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Sympathomimetics interaction

Action on receptors provides numerous examples. Beneficial interactions are sought in overdose, as with the use of naloxone for morphine overdose (opioid receptor), of atropine for anticholinesterase, i.e. insecticide poisoning (acetylcholine receptor), of isoproterelol (isoprenaline) for overdose with a P-adrenoceptor blocker (p-adrenoceptor), of phentolamine for the monoamine oxidase inhibitor-sympathomimetic interaction (a-adrenoceptor). [Pg.132]

Kulig K, Mbore LL, Kirk M, Smith D, Stallworth J, Rumack B. Bromocriptine-associated headache possible life-threatening sympathomimetic interaction. Obstet Gynecol (1991) 78, 941-3. [Pg.679]

As of the mid-1990s, use of MAOIs for the treatment of depression is severely restricted because of potential side effects, the most serious of which is hypertensive crisis, which results primarily from the presence of dietary tyramine. Tyramine, a naturally occurring amine present in cheese, beer, wine, and other foods, is an indirecdy acting sympathomimetic, that is, it potently causes the release of norepinephrine from sympathetic neurons. The norepinephrine that is released interacts with adrenoceptors and, by interacting with a-adrenoceptors, causes a marked increase in blood pressure the resultant hypertension may be so severe as to cause death. [Pg.466]

The hypotensive effects of most antihypertensive dru are increased when administered with diuretics and other antihypertensives. Many dnigp can interact with the antihypertensive drugs and decrease their effectiveness (eg, antidepressants, monoamine oxidase inhibitors, antihistamines, and sympathomimetic bronchodilators). When the ACE inhibitors are administered with the NSAIDs, their antihypertensive effect may be decreased. Absorption of the ACE inhibitors may be decreased when administered with the antacids. Administration of potassium-sparing diuretics or potassium supplements concurrently with the ACE inhibitors may cause hyperkalemia. When the angiotensin II receptor agonists are administered with... [Pg.402]

The main problems with early, irreversible MAOIs were adverse interactions with other drugs (notably sympathomimetics, such as ephedrine, phenylpropanolamine and tricyclic antidepressants) and the infamous "cheese reaction". The cheese reaction is a consequence of accumulation of the dietary and trace amine, tyramine, in noradrenergic neurons when MAO is inhibited. Tyramine, which is found in cheese and certain other foods (particularly fermented food products and dried meats), is normally metabolised by MAO in the gut wall and liver and so little ever reaches the systemic circulation. MAOIs, by inactivating this enzymic shield, enable tyramine to reach the bloodstream and eventually to be taken up by the monoamine transporters on serotonergic and noradrenergic neurons. Fike amphetamine, tyramine reduces the pH gradient across the vesicle membrane which, in turn, causes the vesicular transporter to fail. Transmitter that leaks out of the vesicles into the neuronal cytosol cannot be metabolised because... [Pg.433]

In addition to this serious diet-drug interaction, irreversible MAOIs also potentiate the effects of sympathomimetic drugs like ephedrine found in over-the-counter cold remedies and recreational stimulants like amphetamine. The MAOIs also interact with drugs that increase synaptic concentrations of 5-HT, such as the tricyclic antidepressant clomipramine and the herbal SSRI antidepressant St John s wort (Hypericum spp.). The resulting serotonin syndrome is characterised by hyperthermia and muscle rigidity. While devoid of these side effects the reversible MAO-A inhibitor moclobemide has yet to establish itself as a first-line alternative to the SSRIs. [Pg.179]

The local anesthetic actions of cocaine are independent of its well-known actions on monoamines. Rather, the local anesthetic effects occur as a consequence of its interaction with voltage-gated Na-i-channels (Matthews and Collins 1983). Cocaine s cerebral vasoconstrictor effects occur through local anesthetic rather than sympathomimetic mechanisms (Albuquerque and Kurth 1993). [Pg.337]

Predictable interactions occur between the MAOIs and any amine precursors, or directly or indirectly acting sympathomimetic amines (e.g. the amphetamines, phenylephrine and tyramine). Such interactions can cause pronounced hypertension and, in extreme cases, stroke. [Pg.188]

Drugs that may interact include chlorpropamide, lithium, methotrexate, salicylates, tetracyclines, anorexiants, flecainide, mecamylamide, quinidine, and sympathomimetics. [Pg.43]

Other drugs that may interact with cardiac glycosides include the following Albuterol, amphotericin B, beta-blockers, calcium, disopyramide, loop diuretics, nondepolarizing muscle relaxants, potassium-sparing diuretics, succinylcholine, sympathomimetics, thiazide diuretics, thioamines, and thyroid hormones. [Pg.408]

