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1.
An Pediatr (Barc) ; 82(4): 235-41, 2015 Apr.
Article in Spanish | MEDLINE | ID: mdl-25027620

ABSTRACT

INTRODUCTION: Due to the significant increase in the number of cases of hand, foot and mouth disease (HFMD) among pre-school children population during late 2011 and early 2012. A study has been proposed with the aim of describing the HFMD outbreak and analyzing the risk factors associated with suffering onychomadesis. PATIENTS AND METHODS: A descriptive and analytical case-control study was designed. The study population was 376 children between 6 and 36 months old, living in the Basic Health Catchment area of Peligros (Granada). The study inclued an epidemiological survey of 28 cases and paired controls in order to collect data on the time, person and place, and implementing preventive actions and family health education. Finally a microbiological viral study of stool samples was made. RESULTS: There were 64% of girls with average age 20.8 months. The clinical signs fornd were, fever (75%), vesicular palmar eruption (71%), plantar eruption (68%), erosive stomatitis (64%), and nail loss (46%). The risk of getting sick was 14 times greater for those children attending a childcare centre and had contact with sick cases (OR 13.8; 95% CI; 3.79-50.18). The average time since onset of symptoms and onychomadesis was 52 days, and its appearance was linked to the presence of ulcers in mouth (P=.006). Five samples were positive to enteroviruses Coxsackie A16. CONCLUSION: There was an outbreak of HFMD detected by pediatricians and families. The cases presented with marked clinical symptoms, and the nail loss (onychomadesis) generated a social alarm. The cause of the outbreak was an enterovirus Coxsackie A16 transmitted among sick cases and through childcare centres.


Subject(s)
Disease Outbreaks , Hand, Foot and Mouth Disease/complications , Hand, Foot and Mouth Disease/epidemiology , Nail Diseases/etiology , Case-Control Studies , Child, Preschool , Enterovirus/classification , Female , Hand, Foot and Mouth Disease/diagnosis , Humans , Infant , Male , Spain/epidemiology
2.
Cell Mol Biol (Noisy-le-grand) ; 56(1): 59-82, 2010 Feb 25.
Article in English | MEDLINE | ID: mdl-20196971

ABSTRACT

Atherosclerosis is now widely accepted to be an inflammatory disease, characterized by degenerative as well as proliferative changes and extracellular accumulation of lipid and cholesterol, in which an ongoing inflammatory reaction plays an important role both in initiation and progression/destabilization, converting a chronic process into an acute disorder. Neovascularization has also been recognized as an important process for the progression/destabilization of atherosclerotic plaques. In fact, vulnerable atherosclerotic plaques prone to rupture are characterized by an enlarged necrotic core, containing an increased number of vasa vasorum, apoptotic macrophages, and more frequent intraplaque haemorrhage. Various functional roles have been assigned to intimal microvessels, however the relationship between the process of angiogenesis and its causal association with the progression and complications of atherosclerosis are still challenging and controversial. In the past 30 years, the dietary intake of omega-3 (n-3) polyunsaturated fatty acids--mainly derived from fish--has emerged as an important way to modify cardiovascular risk through beneficial effects on all stages of atherosclerosis, including plaque angiogenesis. This review specifically focuses on the modulating effects of n-3 fatty acids on molecular events involved in early and late atherogenesis, including effects on endothelial expression of adhesion molecules, as well as pro-inflammatory and pro-angiogenic enzymes. By accumulating in endothelial membrane phospholipids, omega-3 fatty acids have been shown to decrease the transcriptional activation of several genes through an attenuation of activation of the nuclear factor-kappaB system of transcription factors. This occurs secondary to decreased generation of intracellular reactive oxygen species. This series of investigations configures a clear example of nutrigenomics--i.e., how nutrients may affect gene expression, ultimately affecting a wide spectrum of human diseases.


Subject(s)
Atherosclerosis/metabolism , Fatty Acids, Omega-3/pharmacology , Inflammation/metabolism , Neovascularization, Pathologic/metabolism , Atherosclerosis/etiology , Atherosclerosis/prevention & control , Cell Adhesion Molecules/metabolism , Cyclooxygenase 2/genetics , Cyclooxygenase 2/metabolism , Fish Oils/pharmacology , Humans , NF-kappa B/metabolism , Reactive Oxygen Species/metabolism , Signal Transduction
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