• 제목/요약/키워드: Intracerebroventricular(icv) injection

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백서를 이용한 포르말린 통증 모형하에서 뇌실 내 Gabapentin의 효과 (The Effect of Intracerebroventricular Gabapentin on the Formalin Test in Rats)

  • 윤명하;곽상현;정성수;유경연;정창영;임웅모
    • The Korean Journal of Pain
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    • 제13권2호
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    • pp.137-142
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    • 2000
  • Background: Systemic or intrathecal administration of gabapentin has been shown to reverse various pain states. However, until now, the effect of intracerebroventricular (ICV) gabapentin to noxious stimuli has not been reported. The authors' aim of this study was to determine the effect of ICV gabapentin on the inflammatory nociceptive model, formalin test, in rats. Methods: ICV catheters were implanted under halothane anesthesia. For the nociceptive test, $50{\mu}l$ of 5% formalin was subcutaneously injected into the hindpaw. The effect of ICV gabapentin, administered 10 min before formalin injection, were examined on flinching, mean arterial pressure and heart rate evoked by a injection of formalin. Results: Injection of formalin into the paw resulted in a biphasic flinching and cardiovascular response. ICV gabapentin produced a dose-dependent suppression of the flinching and mean arterial pressure response during phase 1. In contrast, in phase 2, ICV gabapentin did not attenuate the pain behavior. ICV gabapentin did not affect on the baseline mean arterial pressure and heart rate. Conclusions: ICV gbapentin was effective for the acute noxious stimulus but it had no effect on the facilitated states induced by tissue injury.

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Effects of Kanagawa Hemolysin on Blood Pressure and Arterial Tone in Rats

  • Kim, Young-Moon
    • The Korean Journal of Physiology and Pharmacology
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    • 제6권4호
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    • pp.225-233
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    • 2002
  • Kanagawa hemolysin (KH), an exotoxin produced from Kanagawa phenomenon-positive Vibrio parahemolyticus, has been shown to possess various biological activities including hemolysis, enterotoxicity, cytotoxicity, and cardiotoxicity. The aim of this study was to investigate the effect of KH on the cardiovascular system and its mechanism, employing in vivo and in vitro experiments of the rat. Intracerebroventricular (icv) administration of 100 mHU KH produced a marked and continuous pressor effect (icv KH-pressor effect), and the icv pressor effect was not repeatable. However, intravenous (iv) injection of the same dose of KH induced a prominent depressor effect (iv KH-depressor effect). The icv KH-pressor effect was inhibited by acid-denaturation, while the iv KH-depressor effect was not. Simultaneous icv administration of the three agents (ouabain, diltiazem, or bumetanide: $10{\mu}g/kg$ each) significantly reduced the pressor effect. The icv KH-pressor effect was inhibited by treatment with iv phentolamine or chlorisondamine, but was not affected by iv candesartan. The iv KH-depressor effect was repeatable and was attenuated by treatment with iv NAME or methylene blue. In vitro experiments using isolated thoracic aorta, $10^{-6}$ M phenylephrine (PE) and 50 mM KCl produced a sustained contraction. In rings contracted with either agents, KH showed relaxant responses in a concentration- dependent fashion and the relaxation (KH-vasorelaxation) was not dependent on the existence of the endothelium. The KH-vasorelaxation in the endothelium-intact rings contracted by PE was abolished by methylene blue treatment. In summary, the present findings suggest that in the icv KH-pressor effect the cation leak-inducing action of KH is implicated, which leads to the increased central sympathetic tone, that the iv KH-depressor effect results from the vasorelaxation via NO-guanylate cyclase system, and that the KH-vasorelaxation is independent of the endothelium and the guanylate cyclase system is involved in it. In conclusion, the mechanism of KH producing the icv pressor effect may not be identical to that of KH producing the iv depressor effect.

