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Drug choices in the treatment of atrial fibrillation.

When considering therapy for atrial fibrillation (AF), the dominant issues are rate control, anticoagulation, rhythm control, and treatment of any underlying disorder. Drug choices for rate control include beta-blockers, verapamil and diltiazem, and digitalis as first-line agents, with consideration of other sympatholytics, amiodarone, or nonpharmacologic approaches in resistant cases. Anticoagulation may be accomplished with aspirin or warfarin, with the latter preferred in all older or high-risk patients. Antiarrhythmic drug therapy may be used (1) to produce cardioversion (most effective with ibutilide or class IC agents in recent onset AF); (2) to facilitate electrical conversion (class III agents); (3) to prevent early reversion after cardioversion; (4) to maintain sinus rhythm during chronic therapy; and/or (5) to facilitate conversion of fibrillation to flutter, which may then be amenable to termination or prevention with antitachypacing or ablative techniques. Antiarrhythmic drug selection for AF is guided by efficacy considerations (most drugs are similar), by convenience, cost, and discontinuation considerations; and, most importantly, by safety considerations. When possible, agents with serious organ toxicity potential and proarrhythmic risk should be avoided as first-line choices. In structurally normal hearts, class IC antiarrhythmic drugs are least proarrhythmic and least organ toxic (when considered together). In normal hearts, sotalol, dofetilide, and potentially azimilide also appear to have attractive profiles. Amiodarone has low proarrhythmic risk but can produce bradyarrhythmias and toxicity. In hypertrophied hearts, the risk of torsade de pointes with class III/IA agents is enhanced, whereas in ischemia or conditions with impaired cell contact, whether functionally (as by ischemia) or anatomically (as by fibrosis, infiltration, etc), proarrhythmic risk with class I antiarrhythmic drugs (sustained ventricular fibrillation/flutter) is greatly increased. The class I drugs should be avoided in these circumstances. Additional issues to consider are where to initiate therapy (in- or outpatient), what follow-up protocols to use, and whether to limit therapy to proprietary drugs or to allow generic formulation substitution. Each of these considerations is detailed in this article.

Anti-Arrhythmia Agents↗

Treatment of the elderly hypertensive patient.

Changes due to aging of the cardiovascular system play an important role in the development of hypertension and its complications in the elderly. As shown in recent experimental studies in rats, the arterial changes that normally take place resemble those resulting from hypertension. They may be preventable by maintenance of low blood pressures and may be secondary to prolonged hemodynamic effects on the artery wall. The major hemodynamic consequences of aging in man include an increase in total peripheral vascular resistance, which occurs as a result of both arterial and arteriolar disease. Other features with potentially important therapeutic implications in the elderly include an increased tendency for left ventricular dysfunction and cardiac arrhythmias, decreased baroreceptor sensitivity, and atherosclerosis-induced reduction of blood flow to vital organs. Older patients also tend to have a reduced fluid volume and an abnormal distribution and metabolism of drugs. These factors lead to greater sensitivity to potential side effects and, thus, greater difficulty in managing their hypertension. Diuretics, beta blockers, and calcium channel blockers appear to be the most useful initial antihypertensive drugs in the elderly. The cardioprotective effects of beta blockers and the desirable hemodynamic action of calcium antagonists provide compelling justification for their use in many patients. Centrally acting sympatholytic drugs such as methyldopa, clonidine, and guanabenz are useful as second-step agents, usually in combination with a diuretic. In the presence of moderate to severe diastolic hypertension, hydralazine, captopril, and minoxidil may have value, but such potent agents should generally be avoided with isolated systolic hypertension. In elderly hypertensive patients with other complicating diseases, sufficient alternative treatment options are now available to allow tailoring of therapy to the special needs of each patient, thereby minimizing adverse reactions to therapy. However, relatively low doses of medications and conservative therapeutic objectives are usually necessary, particularly in patients with isolated systolic hypertension in whom the benefits of treatment are still to be determined.

