Page last updated: 2024-10-24

verapamil and Electrolytes

verapamil has been researched along with Electrolytes in 34 studies

Verapamil: A calcium channel blocker that is a class IV anti-arrhythmia agent.
verapamil : A racemate comprising equimolar amounts of dexverapamil and (S)-verapamil. An L-type calcium channel blocker of the phenylalkylamine class, it is used (particularly as the hydrochloride salt) in the treatment of hypertension, angina pectoris and cardiac arrhythmia, and as a preventive medication for migraine.
2-(3,4-dimethoxyphenyl)-5-{[2-(3,4-dimethoxyphenyl)ethyl](methyl)amino}-2-(propan-2-yl)pentanenitrile : A tertiary amino compound that is 3,4-dimethoxyphenylethylamine in which the hydrogens attached to the nitrogen are replaced by a methyl group and a 4-cyano-4-(3,4-dimethoxyphenyl)-5-methylhexyl group.

Electrolytes: Substances that dissociate into two or more ions, to some extent, in water. Solutions of electrolytes thus conduct an electric current and can be decomposed by it (ELECTROLYSIS). (Grant & Hackh's Chemical Dictionary, 5th ed)

Research Excerpts

ExcerptRelevanceReference
"The objective of this randomised open, active controlled, cross-over study was to evaluate the effect of a fixed combination of verapamil SR/trandolapril compared to captopril/hydrochlorothiazide on serum lipids, lipoproteins, and other metabolic and electrolyte parameters in patients with essential hypertension."9.09Evaluation of the effects of fixed combinations of sustained-release verapamil/trandolapril versus captopril/hydrochlorothiazide on metabolic and electrolyte parameters in patients with essential hypertension. ( Cifková, R; Compagnone, D; Hejl, Z; Nakov, R; Novozámská, E; Petrzílková, Z; Poledne, R; Stávek, P, 2000)
"The effects of verapamil and bendrofluazide used singly and in combination were examined in patients with primary hypertension in a patient blind, partly observer blind placebo controlled study of parallel group design; there were ten subjects in each arm of the trial."9.06Verapamil and bendrofluazide in the treatment of hypertension: a controlled study of effectiveness alone and in combination. ( Benjamin, N; Phillips, RJ; Robinson, BF, 1988)
"In a double-blind, cross-over study for 6 weeks that included 28 patients with essential hypertension, WHO stage I-II, the hypotensive action of verapamil (160 mg thrice daily) was compared with nifedipine (20 mg slow release twice daily)."9.05Verapamil compared with nifedipine in the treatment of essential hypertension. ( Hals, O; Midtbø, K; van der Meer, J, 1982)
"The objective of this randomised open, active controlled, cross-over study was to evaluate the effect of a fixed combination of verapamil SR/trandolapril compared to captopril/hydrochlorothiazide on serum lipids, lipoproteins, and other metabolic and electrolyte parameters in patients with essential hypertension."5.09Evaluation of the effects of fixed combinations of sustained-release verapamil/trandolapril versus captopril/hydrochlorothiazide on metabolic and electrolyte parameters in patients with essential hypertension. ( Cifková, R; Compagnone, D; Hejl, Z; Nakov, R; Novozámská, E; Petrzílková, Z; Poledne, R; Stávek, P, 2000)
