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Mervyn Singer

Publications and source records attributed to Mervyn Singer.

52 records · Page 3Linked to original sources

Large variation in MRSA policies, procedures and prevalence in English intensive care units: a questionnaire analysis.

OBJECTIVE: Methicillin-resistant Staphylococcus aureus (MRSA) is a major problem in intensive care units in most countries. Despite recommendations for screening and isolation of patients with MRSA our perception has been that there is little uniformity in approach in ICUs besides adherence to basic infection control procedures. We thus sought to identify MRSA prevalence and the variation of infection control policy across intensive care units in England. DESIGN AND SETTING: Postal questionnaire with telephone follow-up in English intensive care units. MEASUREMENTS AND RESULTS: Responses were obtained from 217 (96%) ICUs. Marked variation in practice was noted in terms of patient screening, staff screening, infection control procedures, isolation or cohorting of colonised/infected patients, and ward discharge policy. Point prevalence data showed that 16.2% of ICU patients were known to be colonised or infected with MRSA. There was a regional bias, but no difference was noted between high and low prevalence regions in terms of unit demographics or infection control policies. CONCLUSIONS: This study highlights the lack of consistent policy across English ICUs regarding isolation, screening and discharge practices for MRSA. Prospective studies are urgently needed to determine best practice.

Cross Infection↗

Inhibition of mitochondrial respiration during early stage sepsis.

It is known that nitric oxide (NO) is produced in response to a septic insult such as bacterial invasion and that overproduction of NO can have serious debilitating consequences. The mechanism by which NO causes damage at the cellular level is less clear. We have therefore studied the response to a septic insult in an anaesthetised spontaneously breathing Sprague-Dawley rat model. Six rats were given either an intravenous infusion of bacterial cell wall lipopolysaccharide (LPS, 5 mg/kg) or saline control over 1 hour. For electron paramagnetic resonance (EPR) studies, blood samples were collected every hour for a further two hours and liver tissue samples were collected postmortem. Measurement was also made of PaO2, blood pressure, base deficit, aortic and renal blood flow and hepatic microvascular pO2 (using porphyrin phosphoresence). Tissue samples were also collected for mitochondrial complex activity analysis. After the administration of LPS blood pressure, blood flow and microvascular PO2 were diminished and the base deficit increased. In addition a clear difference was observed by EPR between control and insulted blood and tissue samples. A large heam-nitrosyl signal is observed as well as an increase in the signal at g = 1.94, corresponding to the iron-sulphur centres of complex I becoming more reduced. However, no significant difference was observed for any of the mitochondrial complex activities. The effect of the NO produced was to depress the circulatory variables and increase base deficit, combined with a reduced oxygen consumption this implies an impairment of normal aerobic respiration. This was supported by increased iron-sulphur signals observed by EPR indicating a blockage in the mitochondrial redox chain with the subsequent accumulation of electrons. As no effect was observed in the mitochondrial complex activities this indicates that this inhibition is reversible in early stage sepsis. We conclude that nitric oxide produced in response to a septic insult can inhibit mitochondria causing an impairment of oxygen utilisation by aerobic respiration.

Animals↗

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Blood Circulation↗

Mitochondrial Dysfunction in Sepsis.

Sepsis is an increasingly common problem, particularly among critically ill patients. Mechanisms by which sepsis induces organ dysfunction have not been elucidated. The coexisting findings (unique to sepsis) of metabolic acidosis yet increased tissue oxygen tensions suggest cellular availability but decreased use of oxygen (tissue dysoxia). Because mitochondria use more than 90% of total body oxygen consumption for adenosine triphosphate (ATP) generation, a bioenergetic abnormality is implied. Cell and animal data have shown that nitric oxide (and its metabolites), produced in considerable excess in patients with sepsis, can affect oxidative phosphorylation by inhibiting several of its component respiratory enzymes. Human data are scarce. However, in skeletal muscle biopsies taken from patients with sepsis, we have recently demonstrated a relationship between increased nitric oxide production, antioxidant depletion, reduced respiratory chain complex I activity, and low ATP levels. These findings correlated with severity of disease and outcome and support the notion that mitochondrial dysfunction resulting in bioenergetic failure may be an important factor in the pathophysiology of sepsis-associated multiorgan failure. However, a reasonable argument can be made that the reduction in energy supply could represent a last-ditch adaptive response to ongoing inflammation, resulting in a cellular shutdown analogous to hibernation that allows eventual restoration of organ function and long-term survival in patients fit enough to survive the acute phase.

