Drug Interaction Report
3 potential interactions and/or warnings found for the following 2 drugs:
- nalidixic acid
- Zoryve Foam (roflumilast topical)
Interactions between your drugs
nalidixic acid roflumilast topical
Applies to: nalidixic acid, Zoryve Foam (roflumilast topical)
MONITOR: Coadministration with CYP450 3A4 inhibitors or dual CYP450 3A4/1A2 inhibitors may increase the systemic exposure (AUC) to roflumilast following topical administration. According to the prescribing information, N-oxidation of roflumilast by CYP450 3A4 and 1A2 is a major step in the metabolism of the drug. In vitro, roflumilast is 3 times more potent than its N-oxide metabolite at inhibition of the phosphodiesterase 4 (PDE4) enzyme, but on average, the roflumilast N-oxide AUC is approximately 8-fold greater than the parent drug AUC following IV or topical administration and about 10-fold greater following oral administration. In a pharmacokinetic study of 18 adults and 6 adolescents with plaque psoriasis and a mean body surface area involvement of 26.8% (adults) and 13.0% (adolescents), the mean AUC of roflumilast and roflumilast N-oxide following application of 3 to 6.5 g once daily for 15 days was 72.7 and 628 h*ng/mL, respectively, for adults and 25.1 and 140 h*ng/mL, respectively, for adolescents. Data regarding concomitant use of CYP450 3A4 or dual CYP450 3A4/1A2 inhibitors have been reported for oral roflumilast (500 mcg single dose). When coadministered with the potent CYP450 3A4 inhibitor ketoconazole (200 mg twice daily for 13 days), roflumilast peak plasma concentration (Cmax) and AUC increased by 23% and 99%, respectively, while roflumilast N-oxide Cmax decreased by 38% and AUC increased by 3%. When coadministered with erythromycin (500 mg three times daily for 13 days), a moderate CYP450 3A4 inhibitor, roflumilast Cmax and AUC increased by 40% and 70%, respectively, while roflumilast N-oxide Cmax decreased by 34% and AUC increased by 4%. When coadministered with the dual CYP450 3A4/1A2 inhibitors fluvoxamine (50 mg daily for 14 days) or cimetidine (400 mg twice daily for 7 days), roflumilast Cmax increased by 12% and 46% and its AUC increased by 156% and 85%, respectively, while the roflumilast N-oxide Cmax decreased by 210% and 4% and its AUC increased by 52% and 27%, respectively.
MANAGEMENT: Treatment with topical roflumilast should be re-evaluated if an interaction is suspected and persistent intolerability occurs. Patients should be advised to contact their physician if they experience increased frequency and/or severity of side effects such as diarrhea, headache, insomnia, nausea, upper respiratory tract infection, or urinary tract infection.
References (2)
- (2011) "Product Information. Daliresp (roflumilast)." Astra-Zeneca Pharmaceuticals
- (2022) "Product Information. Zoryve (roflumilast topical)." Arcutis Biotherapeutics, Inc, 1
Drug and food interactions
nalidixic acid food
Applies to: nalidixic acid
ADJUST DOSING INTERVAL: Oral preparations that contain magnesium, aluminum, or calcium may significantly decrease the gastrointestinal absorption of nalidixic acid. Absorption may also be reduced by sucralfate, which contains aluminum, as well as other polyvalent cations such as iron and zinc. The mechanism is chelation of nalidixic acid by polyvalent cations, forming a complex that is poorly absorbed from the gastrointestinal tract.
MANAGEMENT: When coadministration cannot be avoided, nalidixic acid should be dosed at least 2 hours before or 2 hours after polyvalent cation-containing products to minimize the potential for interaction.
References (1)
- "Product Information. Neggram (nalidixic acid)." Sanofi Winthrop Pharmaceuticals
nalidixic acid food
Applies to: nalidixic acid
MONITOR: Coadministration with certain quinolones may increase the plasma concentrations and pharmacologic effects of caffeine due to inhibition of the CYP450 1A2 metabolism of caffeine. Quinolones that may inhibit CYP450 1A2 include ciprofloxacin, enoxacin, grepafloxacin, nalidixic acid, norfloxacin, pipemidic acid, and pefloxacin (not all commercially available). In healthy volunteers, enoxacin (100 to 400 mg twice daily) increased systemic exposure (AUC) of caffeine by 2- to 5-fold and reduced its clearance by approximately 80%. Pipemidic acid (400 to 800 mg twice daily) increased AUC of caffeine by 2- to 3-fold and reduced its clearance by approximately 60%. Ciprofloxacin (250 to 750 mg twice daily) increased AUC and elimination half-life of caffeine by 50% to over 100%, and reduced its clearance by 30% to 50%. Norfloxacin 400 mg twice daily increased caffeine AUC by 16%, while 800 mg twice daily increased caffeine AUC by 52% and reduced its clearance by 35%. Pefloxacin (400 mg twice daily) has been shown to reduce caffeine clearance by 47%.