Adrenergic beta-Antagonists↗

Chronic regulation of arterial blood pressure in ANP transgenic and knockout mice: role of cardiovascular sympathetic tone.

OBJECTIVE: Atrial natriuretic peptide (ANP) lowers arterial blood pressure (ABP) chronically, in association with vasodilation of the resistance vasculature. The mechanism mediating the chronic relaxant effect of ANP is likely indirectly mediated by interactions with tonic vasoeffector mechanisms, inasmuch as the resistance vasculature is relatively insensitive to direct cGMP-mediated relaxation by ANP. On the basis of evidence that ANP has widespread sympatholytic activity, the current study investigated whether the chronic hypotensive effect of ANP is mediated by attenuation of tonic cardiovascular sympathetic tone. METHODS: Total plasma catecholamine concentration and changes in basal ABP and heart rate (HR) following autonomic ganglionic blockade were measured as indices of underlying sympathetic nerve activity in hypotensive ANP-overexpressing transgenic mice (TTR-ANP), hypertensive ANP knockout mice (-/-) and the genetically-matched wild type (NT and +/+, respectively) control mice. Pressor and chronotropic responses to norepinephrine infusion were measured in ganglion-blocked mice of all genotypes, and norepinephrine receptor binding was assessed in representative tissues of -/- and +/+ mice, in order to determine whether peripheral adrenergic receptor responsiveness is altered by ANP-genotype. RESULTS: Basal ABP was significantly lower in TTR-ANP and higher in -/- compared to their wild-type controls. Basal HR did not differ significantly between mutant and control mice. Autonomic ganglionic blockade reduced ABP and HR in all genotypes, however, the relative decrease in ABP was significantly smaller in TTR-ANP and greater in -/- mice than in their respective controls. Total plasma catecholamine was significantly higher in -/- than in +/+ mice but did not differ significantly between TTR-ANP and NT mice. Norepinephrine infusion during ganglionic blockade elicited quantitatively similar pressor and chronotropic responses in mutant and control mice. Tissue norepinephrine binding did not differ significantly between -/- and +/+ mice. CONCLUSIONS: The present study shows that differences in endogenous ANP activity in mice, resulting in chronic alterations in ABP are accompanied by directional changes in underlying cardiovascular sympathetic tone, and suggests that the chronic vasodilator effect of ANP is, at least partially, dependent on attenuation of vascular sympathetic tone, possibly at a prejunctional site(s).

Analysis of Variance↗

Effect of the C825T polymorphism of the G protein beta 3 subunit on the systolic blood pressure-lowering effect of clonidine in young, healthy male subjects.

The T allele of the C825T polymorphism in the gene encoding the G-protein beta 3 subunit (GNB3) is associated with hypertension. An enhanced signal transduction in response to alpha(2)-adrenergic receptor stimulation has been shown in carriers of the T allele in vitro. We hypothesized that T allele carriers would show an enhanced antihypertensive response to stimulation of central alpha(2)-adrenergic receptors by clonidine. We compared the response to intravenous clonidine in 30 young, healthy male subjects with and without the T allele (15 CC, 10 CT, and 5 TT). Clonidine lowered blood pressure and total peripheral resistance, lengthened the duration of electromechanical systole (QS(2)c), and slowed down pulse wave velocity. Carriers of the T allele showed significantly greater reductions in systolic blood pressure (P =.009; mean change +/- SEM: CC, -8.9 +/- 0.5; CT and TT, -10.6 +/- 0.4) and total peripheral resistance (P <.0001; mean change +/- SEM: CC, 40 +/- 17; CT and TT, -48 +/- 14) and more marked lengthening of QS(2)c (P =.002; mean change +/- SEM: CC, 2.2 +/- 0.5; CT and TT, 4.7 +/- 0.6) and slowing of pulse wave velocity (P =.012; mean change +/- SEM: CC, -0.25 +/- 0.02; CT and TT, -0.33 +/- 0.03). The results of this study suggest that the 825T allele may be a relevant pharmacogenetic marker in the use of centrally acting sympatholytic drugs.

