• Title/Summary/Keyword: Intracerebroventricular

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The Role of Neuropeptide Y in the Central Regulation of Grass Intake in Sheep

  • Sunagawa, K.;Weisiger, R.S.;McKinley, M.J.;Purcell, B.S.;Thomson, C.;Burns, P.L.
    • Asian-Australasian Journal of Animal Sciences
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    • v.14 no.1
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    • pp.35-40
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    • 2001
  • The physiological role of brain neuropeptide Y (NPY) in the central regulation of grass intake in sheep was investigated through a continuous intracerebroventricular (ICV) infusion of NPY at a dose of $5{\mu}g/0.2ml/hr$ for 98.5 hours from day 1 to day 5. Sheep (n=5) were fed for 2 hours once a day, and water and 0.5 M NaCl solution were given ad libitum. Feed intake during ICV NPY infusion increased significantly compared to that during ICV artificial cerebrospinal fluid (CSF) infusion. Water and NaCl intake during ICV NPY infusion remained unchanged. Mean arterial blood pressure (MAP) and plasma osmolality during ICV NPY infusion were not significantly different from those during ICV CSF infusion. On the other hand, plasma glucose concentration during ICV NPY infusion increased significantly compared to that during ICV CSF infusion. The results suggest that brain NPY acts as a hunger factor in brain mechanisms controlling feeding to increase grass intake in sheep.

Studies on the mechanism of the cardiovascular effect of intraventricular 5-hydroxytryptamine in rabbit

  • Lim, Dong-Yoon;Kim, Young-Rae;Kim, Won-Sik;Kim, Kyoon-Hong;Yoo, Ho-Jin;Choi, Hee-Woong;Kim, Soo-Bok
    • Archives of Pharmacal Research
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    • v.13 no.1
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    • pp.55-63
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    • 1990
  • An attempt was made to investigate the effect of intracerebroventricular 5-hydroxytrypatamine (5-HT) on the cardiovascular system in urethane-anesthetized rabbit and to elucidate the mechanism of its action. 5-HT given into a lateral ventricle caused clearly a dose-dependent decrease inboth arterial blood pressure and in heart rate. The bradycardia and hypotension induced by 5-HT were significantly attenuated by the prior injection of ketanserin, cyproheptadine or clonidine. Pretreatment of atropine with bilateral vagotomy did not affect both bradycardia and hypotension. Propranolol weakened markedly the breadcardia of 5-HT but did not influence the depressor response of 5-HT. These experimental results suggest that intraventricular 5-HT cause the hypotension and bradyardia in rabbits through the stimulation of serotonergic receptors in brain, which is seemed to be associated to inhibition of sympathetic tone.

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Effect of imipramine or ECS on central $\beta_1$and $\beta_2$receptor Sensitivity in the Cardiovascular Response of Rat

  • Sohn, Uy-Dong;Kim, Choong-Young;Huh, In-Hoi
    • Archives of Pharmacal Research
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    • v.12 no.4
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    • pp.282-288
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    • 1989
  • This study was investigated the effects of imipramine (IMI) and electroconvulsive shock (ECS), which are used as antidepressant therapy, on the central $\beta_1$or $\beta_2$ adrenergic receptor in anesthetized rats. The resting blood pressure and heart rate decreased in reserpinized group (5 mg/kg i. p., 24 hr before), but not in order 4 groups i. e. acute IMI (20 mg/kg i. p.. 3-5 hr before), chronic IMI (Same dose, twice a day for 14 days), siggle ECS (sinusoidal 20 Hz, 120 V for 2 sec) and repeated ECS (same condition, daily for 12 days). The increase of heart rate and hypotension evoked by 1 or 3 $\mu$g intracerebroventricular (i. c. v.) administration of (+) dobutamine, $\beta_2$-agonist, 1 or 3 $\mu$g i. c. v. was significantly attenuated in repeated ECS or reserpine treatment. And, the diminuation of pulse pressure of salbutamol also reduced by repeated ECS. These results suggest that IMI or ECS result in attenuation on tachycardia by (+) dobutamine or on hypotension by salbutamol, presumably by which the central $\beta_1$ or $\beta_2$receptor sensitivity may be suppressed, repectively.

