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Blockade of cyclosporine-induced vasoconstriction by the calcium channel blocker diltiazem in dogs.

The calcium channel blocker diltiazem has been shown to reduce cyclosporine toxicity both in clinical and in experimental studies. To determine the effect of diltiazem administration on cyclosporine vasoconstriction and on renal release of endothelin, we administered cyclosporine in models of renal and hind limb autoperfusion in the dog. Infusion of cyclosporine in the hind limb (20 mg) during diltiazem perfusion caused an average increase of 6 +/- 2 mm Hg in hind limb perfusion pressure compared with 17 +/- 2 mm Hg before diltiazem, a significant difference (p < 0.05). Similarly, injections of cyclosporine (10 mg) in the kidney during diltiazem infusion caused an average increase of 26 +/- 4 mm Hg in renal perfusion pressure compared with 83 +/- 13 mm Hg before diltiazem infusion, a significant decrease in the renal vascular response (p < 0.05). On the other hand, sodium nitroprusside did not change the renal vasoconstriction to cyclosporine, which suggests a specific effect of diltiazem. Serum levels of endothelin in renal venous blood increased from 0.5 +/- 0.4 pg/ml to 3.8 +/- 0.6 pg/ml with cyclosporine, despite diltiazem infusion. Therefore, although the calcium channel blocker diltiazem effectively decreases cyclosporine-induced renal and hind limb vasoconstriction, it does not act by preventing endothelin release induced by cyclosporine stimulation.

Animals↗

Calcium channel blockers: do they offer renal protection?

Calcium channel blockers are used in the treatment of hypertension because of their ability to decrease peripheral vascular resistance. Recent research has suggested that these drugs also preserve or improve renal function in patients with essential hypertensive renal disease, diabetic renal disease, and in renal transplant recipients with or without cyclosporine therapy. In general, studies in both animal models and humans have demonstrated maintenance or reduction in renal vascular resistance, and preservation or enhancement of renal blood flow and glomerular filtration rate. In addition, calcium channel blockers appear to have a positive effect on renal haemodynamic function in the setting of diabetes mellitus; prospective trials have demonstrated reductions in urinary protein excretion in these patients. Current evidence suggests that calcium channel blockers are well suited for the treatment of patients with hypertensive disease even in the presence of renal impairment.

Animals↗

Creation of a genetic calcium channel blocker by targeted gem gene transfer in the heart.

Calcium channel blockers are among the most commonly used therapeutic drugs. Nevertheless, the utility of calcium channel blockers for heart disease is limited because of the potent vasodilatory effect that causes hypotension, and other side effects attributable to blockade of noncardiac channels. Therefore, focal calcium channel blockade by gene transfer is highly desirable. With a view to creating a focally applicable genetic calcium channel blocker, we overexpressed the ras-related small G-protein Gem in the heart by somatic gene transfer. Adenovirus-mediated delivery of Gem markedly decreased L-type calcium current density in ventricular myocytes, resulting in the abbreviation of action potential duration. Furthermore, transduction of Gem resulted in a significant shortening of the electrocardiographic QTc interval and reduction of left ventricular systolic function. Focal delivery of Gem to the atrioventricular (AV) node significantly slowed AV nodal conduction (prolongation of PR and AH intervals), which was effective in the reduction of heart rate during atrial fibrillation. Thus, these results indicate that gene transfer of Gem functions as a genetic calcium channel blocker, the local application of which can effectively modulate cardiac electrical and contractile function.

Action Potentials↗

Protective effect of T-type calcium channel blocker flunarizine on cisplatin-induced death of auditory cells.

Changes in intracellular Ca2+ level are involved in a number of intracellular events, including triggering of apoptosis. The role of intracellular calcium mobilization in cisplatin-induced hair cell death, however, is still unknown. In this study, the effect of calcium channel blocker flunarizine (Sibelium), which is used to prescribe for vertigo and tinnitus, on cisplatin-induced hair cell death was investigated in a cochlear organ of Corti-derived cell line, HEI-OC1, and the neonatal (P2) rat organ of Corti explant. Cisplatin induced apoptotic cell death showing nuclear fragmentation, DNA ladder, and TUNEL positive in both HEI-OC1 and primary organ of Corti explant. Flunarizine significantly inhibited the cisplatin-induced apoptosis. Unexpectedly, flunarizine increased the intracellular calcium ([Ca2+]i) levels of HEI-OC1. However, the protective effect of flunarizine against cisplatin was not mediated by modulation of intracellular calcium level. Treatment of cisplatin resulted in ROS generation and lipid peroxidation in HEI-OC1. Flunarizine did not attenuate ROS production but inhibited lipid peroxidation and mitochondrial permeability transition in cisplatin-treated cells. This result suggests that the protective mechanism of flunarizine on cisplatin-induced cytotoxicity is associated with direct inhibition of lipid peroxidation and mitochondrial permeability transition.

