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      Adverse side‐effects of dexamethasone in surgical patients – an abridged Cochrane systematic review

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          Abstract

          In the peri-operative period, dexamethasone is widely and effectively used for prophylaxis of postoperative nausea and vomiting. The objective of this meta-analysis was to assess the adverse effects of an incidental steroid load of dexamethasone in adult surgical patients. We searched in MEDLINE, Embase, the Cochrane Central Register of Controlled Trials and the Web of Science for randomised controlled trials comparing an incidental steroid load of dexamethasone with a control intervention in adult patients undergoing surgery. Two review authors independently screened studies for eligibility, extracted data and assessed all included studies for bias. Our primary outcomes were postoperative systemic or wound infection, delayed wound healing and glycaemic response within 24 h. We included 37 studies in this meta-analysis. The pooled results found no evidence that dexamethasone increased the risk of a postoperative wound infection, Peto OR (95%CI) 1.01 (0.80-1.27); 4603 participants, 26 studies; I² = 32%; moderate-quality evidence. Whether dexamethasone influenced wound healing was unclear due to the large confidence intervals, Peto OR (95%CI) 0.99 (0.28-3.43); 1072 participants, 8 studies; I² = 0%; low-quality evidence. Dexamethasone produced a mild increase in glucose levels among participants without diabetes during the first 12 h after surgery, mean difference (95%CI) 0.7 mmol.l-1 (0.3-1.2) 10 studies; 595 participants; I² = 50%; low-quality evidence. This article is an abridged version of a Cochrane Review.

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          Most cited references48

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          Hyperglycemia Induced by Glucocorticoids in Nondiabetic Patients: A Meta-Analysis

          Background/Aims: Glucocorticoids are associated with a number of side effects including the development of new-onset hyperglycemia or diabetes. The diagnosis and treatment of glucocorticoid-induced hyperglycemia are surprisingly undervalued by many health-care professionals, probably due to the lack of quality studies that assess specific reasons for and prevention of hyperglycemia. The aim of this meta-analysis was to evaluate the long-term incidence of glucocorticoid-induced hyperglycemia and diabetes in nondiabetic patients who received glucocorticoid treatment. Methods: We searched Medline, Embase, and the Cochrane Library (Central) until January 2014 for studies in which subjects received systematic glucocorticoid treatment and which evaluated whether subjects developed hyperglycemia or were diagnosed with diabetes following treatment. The primary outcome for this analysis was the incidence of hyperglycemia and the secondary outcome was the frequency of diabetes. Results: We identified 13 studies that met our inclusion criteria; 12 of the studies were retrospective or observational in design. We found that the rate at which patients developed glucocorticoid-induced hyperglycemia or diabetes was 32.3% (p = 0.003) and 18.6% (p = 0.002), respectively. Conclusions: Our meta-analysis indicated that glucocorticoid-induced hyperglycemia occurs fairly frequently and points to the need for the design of prospective, randomized, controlled studies to further investigate and better understand this medical problem.
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            Preoperative dexamethasone improves surgical outcome after laparoscopic cholecystectomy: a randomized double-blind placebo-controlled trial.

            To determine the effects of preoperative dexamethasone on surgical outcome after laparoscopic cholecystectomy (LC). Pain and fatigue are dominating symptoms after LC and may prolong convalescence. In a double-blind, placebo-controlled study, 88 patients were randomized to intravenous dexamethasone (8 mg) or placebo 90 minutes before LC. Patients received a similar standardized anesthetic, surgical, and multimodal analgesic treatment. All patients were recommended 2 days postoperative duration of convalescence. The primary endpoints were fatigue and pain. Preoperatively and at several times during the first 24 postoperative hours, we measured C-reactive protein (CRP) and pulmonary function, pain scores, nausea, and number of vomiting episodes were registered. Analgesic and antiemetic requirements were recorded. Also, on a daily basis, patients reported scores of fatigue and pain before and during the first postoperative week and the dates for resumption of work and recreational activities. Eight patients were excluded from the study, leaving 40 patients in each study group for analysis. There were no apparent side effects of the study drug. Dexamethasone significantly reduced postoperative levels of CRP (P = 0.01), fatigue (P = 0.01), overall pain, and incisional pain during the first 24 postoperative hours (P < 0.05) and total requirements of opioids (P < 0.05). In addition, cumulated overall and visceral pain scores during the first postoperative week were significantly reduced (P < 0.05). Dexamethasone also reduced nausea and vomiting on the day of operation (P < 0.05). Resumption of recreational activities was significantly faster in the dexamethasone group versus placebo group (median 1 day versus 2 days) (P < 0.05). Preoperative dexamethasone (8 mg) reduced pain, fatigue, nausea and vomiting, and duration of convalescence in patients undergoing noncomplicated LC, when compared with placebo, and is recommended for routine use.
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              Dexamethasone versus standard treatment for postoperative nausea and vomiting in gastrointestinal surgery: randomised controlled trial (DREAMS Trial)