Adult↗

Distribution of N-type Ca2+ channel binding sites in rabbit brain following central administration of omega-conotoxin GVIA.

Central administration of the N-type Ca2+ channel blocker omega-conotoxin GVIA in conscious rabbits has previously been shown to result in a slowly developing hypotensive and sympatholytic effect, with peak changes observed after 48 h. The aim of the current study was to examine the distribution of [125I] omega-conotoxin GVIA binding in rabbit brain alone or following a prior i.c.v. injection of omega-conotoxin GVIA to determine the site(s) of action of centrally administered omega-conotoxin GVIA. Brains were removed from rabbits 2 or 48 h after central administration of vehicle or non-labelled omega-conotoxin GVIA (30 pmol/kg, i.c.v.). Brain sections were then incubated with [125I] omega-conotoxin GVIA (50 pM) and the density of specific [125I] omega-conotoxin GVIA binding measured in dpm/mm2 was determined by quantitative receptor autoradiography. In the vehicle group, highest densities of [125I] omega-conotoxin GVIA binding sites (> 20 dpm/mm2) were detected in cortex, caudate, putamen, and the stratum oriens and stratum radiatum of the hippocampus. Prior (48 h) i.c.v. injection of omega-conotoxin GVIA resulted in a decrease in specific binding of [125I] omega-conotoxin GVIA, particularly in cortex and some portions of the caudate and hippocampus. Lesser effects were observed with a prior (2 h) i.c.v. injection of omega-conotoxin GVIA. Central administration of omega-conotoxin GVIA may be acting to disrupt neurotransmission in higher brain regions which may, in turn, affect cardiovascular control mechanisms in the rabbit.

Animals↗

Treatment of autonomic dysreflexia with phenoxybenzamine.

Our 9 patients with severe autonomic dysreflexia treated with phenoxybenzamine, an alpha-sympatholytic agent, had a dramatic relief of symptoms. Bladder and urethral pressure studies before and after treatment with this agent suggest that the inappropriate rise in urethral resistance in these patients is a result of an appropriate but extraordinary response to bladder filling.

Autonomic Nervous System↗

Sexual function following high retroperitoneal lymphadenectomy.

The mechanism of infertility after high retroperitoneal lymphadenectomy was studied in 36 patients. In 35 patients infertility occurred because of unavoidable seminal vesicular and ductus deferential sympathetic denervation, with consequent aspermia. Potency and orgasm were unchanged in all patients and there was no evidence of retrograde ejaculation. The findings suggest that sympatholytic drugs be studied for possible application as reversible male contraceptives.

Denervation↗

Secondary causes of hyperlipidemia.

Secondary causes of hyperlipidemia are important to recognize. In fact, hyperlipidemia may be a clue to the presence of an underlying systemic disorder. It may greatly heighten the risk of atherosclerosis with a raised LDL-c, triglyceride-rich lipoprotein excess, and increased lipoprotein(a) as well as lowered HDL-c. The search for secondary causes may provide a clue as to why patients with primary lipid disorders suddenly develop worsening lipid profiles. The point is a crucial one because some acquired causes of hyperlipidemia, such as alcohol, estrogens, steroids, or pregnancy, when superimposed on a primary familial form of hypertriglyceridemia can result in a saturated removal system and a buildup of chylomicrons, which can lead to life-threatening pancreatitis. A convenient way to remember secondary causes is to think of the four D's of diet, drugs, disorders of metabolism, and diseases. Although diets rich in saturated fats and cholesterol are a common cause of the mild hypercholesterolemia seen in our society, alcohol excess and weight gain can explain much of the tendency toward hypertriglyceridemia. Interestingly anorexia nervosa has long been associated with severe but reversible hypercholesterolemia. Several classes of drugs need to be considered as common causes of altered lipid profiles. Glucocorticoids and estrogens elevate triglycerides and raise levels of HDL-c. Anabolic steroids taken orally markedly reduce levels of HDL-c in contrast to injectable testosterone, which does not adversely affect the LDL-to-HDL ratio. Oral contraceptives affect atherosclerotic risk depending on the kind and doses of progestin/estrogen. In those with an underlying primary hypertriglyceridemia and associated obesity, estrogenic medications can depress triglyceride removal mechanisms, leading to the chylomicronemia syndrome and pancreatitis. Antihypertensives have variable effects on lipids and lipoproteins. Although short-term thiazide usage raises cholesterol, triglycerides, and LDL-c, long-term usage is not necessarily associated with significant alterations in lipid levels. Alpha blockers may cause an increase in HDL-c, whereas beta blockers raise triglycerides and lower HDL-c. Sympatholytics, angiotensin converting enzyme inhibitors, and calcium channel blockers are essentially lipid neutral. Retinoids can be associated with increased LDL-to-HDL ratios and occasionally striking elevations in triglycerides. Cyclosporine raises LDL-c and lipoprotein(a). Classes of drugs that may raise HDL-c include cimetidine, antiepileptic drugs, and tamoxifen, but the effect may be seen primarily in women. Hypothyroidism is the most common secondary cause of hyperlipidemia after dietary causes are considered. A thyroxine and TSH level should be obtained on all new cases of clinically important hyperlipidemia.(ABSTRACT TRUNCATED AT 400 WORDS)