Animals↗

Alteration of loosely bound calcium in the guinea pig organ of Corti after treatment with diltiazem as calcium channel blocker.

After oral administration of the organic calcium channel blocker diltiazem to guinea pigs for 7 days, calcium ions were precipitated with potassium antimonate in the cochleae. The spatial distribution of the precipitates was studied by energy-filtering transmission electron microscopy and the amount of the ultrastructural reaction products formed was determined semiquantitatively by an image processing system. Compared with untreated control ears, the number of the formed precipitates was reduced drastically in the inner hair cells after diltiazem treatment. In addition, electron microscopic analysis revealed that the number of calcium precipitates attached at the basolateral membrane of the outer hair cells was clearly reduced when compared with untreated control specimens. A large number of histochemical reaction products could be identified in the basilar membrane and were also observed in the untreated control specimens. The spatial distribution of the calcium precipitates in the lamina reticularis was not affected by diltiazem treatment and calcium precipitates could be identified within different cell membranes. The techniques used was considered to be helpful for identifying calcium channels ultrastructurally in intact undissected tissues and to support light microscopic analyses and patch-clamp electrophysiological measurements.

Administration, Oral↗

Renal vascular effects of calcium channel blockers in hypertension.

Recent evidence suggests that calcium channel blockers have specific effects on renal hemodynamics in patients with hypertension and may also slow the progression of chronic renal failure. When these agents are studied in vitro, their predominant effect is to reverse afferent arteriolar vasoconstriction induced by catecholamines or angiotensin II. Because efferent resistance may remain high, glomerular filtration rate rises while renal blood flow remains low. The effects in vivo are less consistent. In human hypertension, calcium channel blockers lower renal resistance and may raise both renal blood flow and glomerular filtration rate. In experimental models of chronic renal disease, calcium channel blockers slow the progression of renal damage; however, variable effects on renal hemodynamics have been found. Other factors implicated in the progression of renal damage, including compensatory renal hypertrophy, platelet aggregation, and calcium deposition, may also be favorably influenced by these agents. Recent studies suggest that calcium channel blockers may have similar protective effects in patients with hypertension and chronic renal disease.

Calcium Channel Blockers↗

The evolving role of calcium channel blockers in the treatment of angina pectoris: focus on felodipine.

Calcium channel blockers are used extensively in the treatment of the three major anginal syndromes. In the treatment of Prinzmetal's angina, their antivasospastic properties account for their therapeutic effectiveness. Calcium channel blockers are drugs of first choice in this syndrome. In chronic stable angina, calcium channel blockers may be used as monotherapy or in combination with beta-blockers and/or nitrates. In patients with unstable angina, reduction in the incidence of ischemic episodes produced by calcium channel blockers is well documented. Recent data suggest that calcium channel blockers should generally be used in combination with beta-blockers, nitrates and antithrombotic agents. Patients with ischemic heart disease often exhibit reduced ventricular function. All of the first generation calcium channel blockers exacerbate symptoms in patients with established heart failure and may precipitate heart failure, particularly when combined with beta-blockers. Second generation vascular-selective dihydropyridines have been introduced recently. Vascular selectivity determines the drug's degree of negative inotropic effect. Felodipine is one of the most vascular selective of the available dihydropyridines and has no negative inotropic effects at clinically administered doses. In a long term study, felodipine, 20 mg/day, abolished symptoms and chronic ischemic episodes in 81% of treated subjects with Prinzmetal's angina. In patients with stable angina, felodipine has been found to be effective either as monotherapy or in combination with beta-blockers. In patients with known or suspected ventricular dysfunction, vascular-selective dihydropyridines such as felodipine offer advantages over the nonselective calcium channel blockers, particularly in patients receiving beta-blockers.

Adrenergic beta-Antagonists↗

Cardiopulmonary response during exercise of a beta 1-selective beta-blocker (atenolol) and a calcium-channel blocker (diltiazem) in untrained subjects with hypertension.

The effects of beta-blockers and calcium-channel blockers on cardiopulmonary response during exercise are not well characterized. Sixteen sedentary patients with essential hypertension underwent a randomized, double-blind, cross-over study comparing atenolol and diltiazem sustained-release 300 mg, each administered during 6 weeks, after a 15-day run-in placebo period. Neither atenolol nor diltiazem significantly affected maximal exercise duration, maximal oxygen uptake, ventilatory threshold, or any of the ventilatory parameters during exercise. With atenolol, the maximal oxygen pulse was significantly increased and compensated for the decrease in heart rate during exercise. Atenolol and diltiazem do not limit maximal exercise tolerance in untrained hypertensive subjects, but the circulatory profile is more preserved with diltiazem.

