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"De La Cruz Cortés, José Pedro"
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Bioactive Phenolic Compounds in Extra Virgin Olive Oil: Implications for Cardiovascular Health
by
Sánchez‐Tévar, Ana María
,
Gonzalez‐Correa, José A.
,
Rodríguez‐Pérez, Mª. Dolores
in
1-Phosphatidylinositol 3-kinase
,
AKT protein
,
Antioxidants
2026
Polyphenols, bioactive compounds abundant in plant‐based foods, have attracted significant interest for their potential cardiovascular benefits. This narrative review summarizes the current evidence on how polyphenols contained in extra virgin olive oil impact cardiovascular health, including their molecular mechanisms of action and clinical effects. Polyphenols exert antioxidant and anti‐inflammatory effects in vascular cells by modulating key signaling pathways (e.g., NF‐κB, Nrf2, and PI3K/Akt) and activating endothelial nitric oxide production, which collectively may improve endothelial function and reduce atherosclerotic burden. We review human trials of polyphenol‐rich foods (such as berries, cocoa, tea, and wine) and isolated polyphenol supplements, which generally report improvements in blood pressure, vascular function, lipid profiles, and inflammatory markers—though results are not uniform. Limitations of these trials (small sample sizes, short durations) and variability in individual responses are discussed. We also consider the role of polyphenol metabolism and bioavailability, noting that gut microbiota–derived metabolites (e.g., urolithins, equol) likely contribute to the cardioprotective effects. Overall, a diet rich in diverse polyphenols appears to confer cardiovascular benefits, but more personalized research is needed to define optimal types and doses for specific patient profiles. Practical recommendations for incorporating polyphenol‐rich foods into cardiovascular prevention strategies are provided. Extra virgin olive oil (EVOO) is rich in bioactive polyphenols that exert antioxidant, anti‐inflammatory, and anti‐atherogenic effects. These compounds improve endothelial function, modulate lipid metabolism, and reduce platelet aggregation, contributing to cardiovascular protection. Regular consumption of phenolic‐rich EVOO, as part of a Mediterranean diet, supports vascular health and may lower the risk of cardiovascular disease through multiple molecular pathways involving NF‐κB, Nrf2, and nitric oxide signaling.
Journal Article
Synergistic Effect of 3′,4′-Dihidroxifenilglicol and Hydroxytyrosol on Oxidative and Nitrosative Stress and Some Cardiovascular Biomarkers in an Experimental Model of Type 1 Diabetes Mellitus
by
Verdugo, Cristina
,
Rodriguez-Pérez, María Dolores
,
Fernández-Prior, María África
in
3′,4′-dihidroxifenilglicol
,
antioxidant activity
,
Antioxidants
2021
The objective of this study was to assess a possible synergistic effect of two extra-virgin olive oil polyphenols, 3,4,-dyhydroxyphenylglycol (DHPG) and hydroxytyrosol (HT), in an experimental model of type 1 diabetes. Seven groups of animals were studied: (1) Nondiabetic rats (NDR), (2) 2-month-old diabetic rats (DR), (3) DR treated with 5 mg/kg/day p.o. HT, (4) DR treated with 0.5 mg/kg/day p.o. DHPG, (5) DR treated with 1 mg/kg/day p.o. DHPG, (6) DR treated with HT + DHPG (0.5), (7) DR treated with HT + DHPG (1). Oxidative stress variables (lipid peroxidation, glutathione, total antioxidant activity, 8-isoprostanes, 8-hydroxy-2-deoxyguanosine, and oxidized LDL), nitrosative stress (3-nitrotyrosine), and some cardiovascular biomarkers (platelet aggregation, thromboxane B2, prostacyclin, myeloperoxidase, and vascular cell adhesion protein 1 (VCAM-1)) were analyzed. The diabetic animals showed an imbalance in all of the analyzed variables. HT exerted an antioxidant and downregulatory effect on prothrombotic biomarkers while reducing the fall of prostacyclin. DHPG presented a similar, but quantitatively lower, profile. HT plus DHPG showed a synergistic effect in the reduction of oxidative and nitrosative stress, platelet aggregation, production of prostacyclin, myeloperoxidase, and VCAM-1. This synergism could be important for the development of functional oils enriched in these two polyphenols in the proportion used in this study.