"The effects of verapamil and bendrofluazide used singly and in combination were examined in patients with primary hypertension in a patient blind, partly observer blind placebo controlled study of parallel group design; there were ten subjects in each arm of the trial."5.06Verapamil and bendrofluazide in the treatment of hypertension: a controlled study of effectiveness alone and in combination. ( Benjamin, N; Phillips, RJ; Robinson, BF, 1988)
"In a double-blind, cross-over study for 6 weeks that included 28 patients with essential hypertension, WHO stage I-II, the hypotensive action of verapamil (160 mg thrice daily) was compared with nifedipine (20 mg slow release twice daily)."5.05Verapamil compared with nifedipine in the treatment of essential hypertension. ( Hals, O; Midtbø, K; van der Meer, J, 1982)
"The role of epidermal growth factor (EGF) in the acute regulation of intestinal transport of electrolytes and glucose was examined."3.68Epidermal growth factor upregulates intestinal electrolyte and nutrient transport. ( Gall, DG; Hardin, J; Opleta-Madsen, K, 1991)
"Pretreatment with diltiazem and verapamil did not influence the magnitude of these changes but reduced the drop in s-urate."2.66Adrenaline-induced changes in serum electrolytes, ECG, and blood pressure, with Ca-blockade pretreatment. ( Hansen, O; Johansson, BW; Juul-Möller, S; Svensson, O, 1988)
"Mycophenolic acid was detected in all cats."2.61 ( Abrams, G; Adolfsson, E; Agarwal, PK; Akkan, AG; Al Alhareth, NS; Alves, VGL; Armentano, R; Bahroos, E; Baig, M; Baldridge, KK; Barman, S; Bartolucci, C; Basit, A; Bertoli, SV; Bian, L; Bigatti, G; Bobenko, AI; Boix, PP; Bokulic, T; Bolink, HJ; Borowiec, J; Bulski, W; Burciaga, J; Butt, NS; Cai, AL; Campos, AM; Cao, G; Cao, Y; Čapo, I; Caruso, ML; Chao, CT; Cheatum, CM; Chelminski, K; Chen, AJW; Chen, C; Chen, CH; Chen, D; Chen, G; Chen, H; Chen, LH; Chen, R; Chen, RX; Chen, X; Cherdtrakulkiat, R; Chirvony, VS; Cho, JG; Chu, K; Ciurlino, D; Coletta, S; Contaldo, G; Crispi, F; Cui, JF; D'Esposito, M; de Biase, S; Demir, B; Deng, W; Deng, Z; Di Pinto, F; Domenech-Ximenos, B; Dong, G; Drácz, L; Du, XJ; Duan, LJ; Duan, Y; Ekendahl, D; Fan, W; Fang, L; Feng, C; Followill, DS; Foreman, SC; Fortunato, G; Frew, R; Fu, M; Gaál, V; Ganzevoort, W; Gao, DM; Gao, X; Gao, ZW; Garcia-Alvarez, A; Garza, MS; Gauthier, L; Gazzaz, ZJ; Ge, RS; Geng, Y; Genovesi, S; Geoffroy, V; Georg, D; Gigli, GL; Gong, J; Gong, Q; Groeneveld, J; Guerra, V; Guo, Q; Guo, X; Güttinger, R; Guyo, U; Haldar, J; Han, DS; Han, S; Hao, W; Hayman, A; He, D; Heidari, A; Heller, S; Ho, CT; Ho, SL; Hong, SN; Hou, YJ; Hu, D; Hu, X; Hu, ZY; Huang, JW; Huang, KC; Huang, Q; Huang, T; Hwang, JK; Izewska, J; Jablonski, CL; Jameel, T; Jeong, HK; Ji, J; Jia, Z; Jiang, W; Jiang, Y; Kalumpha, M; Kang, JH; Kazantsev, P; Kazemier, BM; Kebede, B; Khan, SA; Kiss, J; Kohen, A; Kolbenheyer, E; Konai, MM; Koniarova, I; Kornblith, E; Krawetz, RJ; Kreouzis, T; Kry, SF; Laepple, T; Lalošević, D; Lan, Y; Lawung, R; Lechner, W; Lee, KH; Lee, YH; Leonard, C; Li, C; Li, CF; Li, CM; Li, F; Li, J; Li, L; Li, S; Li, X; Li, Y; Li, YB; Li, Z; Liang, C; Lin, J; Lin, XH; Ling, M; Link, TM; Liu, HH; Liu, J; Liu, M; Liu, W; Liu, YP; Lou, H; Lu, G; Lu, M; Lun, SM; Ma, Z; Mackensen, A; Majumdar, S; Martineau, C; Martínez-Pastor, JP; McQuaid, JR; Mehrabian, H; Meng, Y; Miao, T; Miljković, D; Mo, J; Mohamed, HSH; Mohtadi, M; Mol, BWJ; Moosavi, L; Mosdósi, B; Nabu, S; Nava, E; Ni, L; Novakovic-Agopian, T; Nyamunda, BC; Nyul, Z; Önal, B; Özen, D; Özyazgan, S; Pajkrt, E; Palazon, F; Park, HW; Patai, Á; Patai, ÁV; Patzke, GR; Payette, G; Pedoia, V; Peelen, MJCS; Pellitteri, G; Peng, J; Perea, RJ; Pérez-Del-Rey, D; Popović, DJ; Popović, JK; Popović, KJ; Posecion, L; Povall, J; Prachayasittikul, S; Prachayasittikul, V; Prat-González, S; Qi, B; Qu, B; Rakshit, S; Ravelli, ACJ; Ren, ZG; Rivera, SM; Salo, P; Samaddar, S; Samper, JLA; Samy El Gendy, NM; Schmitt, N; Sekerbayev, KS; Sepúlveda-Martínez, Á; Sessolo, M; Severi, S; Sha, Y; Shen, FF; Shen, X; Shen, Y; Singh, P; Sinthupoom, N; Siri, S; Sitges, M; Slovak, JE; Solymosi, N; Song, H; Song, J; Song, M; Spingler, B; Stewart, I; Su, BL; Su, JF; Suming, L; Sun, JX; Tantimavanich, S; Tashkandi, JM; Taurbayev, TI; Tedgren, AC; Tenhunen, M; Thwaites, DI; Tibrewala, R; Tomsejm, M; Triana, CA; Vakira, FM; Valdez, M; Valente, M; Valentini, AM; Van de Winckel, A; van der Lee, R; Varga, F; Varga, M; Villarino, NF; Villemur, R; Vinatha, SP; Vincenti, A; Voskamp, BJ; Wang, B; Wang, C; Wang, H; Wang, HT; Wang, J; Wang, M; Wang, N; Wang, NC; Wang, Q; Wang, S; Wang, X; Wang, Y; Wang, Z; Wen, N; Wesolowska, P; Willis, M; Wu, C; Wu, D; Wu, L; Wu, X; Wu, Z; Xia, JM; Xia, X; Xia, Y; Xiao, J; Xiao, Y; Xie, CL; Xie, LM; Xie, S; Xing, Z; Xu, C; Xu, J; Yan, D; Yan, K; Yang, S; Yang, X; Yang, XW; Ye, M; Yin, Z; Yoon, N; Yoon, Y; Yu, H; Yu, K; Yu, ZY; Zhang, B; Zhang, GY; Zhang, H; Zhang, J; Zhang, M; Zhang, Q; Zhang, S; Zhang, W; Zhang, X; Zhang, Y; Zhang, YW; Zhang, Z; Zhao, D; Zhao, F; Zhao, P; Zhao, W; Zhao, Z; Zheng, C; Zhi, D; Zhou, C; Zhou, FY; Zhu, D; Zhu, J; Zhu, Q; Zinyama, NP; Zou, M; Zou, Z, 2019)
"Behavioral performances of six baboons were tested during chronic oral dosing with diuretic (hydrochlorothiazide/triamterene), a calcium channel blocker (verapamil), and a combination of the two drugs."1.28Behavioral effects of chronic, orally administered diuretic and verapamil in baboons. ( Hienz, RD; Turkkan, JS, 1991)
"The verapamil doses were injected by subcutaneous route 24 and 3 hr prior to administration of a single dose of doxorubicin (20 mg/kg, IP), followed by daily treatment with verapamil for 20 subsequent days."1.27Effects of verapamil on doxorubicin-induced mortality and electrolyte changes in the mouse heart. ( Giri, SN; Marafino, BJ, 1984)

