Low Testosterone Levels are Frequent in Patients with Acute Respiratory Failure and are Associated with Poor Outcomes

2014 ◽  
Vol 20 (10) ◽  
pp. 1057-1063 ◽  
Author(s):  
Khalid Almoosa ◽  
Aditya Gupta ◽  
Claudia Pedroza ◽  
Nelson Watts
2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Raymond J. Langley ◽  
Marie E. Migaud ◽  
Lori Flores ◽  
J. Will Thompson ◽  
Elizabeth A. Kean ◽  
...  

AbstractAcute respiratory failure (ARF) requiring mechanical ventilation, a complicating factor in sepsis and other disorders, is associated with high morbidity and mortality. Despite its severity and prevalence, treatment options are limited. In light of accumulating evidence that mitochondrial abnormalities are common in ARF, here we applied broad spectrum quantitative and semiquantitative metabolomic analyses of serum from ARF patients to detect bioenergetic dysfunction and determine its association with survival. Plasma samples from surviving and non-surviving patients (N = 15/group) were taken at day 1 and day 3 after admission to the medical intensive care unit and, in survivors, at hospital discharge. Significant differences between survivors and non-survivors (ANOVA, 5% FDR) include bioenergetically relevant intermediates of redox cofactors nicotinamide adenine dinucleotide (NAD) and NAD phosphate (NADP), increased acyl-carnitines, bile acids, and decreased acyl-glycerophosphocholines. Many metabolites associated with poor outcomes are substrates of NAD(P)-dependent enzymatic processes, while alterations in NAD cofactors rely on bioavailability of dietary B-vitamins thiamine, riboflavin and pyridoxine. Changes in the efficiency of the nicotinamide-derived cofactors’ biosynthetic pathways also associate with alterations in glutathione-dependent drug metabolism characterized by substantial differences observed in the acetaminophen metabolome. Based on these findings, a four-feature model developed with semi-quantitative and quantitative metabolomic results predicted patient outcomes with high accuracy (AUROC = 0.91). Collectively, this metabolomic endotype points to a close association between mitochondrial and bioenergetic dysfunction and mortality in human ARF, thus pointing to new pharmacologic targets to reduce mortality in this condition.


2021 ◽  
pp. 106002802110135
Author(s):  
Jeffrey P. Gonzales ◽  
Debbi Child ◽  
Thelma Harrington ◽  
Peter Kratz ◽  
Laura Seiberlich ◽  
...  

Background: Positive fluid balance early in critical illness is associated with poor outcomes. Reducing intravenous medication volume may mitigate volume overload. Objective: Assessment of fluid and medication administration and clinical outcomes in acute respiratory failure. Methods: Single-center, prospective observational study of hemodynamically stable adult patients in a medical intensive care unit (MICU) with acute respiratory failure. Results: Median cumulative total intake volume was 12 890 (interquartile range [IQR] = 8654-22 221) mL (n = 27), and median cumulative intravenous medication volume was 3563 (IQR = 2371-9412) mL over the first 7 days. Medication volume accounted for 27.6% of aggregate fluid volume. Median daily intravenous medication volume administered was 591 (IQR = 339-1082) mL. Cumulative fluid volume was associated with reduced ventilator-free days ( r2 = −0.393; P = 0.043), and cumulative fluid volumes during the first 3 and 7 days were associated with increased MICU length of stay (LOS ± standard error 0.73 ± 0.35 d/L, P = 0.047, and 0.38 ± 0.16 d/L, P = 0.021, respectively). Cumulative medication volume administered significantly reduced the likelihood of mechanical ventilator liberation (hazard ratio [HR] = 0.917; 95% CI: 0.854, 0.984; P = 0.016) and MICU discharge (HR = 0.911; 95% CI: 0.843, 0.985; P = 0.019). Small-volume infusion may decrease cumulative intravenous medication volume by 38%. Conclusion and Relevance: Intravenous medication diluent contributes substantially to total fluid intake in patients with acute respiratory failure and is associated with poor outcomes. Reduction of intravenous medication fluid volume to improve clinical outcomes should be further investigated.


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