Journal Article↗

Esophageal Doppler: noninvasive cardiac output monitor.

In this article we describe the esophageal Doppler, a noninvasive, instantaneous cardiac output monitor. Its reliability has been demonstrated to be comparable to that of other current techniques used in the clinical arena to measure cardiac output. It helps guiding intravascular fluid resuscitation by quantifying the increase in flow in response to fluid challenges and by indicating the plateau of the patient's cardiac function curve. When the plateau has been reached, further fluid loading may result in congestion without improvement in systemic flow. Thus, measuring cardiac output is the only way to determine the upper limit for fluid intake. In addition, a strategy based on cardiac output optimization has proven beneficial in high-risk surgical patients.

Cardiac Output↗

Angiotensin II blockade augments renal cortical microvascular pO2 indicating a novel, potentially renoprotective action.

BACKGROUND: The existence of tubulointerstitial damage in most cases of progressive human glomerular disease suggests that this compartment of the kidney is likely to be targeted by renoprotective agents which slow the progression of disease. Angiotensin-converting enzyme (ACE) inhibitors have become the cornerstone of renal protection. Since we have proposed that perturbation of the interstitial capillary circulation with consequent chronic hypoxia could be critical to the progressive nature of many renal diseases, we developed a dynamic method of measuring renal cortical pO(2) and sought to determine whether agents which block the renal effects of angiotensin II (AII) could affect interstitial microvascular oxygenation in the normal rat kidney. METHODS: Instrumented, anaesthetised adult male Sprague-Dawley rats were studied. Cortical microvascular pO(2 )was measured on the surface of the exposed kidney using protoporphyrin phosphorescence. Blood pressure and renal artery blood flow (Doppler flowmetry) were measured concurrently over a 180-min experimental period. Animals received non-hypotensive doses of enalaprilat (100 microg/kg i.v.) or candesartan (40 microg/kg i.v.) either at the beginning of the experimental period or after an initial decline in cortical microvascular pO(2). RESULTS: After a 30-min stabilisation period there was a slow decline in pO(2 )from 48.6 +/- 4.1 to 38.5 +/- 6.9 mm Hg in control animals over the 180-min experimental period. Administration of the ACE inhibitor, enalaprilat at the beginning of the experimental period, completely abrogated this decline and protected pO(2) levels throughout this period with no effect on blood pressure or renal blood flow. In separate experiments, administration of enalaprilat after microvascular pO(2) had fallen by 5 mm Hg, resulted in a rise in RBF and pO(2 )within 15 min with pO(2) remaining elevated for up to 60 min post-injection. The angiotensin II AT(1) receptor antagonist, candesartan, had a similar effect to enalaprilat, inducing a rapid and sustained elevation in cortical pO(2). CONCLUSIONS: These studies indicate that blockade of AII raises pO(2 )in the interstitial microvascular compartment of the normal rat kidney. This effect may contribute to the renoprotective action of ACE inhibitors and AII receptor antagonists in slowing the progression of chronic renal diseases.

Angiotensin II↗

Association between mitochondrial dysfunction and severity and outcome of septic shock.