Adult↗

Calcium channel blockers for anxiety disorders?

The role of calcium in the etiology of anxiety has been proposed for several decades. Calcium channel blockers profoundly influence calcium metabolism and the transport of calcium. Even though the evidence for the role of calcium remains weak, drugs affecting calcium might be useful in the treatment of anxiety disorders. One of these compounds, verapamil, has been used to treat mood disorders. Calcium channel blockers have also been tried in other indications such as premenstrual syndrome, irritable bowel syndrome, schizophrenia, tardive dyskinesia, and Tourette's syndrome. However, the number of articles on the use of calcium channel blockers in the treatment of anxiety disorders is low. Three reports (two open, one double-blind) described some success in the treatment of panic disorder with verapamil, diltiazem, or nimodipine and one open-label study described unsuccessful treatment of anxiety and phobia with nifedipine in patients with various anxiety disorders. Further double-blind placebo-controlled studies of calcium channel blockers in the treatment of anxiety disorders are warranted to determine a possible role of these compounds in the armamentarium of antianxiety drugs.

Anxiety Disorders↗

Calcium channel blockers ameliorate disease in a mouse model of multiple sclerosis.

Multiple sclerosis (MS) and experimental autoimmune encephalomyelitis (EAE), an animal model of MS, are inflammatory demyelinating diseases of the central nervous system. The inflammatory attacks lead to glial dysfunction and death, axonal damage, and neurological deficits. Numerous studies in rat suggest that extracellular calcium influx, via voltage-gated calcium channels (VGCC), contributes to white matter damage in acute spinal cord injury and stroke. Our immunohistochemical finding that mouse spinal cord axons display subunits of L-type VGCC also supports this hypothesis. Furthermore, we hypothesized that VGCC also play a role in EAE, and possibly, MS. In our study, administration of the calcium channel blockers (CCB) bepridil and nitrendipine significantly ameliorated EAE in mice, compared with vehicle-treated controls. Spinal cord samples showed reduced inflammation and axonal pathology in bepridil-treated animals. Our data support the hypothesis that calcium influx via VGCC plays a significant role in the development of neurological disability and white matter damage in EAE and MS.

Animals↗

Cholesterol, calcium and atherosclerosis: is there a role for calcium channel blockers in atheroprotection?

It is well known that the atherogenic dyslipidemias of either elevated serum LDL or reduced HDL levels correlate with the degree and severity of atherosclerosis. However, how this leads to atherogenesis is poorly understood. A role for cellular oxidative stress mediated by oxidized LDL has gained widespread acceptance, but this pathway is unlikely to be the sole atherogenic signal. Recent evidence obtained from arterial smooth muscle cells (SMC) and endothelial cells (EC) is consistent with another pathway that may explain, in part, the early alterations contributing to the initiation of cellular atherogenic modifications. This pathway involves enrichment of the cell plasma membrane with cholesterol. In SMC, in vitro (cell culture) and in vivo (cholesterol feeding) experiments demonstrate that cholesterol enrichment of the SMC membrane occurs rapidly and is associated with an increase in membrane bilayer width, calcium permeability, and cell proliferation. Removal of excess membrane cholesterol with human HDL restores these alterations, suggesting that this membrane structural 'defect' mediates these changes in cell function. In vitro, the increased calcium permeability is inhibitable by calcium channel blockers (CCBs), but in vivo, a calcium 'leak' pathway develops that is virtually uninhibitable. It is not surprising that the literature on the application of CCBs for atheroprotection is not wholly convincing. However, with the advent of the new third generation of CCBs, new hope arises. One of the first CCBs of this generation is amlodipine (Norvasc), a charged dihydropyridine that has a remarkable pharmacologic profile. First, it is markedly lipophilic allowing it to partition readily into cell membranes. Second, in the membrane it has the ability to re-order, or restore, the 'swollen' membrane bilayer back to normal in atherosclerotic SMC. Third, it has potent antioxidant properties. Fourth, it appears to inhibit the expression of a variety of genes implicated in atherogenesis. Fifth, it is a CCB. Amlodipine has demonstrated atheroprotection in both rabbit and subhuman primate models of this disease. We propose that cellular alterations induced by enrichment of the cell membrane with cholesterol, which appears to modulate SMC to the atherosclerotic phenotype, are inhibitable by amlodipine through a combination of its varied pharmacologic properties. The potential for atheroprotection with amlodipine is currently being investigated in a human trial (PREVENT trial) and the results of this trial will determine the relevance of the preclinical findings to humans.

