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1.
Chemosphere ; 333: 138914, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37187376

ABSTRACT

Strobilurins represent the most widely used class of fungicides nowadays andare considered relatively non-toxic to mammals and birds but highly toxic to aquatic biota. Dimoxystrobin is one of the novel strobilurins, recently included in the 3rd Watch List of the European Commission as available data indicate that it could pose a significant risk to aquatic species. As yet, the number of studies explicitly assessing the impact of this fungicide on terrestrial and aquatic species is extremely low, and the toxic effects of dimoxystrobin on fish have not been reported. Here we investigate for the first time the alterations induced by two environmentally relevant and very low concentrations of dimoxystrobin (6.56 and 13.13 µg/L) in the fish gills. morphological, morphometric, ultrastructural, and functional alterations have been evaluated using zebrafish as a model species. We demonstrated that even short-term exposure (96 h) to dimoxystrobin alters fish gills reducing the surface available for gas exchange and inducing severe alterations encompassing three reaction patterns: circulatory disturbance and both regressive and progressive changes. Furthermore, we revealed that this fungicide impairs the expression of key enzymes involved in osmotic and acid-base regulation (Na+/K+-ATPase and AQP3) and the defensive response against oxidative stress (SOD and CAT). The information presented here highlights the importance of combining data from different analytical methods for evaluating the toxic potential of currently used and new agrochemical compounds. Our results will also contribute to the discussion on the suitability of mandatory ecotoxicological tests on vertebrates before the introduction on the market of new compounds.


Subject(s)
Fungicides, Industrial , Water Pollutants, Chemical , Animals , Fungicides, Industrial/metabolism , Strobilurins/pharmacology , Zebrafish/metabolism , Gills/metabolism , Water Pollutants, Chemical/analysis , Mammals
2.
J Gambl Stud ; 39(1): 1-11, 2023 Mar.
Article in English | MEDLINE | ID: mdl-35000052

ABSTRACT

The role of metacognition in gambling disorder (GD) is underexplored. To date, only two studies have investigated the role of metacognitive functioning, but among the adolescent population. The first aim of the current research was to assess and compare adult male gamblers with healthy controls (HCs) in relation to metacognition, impulsivity and emotional dysregulation. The second aim was to identify the variables among metacognition, impulsivity and emotional dysregulation associated with the severity of GD by means of linear regression.A total of 116 adult males (58 with GD and 58 HCs) completed self-report questionnaires on gambling severity, metacognition, emotional dysregulation and impulsivity. A linear regression analysis was run to assess the variables associated with gambling severity.Patients with GD exhibited more impaired scores than HCs in all the psychopathological dimensions investigated. More interestingly, gambling severity was significantly associated with metacognitive differentiation/decentration, difficulty in controlling impulses and non-acceptance of negative emotions.According to our results, the severity of gambling is associated with impaired metacognitive differentiation, high difficulty in controlling impulses and non-acceptance of negative emotions, and these findings can lead to new treatment implications. Interventions focused on metacognition and emotion regulation could help patients with GD to avoid maladaptive strategies such as behavioural addictions and, more specifically, to manage their own emotions. This type of treatment could help gamblers to become more aware of their internal state and learn strategies for adaptively managing emotions through functional metacognitive differentiation.


Subject(s)
Gambling , Metacognition , Adult , Adolescent , Humans , Male , Gambling/psychology , Impulsive Behavior/physiology , Emotions , Psychopathology
3.
Chemosphere ; 307(Pt 4): 136095, 2022 Nov.
Article in English | MEDLINE | ID: mdl-35995187