Research

Studies (34)

TimeframeStudies, this research(%)All Research%
pre-199021 (61.76)18.7374
1990's9 (26.47)18.2507
2000's2 (5.88)29.6817
2010's2 (5.88)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Bobenko, AI1
Heller, S1
Schmitt, N1
Cherdtrakulkiat, R1
Lawung, R1
Nabu, S1
Tantimavanich, S1
Sinthupoom, N1
Prachayasittikul, S1
Prachayasittikul, V1
Zhang, B1
Wu, C1
Zhang, Z2
Yan, K1
Li, C2
Li, Y4
Li, L3
Zheng, C1
Xiao, Y1
He, D1
Zhao, F1
Su, JF1
Lun, SM1
Hou, YJ1
Duan, LJ1
Wang, NC1
Shen, FF1
Zhang, YW1
Gao, ZW1
Li, J5
Du, XJ1
Zhou, FY1
Yin, Z1
Zhu, J2
Yan, D1
Lou, H1
Yu, H1
Feng, C1
Wang, Z1
Wang, Y4
Hu, X1
Li, Z2
Shen, Y1
Hu, D1
Chen, H1
Wu, X1
Duan, Y1
Zhi, D1
Zou, M2
Zhao, Z1
Zhang, X2
Yang, X2
Zhang, J2
Wang, H1
Popović, KJ1
Popović, DJ1
Miljković, D1
Lalošević, D1
Čapo, I1
Popović, JK1
Liu, M1
Song, H2
Xing, Z1
Lu, G1
Chen, D1
Valentini, AM1
Di Pinto, F1
Coletta, S1
Guerra, V1
Armentano, R1
Caruso, ML1
Gong, J1
Wang, N1
Bian, L1
Wang, M1
Ye, M1
Wen, N1
Fu, M1
Fan, W1
Meng, Y1
Dong, G1
Lin, XH1
Liu, HH1
Gao, DM1
Cui, JF1
Ren, ZG1
Chen, RX1
Önal, B1
Özen, D1
Demir, B1
Akkan, AG1
Özyazgan, S1
Payette, G1
Geoffroy, V1
Martineau, C1
Villemur, R1
Jameel, T1
Baig, M1
Gazzaz, ZJ1
Tashkandi, JM1
Al Alhareth, NS1
Khan, SA1
Butt, NS1
Wang, J2
Geng, Y1
Zhang, Y3
Wang, X2
Liu, J2
Basit, A1
Miao, T1
Liu, W1
Jiang, W1
Yu, ZY1
Wu, L2
Qu, B1
Sun, JX1
Cai, AL1
Xie, LM1
Groeneveld, J1
Ho, SL1
Mackensen, A1
Mohtadi, M1
Laepple, T1
Genovesi, S1
Nava, E1
Bartolucci, C1
Severi, S1
Vincenti, A1
Contaldo, G1
Bigatti, G1
Ciurlino, D1
Bertoli, SV1
Slovak, JE1
Hwang, JK1
Rivera, SM1
Villarino, NF1
Li, S1
Cao, G1
Ling, M1
Ji, J1
Zhao, D1
Sha, Y1
Gao, X1
Liang, C2
Guo, Q1
Zhou, C1
Ma, Z1
Xu, J1
Wang, C1
Zhao, W1
Xia, X1
Jiang, Y1
Peng, J1
Jia, Z1
Li, F1
Chen, X2
Mo, J1
Zhang, S2
Li, X1
Huang, T1
Zhu, Q1
Wang, S1
Ge, RS1
Fortunato, G1
Lin, J2
Agarwal, PK1
Kohen, A1
Singh, P1
Cheatum, CM1
Zhu, D1
Hayman, A1
Kebede, B1
Stewart, I1
Chen, G1
Frew, R1
Guo, X1
Gong, Q1
Borowiec, J1
Han, S1
Zhang, M1
Willis, M1
Kreouzis, T1
Yu, K1
Chirvony, VS1
Sekerbayev, KS1
Pérez-Del-Rey, D1
Martínez-Pastor, JP1
Palazon, F1
Boix, PP1
Taurbayev, TI1
Sessolo, M1
Bolink, HJ1
Lu, M1
Lan, Y1
Xiao, J1
Song, M1
Chen, C1
Huang, Q1
Cao, Y1
Ho, CT1
Qi, B1
Wang, Q1
Zhang, W1
Fang, L1
Xie, CL1
Chen, R1
Yang, S1
Xia, JM1
Zhang, GY1
Chen, CH1
Yang, XW1
Domenech-Ximenos, B1
Garza, MS1
Prat-González, S1
Sepúlveda-Martínez, Á1
Crispi, F1
Perea, RJ1
Garcia-Alvarez, A1
Sitges, M1
Kalumpha, M1
Guyo, U1
Zinyama, NP1
Vakira, FM1
Nyamunda, BC1
Varga, M1
Drácz, L1
Kolbenheyer, E1
Varga, F1
Patai, ÁV1
Solymosi, N1
Patai, Á1
Kiss, J1
Gaál, V1
Nyul, Z1
Mosdósi, B1
Valdez, M1
Moosavi, L1
Heidari, A1