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Attenuation of β-amyloid-induced neuroinflammation by KHG21834 in vivo

  • Kim, Eun-A;Hahn, Hoh-Gyu;Kim, Tae-Ue;Choi, Soo-Young;Cho, Sung-Woo
    • BMB Reports
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    • v.43 no.6
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    • pp.413-418
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    • 2010
  • Beta-Amyloid ($A{\beta}$)-induced neuroinflammation is one of the key events in the development of neurodegenerative disease. We previously reported that KHG21834, a benzothiazole derivative, attenuates $A{\beta}$-induced degeneration of cortical and mesencephalic neurons in vitro. In the present work, we show that KHG21834 reduces $A{\beta}$-mediated neuroinflammation in brain. In vivo intracerebroventricular infusion of KHG21834 leads to decreases in the numbers of activated astrocytes and microglia and level of proinflammatory cytokines such as interleukin-$1{\beta}$ and tumor necrosis factor-$\alpha$ induced by $A{\beta}$ in the hippocampus. This suppression of neuroinflammation is associated with decreased neuron loss, restoration of synaptic dysfunction biomarkers in the hippocampus to control level, and diminished amyloid deposition. These results may suggest the potential therapeutic efficacy of KHG21834 for the treatment of $A{\beta}$-mediated neuroinflammation.

Recent Advances in the Relationship between Endocrine Status and Nutrition in Chickens - Review -

  • Okumura, J.;Kita, K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.12 no.7
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    • pp.1135-1141
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    • 1999
  • A large number of investigations have shown that changes in nutritional condition affect endocrine status in avian species. Herein, recent findings including novel peptides discovered by the development of the techniques in the field of molecular biology have been reviewed. The insulin-like growth factors (IGF-I and IGF-II) found in chickens have been characterized and shown to be 70 and 66 amino acid polypeptides, respectively. Plasma IGF-I level is very responsive to nutrition, Le. varying dietary proteins and energy intakes, and food restriction. Plasma IGF-II concentration is altered by nutritional deprivation to a much smaller extent than plasma IGF-I concentration. Almost all of the serum and tissue IGFs are found in a complex composed of IGF and IGF-binding protein (IGFBP). In the chicken plasma, the major IGFBP differs from that in mammalian plasma. The proglucagon mRNA encodes glucagon and two glucagon-like peptides (GLP-I and GLP-2). The intracerebroventricular administration of GLP-l strongly decreased food intake of chicks, and it was indicated that the inhibition of food intake by GLP-l was associated with neuropeptide Y, which is one of the neurotransmitters reported to enhance food intake.

The Differential Effect of Whole-body Irradiation on Morphine- and $\beta$-Endorphin-Induced Antinociceptive Actions in Mice

  • Kim, Kyung-N.;Chung, Ki-M.
    • International Journal of Oral Biology
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    • v.34 no.3
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    • pp.137-142
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    • 2009
  • Whole-body $\gamma$-irradiation(WBI), which produces an oxidative stress, is reported to attenuate the acute antinociceptive action of morphine (a $\mu$-opioid receptor agonist), but not DPLPE (a $\delta$-opioid receptor agonist), in mice. Recently, we also reported that antinociceptive effect of morphine, but not $\beta$-endorphin (a novel $\varepsilon$-opioid receptor agonist), was attenuated by oxidative stress. These findings prompted us to investigate the effect of WBI on the antinociception of morphine and $\beta$-endorphin in mice. Mice were exposed to WBI (5 Gy) from a $^{60}Co$ gamma-source and tested 2 hours later for antinociception produced by intracerebroventricular administration of morphine or $\beta$-endorphin using the hot water tail-immersion and the writhing tests. WBI significantly attenuated the antinociception produced by morphine only in the hot water tail-immersion test, whereas the antinociception of $\beta$-endorphin was significantly potentiated by WBI in both tests. These results demonstrate a differential sensitivity of $\mu$- and $\varepsilon$-opioid receptors to WBI, and support the hypothesis that morphine and $\beta$-endorphin administered supraspinally produce antinociception by different neuronal mechanisms.

Effects of Erythropoietin on Memory Deficits and Brain Oxidative Stress in the Mouse Models of Dementia

  • Kumar, Rohit;Jaggi, Amteshwar Singh;Singh, Nirmal
    • The Korean Journal of Physiology and Pharmacology
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    • v.14 no.5
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    • pp.345-352
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    • 2010
  • The present study was undertaken to explore the potential of erythropoietin in memory deficits of mice. Memory impairment was produced by scopolamine (0.5 mg/kg, $i.p.$) and intracerebroventricular streptozotocin (i.c.v STZ, 3 mg/kg, $10{\mu}l$, $1^{st}$ and $3^{rd}$ day) in separate groups of animals. Morris water-maze test was employed to assess learning and memory. The levels of brain thio-barbituric acid reactive species (TBARS) and reduced glutathione (GSH) were estimated to assess degree of oxidative stress. Brain acetylcholinesterase enzyme (AChE) activity was also measured. Scopolamine/streptozotocin administration induced significant impairment of learning and memory in mice as indicated by marked decrease in Morris water-maze performance. Scopolamine/streptozotocin administration also produced a significant enhancement of brain AChE activity and brain oxidative stress (an increase in TBARS and a decrease in GSH) levels. Treatment of erythropoietin (500 and 1,000 IU/Kg i.p.) significantly reversed scopolamine- as well as streptozotocin-induced learning and memory deficits along with attenuation of those-induced rise in brain AChE activity and brain oxidative stress levels. It may be concluded that erythropoietin exerts a beneficial effect in memory deficits of mice possibly through its multiple actions including potential anti-oxidative effect.

