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Published on: December 6, 2016
Incompatibility of the short-acting benzodiazepine remimazolam with common perioperative medication
Pascal Hofmann1,2, Lena Bachmann1, Pia Brümmer1
1University Hospital Tübingen, Department of Anaesthesiology and Intensive Care Medicine, Tübingen, Germany.
Background:
Remimazolam is a relatively new benzodiazepine with growing use in procedural sedation and general anaesthesia. Initiated by case reports, the physical incompatibility of remimazolam with ringer's acetated and ringer's lactated solution has been reported. More recently, remifentanil, fentanyl, rocuronium, vecuronium, dexmedetomidine, and midazolam, have been investigated and suggested safe for coadministration with remimazolam. Apart from case reports, incompatibility for other frequently used drugs remains unknown.
Methods:
Sixty-five drugs and intravenous fluids were tested for possible precipitation with remimazolam in a simulated y-site administration. Equal volumes of the test drug were injected into the remimazolam solution, examined and photo documented at 1, 15, 30 and 60 min after mixture. Examination was taken by two independent investigators. pH was measured before, and 60 min after mixing the drugs.
Results:
Seventeen (26.15%) drugs or fluids showed precipitation, 47 (72.31%) did not show any sign of interaction. Propofol could not be assessed, because of the turbidity of the substance itself. Precipitation occurred immediately and remained stable in all timestamps. The incompatible drug-remimazolam-mixtures had a median pH of 7.15 (6.67, 8.01), the non-precipitating mixtures a median pH of 4.75 (3.8, 5.6). The pH-values of both groups were significantly different (Mann-Whitney-U-test; p < .00001). There is an increasing risk for precipitation with more basic baseline pH-levels of the tested drug. No interaction was seen in baseline pH below 5.
Conclusions:
Remimazolam (Byfavo®) is incompatible with ampicillin/ sulbactam, calcium gluconate, clindamycin, dexamethasone, dimenhydrinate, an 148mval/l electrolyte - glucose 1% solution (E148G1®), furosemide, a 4% gelatine volume expander (gelafundin®), heparin sodium, insulin, meropenem, sodium bicarbonate 8.4%, prednisolone, the crystalloid infusions jonosteril® and sterofundin®, thiopental and tranexamic acid. The results strongly affirm remimazolam's safety requirements: A separate line for remimazolam and an approved compatible baseline infusion is mandatory and an alternative way to administer bolus medication is required.
Insights
Remimazolam, a new anesthetic, showed precipitation with 17 drugs, including ampicillin/sulbactam and furosemide. Ensuring safe administration requires a separate line for remimazolam and careful consideration of drug compatibility.
Area of Science:
- Anesthesiology
- Pharmacology
- Clinical Pharmacy
Background:
- Remimazolam is a novel benzodiazepine used in anesthesia and procedural sedation.
- Previous reports indicate physical incompatibility with specific intravenous fluids like Ringer's lactate.
- The compatibility of remimazolam with many commonly used drugs remains largely uninvestigated.
Purpose of the Study:
- To systematically evaluate the physical compatibility of remimazolam with a wide range of drugs and intravenous fluids.
- To identify specific agents that precipitate upon coadministration with remimazolam via simulated Y-site administration.
- To provide evidence-based recommendations for safe remimazolam administration protocols.
Main Methods:
- Sixty-five drugs and intravenous fluids were tested for precipitation with remimazolam.
- Simulated Y-site administration involved mixing equal volumes and observing for precipitation over 60 minutes.
- Visual inspection by two independent investigators and pH measurements were conducted before and after mixing.
Main Results:
- Seventeen (26.15%) of the tested drugs/fluids showed visible precipitation with remimazolam.
- No interaction was observed with 47 (72.31%) of the agents; propofol could not be assessed due to its own turbidity.
- Precipitation risk increased with more basic baseline pH levels of the coadministered drug; no interaction occurred below pH 5.
Conclusions:
- Remimazolam is incompatible with a significant number of drugs, including ampicillin/sulbactam, calcium gluconate, furosemide, heparin, insulin, and thiopental.
- Safe administration necessitates a dedicated intravenous line for remimazolam and careful selection of compatible baseline infusions.
- Alternative methods for administering bolus medications concurrently with remimazolam should be considered to prevent adverse events.
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