Humans↗

Recent issues in antihypertensive drug therapy.

Results of recent large scale treatment trials have demonstrated that aggressive management of high blood pressure prevents progression of mild hypertension to the accelerated or malignant phase and reduces incidence of stroke, congestive heart failure, and left ventricular hypertrophy. These trials mostly have utilized a diuretic-based, stepped-care approach to drug therapy, however, and have not shown a consistent beneficial effect of treatment on coronary heart mortality. In addition, the results of studies such as MRFIT have raised questions about serious risks of diuretic treatment in selected patients. These concerns have led to increased use of nonpharmacologic approaches to lowering blood pressure in patients with mild hypertension, but most patients ultimately require drug therapy. Alternative agents to diuretics now being employed as monotherapy in mild hypertension include beta-blockers, calcium channel blockers, ACE inhibitors, alpha-blockers, alpha- and beta-blockers, and, to a lesser extent, centrally-acting sympatholytics and peripheral adrenergic antagonists. Rational use of these agents primarily is based on a careful evaluation of concomitant medical conditions (see Table 3), as well as their mode of action, relative side effects, ease of administration, and cost. Age and race recently have been found to be important determinants of antihypertensive response to agents such as diuretics, beta-blockers, calcium channel blockers, and ACE inhibitors (see Table 3) and appreciation of these relative differences may affect drug selection. When these factors are taken into account, an effective and well tolerated regimen can be tailored to the individual patient. It is hoped that aggressive treatment of hypertension in the future will cause a further decline in cardiovascular mortality in the United States.

Age Factors↗

Essential hypertension: neural considerations.

Current evidence suggests that the sympathetic nervous system plays a predominant role in some fraction of essential hypertension. Patients in whom such mechanisms are likely to be operative are young people with mild or labile hypertension. These mechanisms are expressed clinically through orthostatic hypertension, rapid heart rate, modestly elevated cardiac output, and normal or slightly elevated peripheral vascular resistance. The vascular resistance is inappropriately high for the level of cardiac output, and this is reflected in a mildly elevated blood pressure. This evidence carries therapeutic implications and suggests that sympatholytic drugs should be the first line of therapy. An additional pressor mechanism may arise from increased sympathetic activity along renal efferent nerves that impairs sodium excretion and another possible mechanism is stimulation of brain centers through impulses from the kidneys carried in renal afferent nerves.

Hemodynamics↗

Thoracic versus lumbar epidural anesthesia's effect on pain control and ileus resolution after restorative proctocolectomy.