Amlodipine↗

Novel T-type calcium channel blockers: dioxoquinazoline carboxamide derivatives.

T-type calcium channel is one of therapeutic targets for the treatment of cardiovascular diseases and neuropathic pains. Since the withdrawal of mibefradil, a T-type calcium channel blocker, there have been a lot of efforts to develop T-type calcium channel blockers. A small molecule library of dioxoquinazoline carboxamide derivatives containing 155 compounds was designed, synthesized, and biologically evaluated for T-type calcium channel blocking activity. Among those compounds synthesized, the compound 1n shows the most potent T-type calcium current blocking activity with an IC(50) value of 1.52 microM, which is comparable to that of mibefradil.

Amides↗

Inhibitory effects of calcium channel blockers on intestinal motility in the dog.

Calcium channel blockers are now widely used for the treatment of cardiovascular disorders. However, data concerning their effects on intestinal motility in vivo are still rather fragmentary. Therefore, we evaluated the effects of three prototype calcium channel blockers (nifedipine, verapamil and diltiazem) on intestinal motility in five fasting, conscious dogs fitted with electrodes and strain-gauges along the small bowel. The myoelectric data were analyzed by a recently developed and validated computer program which allows accurate monitoring of intestinal spike activity. The mechanical data were analyzed by calculating a motility index. After recording of at least two migrating motor complexes (control), an i.v. infusion of one of the following calcium channel blockers was maintained for 3 h: 0.29 or 0.87 mumol/kg per h nifedipine, 1.02 or 2.04 mumol/kg per h verapamil and 1.11 or 2.22 mumol/kg per h diltiazem. Nifedipine 0.29 mumol/kg per h significantly reduced (P less than 0.05) spike activity and motility index during phases II and III without disrupting migrating motor complex cycling. The higher dose suppressed migrating motor complex cycling and almost completely abolished both spike and mechanical activities. The two doses of verapamil had effects similar to those of the two doses of nifedipine. Both doses of diltiazem significantly reduced (P less than 0.05) spike activity and motility index during phases II and III without disrupting migrating motor complex cycling. We conclude that all the agents tested, apart from their well known cardiovascular effects, also have a profound inhibitory effect on intestinal motility in vivo, the order of potency being nifedipine greater than verapamil greater than diltiazem. The search for more selective calcium channel blockers for the treatment of intestinal motor disorders with minimal cardiovascular effects is warranted.

Animals↗

Calcium channel blockers intake and psoriasis: a case-control study.

In vitro evidence suggests that intracellular calcium metabolism influences keratinocyte differentiation. However, only a few reports have described exacerbation of psoriasis or psoriasiform eruptions due to intake of calcium channel blockers. We conducted a case-control study to evaluate the association between exposure to calcium channel blockers and psoriasis. Data were obtained through a retrospective assessment of the files of 150 patients hospitalized for psoriasis or psoriasiform eruptions and 150 matched control patients. Exposure to calcium channel blockers was recorded in case and control patients. It was found that 13/150 patients hospitalized for psoriasis consumed calcium channel blockers. Calcium channel blockers were associated with precipitation of new-onset psoriasis (n = 2), as well as with the exacerbation of psoriasis (n = 11). The calcium channel blockers were as follows: nifedipine (n = 10), felodipine (n = 2) and amlodipine (n = 1). The median latent period between the beginning of intake of calcium channel blockers and precipitation or exacerbation of psoriasis was 28 months (range 4-143 months). A stepwise multivariate logistic regression analysis demonstrated that intake of calcium channel blockers was significantly associated with psoriasis, as compared to the control group (p = 0.018). Our study implies a possible role of calcium channel blockers as precipitating or exacerbating factors in patients with psoriasis.

Acute Disease↗

Effects of intrathecal administration of ziconotide, a selective neuronal N-type calcium channel blocker, on mechanical allodynia and heat hyperalgesia in a rat model of postoperative pain.