Most interactions listed apply to sympathomimetics when used as vasopressors however, consider the interaction when using the nasal decongestants. [Pg.783]

Bromocriptine (Parl el) [Antiparkinsonian Agent/Dopamine Receptor Agonist] Uses Parkin on Dz, hyperprolactinemia, acromegaly, pituitary tumors Action Direct-acting on the striatal dopamine receptors X prolactin secretion Dose Initial, 1.25 mg PO bid titrate to effect, w/ food Caution [B, ] Contra Severe ischemic heart Dz or PVD Disp Tabs, caps SE X BP, Raynaud phenomenon (vasospastic disorder resulting in discoloration of the fmgers/toes), dizziness, N, hallucinations Interactions T Effects W/ erythromycin, fluvoxamine, nefazodone, sympathomimetics, antihypertensives X effects W/ phenothiazines, antipsychotics EMS Monitor BP may cause intolerance to EtOH OD May cause NA, severe hypotension give IV fluids symptomatic and supportive... [Pg.93]

Uses Postpartum bleeding (uterine subinvolution) Action Ergotamine derivative Dose 0.2 mg IM after placental deliv y, may repeat 2-4-h intervals or 0.2-0.4 mg PO q6-12h for 2-7 d Caution [C, ] Contra HTN, PRO Disp Inj, tabs SE HTN, N/V Interactions t Vasoconstriction W/ ergot alkaloids, sympathomimetics, tobacco EMS Tobacco use can t vasoconstriction and lead to a hypertensive crisis OD May cause N/V/D, chest/abd pain, limb numbness, and possibly distal gangrene d/t vasoconstriction activated charcoal may be effective for PO form... [Pg.220]

Uses Endogenous depression Action TCA T synaptic CNS levels of serotonin /or norepinephrine Dose Adults. 25 mg PO tid-qid >150 mg/d not OK Elderly. 10-25 mg hs Peds. 6-7 y 10 mg/d 8-11 y 10-20 mg/d >11 y 25-35 mg/d, 4- w/ hepatic insuff Caution [D, +/-] NAG, CV Dz Contra TCA allergy, use w/ MAOI Disp Caps, soln SE Anticholinergic (blurred vision, retention, xerostomia) Interactions T Effects W/ antihistamines, CNS depressants, cimetidine, fluoxetine, OCP, phenothiazine, quinidine, EtOH T effects OF anticoagulants T risk of HTN W/clonidine, levodopa, sympathomimetics T effects W/barbiturates, carbamazepine, rifampin EMS Concurrent use w/ MAOIs have resulted in HTN,... [Pg.238]

Pseudoephedrine (Sudafed, Novafed, Afrinol, Others) [OTC] [Decongestant/Sympothomimetic] Uses Deconge tant Action Stimulates a-adren gic rec tors w/ vasoconstriction Dose Adults. 30-60 mg PO q6—8h Peds. 4 mg/kg/24 h PO qid -1- in renal insuff Caution [C, +] Contra Poorly controlled HTN or CAD, w/MAOIs Disp Tabs, caps, Liq SE HTN, insomnia, tach, arrhythmias, nervousness, tremor Interactions T Risk of HTN crisis W/ MAOIs T effects W/BBs, sympathomimetics X effects W/TCAs -1- effect OF methyldopa, reserpine EMS Found in many OTC cough/cold pr >arations use sympathomimetics w/ caution, may T adverse effects OD May cause N/V, HTN, arrhythmias, and Szs symptomatic and supportive... [Pg.268]


See other pages where Sympathomimetics interaction is mentioned: [Pg.464]    [Pg.655]    [Pg.163]    [Pg.480]    [Pg.575]    [Pg.29]    [Pg.725]    [Pg.1088]    [Pg.8]    [Pg.21]    [Pg.23]    [Pg.27]    [Pg.29]    [Pg.31]    [Pg.60]    [Pg.64]    [Pg.137]    [Pg.140]    [Pg.141]    [Pg.147]    [Pg.148]    [Pg.168]    [Pg.169]    [Pg.179]    [Pg.179]    [Pg.204]    [Pg.218]    [Pg.218]    [Pg.258]    [Pg.259]    [Pg.265]    [Pg.272]    [Pg.273]    [Pg.278]   
See also in sourсe #XX -- [ Pg.448 , Pg.492 ]




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Sympathomimetic

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