}M\;H_2O_2$ enhanced low concentration of CCK-8S-induced amylase release probably by increasing $[Ca^{2+}]_i$ oscillations while it inhibited high concentration of CCK-8S-induced amylase release.