• Title/Summary/Keyword: Histamine H1 receptor

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Induction of Cardiovascular Anaphylaxis and Basic Pharmacological Analysis of Involved Mediators in Pithed Rats

  • Park, Kwan-Ha
    • Biomolecules & Therapeutics
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    • v.16 no.4
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    • pp.299-305
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    • 2008
  • Active cardiovascular anaphylactic response was induced in ovalbumin-sensitized, pithed Sprague-Dawley and Wistar rats. On intravenous administration of the antigen, ovalbumin, marked tachycardia and pressor responses were immediately elicited. Thereafter, a delayed long-lasting severe hypotensive response was observed. These anaphylactic cardiovascular responses were maximal 2-3 weeks after the sensitization, and the response was slightly diminished 6 weeks after sensitization. The immediate pressor response was blocked by a non-selective serotonin antagonist methysergide at a dose-dependent manner, but not by histamine receptor antagonists mepyramine (pyrilamine) or cimetidine. The delayed hypotension was reduced either by histamine $H_1$ receptor antagonist mepyramine or $H_2$ receptor antagonist cimetidine, both in a dose-dependent manner. The tachycardic response was not influenced by serotonin or histamine receptor antagonists examined in this study. Differently from the cardiovascular responses, there was no observable bronchial contraction in Sprague-Dawley rat trachea in contrast to Wistar rat where the trachea contracted to in vitro antigen challenge. The cardiovascular anaphylactic model seems to be useful for studying cardiovascular events that occur exclusively in peripheral heart-blood vessel systems. The involvement of two major anaphylactic mediators, serotonin and histamine, is partially demonstrated.

The Convergence Effect of Histamine and Atropine on Intestinal Contractility (위장관 수축성에 대한 Histamine과 Atropine의 융합성 조절 효과)

  • Je, Hyun Dong;Min, Young Sil
    • Journal of Convergence for Information Technology
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    • v.11 no.10
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    • pp.131-137
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    • 2021
  • The aim of the study was to observe the influence and related mechanism of histamine and its analogues used for hypersensitivity tests and used as an indicator of impurities in drugs on the tissue-specific intestinal contraction. Intestinal contraction includes the activation of thick or thin filament regulation. However, there are few reports addressing the question whether this regulation is involved in histamine-induced regulation. We hypothesized that histamine plays a role in tissue-dependent regulation of intestinal contractility. Denuded ileal/colonic longitudinal and circular muscles of male rats were used and isometric contractions were recorded using a data acquisition system. Interestingly, histamine alone didn't increase the contraction of the circular muscle but increased the contraction of the longitudinal muscle. Histamine together with atropine (M3 receptor antagonist) didn't inhibit the contraction of the longitudinal and circular muscle. Therefore, histamine alone and together with atropine increases the ileal longitudinal muscle contraction suggesting that additional mechanisms (decreased receptor density, postreceptor signaling or distribution of agonists) might be involved in the regulation of ileal muscle contractility. In conclusion, histamine and/or atropine has some effect on the regulation of the longitudinal contractility regardless of M3 receptor and the simpler test would be preferred as the drug impurity test compared to more complicated tests.

Study on the Binding of New Anti-ulcer Agent(IY-80843 and IY-80845) to Histamine $H_2$-Receptor in Isolated Guinea Pig Gastric Glands (새로운 항궤양제(IY-80843과 IY-80845)의 기니픽 위점막세포 $H_2$-수용체에 대한 결합반응연구)

  • 김승희;우승희;정숙영;문애리;이송득;김동연;이승룡
    • YAKHAK HOEJI
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    • v.39 no.2
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    • pp.153-160
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    • 1995
  • Receptor binding study was carried out as an in vitro assay to test the anti-ulcer effect for newly synthesized test compounds(IY-80843 and IY-80845) which were reported to have a strong anti-secretory effect in Shay-ligated rats. The histamine H$_{2}$-receptor fraction was prepared from the membranes of the isolated gastric glands in guinea pigs and $^{3}$H-cimetidine was used as a radioligand. The binding of $^{3}$H-cimetidine to the membranes of the isolated gastric glands was found to be time dependent, saturable and confined to a single population of binding sites with $K_{D}$ value of 0.13$\pm$0.03 $\mu{M}$ and B$_{max}$ value of 52.5$\pm$1.5 pmol/mg. From the competition experiments, both IY-80843 and IY-80845 were shown to have a strong blocking effect against binding of $^{3}$H-cimetidine to the histamine H$_{2}$-receptor. The IC$_{50}$, Ki, and Hill coefficient(nH) values for IY-80843 were 0.18$\pm$0.02 $\mu{M}$, 0.16$\pm$0.02 $\mu{M}$, and 0.97$\pm$0.15, respectively and those values for IY-80845 were 0.27$\pm$0.02 $\mu{M}$, 0.24$\pm$0.02 $\mu{M}$, and 0.82$\pm$0.13, respectively. The results demonstrated that the blocking effects of IY-80843 and IY-80845 were 7 and 5 times stronger than that of cimetidine, respectively. Therefore, the newly synthesized compounds, IY-80843 and IY-80845, appeared to be the highly potent competitive inhibitors of histamine on the H$_{2}$-receptor.