ABSTRACT

Heavy metal contamination is recognized worldwide as a serious threat to human health and wildlife, and reducing their emissions is a priority of international and EU actions. Due to its persistence, high bioaccumulation tendency, and toxicity properties, lead (Pb) is one of the heavy metals of greatest concern. Even at low concentrations, lead induces various clinical and subclinical conditions in both humans and animals, and it has been included in the priority list of hazardous substances. In the present study, we used zebrafish's early stages as a model, given their well-acknowledged predictive value in the risk assessment of chemicals. This study was designed to investigate the morphological and morphometric alterations induced by Pb during zebrafish's early development and disclose the putative effects stage- and/or dose-dependent. We examined injuries induced by two environmentally relevant and extremely low concentrations of Pb (2.5 µg/L and 5 µg/L) during two exposure windows: early (between 1 and 7 dpf) and late (between 2 and 8 dpf). We clearly demonstrated that the incidence and severity of morphological abnormalities increased with increasing Pb dose and exposure time in both early and late-exposed groups. Furthermore, we revealed that malformation severity was significantly higher in the early exposed group than in the late exposure group at all exposure times and for both tested doses, thus highlighting the high sensitivity of zebrafish during the initial stages of development. The information presented in this paper emphasizes the effectiveness of morphological biomarkers in unveiling threatening situations and supports the role of zebrafish embryos and larvae in risk assessment and environmental monitoring.


Subject(s)
Metals, Heavy , Water Pollutants, Chemical , Animals , Biomarkers , Hazardous Substances , Humans , Larva , Lead/toxicity , Water Pollutants, Chemical/toxicity , Zebrafish
4.
Int J Mol Sci ; 23(16)2022 Aug 15.
Article in English | MEDLINE | ID: mdl-36012426

ABSTRACT

Lead (Pb), due to its high toxicity and bioaccumulation tendency, is one of the top three pollutants of concern for both humans and wildlife and occupies second place in the Priority List of Hazardous Substances. In freshwater fish, Pb is mainly absorbed through the gills, where the greatest accumulation occurs. Despite the crucial role of gills in several physiological functions such as gas exchange, water balance, and osmoregulation, no studies evaluated the effects of environmentally relevant concentrations of Pb on this organ, and existing literature only refers to high levels of exposure. Herein we investigated for the first time the molecular and morphological effects induced by two low and environmentally relevant concentrations of Pb (2.5 and 5 µg/L) on the gills of Danio rerio, a model species with a high translational value for human toxicity. It was demonstrated that Pb administration at even low doses induces osmoregulatory dysfunctions by affecting Na+/K+-ATPase and AQP3 expression. It was also shown that Pb upregulates MTs as a protective response to prevent cell damage. Modulation of SOD confirms that the production of reactive oxygen species is an important toxicity mechanism of Pb. Histological and morphometric analysis revealed conspicuous pathological changes, both dose- and time-dependent.


Subject(s)
Gills , Water Pollutants, Chemical , Animals , Fresh Water , Gills/metabolism , Humans , Lead/pharmacology , Water Pollutants, Chemical/metabolism , Zebrafish/metabolism
5.
BMJ Open ; 12(4): e052665, 2022 04 06.
Article in English | MEDLINE | ID: mdl-35387808

ABSTRACT

OBJECTIVE: We aimed at identifying baseline predictive factors for emergency department (ED) readmission, with hospitalisation/death, in patients with COVID-19 previously discharged from the ED. We also developed a disease progression velocity index. DESIGN AND SETTING: Retrospective cohort study of prospectively collected data. The charts of consecutive patients with COVID-19 discharged from the Reggio Emilia (Italy) ED (2 March 2 to 31 March 2020) were retrospectively examined. Clinical, laboratory and CT findings at first ED admission were tested as predictive factors using multivariable logistic models. We divided CT extension by days from symptom onset to build a synthetic velocity index. PARTICIPANTS: 450 patients discharged from the ED with diagnosis of COVID-19. MAIN OUTCOME MEASURE: ED readmission within 14 days, followed by hospitalisation/death. RESULTS: Of the discharged patients, 84 (18.7%) were readmitted to the ED, 61 (13.6%) were hospitalised and 10 (2.2%) died. Age (OR=1.05; 95% CI 1.03 to 1.08), Charlson Comorbidity Index 3 versus 0 (OR=11.61; 95% CI 1.76 to 76.58), days from symptom onset (OR for 1-day increase=0.81; 95% CI 0.73 to 0.90) and CT extension (OR for 1% increase=1.03; 95% CI 1.01 to 1.06) were associated in a multivariable model for readmission with hospitalisation/death. A 2-day lag velocity index was a strong predictor (OR for unit increase=1.21, 95% CI 1.08 to 1.36); the model including this index resulted in less information loss. CONCLUSIONS: A velocity index combining CT extension and days from symptom onset predicts disease progression in patients with COVID-19. For example, a 20% CT extension 3 days after symptom onset has the same risk as does 50% after 10 days.