Munc18 Plays an Important Role in the Regulation of Glutamate Release during Female Puberty Onset

  • Kim, Byung U.;Choi, Jungil;Ahn, Kook Hee;Jeong, Jin Kwon;Ha, Chang Man;Jeong, Choon Soo;Lee, Chae Kwan;Kang, Sung Goo;Lee, Byung Ju
    • Molecules and Cells
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    • v.22 no.1
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    • pp.30-35
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    • 2006
  • Munc18, a mammalian homolog of C. elegans Unc, is essential for neurotransmitter release. The aim of this study was to identify estrogen-dependent expression of Munc18-1 and its role in the regulation of glutamate release for puberty onset. Hypothalamic munc18-1 mRNA levels were significantly increased by estrogen treatment in ovariectomized, immature female rats. During pubertal development, the munc18-1 mRNA levels dramatically increased between the juvenile period and the anestrous phase of puberty. Intracerebroventricular administration of an antisense oligodeoxynucleotide against munc18-1 mRNA significantly decreased glutamate release and delayed the day of puberty onset. These results suggest that Munc18-1, expressed in an estrogen-dependent manner, plays an important role in the onset of female puberty via the regulation of glutamate release.

Renotropic Action of Intracerebroventricular Prostaglandin $F_{2{\alpha}}$ in the Dog (개에 있어서 측뇌실내(側腦室內) Prostaglandin $F_{2{\alpha}}$의 신장작용(腎臟作用))

  • Kook, Young-Johng;Choi, Bong-Kyu
    • The Korean Journal of Pharmacology
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    • v.14 no.1_2
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    • pp.25-31
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    • 1978
  • It has recently been reported that prostaglandin $(PG)F_{2\alpha}$ produces diruesis and natriuresis when given directly into a lateral ventricle of the brain in rabbits (Kook et al). In this study attempts were made to elucidate the mechanism of the natriuresis utilizing dogs. In mongrel dogs of both sexes weighing 9-l2kg, a lateral ventricle of the cerebrum was cannulated and the agent was delivered in less than 0.2ml of 0.9% saline. $PGF_{2\alpha}$, $100\;{\mu}g$, ivt, elicited mild diuresis, while glomerular filtration rate and systemic blood pressure remained unchanged. In 8 chloralso-anesthetized, hydrated dogs undergoing water diuresis, ivt $PGF_{2\alpha}$ produced antidiuresis concomitant with marked natriuresis, which resembles the action of large doses of Arginine vasopressin in doses of 0.3-1.5mu/kg/min produced marked natriuresis. In 9 experiments, $PGF_{2\alpha}$ was given intraventricularly during the maximal diuresis induced by ADH. The kidney responded with significant natriuresis though less marked and transient than during water diuresis. It is thus concluded that beside ADH still other natriuretic factor(s) may be involved in the natriuresis induced by ivt $PGF_{2\alpha}$ in the dog.

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Influence of Intracerebroventricular Naloxone on the Renal Function of the Rabbit (측뇌실내(側腦室內) Naloxone의 가토현기능(家兎賢機能)에 미치는 영향(影響))

  • Choi, Bong-Kyu;Kook, Young Johng
    • The Korean Journal of Pharmacology
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    • v.16 no.1 s.26
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    • pp.15-24
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    • 1980
  • As it has been reported that opioids such as morphine and methionine-enkephalin induced antidiuresis and antinatriuresis along with decrease in renal hemodynamics when given intracerebroventricularly(ivt), the renal action of ivt naloxone, a pure antagonist of morphine, and its influence upon the morphine action were investigated in this study. Less than $0.3{\mu}M/kg$ naloxone ivt did not change renal funtion. $1{\mu}M/kg$ ivt tended to, increase urine flow rate and induce transient natriuresis. $3{\mu}M/kg$ ivt produced transient: natriuresis. $3{\mu}M/kg$ ivt produced marked diuresis and natriuresis without any changes of renal hemodynamics. $10{\mu}M/kg$ ivt produced significant increases of urine flow rate and excretion of sodium without any changes of renal hemodynamics. Morphine $0.03{\mu}M/kg$ ivt produced marked decrement in renal hemodynamics along with decreases of water and sodium excretion, as previously shown by Kang. These effects of ivt morphine were completely abolished by the pretreatment with $0.3{\mu}M/kg$ naloxone. These observations provide further evidence that opiate receptors and endorphins in the brain might play an important role in the center-mediated regulation of the renal function in the rabbit.

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