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Crotamiton, an Anti-Scabies Agent, Suppresses Histamine- and Chloroquine-Induced Itch Pathways in Sensory Neurons and Alleviates Scratching in Mice

  • Choi, Da-Som;Ji, Yeounjung;Jang, Yongwoo;Lee, Wook-Joo;Shim, Won-Sik
    • Biomolecules & Therapeutics
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    • v.28 no.6
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    • pp.569-575
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    • 2020
  • Crotamiton is an anti-scabies drug, but it was recently found that crotamiton also suppresses non-scabietic itching in mice. However, the underlying mechanism is largely unclear. Therefore, aim of the study is to investigate mechanisms of the anti-pruritic effect of crotamiton for non-scabietic itching. Histamine and chloroquine are used as non-scabietic pruritogens. The effect of crotamiton was identified using fluorometric intracellular calcium assays in HEK293T cells and primary cultured dorsal root ganglion (DRG) neurons. Further in vivo effect was evaluated by scratching behavior tests. Crotamiton strongly inhibited histamine-induced calcium influx in HEK293T cells, expressing both histamine receptor 1 (H1R) and transient receptor potential vanilloid 1 (TRPV1), as a model of histamine-induced itching. Similarly, it also blocked chloroquine-induced calcium influx in HEK293T cells, expressing both Mas-related G-protein-coupled receptor A3 (MRGPRA3) and transient receptor potential A1 (TRPA1), as a model of histamine-independent itching. Furthermore, crotamiton also suppressed both histamine- and chloroquine-induced calcium influx in primary cultures of mouse DRG. Additionally, crotamiton strongly suppressed histamine- and chloroquine-induced scratching in mice. Overall, it was found that crotamiton has an anti-pruritic effect against non-scabietic itching by histamine and chloroquine. Therefore, crotamiton may be used as a general anti-pruritic agent, irrespective of the presence of scabies.

Antihistaminic Action of Medicinal Plants

  • Lee, Yeun-Ju;Son, Jong-Keun;Lee, Shin-Woong
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1996.04a
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    • pp.202-202
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    • 1996
  • The antihistaminic action of eighteen herbal medicines was investigated by the radioligand binding and functional assays. The hexane fractions of Trichosanthis radix, Mori cortex radicis and Evodiae fructus dose-dependently inhibited [$^3$H]mepyramine binding to H$_1$ receptor and histamine-induced contraction in guinea-pig brain homogenates and isolated guinea-pig ilea, respectively. Antihistaminic action of the hexane and ethylacetate fractions of Mori cortex radicis and the hexane fraction of Evodiae fructus was more potent than their antimuscarinic action evaluated from the inhibition of [$^3$H]QNB binding and carbachol response. The ethylacetate and chloroform fractions and six known flavonoids from Scutellariae radix also inhibited histamine-induced contraction, but antihistaminic potencies of these fractions and compounds were almost identical with their antimuscarinic potencies. The hexane fractions of Mori cortex radicis and Evodiae fructus, as shown in ketotifen, inhibited selectively the increase of cutaneous vascular permeability induced by histamine. However, wogonin (SC-1) from Scutellariae radix was a nonselective inhibitor for the effect of histamine and serotonin on the vascular permeability. These results demonstrate that the hexane and ethylacetate fractions of Mori cortex radicis and the hexane fraction of Evodiae fructus have the selective histamine H$_1$ receptor blocking activities.