Subject(s)
COVID-19 , Patient Readmission , COVID-19/epidemiology , Cohort Studies , Disease Progression , Emergency Service, Hospital , Humans , Patient Discharge , Retrospective Studies , Risk Factors
6.
Microsc Res Tech ; 85(6): 2113-2122, 2022 Jun.
Article in English | MEDLINE | ID: mdl-35092118

ABSTRACT

Larval urodeles are provided with external gills involved, along with the skin, in gas exchange and osmoregulation. Gills and skin epithelia are different, each showing a peculiar set of specialized cells but both provided with Leydig cells (LCs). Information on LCs in the gills is lacking as the literature has focused primarily on the epidermis. Contradictory and fragmentary results highlight that LCs origin, fate, and functions remain not fully understood. Here, we investigated the morpho-functional differences of LCs in the skin and gills of Lissotriton italicus larvae for the first time. LCs showed the same morphological and ultrastructural features in both tissues, even if LCs were significantly larger in the epidermis. Despite the uniform morphology within the LCs population, the proliferative ability was different. The putative diversity in the mucus composition was evaluated using a panel of 4 lectins as markers of specific carbohydrate moieties, revealing that sites of specific glycoconjugates were comparable in two tissues. To disclose the involvement of LCs in water storage and transport, immunofluorescence assay for aquaporin-3 has also been performed, demonstrating the expression of this protein only in gills epithelium. By demonstrating that LCs can multiply by cell division in gills, our results will also contribute to the discussion about their proliferative ability. Finally, we found that the LCs cytoplasm is rich in glycoconjugates, which are involved in many diverse and essential functions in vertebrates. RESEARCH HIGHLIGHTS: In gills LCs can multiply by cell division and express aquaporin-3 demonstrating a tissue-specific role of LCs. LCs cytoplasm is rich in glycoconjugates. LCs population show a uniform morphology in both gills and skin.


Subject(s)
Aquaporins , Leydig Cells , Animals , Aquaporins/metabolism , Gills/physiology , Larva/physiology , Leydig Cells/metabolism , Male , Skin
7.
Toxics ; 8(4)2020 Nov 07.
Article in English | MEDLINE | ID: mdl-33171834

ABSTRACT

Chlorpyrifos (CPF) is an organophosphorus insecticide commonly used for domestic and agricultural purposes. The risk posed by environmental contamination from CPF is well acknowledged, and it has been detected worldwide in aquatic habitats and coastal areas. In addition, due to its slower degradation in seawater compared to freshwater, CPF is of particular concern for marine environments. Here, we investigated for the first time the morpho-functional alterations induced by CPF on the gills of Thalassoma pavo, a widespread species in the Mediterranean Sea. We tested the effects of two sublethal concentrations (4 and 8 µg/L) after 48 and 96 h. Our study demonstrates that the alterations induced by CPF are dose and time-dependent and highlight the harmful properties of this insecticide. After exposure to the low tested concentration, the more frequent alteration is an intense proliferation of the primary epithelium, whereas after exposure to the high concentration, the primary epithelium proliferation is less extensive, and the most evident effects are the thinning of secondary lamellae and the ectopia of chloride and goblet cells. CPF also modulated the expression of Na+/K+-ATPase. Dilation of lamellar apical tips, pillar cell degeneration, and appearance of aneurysms are often observed.

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