Novakovic-Agopian, T1
Kornblith, E1
Abrams, G1
McQuaid, JR1
Posecion, L1
Burciaga, J1
D'Esposito, M1
Chen, AJW1
Samy El Gendy, NM1
Wesolowska, P1
Georg, D1
Lechner, W1
Kazantsev, P1
Bokulic, T1
Tedgren, AC1
Adolfsson, E1
Campos, AM1
Alves, VGL1
Suming, L1
Hao, W1
Ekendahl, D1
Koniarova, I1
Bulski, W1
Chelminski, K1
Samper, JLA1
Vinatha, SP1
Rakshit, S1
Siri, S1
Tomsejm, M1
Tenhunen, M1
Povall, J1
Kry, SF1
Followill, DS1
Thwaites, DI1
Izewska, J1
Kang, JH1
Yoon, Y1
Song, J1
Van de Winckel, A1
Gauthier, L1
Chao, CT1
Lee, YH1
Li, CM1
Han, DS1
Huang, JW1
Huang, KC1
Ni, L1
Güttinger, R1
Triana, CA1
Spingler, B1
Baldridge, KK1
Patzke, GR1
Shen, X1
Wang, B1
Xie, S1
Deng, W1
Wu, D1
Zhang, Q1
Voskamp, BJ1
Peelen, MJCS1
Ravelli, ACJ1
van der Lee, R1
Mol, BWJ1
Pajkrt, E1
Ganzevoort, W1
Kazemier, BM1
Tibrewala, R1
Bahroos, E1
Mehrabian, H1
Foreman, SC1
Link, TM1
Pedoia, V1
Majumdar, S1
Jablonski, CL1
Leonard, C1
Salo, P1
Krawetz, RJ1
Yoon, N1
Hong, SN1
Cho, JG1
Jeong, HK1
Lee, KH1
Park, HW1
Barman, S1
Konai, MM1
Samaddar, S1
Haldar, J1
Mohamed, HSH1
Li, CF1
Hu, ZY1
Deng, Z1
Chen, LH1
Su, BL1
Chu, K1
Liu, YP1
Li, YB1
Zhang, H1
Xu, C1
Zou, Z1
Wu, Z1
Xia, Y1
Zhao, P1
Wang, HT1
de Biase, S1
Pellitteri, G1
Gigli, GL1
Valente, M1
Asensi-Bernardi, L1
Van Schepdael, A1
Lahnsteiner, F1
Midtbø, K1
Hals, O1
van der Meer, J1
Nami, R1
Martinelli, M1
Lo Monaco, B1
Pizzuti, M1
Nardi, PL1
D'Ascenzo, G1
Gennari, C1
Wikberg, JE1
Motté, G1
George, MH1
Leitch, GJ1
Giri, SN1
Marafino, BJ1
Rabkin, SW1
Otten, M1
Polimeni, PI1
Donowitz, M2
Asarkof, N1
Gullikson, GW1
Dajani, EZ1
Bianchi, RG1
Schohn, DC1
Jahn, HA1
Maareck, M1
Kline, JA1
Tomaszewski, CA1
Schroeder, JD1
Raymond, RM1
Kaur, T1
Singh, S1
Verma, M1
Ganguly, NK1
Cifková, R1
Nakov, R1
Novozámská, E1
Hejl, Z1
Petrzílková, Z1
Poledne, R1
Stávek, P1
Compagnone, D1
Fendel, H1
Cooreman, G1
Claeys, J1
Kleesiek, K1
Meyer, J1
Jung, H1
Squadrito, G1
Saitta, A1
Scamardi, R1
Frisina, N1
Cucinotta, D1
Jasmin, G1
Solymoss, B1
Holub, P1
Svec, P1
Edelsteinová, S1
Lazarová, Z1
Drábková, E1
Catto-Smith, AG1
Hardin, JA1
Patrick, MK1
O'Loughlin, EV1
Gall, DG2
Freier, S1
Eran, M1
Alon, Y1
Elath, U1
Turkkan, JS1
Hienz, RD1
Opleta-Madsen, K1
Hardin, J1
Weir, MR1
Klassen, DK1
Shen, SY1
Sullivan, D1
Buddemeyer, EU1
Handwerger, BS1
Ahmed, T1
Abraham, WM1
Horton, JW1
LaRosa, CA1
Sherlock, D1
Kimura, K1
Pimpl, W1
Money, SR1
Jaffe, BM1
Homaidan, FR1
Wicks, J1
Cusolito, S1
el Sabban, ME1
Weiland, GA1
Sharp, WG1
Burnett, JW1
Gean, CJ1
Calton, GJ1
Warnick, JE1
Dreifus, LS1
Mazgalev, T1
Miyagawa, A1
Michelson, EL1
Mittal, SR1
Mathur, AK1
Parchwani, H1
Benjamin, N1
Phillips, RJ1
Robinson, BF1
Johansson, BW1
Hansen, O1
Juul-Möller, S1
Svensson, O1