BACKGROUND: Sepsis-induced multiple organ failure is the major cause of mortality and morbidity in critically ill patients. However, the precise mechanisms by which this dysfunction is caused remain to be elucidated. We and others have shown raised tissue oxygen tensions in septic animals and human beings, suggesting reduced ability of the organs to use oxygen. Because ATP production by mitochondrial oxidative phosphorylation accounts for more than 90% of total oxygen consumption, we postulated that mitochondrial dysfunction results in organ failure, possibly due to nitric oxide, which is known to inhibit mitochondrial respiration in vitro and is produced in excess in sepsis. METHODS: We did skeletal muscle biopsies on 28 critically ill septic patients within 24 h of admission to intensive care, and on nine control patients undergoing elective hip surgery. The biopsy samples were analysed for respiratory-chain activity (complexes I-IV), ATP concentration, reduced glutathione (an intracellular antioxidant) concentration, and nitrite/nitrate concentrations (a marker of nitric oxide production). FINDINGS: Skeletal muscle ATP concentrations were significantly lower in the 12 patients with sepsis who subsequently died than in the 16 septic patients who survived (p=0.0003) and in controls (p=0.05). Complex I activity had a significant inverse correlation with norepinephrine requirements (a proxy for shock severity, p=0.0003) and nitrite/nitrate concentrations (p=0.0004), and a significant positive correlation with concentrations of reduced glutathione (p=0.006) and ATP (p=0.03). INTERPRETATION: In septic patients, we found an association between nitric oxide overproduction, antioxidant depletion, mitochondrial dysfunction, and decreased ATP concentrations that relate to organ failure and eventual outcome. These data implicate bioenergetic failure as an important pathophysiological mechanism underlying multiorgan dysfunction.

Adenosine Triphosphate↗

Terlipressin for norepinephrine-resistant septic shock.

Norepinephrine-resistant hypotension when associated with septic shock has a high rate of mortality, which might possibly be reduced by infusion of low-dose vasopressin. However, rebound hypotension often arises after treatment is stopped, and the drug usually has to be administered for several days. We report use of terlipressin, a long-acting vasopressin analogue, in eight patients with septic shock who did not respond to corticosteroids and methylene blue. A significant rise in blood pressure that lasted for at least 5 h was seen in all patients after a single bolus, allowing reduction or cessation of norepinephrine administration in seven patients. We were able to discharge four patients from intensive care subsequently. Terlipressin seems to be an effective rescue therapy, which is able to restore blood pressure in patients with catecholamine-resistant septic shock, without obvious complication.

APACHE↗

Continuous renal replacement therapy. Keeping the circuit open: lessons from the lab.

BACKGROUND: Hemofiltration circuits generally require anticoagulation to prevent the membrane from clotting. Understanding the mechanisms involved in premature clotting of the filtration circuit is useful to optimize anticoagulation and maintain filter patency. AIMS: To discuss research performed at our institution which throws light on the causes of premature clotting of the hemofilter, and to highlight our approach to anticoagulation. DISCUSSION: Premature clotting of the circuit is related to low baseline levels of antithrombin III (AT-III), heparin co-factor II and tissue factor pathway inhibitor. Clotting is preceded by a precipitous rise in thrombin-antithrombin complexes, suggesting thrombin generation. Our standard anticoagulant is unfractionated heparin, where the primary mode of action is potentiation of endogenous AT-III. However, AT-III levels are diminished in sepsis and other causes of systemic inflammation. To supplement or prevent consumption of AT-III we use fresh frozen plasma or aprotinin (as cheaper alternatives to AT-III) in situations where filter life span is limited and mechanical obstruction has been excluded. Anticoagulation can be managed in heparin-induced thrombocytopenic patients with danaparoid, prostaglandins and/or predilution.

Anticoagulants↗

Multiorgan failure is an adaptive, endocrine-mediated, metabolic response to overwhelming systemic inflammation.

Sepsis and other critical illnesses produce a biphasic inflammatory, immune, hormonal, and metabolic response. The acute phase is marked by an abrupt rise in the secretion of so-called stress hormones with an associated increase in mitochondrial and metabolic activity. The combination of severe inflammation and secondary changes in endocrine profile diminish energy production, metabolic rate, and normal cellular processes, leading to multiple organ dysfunction. This perceived failure of organs might instead be a potentially protective mechanism, because reduced cellular metabolism could increase the chances of survival of cells, and thus organs, in the face of an overwhelming insult. We propose that, first, multiple organ failure induced by critical illness is primarily a functional, rather than structural, abnormality. Indeed, it may not be failure as such, but a potentially protective, reactive mechanism. Second, the decline in organ function is triggered by a decrease in mitochondrial activity and oxidative phosphorylation, leading to reduced cellular metabolism. Third, this effect on mitochondria might be the consequence of acute-phase changes in hormones and inflammatory mediators.

