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      KCI등재 SCIE SCOPUS

      The comparative effects of aminoglycoside antibiotics and muscle relaxants on electrical field stimulation response in rat bladder smooth muscle

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      https://www.riss.kr/link?id=A103567403

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      다국어 초록 (Multilingual Abstract)

      It has been reported that several aminoglycosideantibiotics have a potential of prolonging the action of nondepolarizingmuscle relaxants by drug interactions actingpre-synaptically to inhibit acetylcholine release, butantibiotics itself also have a st...

      It has been reported that several aminoglycosideantibiotics have a potential of prolonging the action of nondepolarizingmuscle relaxants by drug interactions actingpre-synaptically to inhibit acetylcholine release, butantibiotics itself also have a strong effect on relaxing thesmooth muscle. In this study, four antibiotics of aminoglycosidessuch as gentamicin, streptomycin, kanamycinand neomycin were compared with skeletal muscle relaxantsbaclofen, tubocurarine, pancuronium and succinylcholine,and a smooth muscle relaxant, papaverine. Themuscle strips isolated from the rat bladder were stimulatedwith pulse trains of 40 V in amplitude and 10 s in duration,with pulse duration of 1 ms at the frequency of 1–8 Hz, at1, 2, 4, 6, 8 Hz respectively. To test the effect of fourantibiotics on bladder smooth muscle relaxation, each ofthem was treated cumulatively from 1 lM to 0.1 mM withan interval of 5 min. Among the four antibiotics, gentamicinand neomycin inhibited the EFS response. The skeletalmuscle relaxants (baclofen, tubocurarine, pancuronium andsuccinylcholine) and inhibitory neurotransmitters (GABAand glycine) did not show any significant effect. However,papaverine, had a significant effect in the relaxation of thesmooth muscle. It was suggested that the aminoglycosideantibiotics have inhibitory effect on the bladder smoothmuscle.

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      참고문헌 (Reference)

      1 Simpson RK Jr, "The role of glycine in spinal shock" 19 : 215-224, 1996

      2 Gergawy M, "The mechanism by which aminoglycoside antibiotics cause vasodilation of canine cerebral arteries" 125 : 1150-1157, 1998

      3 Wright JM, "The effects of neomycin upon transmitter release and action" 200 : 576-587, 1977

      4 Hester RK, "The effects of gentamicin on tension responses to norepinephrine and KCl and Ca++ binding and fluxes in canine renal vein" 264 : 118-134, 1983

      5 민창호, "The Inhibitory Mechanism of Gentamicin on Electrical Field Stimulation Response in Rat Bladder Smooth Muscle" 대한약리학회 19 (19): 473-478, 2015

      6 Smith LR, "Systems analysis of biological networks in skeletal muscle function" 5 : 55-71, 2013

      7 Aragon C, "Structure, function and regulation of glycine neurotransporters" 479 : 249-262, 2003

      8 Saha JK, "Role of chloride ions in lower esophageal sphincter tone and relaxation" 263 : G115-G126, 1992

      9 Karatas Y, "Possible postsynaptic action of aminoglycosides in the frog rectus abdominis" 54 : 49-56, 2000

      10 Mogami H, "Phospholipase C inhibitor, U73122, releases intracellular Ca2+, potentiates Ins(1,4,5) P3-mediated Ca2+ release and directly activates ion channels in mouse pancreatic acinar cells" 324 (324): 645-651, 1997

      1 Simpson RK Jr, "The role of glycine in spinal shock" 19 : 215-224, 1996

      2 Gergawy M, "The mechanism by which aminoglycoside antibiotics cause vasodilation of canine cerebral arteries" 125 : 1150-1157, 1998

      3 Wright JM, "The effects of neomycin upon transmitter release and action" 200 : 576-587, 1977

      4 Hester RK, "The effects of gentamicin on tension responses to norepinephrine and KCl and Ca++ binding and fluxes in canine renal vein" 264 : 118-134, 1983

      5 민창호, "The Inhibitory Mechanism of Gentamicin on Electrical Field Stimulation Response in Rat Bladder Smooth Muscle" 대한약리학회 19 (19): 473-478, 2015