BACKGROUND: Epidural anesthesia as a perioperative adjunct has been shown to provide superior pain control and has been implicated in more rapid ileus resolution after major abdominal surgery, possibly through a sympatholytic mechanism. Studies suggest that the vertebral level of epidural administration influences these parameters. METHODS: One hundred seventy-nine patients (120 male, 59 female; average age, 36 years) underwent restorative proctocolectomy for ulcerative colitis or familial polyposis between 1989 and 1995. Patients were grouped according to type of anesthesia. Group THO (n = 53) received thoracic (T6 to T10) epidurals. Group LUM (n = 51) received lumbar (L2 to L4) epidurals, and group PCA (n = 75) received patient-controlled intravenous narcotic analgesia. Patients were compared for complications, perioperative risk factors, postoperative pain, and ileus resolution. RESULTS: Epidural narcotics, alone or combined with local anesthetics, were administered for an average of 2 (LUM) to 4 (THO) days without significant complications. Infrequent problems related to the epidural catheters included self-limited headaches or back pain (four) and site infections (two). Epidural failure, as measured by conversion to PCA for inadequate pain control, was not significantly greater for LUM (25%) than THO (23%). Average pain scores, rated daily on a visual analog scale, were significantly higher (indicating more pain) for PCA patients (4.2) during postoperative days 1 through 5 than for LUM (3.5) (p < 0.05) and for THO (2.4) (p < 0.05). Ileus resolution, as determined by stool output and return of bowel sounds, was significantly faster in THO than in LUM or PCA (p < 0.05). Resolution of ileus was not significantly different between PCA and LUM (p > 0.05). CONCLUSIONS: Thoracic epidural analgesia has distinct advantages over both lumbar epidural or traditional patient-controlled analgesia in shortening parameters measuring postoperative ileus and in reducing surgical pain. The procedure is safe and associated with low morbidity. Thoracic epidural anesthesia is also economically justifiable and may prove to impact significantly on future postoperative management by reducing length of hospitalization. Our data and those of others are most striking in these regards for patients with thoracic catheters, indicating the importance of vertebral level in epidural drug administration.

Adolescent↗

Partial sciatic nerve injury in the mouse as a model of neuropathic pain: behavioral and neuroanatomical correlates.

The generation of knock-out and transgenic mice offers a promising approach to the identification of novel biochemical factors that contribute to persistent pain conditions. To take advantage of these mice, however, it is important to demonstrate that the traditional models of persistent pain, which were largely developed for studies in the rat, can be used in the mouse. Here, we combined behavioral and anatomical methods to characterize the pathophysiology of a partial nerve injury-evoked pain condition in the 'normal' mouse. In male C57BL6 mice we tied a tight ligature around 1/3 to 1/2 of the diameter of the sciatic nerve and evaluated the time-course and magnitude of the ensuing mechanical and thermal allodynia. We also used immunocytochemistry to analyze nerve injury-induced changes in substance P (SP) and NK-1 (SP) receptor expression in the spinal cord. As in the rat, partial nerve injury markedly decreased paw withdrawal thresholds to both mechanical and thermal stimuli on the injured side. We detected threshold changes one day after the injury. The thermal allodynia resolved by 49 days, but the mechanical allodynia persisted for the duration of the study (70 days). We found no changes contralateral to the nerve injury. Sympatholytic treatment with guanethidine significantly reduced both the thermal and mechanical allodynia. We observed a reduction of SP immunoreactivity in the superficial dorsal horn on the injured side at 7 and 14, but not at 3 or 70 days after the nerve injury, and we observed an increase of NK-1 receptor expression at 3, 7, 14 and 42, but not at 70 days after the injury. We conclude that partial injury to the sciatic nerve produces a comparable allodynia and neurochemical plasticity in the rat and mouse. These results establish a valuable model for future studies of the biochemical basis of neuropathic pain in mice with specific gene modifications.

Animals↗

Effect of SO2 exposure on nasal mucociliary clearance in intact chickens.