Effects of intracerebroventricular injection of corticotrophin releasing factor on the gene expression of ghrelin and corticotrophin releasing factor receptors in broiler chickens

  • Cai, Yuanli;Song, Zhigang
    • Animal Bioscience
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    • 제35권12호
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    • pp.1904-1910
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    • 2022
  • Objective: This study aimed to investigate the effects of corticotropin-releasing factor (CRF) on the feed intake of broiler chickens and explore its influencing mechanism. Methods: The study included two trials. In trial 1, 32 male broiler chickens (Arbor Acres, Gallus gallus domesticus) were given ventricle buried tubes, and they were allowed to recover for 3 days. At 8:00 AM, intracerebroventricular (ICV) injection with CRF or normal saline was performed in 10-day-old broiler chickens, which were divided into the 5, 10, and 20 ㎍ and control (normal saline) groups according to the dose of CRF injection. In trial 2, chickens were divided into the 10 ㎍ and control group (physiological saline) to repeat trial 1. Results: Results of trial 1 showed that the cumulative amount of feed intake in the 10 or 20 ㎍ groups was considerably lower than that of the control group after ICV injection with CRF. The lowest amount of feed intake was obtained with the addition of 10 ㎍ of CRF. In trial 2, the expression of ghrelin in the hypothalamus injected with 10 ㎍ of CRF increased significantly, but the expression of ghrelin in various sections of the small intestine considerably decreased. The expression of CRF receptor subtypes 1 (CRFR1) in the hypothalamus and some parts of the small intestine remarkably increased, and the expression of CRF receptor subtypes 2 (CRFR2) increased only in the duodenum, whereas the expression of growth hormone secretagogue receptor (GHSR-1α) in the jejunum and ileum increased considerably after ICV injection of 10 ㎍ of CRF. Conclusion: The CRF at 10 ㎍ increased ghrelin expression in the hypothalamus and CRFR1 expression in the small intestine, and this phenomenon was related to the suppressed feed intake of broiler chickens.

모르핀내성시 뇌실내 NO 합성억제제 투여가 모르핀의 진통효과에 미치는 형향 (Supraspinal Nitric Oxide Synthesis Inhibition Enhanced Antinociception of Morphine in Morphine Tolerant Rats)

  • 송호경;장연
    • The Korean Journal of Pain
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    • 제14권2호
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    • pp.225-230
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    • 2001
  • Background: Opioids such as morphine are widely used in the treatment for pain, but chronic treatment with morphine can be complicated by the development of tolerance. The mechnisms of tolerance were still not completely understood, but recently it has been reported that NOS inhibitors can prevent development of morphine tolerance in animals. The present study accessed the possible role of supraspinal NO on antinociceptive effect of morphine in morphine tolerance using a highly specific inhibitor of the neuronal isoform of NOS, 1-(2-trifluoromethylphenyl) imidazole (TRIM). Methods: Thirty two male SD rats (300 g) were prepared with intracerebroventricular (icv) and IV cannulae. We administrated IV morphine, 3 mg/kg, daily for 4 days, resulting in tolerance. On the fifth day, a challenge dose of morphine, 3 mg/kg, was administered following pretreatment with icv TRIM, $10{\mu}g$. We also evaluated the antinociceptive effect of icv TRIM alone and the effect on a single dose of morphine (3 mg/kg) in morphine nave rats. Antinociception from morphine was determined by response to intraplantar injection of 5% formalin $100{\mu}l$ was qualified as the number of flinches in the first 0-10 min (first phase), 10-40 min Phase IIa, and 40-60 min (Phase IIb). Results: Pretreatment with icv TRIM significantly enhanced the antinociceptive effects of systemically administered morphine in morphine tolerant rats. The antinociceptive effect of morphine in opioid nave rats was also significantly increased by pretreatment with icv TRIM. Conclusions: Our results further support the hypothesis that supraspinal NO modulates morphine-sensitive nociceptive process in morphine tolerance due to chronic intravenous administration.