      6 Smith LR, "Systems analysis of biological networks in skeletal muscle function" 5 : 55-71, 2013

      7 Aragon C, "Structure, function and regulation of glycine neurotransporters" 479 : 249-262, 2003

      8 Saha JK, "Role of chloride ions in lower esophageal sphincter tone and relaxation" 263 : G115-G126, 1992

      9 Karatas Y, "Possible postsynaptic action of aminoglycosides in the frog rectus abdominis" 54 : 49-56, 2000

      10 Mogami H, "Phospholipase C inhibitor, U73122, releases intracellular Ca2+, potentiates Ins(1,4,5) P3-mediated Ca2+ release and directly activates ion channels in mouse pancreatic acinar cells" 324 (324): 645-651, 1997

      11 조영래, "P2X and P2Y Receptors Mediate Contraction Induced by Electrical Field Stimulation in Feline Esophageal Smooth Muscle" 대한약리학회 14 (14): 311-316, 2010

      12 Santi R, "On the mechanism of spasmolytic effect of papaverine and certain derivatives" 13 : 153-158, 1964

      13 Iguchi M, "On the mechanism of papaverine inhibition of the voltage-dependent Ca++ current in isolated smooth muscle cells from the guinea pig trachea" 263 : 194-200, 1992

      14 Paradelis AG, "Neuromuscular blocking activity of aminoglycoside antibiotics" 2 : 45-51, 1980

      15 Burkett L, "Mutual potentiation of the neuromuscular effects of antibiotics and relaxants" 58 : 107-115, 1979

      16 Milanov IG, "Mechanisms of baclofen action on spasticity" 85 : 305-310, 1992

      17 Altinkurt O, "Inhibitory effects of streptomycin on bronchoconstrictor, hypotensive and inflammatory responses to bradykinin and histamine" 246 : 277-285, 1980

      18 de Groat WC, "Inhibition and facilitation in parasympathetic ganglia of the urinary bladder" 39 : 2990-2996, 1980

      19 Brooks PL, "GABAergic and glycinergic control of upper airway motoneurons in rapid eye movement sleep" 669 : 259-262, 2010

      20 Bartholini G, "GABA receptor agonists: pharmacological spectrum and therapeutic actions" 5 : 55-75, 1985

      21 Persson K, "Effects of ovariectomy on mechanical properties and collagen content in rabbit lower urinary tract smooth muscle" 30 : 7-14, 1996

      22 Hague BA, "Effects of high-dose gentamicin sulfate on neuromuscular blockade in halothaneanesthetized horses" 58 : 1324-1326, 1997

      23 Ellis KO, "Dantrolene, a direct acting skeletal muscle relaxant" 62 : 948-951, 1973

      24 Eckly-Michel AE, "Chelerythrine, a protein kinase C inhibitor, interacts with cyclic nucleotide phosphodiesterases" 324 : 85-88, 1997

      25 Herbert JM, "Chelerythrine is a potent and specific inhibitor of protein kinase C" 172 : 993-999, 1990

      26 Torocsik A, "Characterization of somatodendritic neuronal nicotinic receptors located on the myenteric plexus" 202 : 297-302, 1991

      27 Raezer DM, "Autonomic innervation of canine urinary bladder. Cholinergic and adrenergic contributions and interaction of sympathetic and parasympathetic nervous systems in bladder function" 2 : 211-221, 1973

      28 Davidoff RA, "Antispasticity drugs: mechanisms of action" 17 : 107-116, 1985

      29 Wright EA, "Antibiotic-induced neuromuscular blockade" 183 : 358-368, 1971

      30 Pittinger C, "Antibiotic blockade of neuromuscular function" 12 : 169-184, 1972

      31 Corrado AP, "Aminoglycoside antibiotics as a tool for the study of the biological role of calcium ions. Historical overview" 39 : 419-430, 1989

      32 Wakabayashi Y, "Adrenergic innervation of the urinary bladder body in the cat with special reference to structure of the detrusor muscle: an immunohistochemical study of noradrenaline and its synthesizing enzymes" 57 : 277-289, 1994

      33 Todd JK, "A study of human bladder detrusor muscle" 41 : 448-454, 1969

      34 Beebe FA, "A clinical and pharmacologic review of skeletal muscle relaxants for musculoskeletal conditions" 12 : 151-171, 2005

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      1998-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.96 0.2 1.44
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      1.07 0.87 0.439 0.05
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