Reviews

2 reviews available for verapamil and Electrolytes

ArticleYear
    Proceedings. Mathematical, physical, and engineering sciences, 2019, Volume: 475, Issue:2227

    Topics: Acetylcholine; Acinetobacter baumannii; Actinobacteria; Action Potentials; Adalimumab; Adaptation, P

2019
Role of calcium-channel blockers in obstructive airway disease.
    Chest, 1985, Volume: 88, Issue:2 Suppl

    Topics: Acetylcholine; Animals; Asthma; Asthma, Exercise-Induced; Calcium; Calcium Channel Blockers; Diltiaz

1985

Trials

5 trials available for verapamil and Electrolytes

ArticleYear
Verapamil compared with nifedipine in the treatment of essential hypertension.
    Journal of cardiovascular pharmacology, 1982, Volume: 4 Suppl 3

    Topics: Adult; Body Weight; Calcium Channel Blockers; Creatinine; Double-Blind Method; Electrocardiography;

1982
Long term effects of sustained release verapamil on the renal and systemic haemodynamic parameters in hypertensive patients with mild to severe chronic renal failure.
    Drugs, 1993, Volume: 46 Suppl 2

    Topics: Delayed-Action Preparations; Electrolytes; Female; Heart Function Tests; Hemodynamics; Hormones; Hum

1993
Evaluation of the effects of fixed combinations of sustained-release verapamil/trandolapril versus captopril/hydrochlorothiazide on metabolic and electrolyte parameters in patients with essential hypertension.
    Journal of human hypertension, 2000, Volume: 14, Issue:6

    Topics: Adolescent; Adult; Aged; Analysis of Variance; Angiotensin-Converting Enzyme Inhibitors; Antihyperte

2000
Verapamil and bendrofluazide in the treatment of hypertension: a controlled study of effectiveness alone and in combination.
    European journal of clinical pharmacology, 1988, Volume: 34, Issue:3

    Topics: Adult; Bendroflumethiazide; Blood Pressure; Body Weight; Clinical Trials as Topic; Double-Blind Meth

1988
Adrenaline-induced changes in serum electrolytes, ECG, and blood pressure, with Ca-blockade pretreatment.
    Angiology, 1988, Volume: 39, Issue:4

    Topics: Adult; Blood Pressure; Calcium Channel Blockers; Diltiazem; Electrocardiography; Electrolytes; Epine

1988

Other Studies

27 other studies available for verapamil and Electrolytes

ArticleYear
Chiral separations by non-aqueous capillary electrophoresis in DMSO-based background electrolytes.
    Talanta, 2014, Volume: 118

    Topics: Dimethyl Sulfoxide; Electrolytes; Electrophoresis, Capillary; Fenfluramine; Methanol; Pindolol; Ster

2014
The effect of different kinds of electrolyte and non-electrolyte solutions on the survival rate and morphology of zebrafish Danio rerio embryos.
    Journal of fish biology, 2009, Volume: 75, Issue:7

    Topics: Amiloride; Animals; Calcium Channel Blockers; Electrolytes; Embryo, Nonmammalian; Enzyme Inhibitors;