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Direct Action of Genistein on the Hypothalamic Neuronal Circuits in Female Rats

  • Lee, Woo-Cheol;Lee, Sung-Ho
    • 한국발생생물학회지:발생과생식
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    • 제14권1호
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    • pp.35-41
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    • 2010
  • Mammalian reproduction is regulated by a feedback circuit of the key reproductive hormones such as GnRH, gonadotropin and sex steroids on the hypothalamic-pituitary-gonadal axis. In particular, the onset of female puberty is triggered by gain of a pulsatile pattern and increment of GnRH secretion from hypothalamus. Previous studies including our own clearly demonstrated that genistein (GS), a phytoestrogenic isoflavone, altered the timing of puberty onset in female rats. However, the brain-specific actions of GS in female rats has not been explored yet. The present study was performed to examine the changes in the activities of GnRH neurons and their neural circuits by GS in female rats. Concerning the drug delivery route, intracerebroventricular (ICV) injection technique was employed to eliminate the unwanted actions on the extrabrain tissues which can be occurred if the testing drug is systemically administered. Adult female rats (PND 100, 210-230 g BW) were anaesthetized, treated with single dose of GS ($3.4{\mu}g$/animal), and sacrificed at 3 hrs post-injection. To determine the transcriptional changes of reproductive hormone-related genes in hypothalamus, total RNAs were extracted and applied to the semi-quantitative reverse transcription polymerase chain reaction (RT-PCR). ICV infusion of GS significantly raised the transcriptional activities of enhanced at puberty1 (EAP-1, p<0.05), glutamic acid decarboxylase (GAD67, p<0.01) which are known to modulate GnRH secretion in the hypothalamus. However, GS infusion could not change the mRNA level of nitric oxide synthase 2 (NOS-2). GS administration significantly increased the mRNA levels of KiSS-1 (p<0.001), GPR54 (p<0.001), and GnRH (p<0.01) in the hypothalami, but decreased the mRNA levels of LH-$\beta$ (p<0.01) and FSH-$\beta$ (p<0.05) in the pituitaries. Taken together, the present study indicated that the acute exposure to GS could directly activate the hypothalamic GnRH modulating system, suggesting the GS's disrupting effects such as the early onset of puberty in immature female rats might be derived from premature activation of key reproduction related genes in hypothalamus-pituitary neuroendocrine circuit.

뇌척수액 미세순환을 통한 래트 내이 외림프의 가돌리늄 조영제 증강 특성 (Enhancement Characteristics of Gadolinium Contrast Agent in the Rat Inner Ear Perilymph through CSF microcirculation)

  • 김민정;이상열;이희중;이태관;장용민
    • 대한의용생체공학회:의공학회지
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    • 제43권4호
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    • pp.193-198
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    • 2022
  • Contrast enhanced magnetic resonance imaging using gadolinium-based contrast agent (GBCA) is a very useful in vivo technique to visualize the inner ear pathology including endolymphatic hydrops. Although systemic intravenous (IV) administration can visualize the perilymph space, the visualization was possible by indirect passage of contrast agent through blood-perilymph barrier. All animal experimental procedures were performed under anesthesia with 5% isoflurane. Lipopolysaccharide (LPS) was instilled into the left tympanic cavity through the tympanic membrane using a sterile 27gauge needle to induce hydrops model. Tucker-Davis Technologies system was used to measure Auditory Brainstem Responses (ABRs). For intracerebroven-tricular (ICV) administration, 25 µmol of GADOVIST (Bayer, Berlin, Germany) was used and diluted GADOVIST injection was 10 µl. MR imaging was acquired with a 9.4 Tesla MRI scanner. Transmit-receive volume coil with 40 mm inner diameter and 75 mm out diameter was used. ICV administration well demonstrated the strong enhancement along the cerebrospinal fluid (CSF) microcirculation pathway including CSF fluid in the subarachnoid space and CSF space of the inner ear structures. On the other hand, IV administration showed no contrast enhancement along the CSF microcirculation pathway and showed weak enhancement in the inner ear structures. In case of rat hydrops model, ICV administration showed that the reduced contrast enhancement in the perilymph space of the hydrops induced inner ear compared to the contrast enhancement in the perilymph space of the normal inner ear. New systemic ICV administration method provide contrast enhancement of GBCA in the inner ear through CSF microcirculation pathway.