MANAGEMENT: Patients using caffeine-containing products should be advised that increased adverse effects such as headache, tremor, restlessness, nervousness, insomnia, tachycardia, and blood pressure increases may occur during coadministration with quinolones that inhibit CYP450 1A2. Caffeine intake should be limited when taking high dosages of these quinolones. If an interaction is suspected, other quinolones such as gatifloxacin, gemifloxacin, levofloxacin, lomefloxacin, moxifloxacin, and ofloxacin may be considered, since they are generally believed to have little or no effect on CYP450 1A2 or have been shown not to interact with caffeine.
References (17)
- Polk RE (1989) "Drug-drug interactions with ciprofloxacin and other fluoroquinolones." Am J Med, 87, s76-81
- Healy DP, Polk RE, Kanawati L, Rock DT, Mooney ML (1989) "Interaction between oral ciprofloxacin and caffeine in normal volunteers." Antimicrob Agents Chemother, 33, p. 474-8
- Harder S, Fuhr U, Staib AH, Wolf T (1989) "Ciprofloxacin-caffeine: a drug interaction established using in vivo and in vitro investigations." Am J Med, 87, p. 89-91
- Carbo ML, Segura J, De la Torre R, et al. (1989) "Effect of quinolones on caffeine disposition." Clin Pharmacol Ther, 45, p. 234-40
- (1993) "Product Information. Penetrax (enoxacin)." Rhone-Poulenc Rorer, Collegeville, PA.
- Mahr G, Sorgel F, Granneman GR, et al. (1992) "Effects of temafloxacin and ciprofloxacin on the pharmacokinetics of caffeine." Clin Pharmacokinet, 22, p. 90-7
- (2002) "Product Information. Cipro (ciprofloxacin)." Bayer
- (2001) "Product Information. Noroxin (norfloxacin)." Merck & Co., Inc
- Staib AH, Stille W, Dietlein G, et al. (1987) "Interaction between quinolones and caffeine." Drugs, 34 Suppl 1, p. 170-4
- Stille W, Harder S, Micke S, et al. (1987) "Decrease of caffeine elimination in man during co-administration of 4-quinolones." J Antimicrob Chemother, 20, p. 729-34
- Harder S, Staib AH, Beer C, Papenburg A, Stille W, Shah PM (1988) "4-Quinolones inhibit biotransformation of caffeine." Eur J Clin Pharmacol, 35, p. 651-6
- Nicolau DP, Nightingale CH, Tessier PR, et al. (1995) "The effect of fleroxacin and ciprofloxacin on the pharmacokinetics of multiple dose caffeine." Drugs, 49 Suppl 2, p. 357-9
- (2001) "Product Information. Raxar (grepafloxacin)." Glaxo Wellcome
- Carrillo JA, Benitez J (2000) "Clinically significant pharmacokinetic interactions between dietary caffeine and medications." Clin Pharmacokinet, 39, p. 127-53
- Fuhr U, Wolff T, Harder S, Schymanski P, Staib AH (1990) "Quinolone inhibition of cytochrome P-450 dependent caffeine metabolism in human liver microsomes." Drug Metab Dispos, 18, p. 1005-10
- Kinzig-Schippers M, Fuhr U, Zaigler M, et al. (1999) "Interaction of pefloxacin and enoxacin with the human cytochrome P450 enzyme CYP1A2." Clin Pharmacol Ther, 65, p. 262-74
- Healy DP, Schoenle JR, Stotka J, Polk RE (1991) "Lack of interaction between lomefloxacin and caffeine in normal volunteers." Antimicrob Agents Chemother, 35, p. 660-4
Therapeutic duplication warnings
No duplication warnings were found for your selected drugs.
Therapeutic duplication warnings are only returned when drugs within the same group exceed the recommended therapeutic duplication maximum.
Drug Interaction Classification
Highly clinically significant. Avoid combinations; the risk of the interaction outweighs the benefit. | |
Moderately clinically significant. Usually avoid combinations; use it only under special circumstances. | |
Minimally clinically significant. Minimize risk; assess risk and consider an alternative drug, take steps to circumvent the interaction risk and/or institute a monitoring plan. | |
No interaction information available. |
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