2009
[Effects of calcium antagonists (verapamil and nifedipine) on blood levels of calcium and cyclic AMP in humans].
    Minerva cardioangiologica, 1981, Volume: 29, Issue:6

    Topics: Adult; Calcium; Coronary Disease; Cyclic AMP; Electrocardiography; Electrolytes; Female; Heart; Huma

1981
Reversal of alpha 1-receptor mediated relaxation in intestinal smooth muscle.
    Acta physiologica Scandinavica, 1981, Volume: 111, Issue:4

    Topics: Animals; Clonidine; Electrolytes; Female; Guinea Pigs; Intestines; Male; Muscle Contraction; Muscle

1981
[Cellular effects of anti-arrhythmia drugs. Their predictive value of therapeutic effects].
    Archives des maladies du coeur et des vaisseaux, 1981, Volume: 74 Spec No

    Topics: Amiodarone; Animals; Anti-Arrhythmia Agents; Arrhythmias, Cardiac; Catecholamines; Electrolytes; Hea

1981
Separation of rabbit ileum mucus secretion from electrolyte and water secretion by cholera enterotoxin, verapamil and A23187.
    Life sciences, 1983, Feb-21, Volume: 32, Issue:8

    Topics: Animals; Anti-Bacterial Agents; Body Water; Calcimycin; Calcium; Cell Membrane; Electrolytes; Entero

1983
Effects of verapamil on doxorubicin-induced mortality and electrolyte changes in the mouse heart.
    Drug and chemical toxicology, 1984, Volume: 7, Issue:4

    Topics: Animals; Calcium; Doxorubicin; Electrolytes; Heart; Magnesium; Male; Mice; Myocardium; Potassium; So

1984
Increased mortality with cardiotoxic doses of Adriamycin after verapamil pretreatment despite prevention of myocardial calcium accumulation.
    Canadian journal of physiology and pharmacology, 1983, Volume: 61, Issue:9

    Topics: Animals; Body Water; Calcium; Doxorubicin; Electroencephalography; Electrolytes; Extracellular Space

1983
Calcium dependence of basal electrolyte transport in rabbit ileum.
    The American journal of physiology, 1982, Volume: 243, Issue:1

    Topics: Animals; Biological Transport; Calcium; Electrolytes; Ileum; In Vitro Techniques; Intestinal Mucosa;

1982
Inhibition of intestinal secretion in the dog: a new approach for the management of diarrheal states.
    The Journal of pharmacology and experimental therapeutics, 1981, Volume: 219, Issue:3

    Topics: Animals; Antidiarrheals; Body Water; Chlorpromazine; Deoxycholic Acid; Diarrhea; Dogs; Electrolytes;

1981
Insulin is a superior antidote for cardiovascular toxicity induced by verapamil in the anesthetized canine.
    The Journal of pharmacology and experimental therapeutics, 1993, Volume: 267, Issue:2

    Topics: Anesthesia; Animals; Antidotes; Blood Glucose; Cardiovascular Diseases; Disease Models, Animal; Dogs

1993
Calcium and protein kinase C play a significant role in response to Shigella toxin in rabbit ileum both in vivo and in vitro.
    Biochimica et biophysica acta, 1997, Jul-10, Volume: 1361, Issue:1

    Topics: 1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine; Animals; Bacterial Toxins; Calcimycin; Calcium; Cycli

1997
[Effect of fenoterol on maternal ECG, myocardium-specific creatine kinase isoenzyme MB and on serum electrolytes].
    Archives of gynecology, 1979, Jul-20, Volume: 228, Issue:1-4

    Topics: Creatine Kinase; Electrocardiography; Electrolytes; Ethanolamines; Female; Fenoterol; Heart; Humans;

1979
[Behavior of plasma renin activity (PRA) after administration of a calcium antagonist].
    Bollettino della Societa italiana di cardiologia, 1978, Volume: 23, Issue:2

    Topics: Adolescent; Adult; Calcium; Electrolytes; Female; Humans; Hypertension; Male; Middle Aged; Renin; Ve