Acute-Phase Reaction↗

Isolation of patients in single rooms or cohorts to reduce spread of MRSA in intensive-care units: prospective two-centre study.

BACKGROUND: Hospital-acquired infection due to meticillin-resistant Staphylococcus aureus (MRSA) is common within intensive-care units. Single room or cohort isolation of infected or colonised patients is used to reduce spread, but its benefit over and above other contact precautions is not known. We aimed to assess the effectiveness of moving versus not moving infected or colonised patients in intensive-care units to prevent transmission of MRSA. METHODS: We undertook a prospective 1-year study in the intensive-care units of two teaching hospitals. Admission and weekly screens were used to ascertain the incidence of MRSA colonisation. In the middle 6 months, MRSA-positive patients were not moved to a single room or cohort nursed unless they were carrying other multiresistant or notifiable pathogens. Standard precautions were practised throughout. Hand hygiene was encouraged and compliance audited. FINDINGS: Patients' characteristics and MRSA acquisition rates were similar in the periods when patients were moved and not moved. The crude (unadjusted) Cox proportional-hazards model showed no evidence of increased transmission during the non-move phase (0.73 [95% CI 0.49-1.10], p=0.94 one-sided). There were no changes in transmission of any particular strain of MRSA nor in handwashing frequency between management phases. INTERPRETATION: Moving MRSA-positive patients into single rooms or cohorted bays does not reduce crossinfection. Because transfer and isolation of critically ill patients in single rooms carries potential risks, our findings suggest that re-evaluation of isolation policies is required in intensive-care units where MRSA is endemic, and that more effective means of preventing spread of MRSA in such settings need to be found.

Adult↗

Reversal of life-threatening, drug-related potassium-channel syndrome by glibenclamide.

We describe three critically ill patients who received drugs with K(ATP) channel-opening properties and subsequently developed severe life-threatening complications, including hyperkalaemia and cardiovascular disturbances. Administration of the sulfonylurea-receptor inhibitor glibenclamide promptly reversed these abnormalities. Over the past 3 years, we have seen this syndrome and response in five patients taking nicorandil, ciclosporin, or isoflurane, which suggests that this disorder arises more frequently than is currently realised.

Adenosine Triphosphate↗

Assessment of the clinical effectiveness of pulmonary artery catheters in management of patients in intensive care (PAC-Man): a randomised controlled trial.

BACKGROUND: Over the past 30 years the pulmonary artery catheter (PAC) has become a widely used haemodynamic monitoring device in the management of critically ill patients, though doubts exist about its safety. Our aim was, therefore, to ascertain whether hospital mortality is reduced in critically ill patients when they are managed with a PAC. METHODS: We did a randomised controlled trial to which we enrolled 1041 patients from 65 UK intensive care units. We assigned individuals to management with (n=519) or without (n=522) a PAC. The timing of insertion and subsequent clinical management were at the discretion of the treating clinician. Intensive care units decided a priori to have the option of using an alternative cardiac output-monitoring device in control patients. FINDINGS: 1014 patients were eligible for analysis. We noted no difference in hospital mortality between patients managed with or without a PAC (68% [346 of 506] vs 66% [333 of 507], p=0.39; adjusted hazard ratio 1.09, 95% CI 0.94-1.27). We noted complications associated with insertion of a PAC in 46 of 486 individuals in whom the device was placed, none of which was fatal. INTERPRETATION: Our findings indicate no clear evidence of benefit or harm by managing critically ill patients with a PAC. Efficacy studies are needed to ascertain whether management protocols involving PAC use can result in improved outcomes in specific groups if these devices are not to become a redundant technology.

Adolescent↗