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Synthesis of Histamine $H_2$-receptor antagonists - Synthesis of 5,6-dihydro[2,1-b]thiazole derivatives - (Histamine $H_2$-수용체길항제의 합성 - 5,6-Dihydroimidazo[2,1-b]thiazole 유도체의 합성 -)

  • 박상우;이강노
    • YAKHAK HOEJI
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    • v.35 no.5
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    • pp.368-371
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    • 1991
  • For the development of new antiulcer agents 5, 6-dihydroimidazo[2, 1-b]- thiazoles substituted at the 3-position are sythesized. Thus, the reaction of 3-chloromethyl-5, 6-dihydroimidazo[2, 1-b]thiazole(2) with thiourea and subsequently with 3-chloro-propionitrile gives 3-[3-[5, 6-dihydroimidazo[2, 1-b]thiazolyl]methylthio]propionitrile(4), which by partial alcoholysis with methanol is converted into methyl-3-[3-[5, 6-dihydro-imidazo[2, 1-b]thiazoyl]methylthio]propionimidate(5) . This compound(5) is treated finally with sulfamide or sulfonamides. 3-[3-[5, 6-dihydroimidazo[2, 1-b]thiazoyl]methylthiol-N$^{2}$-sulfamoyl-propionamidine(6) inhibited gastric acid secretion (45%) when administered intraduodenally (100 mg/kg) to pylorus-ligated rats.

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Effects of histamine on the ruminal smooth muscle motility of cattle (소(牛)의 제1위 평활근 운동성에 대한 histamine의 효과)

  • Yoon, Byeong-cheol;Han, Ho-jae;Han, Bang-keun
    • Korean Journal of Veterinary Research
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    • v.34 no.3
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    • pp.471-478
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    • 1994
  • Effects of histamine on the ruminal smooth muscle motility of cattle were investigated in the longitudinal and circular smooth muscle strips. In order to these experiments, specimens were obtained from 35 korean native cattles, 3-4 years old, in Kwang-ju area slaughterhouse. Smooth muscle strips of rumen were made from sample, and then measured the isometric contraction with physiograph in $37{^{\circ}C}$ organ bath. The results were as follows : 1. Histamine caused two different types of response(a contraction or a relaxation) on the smooth muscle of cattle rumen. These responses increased in dose dependant manner. 2. Pyrilamine($H_1$-receptor antagonist) completely blocked contraction in all the preparation and converted the response into relaxation. 3. Cimetidine($H_2$-receptor antagonist) completely blocked relaxation in all the preparation and converted the response into contraction. 4. The contraction induced by histamine($10^{-3}M$) was not Mocked by cholinergic, adrenergic blocker or hexamethonium. 5. The contraction induced by histamine($10^{-3}M$) was markedly inhibited in the $Ca^{2+}$ free(or EDTA 2Na) Kreb's solution and by verapamil.

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Effects of Histamine on Cultured Interstitial Cells of Cajal in Murine Small Intestine

  • Kim, Byung Joo;Kwon, Young Kyu;Kim, Euiyong;So, Insuk
    • The Korean Journal of Physiology and Pharmacology
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    • v.17 no.2
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    • pp.149-156
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    • 2013
  • Interstitial cells of Cajal (ICCs) are the pacemaker cells in the gastrointestinal tract, and histamine is known to regulate neuronal activity, control vascular tone, alter endothelial permeability, and modulate gastric acid secretion. However, the action mechanisms of histamine in mouse small intestinal ICCs have not been previously investigated, and thus, in the present study, we investigated the effects of histamine on mouse small intestinal ICCs, and sought to identify the receptors involved. Enzymatic digestions were used to dissociate ICCs from small intestines, and the whole-cell patch-clamp configuration was used to record potentials (in current clamp mode) from cultured ICCs. Histamine was found to depolarize resting membrane potentials concentration dependently, and whereas 2-PEA (a selective H1 receptor agonist) induced membrane depolarizations, Dimaprit (a selective H2-agonist), R-alpha-methylhistamine (R-alpha-MeHa; a selective H3-agonist), and 4-methylhistamine (4-MH; a selective H4-agonist) did not. Pretreatment with $Ca^{2+}$-free solution or thapsigargin (a $Ca^{2+}$-ATPase inhibitor in endoplasmic reticulum) abolished the generation of pacemaker potentials and suppressed histamine-induced membrane depolarization. Furthermore, treatments with U-73122 (a phospholipase C inhibitor) or 5-fluoro-2-indolyl des-chlorohalopemide (FIPI; a phospholipase D inhibitor) blocked histamine-induced membrane depolarizations in ICCs. On the other hand, KT5720 (a protein kinase A inhibitor) did not block histamine-induced membrane depolarization. These results suggest that histamine modulates pacemaker potentials through H1 receptor-mediated pathways via external $Ca^{2+}$ influx and $Ca^{2+}$ release from internal stores in a PLC and PLD dependent manner.