1978
Prevention of hereditary cardiomyopathy in the hamster by verapamil and other agents.
    Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine (New York, N.Y.), 1975, Volume: 149, Issue:1

    Topics: Animals; Body Weight; Calcium; Cardiomyopathies; Cell Membrane; Cinnarizine; Creatine Kinase; Cricet

1975
[The effect of verapamil and nifedipine on acid-base and electrolyte disorders induced by cholesterol in rabbits].
    Bratislavske lekarske listy, 1992, Volume: 93, Issue:11

    Topics: Acid-Base Equilibrium; Animals; Cholesterol, Dietary; Electrolytes; Male; Nifedipine; Rabbits; Verap

1992
The effect of atrial natriuretic peptide on intestinal electrolyte transport.
    Regulatory peptides, 1991, Oct-01, Volume: 36, Issue:1

    Topics: Animals; Atrial Natriuretic Factor; Biological Transport, Active; Calcium; Chlorides; Cyclic GMP; El

1991
Verapamil and furosemide prevent cholecystokinin-induced translocation of immunoglobulins in rat intestine.
    Digestive diseases and sciences, 1991, Volume: 36, Issue:11

    Topics: Albumins; Animals; Autoantibodies; Biological Transport; Cholecystokinin; Electrolytes; Furosemide;

1991
Behavioral effects of chronic, orally administered diuretic and verapamil in baboons.
    Pharmacology, biochemistry, and behavior, 1991, Volume: 38, Issue:1

    Topics: Animals; Behavior, Animal; Blood Pressure; Color Perception; Conditioning, Operant; Desoxycorticoste

1991
Epidermal growth factor upregulates intestinal electrolyte and nutrient transport.
    The American journal of physiology, 1991, Volume: 260, Issue:6 Pt 1

    Topics: Animals; Chlorides; Electrolytes; Epidermal Growth Factor; Glucose; In Vitro Techniques; Intestinal

1991
Acute effects of intravenous cyclosporine on blood pressure, renal hemodynamics, and urine prostaglandin production of healthy humans.
    Transplantation, 1990, Volume: 49, Issue:1

    Topics: Adult; Blood Pressure; Cyclosporins; Electrolytes; Female; Glomerular Filtration Rate; Humans; Infus

1990
Calcium-channel blockade in canine hemorrhagic shock.
    The American journal of physiology, 1989, Volume: 257, Issue:5 Pt 2

    Topics: Animals; Calcium Channel Blockers; Coronary Circulation; Dogs; Electrolytes; Hemodynamics; Membrane

1989
The role of serotonin in the canine secretory response to cholera toxin in vivo.
    The Journal of pharmacology and experimental therapeutics, 1989, Volume: 251, Issue:1

    Topics: Animals; Body Water; Cholera Toxin; Dogs; Electrolytes; Intestinal Secretions; Ketanserin; Serotonin

1989
Ca2+ channel blockers interact with alpha 2-adrenergic receptors in rabbit ileum.
    The American journal of physiology, 1988, Volume: 254, Issue:4 Pt 1

    Topics: Animals; Calcium Channel Blockers; Clonidine; Diltiazem; Egtazic Acid; Electrolytes; Ileum; In Vitro

1988
The effect of verapamil on the cardiotoxic activity of Portuguese man-o'war (Physalia physalis) and sea nettle (Chrysaora quinquecirrha) venoms.
    Toxicon : official journal of the International Society on Toxinology, 1985, Volume: 23, Issue:4

    Topics: Animals; Cnidarian Venoms; Electrocardiography; Electrolytes; Female; Guinea Pigs; Heart; In Vitro T

1985
Modulation of the effects of postganglionic vagal stimulation in the sinus and atrioventricular nodes by cardioactive agents and electrolytes.
    Progress in clinical and biological research, 1988, Volume: 275

    Topics: Adenosine; Animals; Atrioventricular Node; Autonomic Fibers, Postganglionic; Cardiac Pacing, Artific

1988
Renal effects of calcium channel blockers in vivo.
    International journal of cardiology, 1988, Volume: 21, Issue:1

    Topics: Animals; Diltiazem; Diuresis; Electrolytes; Glomerular Filtration Rate; Nifedipine; Rabbits; Verapam

1988