Journal Article
Extra Virgin Oil Polyphenols Improve the Protective Effects of Hydroxytyrosol in an In Vitro Model of Hypoxia-Reoxygenation of Rat Brain
by
Verdugo, Cristina
,
Fernández-Prior, María África
,
Ortega-Hombrados, Laura
in
Acids
,
Antioxidants
,
Apoptosis
2021
Hydroxytyrosol (HT) is the component primarily responsible for the neuroprotective effect of extra virgin olive oil (EVOO). However, it is less effective on its own than the demonstrated neuroprotective effect of EVOO, and for this reason, it can be postulated that there is an interaction between several of the polyphenols of EVOO. The objective of the study was to assess the possible interaction of four EVOO polyphenols (HT, tyrosol, dihydroxyphenylglycol, and oleocanthal) in an experimental model of hypoxia-reoxygenation in rat brain slices. The lactate dehydrogenase (LDH) efflux, lipid peroxidation, and peroxynitrite production were determined as measures of cell death, oxidative stress, and nitrosative stress, respectively. First, the polyphenols were incubated with the brain slices in the same proportions that exist in EVOO, comparing their effects with those of HT. In all cases, the cytoprotective and antioxidant effects of the combination were greater than those of HT alone. Second, we calculated the concentration–effect curves for HT in the absence or presence of each polyphenol. Tyrosol did not significantly modify any of the variables inhibited by HT. Dihydroxyphenylglycol only increased the cytoprotective effect of HT at 10 µM, while it increased its antioxidant effect at 50 and 100 µM and its inhibitory effect on peroxynitrite formation at all the concentrations tested. Oleocanthal increased the cytoprotective and antioxidant effects of HT but did not modify its inhibitory effect on nitrosative stress. The results of this study show that the EVOO polyphenols DHPG and OLC increase the cytoprotective effect of HT in an experimental model of hypoxia-reoxygenation in rat brain slices, mainly due to a possibly synergistic effect on HT’s antioxidant action. These results could explain the greater neuroprotective effect of EVOO than of the polyphenols alone.
Journal Article
Extra Virgin Oil Polyphenols Improve the Protective Effects of Hydroxytyrosol in an In Vitro Model of Hypoxia-Reoxygenation of Rat Brain
Hydroxytyrosol (HT) is the component primarily responsible for the neuroprotective effect of extra virgin olive oil (EVOO). However, it is less effective on its own than the demonstrated neuroprotective effect of EVOO, and for this reason, it can be postulated that there is an interaction between several of the polyphenols of EVOO. The objective of the study was to assess the possible interaction of four EVOO polyphenols (HT, tyrosol, dihydroxyphenylglycol, and oleocanthal) in an experimental model of hypoxia-reoxygenation in rat brain slices. The lactate dehydrogenase (LDH) efflux, lipid peroxidation, and peroxynitrite production were determined as measures of cell death, oxidative stress, and nitrosative stress, respectively. First, the polyphenols were incubated with the brain slices in the same proportions that exist in EVOO, comparing their effects with those of HT. In all cases, the cytoprotective and antioxidant effects of the combination were greater than those of HT alone. Second, we calculated the concentration–effect curves for HT in the absence or presence of each polyphenol. Tyrosol did not significantly modify any of the variables inhibited by HT. Dihydroxyphenylglycol only increased the cytoprotective effect of HT at 10 μM, while it increased its antioxidant effect at 50 and 100 μM and its inhibitory effect on peroxynitrite formation at all the concentrations tested. Oleocanthal increased the cytoprotective and antioxidant effects of HT but did not modify its inhibitory effect on nitrosative stress. The results of this study show that the EVOO polyphenols DHPG and OLC increase the cytoprotective effect of HT in an experimental model of hypoxia-reoxygenation in rat brain slices, mainly due to a possibly synergistic effect on HT’s antioxidant action. These results could explain the greater neuroprotective effect of EVOO than of the polyphenols alone.
Journal Article
Nurse-Led Interventions in Chronic Obstructive Pulmonary Disease Patients: A Systematic Review and Meta-Analysis
by
López-Carrasco, Juan de la Cruz
,
Valverde-León, María del Rocío
,
Moreno-Luque, Ana
in
Analysis
,
Bias
,
Care and treatment
2022
Chronic obstructive pulmonary disease (COPD) is the third leading cause of death worldwide, causing 3.32 million deaths in 2019. COPD management has increasingly become a major component of general and hospital practice and has led to a different model of care. Nurse-led interventions have shown beneficial effects on COPD patient satisfaction and clinical outcomes. This systematic review was conducted to identify and assess nurse-led interventions in COPD patients in terms of mental, physical, and clinical status. The review was carried out following the Preferred Reporting Items for Systematic Reviews and Meta-analyses (PRISMA) statement. The relevance of each manuscript was assessed according to the inclusion criteria, and we retrieved full texts, as required, to reach our conclusions. Data extraction was performed independently by two reviewers, and the risk of bias was assessed using the Cochrane Risk of Bias tool. Forty-eight articles were included in the analysis, which focused on the management of COPD patients by hospital, respiratory and primary nursing care. Nursing management was shown to be highly effective in improving quality of life, emotional state, and pulmonary and physical capacity in COPD patients. In comparison, hospital and respiratory nurses carried out interventions with higher levels of effectiveness than community nurses.
