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Midazolam Nefazodone

Aprepitant (Emend) [Centrally Acting Antiemetic] Uses Pre-vents N/V assoc w/ emetogenic CA chemo (eg, cisplatin) (use in combo w/ other antiemetics) Action Substance P/neurokinin l(NKi) receptor antagonist Dose 125 mg PO day 1, 1 h before chemo, then 80 mg PO qAM days 2 3 Caution [B, /-] Contra Use w/ pimozide, Disp Caps SE Fatigue, asthenia, hiccups Interactions T Effects W/ clarithromycin, diltiazem, itraconazole, ketoconazole, nefazodone, nelfinavir, ritonavir, troleandomycin T effects OF alprazolam, astem-izole, cisapride, dexamethasone, methylprednisolone, midazolam, pimozide, terfe-nadine, triazolam, chemo agents, eg, docetaxel, etoposide, ifosfamide, imatinib, irinotecan, paclitaxel, vinblastine, vincristine, vinorelbine i effects W/ paroxetine,... [Pg.78]

Use with caution in oider patients with Concurrent treatment with potent CYP 3A4 inhibitors (e.g., nefazodone) leads to increased plasma concentrations of midazolam COPD unfreafed sleep apnea... [Pg.805]

BZD hypnotics such as midazolam and triazolam are primarily metabolized via the P450 3A3/4 microenzyme system. Other BZDs often used as hypnotics, such as diazepam, can also be metabolized by CYP 33/4 and CYP 2C19. Any drugs that act as inhibitors or inducers of these isoenzymes could increase or decrease BZD levels, respectively (350). Thus, ketoconazole, macrolide antibiotics (e.g., erythromycin), SSRIs (e.g., fluoxetine-norfluoxetine and fluvoxamine), and other antidepressants (especially nefazodone) may decrease clearance and increase BZD levels to potentially toxic ranges. Conversely, rifampacin, CBZ, and dexamethasone may increase clearance and decrease BZD levels to potentially subtherapeutic ranges. [Pg.292]

Since benzodiazepines are metabolized by the cytochrome P450 family of isozymes,1 potential inhibitors of these may produce significant increases in blood concentrations of benzodiazepines. An example of this inhibition is the drug midazolam, administered as a presurgical anesthetic. Lam et al.11 reported a mean increase in the area under the curve of midazolam by ketoconazole (772%) and nefazodone (444%) in a group of 40 healthy human subjects administered 200 mg ketoconazole per day and 400 mg nefazodone per day. The authors concluded that caution should be exercised when use of midazolam is warranted with potent CYP3A4 inhibitors.11... [Pg.38]

Lam, Y.W., Alfaro, C.L., Ereshefsky, L., and Miller, M., Pharmacokinetic and pharmacodynamic interactions of oral midazolam with ketoconazole, fluoxetine, fluvoxamine, and nefazodone, J. Clin. Pharmacol, 43(11), 1274-1282, 2003. [Pg.38]

A4/3A5 Midazolam, buspirone, felodipine, lovastatin, eletriptan, sildenafil, simvastatin, triazolam Atazanavir, clarithromycin, indinavir, itraconazole, ketoconazole, nefazodone, nelfinavir, ritonavir, saquinavir, telithromycin Rifampin, carbamazepine... [Pg.675]

Pharmacokinetic and pharmacodynamic interactions of midazolam with fluoxetine, fluvoxamine, nefazodone, and ketoconazole have been investigated in 40 healthy subjects (64). The mean AUC of midazolam was increased 772% by ketoconazole and 444% by nefazodone. However, fluoxetine and fluvoxamine had no significant effects. Nefazodone and ketoconazole caused significant increases in midazolam-related cognitive impairment, reflecting changed midazolam clearance. [Pg.423]

Drugs that inhibit CYP450 3A4, such as nefazodone and fluvoxamine, may reduce midazolam clearance and thus raise midazolam levels... [Pg.292]

Clinically important, potentially hazardous interactions with alprazolam, astemizole, carbamazepine, cisapride, clarithromycin, dexamethasone, diltiazem, docetaxel, ifosfamide, imatinib, irinotecan, itraconazole, ketoconazole, methylprednisolone, midazolam, nefazodone, oral contraceptives, paroxetine, phenytoin, pimozide, rifampin, ritonavir, terfenadine, tolbutamide, trabectedin, troleandomycin, vinblastine, vincristine, warfarin... [Pg.42]

Lam YWF, Alfaro CL, Ereshefsky L, Miller M Fbannacokinetic and ibarmacodynamic interactions of oral midazolam with ketoconaaile, fluoxetine, fhivoxamine, and nefazodone. J Clin Pharmacol (2003) 43, 1274-82. [Pg.723]

Nefazodone increases the plasma levels and effects of alprazolam, midazolam, triazolam and zopiclone, but not lorazepam. [Pg.733]

A study in 10 healthy subjects found that both the AUC and the maximum plasma level of a single 10-mg dose of midazolam were increased about fivefold and twofold, respectively, when they took nefazodone 200 mg twice daily." ... [Pg.733]

Nefazodone appears to inhibit the oxidative metabolism of alprazolam, midazolam, triazolam and zopiclone by the cytochrome P450 isoenzyme CYP3A4 so that they accumulate in the body. Lorazepam is unaffected because it is primarily excreted as a conjugate. [Pg.733]

The interactions of nefazodone with alprazolam, midazolam, triazolam and zopiclone are established and clinically important. The practical consequences are that the effects of alprazolam, midazolam and triazolam are expected to be increased but the extent is uncertain. Be alert for any evidence of any psychomotor impairment, drowsiness etc. and reduce the benzodiazepine dosage if necessary. More study is needed. Lorazepam does not interact with nefazodone. There seems to be no direct information about other benzodiazepines and related drugs. [Pg.733]

Fexofenadine Imatinib Irinotecan Loperamide Methadone Midazolam Nefazodone Nevirapine Omeprazole Paroxetine oral contraceptives Phenprocoumon Setraline Simvastine Tacrolimus Theophylline Tolbutamide Voriconazole Warfarin... [Pg.541]


See other pages where Midazolam Nefazodone is mentioned: [Pg.295]    [Pg.296]    [Pg.1395]    [Pg.160]    [Pg.249]    [Pg.295]    [Pg.296]    [Pg.64]    [Pg.492]    [Pg.498]    [Pg.531]    [Pg.607]    [Pg.267]    [Pg.295]    [Pg.296]   
See also in sourсe #XX -- [ Pg.423 ]

See also in sourсe #XX -- [ Pg.733 ]




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Midazolam

Nefazodone

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