              (2017)
              Objectives To determine whether preoperative dexamethasone reduces postoperative vomiting in patients undergoing elective bowel surgery and whether it is associated with other measurable benefits during recovery from surgery, including quicker return to oral diet and reduced length of stay. Design Pragmatic two arm parallel group randomised trial with blinded postoperative care and outcome assessment. Setting 45 UK hospitals. Participants 1350 patients aged 18 or over undergoing elective open or laparoscopic bowel surgery for malignant or benign pathology. Interventions Addition of a single dose of 8 mg intravenous dexamethasone at induction of anaesthesia compared with standard care. Main outcome measures Primary outcome: reported vomiting within 24 hours reported by patient or clinician. Secondary outcomes: vomiting with 72 and 120 hours reported by patient or clinician; use of antiemetics and postoperative nausea and vomiting at 24, 72, and 120 hours rated by patient; fatigue and quality of life at 120 hours or discharge and at 30 days; time to return to fluid and food intake; length of hospital stay; adverse events. Results 1350 participants were recruited and randomly allocated to additional dexamethasone (n=674) or standard care (n=676) at induction of anaesthesia. Vomiting within 24 hours of surgery occurred in 172 (25.5%) participants in the dexamethasone arm and 223 (33.0%) allocated standard care (number needed to treat (NNT) 13, 95% confidence interval 5 to 22; P=0.003). Additional postoperative antiemetics were given (on demand) to 265 (39.3%) participants allocated dexamethasone and 351 (51.9%) allocated standard care (NNT 8, 5 to 11; P<0.001). Reduction in on demand antiemetics remained up to 72 hours. There was no increase in complications. Conclusions Addition of a single dose of 8 mg intravenous dexamethasone at induction of anaesthesia significantly reduces both the incidence of postoperative nausea and vomiting at 24 hours and the need for rescue antiemetics for up to 72 hours in patients undergoing large and small bowel surgery, with no increase in adverse events. Trial registration EudraCT (2010-022894-32) and ISRCTN (ISRCTN21973627).
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                Author and article information

                Journal
                Anaesthesia
                Anaesthesia
                Wiley
                0003-2409
                1365-2044
                June 05 2019
                July 2019
                March 2019
                July 2019
                : 74
                : 7
                : 929-939
                Affiliations
                [1 ]Department of Anaesthesiology Amsterdam University Medical Centre Amsterdamthe Netherlands
                [2 ]Department of Surgery Amsterdam University Medical Centre Amsterdamthe Netherlands
                [3 ]Department of Anaesthesia and Critical Care University Hospitals of Wuerzburg Germany
                [4 ]Department of Endocrinology Amsterdam University Medical Centre Amsterdamthe Netherlands
                [5 ]Department of Anaesthesiology and Laboratory of Experimental Intensive Care and Anaesthesiology (L.E.I.C.A.) Amsterdam University Medical Centre Amsterdam the Netherlands
                Article
                10.1111/anae.14610
                30821852
                54485871-c93b-4634-91cc-93067ffc266f
                © 2019

                http://onlinelibrary.wiley.com/termsAndConditions#vor

                http://doi.wiley.com/10.1002/tdm_license_1.1

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