두개내압상승에 의한 혈압상승작용과 중추 GABA계 및 중추 ${\alpha}_{2}$-아드레날린 수용체와의 관계 (Studies on Involvement of Central GABAergic Mechanism and Central ${\alpha}_{2}-Adrenoceptors$ in Pressor Responses to Raised Intracranial Pressure)

  • 김영식
    • 대한약리학회지
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    • 제29권1호
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    • pp.23-32
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    • 1993
  • GABA계가 뇌내의 교감신경계기능에 영향을 주어서 혈압조절에 관여함이 알려져 있다. 본 연구에서는 마취가토에서 GABA계가 두개내압증가에 의한 혈압상승에 관여하는가를 조사하였다. 두개내압증가에 의한 승압은 측뇌실내 muscimol (GABA 작용약)이나 clonidine $({\alpha}_2$-작용약) 전처리후에는 볼 수 없었다. 측뇌실내 yohimbine $({\alpha}_2$-길항약)으로 일으킨 고혈압은 두개내압증가를 하여도 더 이상 상승하지 않았으나, 측뇌실내 bicuculline (GABA 길항약)으로 일으킨 고혈압은 두개내압증가로 더욱 상승하였다. Bicuculline은 muscimol이나 clonidine 저혈압에서는 승압을 일으켰으나 yohimbine이나 두개내압증가에 의한 고혈압에서는 무효였다. Yohimbine은 clonidine 저혈압은 상승시켰으나 muscimol 저혈압에 있어서는 무효였다. Yohimbine은 두개내압증가에 따른 승압상태는 더 올리지 못하였으나 bicuculline 승압상태는 더욱 상승시켰다. Muscimol은 bicuculline과의 길항성이외에 yohimbine 승압을 억제함을 알았으며 yohimbine 승압에 GABA계가 관여함을 추측할 수 있었다. 이러한 실험결과로 두개내압증가에 따른 승압상승은 (1) ${\alpha}_{2}$-수용체, (2) bicuculline-감수성 GABA 수용체, (3) yohimbine-감수성인 clonidine이 작용하는 GABA계 부위의 세가지 방법으로 억제성인 교감신경기능을 불활성화하여 일어나는 것으로 추론하였다.

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LPS에 의해 유발된 염증(炎症) 스트레스에 대한 황련(黃蓮)과 부자(附子)의 효과 (Effects of Coptidis Rhizoma and Aconiti Lateralis Preparata Radix on the Change of Plasma Corticosterone Level and Rectal Temperature Induced by LPS)

  • 조은호;이태희
    • 대한본초학회지
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    • 제21권2호
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    • pp.77-85
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    • 2006
  • Objectives : We investigated the effects of Coptidis Rhizoma and Aconiti Lateralis Preparata Radix on the LPS(Lipopolysaccharide) ICV(intracerebroventricular) injection. Methods : We measured plasma corticosterone level and rectal temperature in mice induced by I.C.V. injection of LPS (100ng/mouse). Results : The results were as follows.. 1. The plasma corticosterone levels in CR-1(0.5g/kg), CR-2(1.0g/kg), CR-3(3.0g/kg) were not decreased significant comparing with the control group.(P<0.05) 2. The plasma corticosterone level in AR-1(0.5g/kg) was decreased significant comparing with the control group.(P<0.05), but AR-2(1.0g/Kg) and AR-3(3.0g/kg) were not decreased significant comparing with the control group.(P<0.05). 3. The rectal temperature in CR-1(0.5g/kg), CR-2(1.0g/kg), CR-3(3.0g/kg) was decreased significant comparing with the control group.(P<0.05) 4. The rectal temperature in AR-1(0.5g/kg), AR-2(1.0g/kg), AR-3(3.0g/kg) was not decreased significant comparing with the control group.(P<0.05) Conclusion : These data revealed that Rhizoma Coptidis might have no significant effect on inflammation stress and Aconiti Lateralis Preparata Radix(0.5g/kg/mouse) might have significant effect on inflammation stress.