The time required for mucociliary clearance from the chicken nasal turbinate and from the maxillary sinus was investigated in individual animals by using a newly designed plastic holder for the experimental animals. Determined in this way were: 1) the effect of SO2 exposure on sinus and turbinate clearance time, 2) the effect of the nerve blocking drugs atropine, scopolamine, reserpine, and propranolol on turbinate clearance time, and 3) the effect of these nerve blockers on clearance rates in chickens exposed to SO2. Turbinate mucociliary clearance was measured at 5 intervals per day, during 1 to 7 hr after exposure, for 7 consecutive days. Sinus clearance time was measured twice daily 1 to 4 hr after exposure. Turbinate clearance time in birds exposed to 6 ppm, and sinus clearance time in birds exposed to 40 ppm intermittently for 2 consecutive days both increased strikingly as a direct effect of SO2 exposure. However, continuous exposure to 6 ppm of SO2 during 16 hr per day for 7 consecutive days produced double peaks of increased turbinate clearance time with intervening recovery periods, suggesting an intranasal mucociliary homeostatic response. In individual animals, 26 of 35 animals (75%) exposed to 5 ppm, and 5 of 10 animals (50%) exposed to 20 ppm continuously during 16 hr per day for 7 consecutive days showed the same patterns. Reserpine and propranolol, which are sympatholytic agents, produced decelerated intranasal transport rates. Atropine and scopolamine, which are parasympatholytic agents, did not affect clearance rates. These nerve blockers, however, blocked the biphasic recovery pattern due to SO2 exposure. This blocking effect was statistically significant for atropine and reserpine 1 hr after injection.

Animals↗

Traumatic neuralgias: complex regional pain syndromes (reflex sympathetic dystrophy and causalgia): clinical characteristics, pathophysiological mechanisms and therapy.

Complex regional pain syndromes (CPRS) may develop as a disproportionate consequence of a trauma affecting the limbs without (CRPS I, reflex sympathetic dystrophy) or with (CRPS II, causalgia) obvious nerve lesions. The clinical picture of CRPS consists of asymmetrical distal extremity pain, swelling, and autonomic (sympathetic) and motor symptoms. Changes in the peripheral and central somatosensory, autonomic and motor processing, and a pathologic interaction of sympathetic and afferent systems are discussed as underlying pathophysiologic mechanisms. Therapeutic strategies include pharmacologic pain relief, sympatholytic interventions, and rehabilitation.

Analgesics↗

The effects of dobutamine on cardiac sympathetic activity in patients with congestive heart failure.

OBJECTIVES: The goal of this work was to study the effects of short-term infusion of dobutamine on efferent cardiac sympathetic activity. BACKGROUND: Increased efferent cardiac sympathetic activity is associated with poor outcomes in the setting of congestive heart failure (CHF). Dobutamine is commonly used in the therapy of decompensated CHF. Dobutamine, through its effects on excitatory beta-receptors, may increase cardiac sympathetic activity. METHODS: Seven patients with normal left ventricular (LV) function and 13 patients with CHF were studied. A radiotracer technique was used to measure cardiac norepinephrine spillover (CANESP) before and during an intravenous infusion of dobutamine titrated to increase the rate of rise in LV peak positive pressure (+dP/dt) by 40%. RESULTS: Systemic arterial pulse pressure increased significantly in response to dobutamine in the normal LV function group (74 +/- 3 mm Hg to 85 +/- 3 mm Hg, p = 0.005) but remained unchanged in the CHF group. Dobutamine caused a significant decrease in LV end-diastolic pressure in the CHF group (14 +/- 2 mm Hg to 11 +/- 2 mm Hg, p = 0.02), an effect not observed in the normal LV group. In the normal LV function group, CANESP did not change in response to dobutamine (75 +/- 22 pmol/min vs. 72 +/- 22 pmol/min, p = NS). In contrast, dobutamine infusion was associated with a significant reduction in CANESP in patients with CHF (199 +/- 43 pmol/min to 128 +/- 30 pmol/min, p < 0.0009). CONCLUSIONS: Dobutamine infusion caused a significant sympatholytic response in patients with CHF. This sympathetic withdrawal response is probably related to reduction of LV filling pressures and/or activation of ventricular mechanoreceptors with dobutamine infusion.

Adrenergic beta-Agonists↗

Reflex sympathetic dystrophy, sympathetically maintained pain, and complex regional pain syndrome: diagnoses of inclusion, exclusion, or confusion?