Journal Article
Impact of the environment on health status of intensive care unit patients: Functional data analysis using wearable monitoring systems
by
López-Carrasco, Juan de la Cruz
,
Jiménez-Pastor, Jose M.
,
Oviedo-de la Fuente, Manuel
in
Additives
,
Adult
,
Aged
2025
Environmental factors in critical care units (ICUs) can significantly impact patient health. Traditional analysis methods often struggle with the continuous temporal data from wearable monitoring devices. This study explores the novel application of functional data analysis (FDA), a methodology well suited for continuous signals, to assess how environmental exposures influence ICU patient outcomes over time. Specifically, it examines the most impactful environmental variables. It evaluates FDA’s effectiveness in analysing continuous data from wearable monitoring devices, in contrast to traditional methods that overlook temporal patterns by using average or isolated measurements.
A prospective cohort study was conducted in a tertiary-level reference ICU in southern Spain, where wearable sensors were used to collect physiological and environmental data from 77 adult patients continuously. Functional data analysis (FDA) techniques were employed to explore temporal patterns in the collected signals.
Noise intensity (decibels) was the most significant environmental variable, correlating with Richmond Agitation-Sedation Scale (RASS) scores and heart rate (HR). Functional additive models significantly improved model performance, achieving R2 values up to 0.78 for RASS prediction in trauma patients. Effects varied across patient diagnosis subgroups.
FDA techniques, particularly functional additive models, better model complex relationships between environmental and physiological variables in the ICU. Environmental impacts differ across patient types, suggesting the need for specialised environmental interventions based on patient condition.
This study underscores the need for environmental monitoring in ICUs and highlights the potential of wearable sensors and advanced statistical analysis to optimise patient care and improve outcomes by tailoring environmental interventions to specific patient needs.
Journal Article
Interaction between clock genes, melatonin and cardiovascular outcomes from ICU patients
by
Medina-Valverde, María J.
,
Meira e Cruz, Miguel
,
De la Fuente-Martos, Carmen
in
Cardiovascular
,
Circadian rhythm
,
Circadian rhythms
2025
Background
Circadian rhythms, driven by biological clocks, help organisms align their physiological functions with environmental changes, promoting homeostasis. The central clock in the suprachiasmatic nucleus coordinates peripheral clocks via neurohumoral feedback involving proteins like CLOCK, BMAL1, CRY 1/2, and PER 1–3. In the ICU, these circadian processes often face disruptions from constant lighting, noise, and irregular sleep–wake cycles, impairing sleep quality and worsening stress responses. These disruptions can lead to adverse clinical effects, including higher cardiovascular complication rates. This study examines how ICU stays affect circadian rhythm regulators and their association with cardiovascular outcomes.
Results
Significant differences were identified in melatonin levels and the expression of BMAL1, PER1, RORA, and NR1D1 between ICU stays of ≤7 days and >7 days. The APACHE-II severity scale influenced melatonin and the expression of CLOCK, PER2, CRY2, and RORA. Nonlinear relationships were observed between melatonin, clock genes, heart rate, and blood pressure (systolic and diastolic). In certain groups, molecular and physiological data showed correlations exceeding 90%.
Conclusions
These findings highlight a robust association between circadian disruption, as measured by melatonin and clock genes, and cardiovascular physiological rhythms in ICU patients.
Journal Article
Population-based colorectal cancer screening programmes using a faecal immunochemical test: should faecal haemoglobin cut-offs differ by age and sex?
2017
Background
The Basque Colorectal Cancer Screening Programme has both high participation rate and high compliance rate of colonoscopy after a positive faecal occult blood test (FIT). Although, colorectal cancer (CRC) screening with biannual (FIT) has shown to reduce CRC mortality, the ultimate effectiveness of the screening programmes depends on the accuracy of FIT and post-FIT colonoscopy, and thus, harms related to false results might not be underestimated. Current CRC screening programmes use a single faecal haemoglobin concentration (f-Hb) cut-off for colonoscopy referral for both sexes and all ages. We aimed to determine optimum f-Hb cut-offs by sex and age without compromising neoplasia detection and interval cancer proportion.
Methods
Prospective cohort study using a single-sample faecal immunochemical test (FIT) on 444,582 invited average-risk subjects aged 50–69 years. A result was considered positive at ≥20 μg Hb/g faeces. Outcome measures were analysed by sex and age for a wide range of f-Hb cut-offs.
