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1.
Biomedicines ; 12(5)2024 May 02.
Artigo em Inglês | MEDLINE | ID: mdl-38790966

RESUMO

BACKGROUND: The aim of the present study is to investigate the prognostic utility of point-of-care (POC)-measured proenkephalin (PENK), a novel biomarker, in terms of predicting in-hospital mortality in patients presenting to the emergency department (ED) with septic shock. METHODS: Bedside PENK was measured in consecutive patients presenting to the ED with septic shock according to the Sepsis-3 clinical criteria. The association of PENK with inflammatory and routine biomarkers, and its role as a predictor of in-hospital mortality, was examined. RESULTS: Sixty-one patients with septic shock [53% females, median age 83 years (IQR 71-88)] were evaluated. Median (IQR) values of creatinine, plasma lactate, soluble urokinase plasminogen activator receptor (SuPAR), procalcitonin and PENK were 1.7 (1.0-2.9) mg/dL, 3.6 (2.1-6.8) mmol/L, 13.1 (10.0-21.4) ng/mL, 2.06 (0.84-3.49) ng/mL, and 205 (129-425) pmol/L, respectively. LogPENK significantly correlated with LogLactate (rho = 0.369, p = 0.004), LogCreatinine (rho = 0.537, p < 0.001), LogProcalcitonin (rho = 0.557, p < 0.001), and LogSuPAR (rho = 0.327, p = 0.011). During hospitalization, 39/61 (64%) patients died. In a multivariable logistic regression model, logPENK was an independent predictor of in-hospital mortality (OR 11.9, 95% CI: 1.7-84.6, p = 0.013). CONCLUSION: POC PENK levels measured upon presentation to the ED strongly correlated with metabolic, renal and inflammatory biomarkers, and may serve as a predictor of in-hospital mortality in patients with septic shock.

2.
J Clin Med ; 12(7)2023 Mar 29.
Artigo em Inglês | MEDLINE | ID: mdl-37048650

RESUMO

Despite considerable advances in the field, heart failure (HF) still poses a significant disease burden among affected individuals since it continues to cause high morbidity and mortality rates. Inflammation is considered to play a key role in disease progression, but the exact underlying pathophysiological mechanisms involved have not yet been fully elucidated. The gut, as a potential source of inflammation, could feasibly explain the state of low-grade inflammation seen in patients with chronic HF. Several derangements in the composition of the microbiota population, coupled with an imbalance between favorable and harmful metabolites and followed by gut barrier disruption and eventually bacterial translocation, could contribute to cardiac dysfunction and aggravate HF. On the other hand, HF-associated congestion and hypoperfusion alters intestinal function, thereby creating a vicious cycle. Based on this evidence, novel pharmaceutical agents have been developed and their potential therapeutic use has been tested in both animal and human subjects. The ultimate goal in these efforts is to reverse the aforementioned intestinal derangements and block the inflammation cascade. This review summarizes the gut-related causative pathways implicated in HF pathophysiology, as well as the associated therapeutic interventions described in the literature.

3.
J Clin Med ; 12(3)2023 Jan 31.
Artigo em Inglês | MEDLINE | ID: mdl-36769753

RESUMO

The point-of-care ultrasound (POCUS) has been effectively used in intensive care units for the management of septic patients. Since it is a time- and cost-effective non-invasive imaging modality, its use in the emergency department (ED) has been advocated for by medical experts. This review summarizes the existing literature regarding the breadth of POCUS as a supplementary tool to the holistic approach of septic patients in the ED setting. A literature search was conducted via PubMed (MEDLINE), Cochrane Library, and Scopus databases, analyzing studies which examined the use of POCUS in the ED for non-traumatic, septic, and/or undifferentiated hypotensive patients, resulting in 26 studies. The first cluster of studies investigates the efficiency of POCUS protocols in the differential diagnosis and its reliability for distributive/septic shock and sepsis management. In the second cluster, POCUS use results in faster sepsis cause identification and improves therapeutic management. The third cluster confirms that POCUS aids in the accurate diagnosis and management, even in rare and complicated cases. The results of the present review support the well-documented utility of POCUS and highlight the importance of POCUS incorporation in the comprehensive management of the septic patient in the ED setting.

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