Ziconotide (SNX-111), a selective blocker of neuronal N-type voltage-sensitive calcium channels, is antinociceptive when it is administered intrathecally. It is currently under clinical investigation for the treatment of malignant and non-malignant pain syndromes. The present study was undertaken to compare and contrast antinociceptive properties of ziconotide, morphine and clonidine in a rat model of post-operative pain. Post-operative pain was produced by making a longitudinal incision through the skin, fascia, and muscle of the plantar aspect of the left hindpaw. This procedure produced immediate (0.5 h after surgery) and long-lasting (4-7 days post-surgery) heat hyperalgesia and mechanical allodynia in the injured hindpaw. Pain thresholds in the contralateral hindpaw were unaffected. Administered one day after incisional surgery, intrathecal ziconotide blocked established heat hyperalgesia in the injured hindpaw in a dose-dependent manner yielding an ED(50)4 h) but reversible (<24 h) blockade of established mechanical allodynia. Administered one day after surgery, intrathecal bolus injection of morphine dose-dependently blocked heat hyperalgesia in the injured hindpaw with an ED(50) of 1.6 microg (2.1 nmol) and heat nociceptive responses in the normal hindpaw with an ED(50) of 2.7 microg (3.6 nmol). The effects were immediate and short-lasting (</=1 h). Intravenous bolus injection of 3 mg/kg (1.1 micromol/kg) ziconotide, administered either before or after incisional surgery, had no effect on thermal pain thresholds measured in either the injured or normal hindpaw. In contrast, intraperitoneal injections of 2 mg/kg (2.6 micromol/kg) morphine and 2.5 mg/kg (9.4 micromol/kg) clonidine blocked heat hyperalgesia in the injured hindpaw; morphine, but not clonidine, also elevated thermal (heat) nociceptive response thresholds in the normal hindpaw. The results of this study show that intrathecal ziconotide is antinociceptive in a rat incisional model of post-operative pain and is more potent, longer acting, and more specific in its actions than intrathecal morphine.

Analgesics↗

Cardiovascular alterations in rat fetuses exposed to calcium channel blockers.

Preclinical toxicologic investigation suggested that a new calcium channel blocker, Ro 40-5967, induced cardiovascular alterations in rat fetuses exposed to this agent during organogenesis. The present study was designed to investigate the hypothesis that calcium channel blockers in general induce cardiovascular malformations indicating a pharmacologic class effect. We studied three calcium channel blockers of different structure, nifedipine, diltiazem, and verapamil, along with the new agent. Pregnant rats were administered one of these calcium channel blockers during the period of cardiac morphogenesis and the offspring examined on day 20 of gestation for cardiovascular malformations. A low incidence of cardiovascular malformations was observed after exposure to each of the four calcium channel blockers, but this incidence was statistically significant only for verapamil and nifedipine. All four agents were associated with aortic arch branching variants, although significantly increased only for Ro 40-5967 and verapamil.

Abnormalities, Drug-Induced↗

The effects of replacing dihydropyridine calcium-channel blockers with angiotensin II receptor blocker on the quality of life of hypertensive patients.

Hypertension is a major risk factor for cardiovascular events and the goal of treating hypertension is to prevent complications due to these events. However, some other properties, including few side-effects and improvement of the quality of life (QOL), are desirable in a drug as well as its antihypertensive effect. Dehydropydine calcium-channel blockers (DCCBs) are the most frequently used antihypertensive agents in Japan. The antihypertensive effect of DCCBs is satisfactory, but side-effects, e.g. nocturia, flushing and palpitations, are a problem. The aim was to evaluate the effects of a change of treatment from DCCBs on the QOL of hypertensive patients. An open study was performed to evaluate the effects of switching treatment from DCCBs to angiotensin II receptor blocker (ARB) therapy on the QOL of hypertensive patients. The ARBs have been reported to be effective and well-tolerated antihypertensive drugs. Candesartan cilexetil was selected because it is the most frequently used ARB in Japan. One hundred patients with mild to moderate hypertension, being treated with DCCBs, were randomly selected to receive candesartan cilexetil (8-12 mg once a day). The patients were followed for 3 months, while blood pressure (BP), side-effects and QOL were monitored. BP was equally well controlled before and after the change of antihypertensive therapy. The candesartan cilexetil-treated patients exhibited improvement of several aspects of QOL, including general symptoms, physical symptoms and well-being, work and satisfaction and sleep scale. Emotional state and cognitive function also improved. Patients aged 65 years or younger achieved significant improvement of sexual function. Changing treatment from DCCBs to ARB therapy achieved equal BP control with a lower drug dose. Moreover, the change to cadesartan cilexetil had a positive impact on the QOL.

Adult↗

[Antiatherosclerotic hopes of calcium channel blockers].

The antiatherosclerotic effects of a calcium channel blockers have been attracting attention for some time. It is shown by the animal studies that especially dihydropyridine calcium channel blockers have the antiatherosclerotic effects by an anti-oxidative properties and the direct action on vascular cells in addition to an original decrease blood pressure, and the validity is being further proved by the results of randomized clinical trials such as PREVENT and CAMELOT.

Animals↗