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1.
Healthcare (Basel) ; 12(8)2024 Apr 11.
Article in English | MEDLINE | ID: mdl-38667578

ABSTRACT

BACKGROUND: Europe's largest ethnic minority, the Roma, are often confronted with substantial obstacles that result in health disparities. Research indicates that there are elevated rates of both communicable and non-communicable diseases, such as metabolic syndrome (MetS), among Roma communities, often linked to living conditions, limited education, or poverty. This study centers on remote rural Roma settlements in Romania, evaluating the prevalence of metabolic dysfunction, obesity, and liver steatosis while considering socio-economic and lifestyle factors. METHODS: Over a period of 36 months, local visits to a total of 25 rural Roma communities were conducted, where a medical team gathered information through a standardized questionnaire and conducted a physical exam on every participant. Liver steatosis was also recorded with the help of a portable wireless ultrasound device. RESULTS: Our study included 343 participants, with a predominance of female subjects, representing 72.5% (n = 249) of the patients. The prevalence of obesity, defined by a body mass index (BMI) above 30 kg/m2, was 32.2% (n = 111). Arterial hypertension was found to have a prevalence of 54.1% (n = 185), with de novo hypertension being observed in 19.2% patients (n = 66). Type 2 diabetes mellitus was found in 28.9% patients (n = 99), with 19.5% being de novo cases. The prevalence of hepatic steatosis was 57.2% (n = 111/194). A positive association between metabolic features and at-risk behaviors was found. CONCLUSIONS: This study underscores the transition from infectious to metabolic diseases in vulnerable communities and highlights the urgency of targeted public health strategies tailored to the unique needs of rural Roma populations, aiming to mitigate health disparities and promote equitable healthcare access.

2.
Medicina (Kaunas) ; 59(1)2022 Dec 23.
Article in English | MEDLINE | ID: mdl-36676656

ABSTRACT

Background and objectives: The prognoses of patients experiencing a prolonged stay in the intensive care unit (ICU) are often significantly altered by hospital-acquired infections (HAIs), the early detection of which might be cumbersome. The aim of this study was to investigate the roles of the neutrophil-to-lymphocyte (NLR), derived-NRL (d-NLR), platelet-to-lymphocyte (PLR), and lymphocyte-to-C-reactive protein (LCR) ratios in predicting the progression to septic shock and death. Materials and Methods: A retrospective analysis of a consecutive series of ninety COVID-19 patients with prolonged hospitalization (exceeding 15 days) admitted to the ICU was conducted. The prevalence of culture-proven HAIs throughout their hospital stays was documented. NLR, dNLR, PLR, and LCR were recorded on admission, day 7, and day 14 to assess their discriminative prowess for detecting further progression to septic shock or death. Results: The prevalence of HAIs was 76.6%, 50% of patients met the criteria for septic shock, and 50% died. The median time to the first positive culture was 13.5 days and 20.5 days for developing septic shock. Mechanical ventilation was a key contributing factor to HAI, septic shock, and mortality. On admission and day 7 NLR, dNLR, PLR, and LCR values had no prognostic relevance for events occurring late during hospitalization. However, day-14 NLR, dNLR, and PLR were independent predictors for progression to septic shock and mortality and have shown good discriminative capabilities. The AUCs for septic shock were 0.762, 0.764, and 0.716, while the values for predicting in-hospital death were 0.782, 0.778, and 0.758, respectively. Conclusions: NLR, dNLR, and PLR are quick, easy-to-use, cheap, effective biomarkers for the detection of a more severe disease course, of the late development of HAIs, and of the risk of death in critically ill patients requiring a prolonged ICU stay.


Subject(s)
COVID-19 , Shock, Septic , Humans , Neutrophils/metabolism , Shock, Septic/epidemiology , Retrospective Studies , Hospital Mortality , COVID-19/epidemiology , COVID-19/metabolism , Lymphocytes , Prognosis , Intensive Care Units
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