Few painful conditions involving the hand and arm have engendered so much confusion and argument among clinicians and so much suffering in patients as reflex sympathetic dystrophy. Adding to this confusion is the recent proposal by the International Society for the Study of Pain to rename this group of pain conditions "complex regional pain syndrome" (CRPS). In this new terminology, the diagnosis of CRPS relies on clinical assessment alone, and the role of the sympathetic nervous system has been de-emphasized. Sympatholytic interventions are recommended only for the subgroup of patients with sympathetically maintained pain. This article discusses the clinical description of CRPS, reviews the diagnostic tests for this group of conditions, and discusses the lack of reliable data on therapeutic interventions due to poor diagnosis of patients.

Adrenergic alpha-Antagonists↗

Chronic imidazoline receptor activation in spontaneously hypertensive rats.

BACKGROUND: Acute intravenous administration of moxonidine, an imidazoline I1-receptor agonist, reduces blood pressure (BP) in normotensive and hypertensive rats, induces diuresis and natriuresis, and stimulates plasma atrial natriuretic peptide (ANP). In these studies we investigated the involvement of natriuretic peptides (ANP and brain natriuretic peptide) in the effects of chronic activation of imidazoline receptors. METHODS: Spontaneously hypertensive rats (SHR; 12 to 14 weeks old) received 7-day moxonidine treatment at various doses (10, 20, 60, and 120 microg/kg/h) via subcutaneously implanted osmotic minipumps. RESULTS: Hemodynamic parameters (continuously monitored by telemetry) revealed that, compared with saline-treated rats, moxonidine dose-dependently decreased blood pressures (BPs). Maximal blood pressure lowering effect was achieved by day 4 of treatment, at which point 60 microg/kg/h reduced mean arterial pressure (MAP) by 14.5 +/- 6.8 mm Hg as compared with basal levels. The decrease in MAP was influenced by a drop in both diastolic and systolic pressures. Moxonidine treatment did not alter daily urinary sodium and potassium excretions, but 120 microg/kg/h moxonidine decreased urine volume after 2 days and increased cyclic guanosine 3'5'monophosphate excretion on days 4 to 7 of treatment. Chronic moxonidine treatment dose-dependently increased plasma ANP to reach, at 120 microg/kg/h, a 40% increase (P < .01) above that of corresponding saline-treated SHR, with a concomitant increase in left and right atrial ANP mRNA (more than twofold). Plasma BNP increased by 120 microg/kg/h moxonidine (11.0 +/- 1.1 v 16.5 +/- 1.9 pg/mL, P < .002) without significant increases in atrial and ventricular BNP mRNA. CONCLUSIONS: ANP and BNP may be involved in the antihypertensive effect of chronic moxonidine treatment. Accordingly, natriuretic peptides may contribute to the sympatholytic and cardioprotective effects of chronic activation of imidazoline I1-receptors.

Animals↗

Could n-3 polyunsaturated fatty acids reduce pathological pain by direct actions on the nervous system?

The intake of n-3 polyunsaturated fatty acids (PUFAs) in many industrialized countries is relatively low and its increased consumption has protective and modifying effects on such diverse conditions as atherosclerosis, ventricular arrhythmias, multiple sclerosis, major depression and inflammatory and autoimmune diseases. In addition, n-3 PUFAs have been shown to alleviate pain in patients with rheumatoid arthritis, inflammatory bowel disease and in a number of other painful conditions. This has been attributed to the inhibition of pro-inflammatory eicosanoid and cytokine production by peripheral tissues. n-3 PUFAs have also been shown to inhibit eicosanoid production in glial cells, block voltage-gated sodium channels (VGSCs), inhibit neuronal protein kinases and modulate gene expression. They also appear to have mood-stabilizing and sympatholytic effects. The present article explores the possibility that, based on what is known about their neural and non-neural effects, n-3 PUFAs directly attenuate the neuronal and glial processes that underlie neuropathic and inflammatory pain.

Affect↗