Regulation of Histamine Release by Kappa Opioid Receptor in Rat Cortical Slices (백서 대뇌피질에서 Opioid Kappa수용체의 Histamine 유리조절기능에 관한 연구)

  • Kim, Kee-Won;Cho, Kyu-Park
    • The Korean Journal of Pharmacology
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    • v.30 no.1
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    • pp.1-9
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    • 1994
  • It has been shown that there are several subtypes of ${\kappa}$ opioid receptor. We examined ligand binding profiles and the effects of various opioid agonists on high potassium-stimulated release of $[^3H]$ histamine. We have evaluated the properties of $non-{\mu},\;non-{\delta},$ binding of $[^3H]\;DIP\;([^3H]\;diprenorphine),$ anonselective opioid antagonist, in rat cortex membranes. Binding $to\;{\mu}\;and\;{\delta}$ sites was inhibited by the use of an excess of competing selective agonists (DAMGO, DPDPE) for these sites. (-) Ethylketocyclazocine (EKC), DIP and bremazocine inhibited $[^3H]$ DIP binding. However, arylacetamides (U69593 and U50488H) gave little inhibition Replacement of sodium by NMDG and the addition of guanine nucleotide influenced the inhibitory potency of (-) EKC, an agonist for {\kappa}_1-and-{\kappa}_2-binding site, but not of bremazocine. This result suggests that bremazocine can be an antagonist at this binding site. Also, we have examined the opioid modulation of $K^+(30mM)-induced\;[^3H]\;histamine$ release in rat frontal cortex slices labeled with $1-[^3H]\;histidine$. The $[^3H]\; histamine$ release from cortex slices was inhibited by EKC in a concentration-dependent manner. However, the ${\delta}$ receptor selective agonists, DPDPE and deltorphine II, ${\mu}$ receptor agonists, DAMGO and TAPS, ${\kappa}_1-agonists$, U69593 and U50488H, and ${\varepsilon}-agonist,\;{\beta}-endorphin,$ did not. The concentration-response curve of EKC was shifted to right in the presence of naloxone, nor-binaltorphimine and bremazocine, respectively. These results suggest that ${\kappa}_2$ opioid receptor regulates histamine release in the fromtal cortex of the rat.

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Effects of Histamine Pretreatment on the subsequent Noradrenaline-induced Contraction and $K^+-Contracture$ in Rabbit Renal Artery (가토 신동맥의 고농도 Histamine에 의한 노아드레날린 유발 수축 및 K-경축 약화 기전)

  • Lee, Sung-Woo;Kim, Se-Hoon;Chang, Seok-Jong;Park, Hae-Kun
    • The Korean Journal of Physiology
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    • v.23 no.2
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    • pp.351-361
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    • 1989
  • The contraction of renal arterial strip by no.epineph.me (NE) or 40 mM $K^+$ were Significantly attenuated after histamine $(10^{-5}\;M)-induced$ contraction. The mechanisms of this phenomenon were investigated in the helical strips of isolated renal artery with the measurement of isometric tension. The arterial strip was immersed in the tris-buffered Tyrode's solution which was equilibrated with 100% $O_2\;at\;35^{\circ}C$. The contraction was induced by NE or 40 mM $K^+$ during the recovery from the histamine-induced contraction which lasted for 15 minutes. The contraction by NE was also attenuated in the $Ca^{2+}-free$ Tyrode's solution and the increase of contraction by addition of 2 mM $Ca^{2+}$ was attenuated as well. This attenuation phenomenon was not observed in the presence of low concentration $(3{\times}10^{-7}\;M)$ of histamine. This attenuation was not affected by destruction of endothelium, pretreatment with papaverine or propranolol. This attenuation was partially inhibited by pretreatment of ouabain or in low $K^+(0.5 mM)$ Tyrode's solution. But the attenuation in the $Ca^{2+}-free$ Tyrode's solution was not inhibited. Furthermore this attenuation was completely blocked by pretreatment of djphenhydramine $(H_1-receptor blocker)$ and potentiated by pretreatment of cimetidine $(H_2-receptor\;blocker)$. This attenuation Phenomenon was disappeared after recovery of 1 hour. From the above results, it is suggested that the attenuation phenomenon may be resulted partially from the activation of $Na^+-K^+$ exchange pump and partially from the depletion of intracellular $Ca^{2+}$ pool after the histamine-induced contraction mediated through $H_1-receptor$ function.

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