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Differentiating midazolam over-sedation from neurological damage in the intensive care unit
Catherine A McKenzie1, William McKinnon, Declan P Naughton
1Intensive Care Medicine, Department of Pharmacy, Guy's and St. Thomas' Hospital, London, UK. Catherine.McKenzie@gstt.sthames.nhs.uk
Introduction:
Midazolam is used routinely to sedate patients in the intensive care unit (ICU). We suspected that midazolam over-sedation was occurring in the ICU of the Guy's and St. Thomas' Trust and that it could be difficult to differentiate this from underlying neurological damage. A sensitive assay for detecting midazolam and 1-hydroxymidazolam glucuronide (1-OHMG) in serum was developed and applied in the clinical setting.
Methods:
In the present study we evaluated a series of cases managed in a mixed medical, surgical and trauma ICU. Serum was collected from 26 patients who received midazolam, were 'slow to wake' and in whom there was suspicion of neurological damage. Patient outcome was followed in terms of mortality, neurological recovery and neurological damage on discharge.
Results:
Out of 26 patients, 13 had detectable serum levels of midazolam and/or 1-OHMG after a median of 67 hours (range 36-146 hours) from midazolam cessation. Of these 13 patients in whom midazolam/1-OHMG was detectable, 10 made a full neurological recovery. Of the remaining 13 patients with no detectable midazolam/1-OHMG, three made a full neurological recovery; 10 patients were subsequently found to have suffered neurological damage (P < 0.002), eight of whom died and two were discharged from the ICU with profound neurological damage.
Conclusion:
These findings confirm that prolonged sedation after midazolam therapy should be considered in the differential diagnosis of neurological damage in the ICU. This can be reliably detected by the assay method described. The effects of midazolam/1-OHMG persist days after administration of midazolam has ceased. After prolonged sedation has been excluded in this patient group, it is highly likely that neurological damage has occurred.
Insights
Prolonged sedation from midazolam can mimic neurological damage in the ICU. A new assay detects midazolam and its metabolite, helping differentiate true neurological injury from over-sedation in critical care patients.
Area of Science:
- Pharmacology
- Intensive Care Medicine
- Clinical Chemistry
Background:
- Midazolam is a common sedative in intensive care units (ICUs).
- Over-sedation with midazolam can be mistaken for neurological damage.
- A sensitive assay for midazolam and 1-hydroxymidazolam glucuronide (1-OHMG) was developed.
Purpose of the Study:
- To investigate the occurrence of midazolam over-sedation in an ICU setting.
- To determine if a developed assay can differentiate midazolam over-sedation from neurological damage.
- To assess the correlation between detectable midazolam/1-OHMG levels and patient outcomes.
Main Methods:
- Serum samples were collected from 26 ICU patients suspected of neurological damage after midazolam administration.
- Patients were monitored for mortality, neurological recovery, and neurological damage upon discharge.
- A sensitive assay was used to detect midazolam and 1-OHMG in patient serum.
Main Results:
- 13 out of 26 patients had detectable midazolam/1-OHMG levels after a median of 67 hours post-cessation.
- 10 of these 13 patients with detectable levels recovered neurologically.
- 10 patients without detectable levels suffered neurological damage (P < 0.002), with 8 deaths.
Conclusions:
- Prolonged midazolam sedation should be considered in ICU patients with suspected neurological damage.
- The developed assay reliably detects persistent midazolam and its metabolite.
- Excluding prolonged sedation with this assay increases the likelihood of diagnosing actual neurological damage.
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