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새로운 뇌 위축 동물 모델과 그 모델에서의 고려인삼의 보호 효과 (Novel animal model for brain atrophy and protective effects of Korean ginseng)

  • 김명규;이세나;김현미;정주호;임강현
    • 대한본초학회지
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    • 제21권4호
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    • pp.197-205
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    • 2006
  • Objectives: Anti-oxidants are known to prevent neuronal diseases with pathological and physiological changes such as the brain atrophy and cognitive impairment. This study was designed to investigate the protective effects of Korean ginseng on the oxidative stress induced pathologic changes, and develop new animal model for the brain atrophy. Korean ginseng has anti-oxidant, anti-aging, and protective effects on the brain ischemia. Methods : The intracerebroventricular (ICV) hydrogen peroxide ($H_2O_2$) injection into mice was conducted to generate oxidative stress. Results : The ICV $H_2O_2$ (1 M, $5\;{\mu}l$ injection did not induce either convulsion or death in the acute phase. At the end of second week, cognitive impairment and pathologic change of the brain were observed. The massive brain atrophy was found in the $H_2O_2-injected$ mice, especially in the hippocampus and thalamus. Treatment with Korean ginseng showed a protective effect against the brain atrophy. The $H_2O_2$ injected mice revealed cognitive impairment in the passive avoidance test, and Korean ginseng alleviated cognitive impairment. Conclusion : The results indicate that Korean ginseng has a protective effect on the oxidative stress-induced neuronal damages.

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

  • 이충경
    • 대한약리학회지
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    • 제27권1호
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    • pp.21-31
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    • 1991
  • 미주신경절단 가토에서 니코틴성약물인 nicotine과 DMPP뿐아니라 무스카린성 약물인 muscarine과 bethanechol은 측뇌실내 투여로 모두 혈압상승작용을 나타냈다. Nicotine과 DMPP에 대한 승압반응은 측뇌실내 mecamylamine처리로 현저히 감약되었으나 측뇌실내 pirenzepine처리에 의해서는 영향받지 않았고, muscarine과 bethanechol에 대한 승압반응은 pirenzepin에 의해서는 억제되나 mecamylamine에 의해서는 영향받지 않았다. 이는 뇌내의 니코틴성 수용체 및 무스카린성 수용체가 모두 혈압상승에 관여함을 가리키고 있다. Nicotine과 muscarine에 대한 승압반응은 regitine, reserpine, enalapril, saralasin, SK&F-100273, regitine과 enalapril, regitine과 saralasin의 정맥내 처리에 의해서는 억제되지 않았으며 nicotine에 대한 승압반응은 regitine과 SK&F-100273 두약물의 병용처리에 의해서 억제되었고 muscarine에 의한 승압반응은 regitine, enalapril과 SK&F-100273의 세가지 약물의 병용처리에 의해서만 억제되었다. Nicotine이나 muscarine에 의한 혈압상승상태에서 정맥내 regitine의 투여는 혈압하강을 일으켰으나 enalapril이나 SK&F-100273은 혈압하강을 일으키지 못하였다. Enalapril은 regitine처리나 regitine과 SK&F-100273병용처리 가토에서 nicotine에 의해 상승된 혈압을 하강시키지 못하였으나 SK&F-100273은 regitine처리 가토에서 nicotine에 의한 상승된 혈압을 하강시켰다. Enalapril은 이러한 SK&F-100273의 할압하강작용을 강화시키지 못하였다. Enalapril은 regitine 처리 가토에서 muscarine에 의하여 상승된 혈압은 하강시키지 못하였으나, regitine과 SK&F-100273병용처리 가토에서 muscarine에 의해 상승된 혈압은 하강시켰다. SK&F-100273은 regitine처리 가토에서 muscarine에 의해 상승된 혈압을 하강시키지 못했으나 regitine과 enalapril병용처리 가토의 상승된 혈압은 하강시켰다. 이상의 성적은 뇌실내 nicotine에 의한 혈압상승에는 말초에서 교감신경계와 vasopressin이 관여하며 muscarine에 의한 혈압상승에는 교감신경계, vasopressin 및 angiotensin계가 관여함을 시사하고 있다. Regitine의 정상 가토 혈압하강작용은 enalapril이나 SK&F-100273의 단독처리에 의해서는 영향받지 않았으나 이 두약물을 병용처리시에는 유의하게 강화되었고, 이는 가토 동맥압의 유지에 교감신경, renin-angiotensin 및 vasopressin계가 관여함을 시사하고 있다.

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