Results
We analysed 17,387 positive participants in the programme who underwent colonoscopy. Participation rate was 66.5%. Men had a positivity rate for f-Hb of 8.3% and women 4.8% (
p
< 0.0001). The detection rate for advanced neoplasia (cancer plus advanced adenoma) was 44.0‰ for men and 15.9‰ for women (
p
< 0.0001). The number of colonoscopies required decreased in both sexes and all age groups through increasing the f-Hb cut-off. However, the loss in CRC detection increased by up to 28.1% in men and 22.9% in women. CRC missed were generally at early stages (Stage I-II: from 70.2% in men to 66.3% in women).
Conclusions
This study provides detailed outcomes in men and women of different ages at a range of f-Hb cut-offs. We found differences in positivity rates, neoplasia detection rate, number needed to screen, and interval cancers in men and women and in younger and older groups. However, there are factors other than sex and age to consider when consideration is given to setting the f-Hb cut-off.
Journal Article
CHRONOFALLS: A multicentre nurse-led intervention in the chronoprevention of in-hospital falls in adults
by
Segura-Ruiz, Rocío
,
Rodríguez-Cortés, Francisco José
,
Manfredini, Roberto
in
Accidental falls
,
Accidents
,
Aged patients
2023
Background
Falls are among the most common and serious adverse events for hospitalised patients. In-hospital falls pose a major medical and economic challenge for public health worldwide. Nevertheless, the issue is often addressed without regard to certain relevant variables such as the time of the fall. The aim of this study was to determine the effect of the implementation of a nurse-led intervention based on the temporal patterns of falls and their aetiology on the occurrence of falls.
Methods
A mixed-method research design was carried out in three phases: a) a longitudinal prospective study (audits, chronobiological analyses and implementation of a multicentre nurse-led intervention based on temporal patterns of falls); b) a retrospective study of fall records; and c) a qualitative study based on focus groups. The protocol was published in 2021.
Results
A difference was observed in the number of fall records before and after the chronopreventive intervention (retrospective: 64.4% vs. 35.6%;
p
< 0,001). According to the interrupted series analysis, considering the influence of the COVID-19 pandemic, a reduction in falls of 2.96% (95% CI 1.70%-4.17%) was observed. The concepts of falls, the COVID-19 pandemic and the causes of non-registration have emerged as categories for qualitative analysis.
Conclusions
A multicentric nurse-led program based on tailored organisational, educational and behavioural chronopreventive measures seems to lead to a reduction in the number of in-hospital falls. The findings of the present study, highlighting the implementation of chronopreventive measures, can serve as a basis for future health policies.
Trial registration
The project was registered on the Clinical Trials Registry NCT04367298 (29/04/2020).
Journal Article
Centenarians and their hearts: A prospective registry with comprehensive geriatric assessment, electrocardiogram, echocardiography, and follow-up
by
Ramos Cortés, Miriam
,
Mogollón Jiménez, María Victoria
,
Cruz-Jentoft, Alfonso J.
in
Aged, 80 and over
,
Anatomy & physiology
,
Cardiovascular
2015
Data on the cardiac characteristics of centenarians are scarce. Our aim was to describe electrocardiogram (ECG) and echocardiography in a cohort of centenarians and to correlate them with clinical data.
We used prospective multicenter registry of 118 centenarians (28 men) with a mean age of 101.5±1.7 years. Electrocardiogram was performed in 103 subjects (87.3%) and echocardiography in 100 (84.7%). All subjects underwent a follow-up for at least 6 months.
Centenarians with abnormal ECG were less frequently females (72% vs 93%), had higher rates of previous consumption of tobacco (14% vs 0) and alcohol (24% vs 12%), and scored lower in the perception of health status (6.8±2.0 vs 8.3±6.8). Centenarians with significant abnormalities in echocardiography were less frequently able to walk 6 m (33% vs 54%). Atrial fibrillation/flutter was found in 27 subjects (26%). Mean left ventricular (LV) ejection fraction was 60.0±10.5%. Moderate or severe aortic valve stenosis was found in 16%, mitral valve regurgitation in 15%, and aortic valve regurgitation in 13%. Diastolic dysfunction was assessed in 79 subjects and was present in 55 (69.6%). Katz index and LV dilation were independently associated with the ability to walk 6 m. Age, Charlson and Katz indexes, and the presence of significant abnormalities in echocardiography were associated with mortality.
Centenarians have frequent ECG alterations and abnormalities in echocardiography. More than one fifth has atrial fibrillation, and most have diastolic dysfunction. Left ventricular dilation was associated with the ability to walk 6 m. Significant abnormalities in echocardiography were associated with mortality.
Journal Article