28 research outputs found

    Impact des métaux lourds sur les interactions plante/ver de terre/microflore tellurique

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    The objective of this work was to study the interactions between phytoremediating plant Lantana camara (Verbenaceae), the earthworm Pontoscolex corethrurus (Glossocolecidae) and microorganisms in soil contaminated with lead. Initially, it appears that in the contaminated soil, the presence of earthworm leads to an increase in the biomass of root and aerial parts of plants and increased absorption of lead. The physico-chemical characterization of root-aggregates showed that the activity of earthworms increases the rate of organic matter, cation exchange capacity, total nitrogen, total and available potassium. Moreover, the presence of earthworms increases certain enzymatic activities in the rhizosphere. The increased growth of L. camara could result from these different actions. The action of earthworm on plants would be through terrestrial microbial-communities. Thus, the biomass of microorganisms, bacteria and fungi, of root-aggregates increase in the presence of earthworms. By PCR-DGGE, we were unable to demonstrate differences in taxonomic diversity of the bacteria community but the analysis of physiological profiles with Biolog plates showed that the activities of earthworm enhance the functional diversity of soil bacteria. In other hand, the restructuring of fungal taxonomy has been clearly observed by the activity of earthworm. All changes observed can explain increased growth of plants and improved phytoextraction of heavy metal. Finally, the study underlines the role of the earthworms on the growth and the phytoextraction efficiency of the plants. So, the combination of earthworm P. corethrurus and plant L. camara could be considerable potential for the treatment of industrial sites polluted with leadL'objectif de ce travail était d'étudier les interactions entre une plante « phytoremédiatrice », Lantana camara (Verbenaceae), le ver de terre, Pontoscolex corethrurus (Glossoscolecidae) et les microorganismes telluriques d'un sol pollué au plomb. Dans un premier temps, il apparaît que dans les sols contaminés, la présence de ver conduit à un accroissement de la biomasse des parties aériennes et racinaires des plantes ainsi qu'à une augmentation de l'absorption de plomb. La caractérisation physico-chimique des agrégats racinaires a montré que l'activité des vers augmente le taux de matière organique, la capacité d'échange cationique ainsi que l'azote total, le potassium total et disponible. De plus, la présence des vers augmente certaines activités enzymatiques de la rhizosphère. La croissance accrue de L. camara pourrait résulter de ces différentes actions. L'action des vers de terre sur les plantes se ferait via les communautés microbiennes telluriques. Ainsi, la biomasse des microorganismes, bactéries et champignons, des agrégats racinaires augmente en présence de vers. La PCR-DGGE n'a pas permis de mettre en évidence de modifications de la structure taxonomique des communautés bactériennes sous l'influence du Pb et/ou du vers, par contre l'analyse des profils physiologiques par plaques Biolog montre clairement une diversification fonctionnelle bactérienne. Les communautés fongiques voient, elles, leur diversité taxonomique, augmenter sous l'action des vers. La restructuration des populations microbiennes, en présence de vers, des agrégats racinaires élaborés par les plantes en milieu pollué au plomb est l'élément déterminant pour la compréhension de l'impact de P. corethrurus sur la croissance et la phytoremédiation de L. camara. L'association de ces deux organismes aurait donc un potentiel considérable pour le traitement de sites industriels pollués au plom

    Kinetics of neutralizing antibodies against Omicron variant in Vietnamese healthcare workers after primary immunization with ChAdOx1-S and booster immunization with BNT162b2

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    We studied the development and persistence of neutralizing antibodies against SARS-CoV-2 ancestral strain, and Delta and Omicron (BA.1 and BA.2) variants in Vietnamese healthcare workers (HCWs) up to 15 weeks after booster vaccination. We included 47 HCWs, including group 1 (G1, N = 21) and group 2 (G2; N = 26) without and with breakthrough Delta variant infection before booster immunization, respectively). The study participants had completed primary immunization with ChAdOx1-S and booster vaccination with BNT162b2. Neutralizing antibodies were measured using a surrogate virus neutralization assay. Of the 21 study participants in G1, neutralizing antibodies against ancestral strain, Delta variant, BA.1, and BA.2 were (almost) abolished at month 8 after the second dose, but all had detectable neutralizing antibodies to the study viruses at week 2 post booster dose. Of the 26 study participants in G2, neutralizing antibody levels to BA.1 and BA.2 were significantly higher than those to the corresponding viruses measured at week 2 post breakthrough infection and before the booster dose. At week 15 post booster vaccination, neutralizing antibodies to BA.1 and BA.2 dropped significantly, with more profound changes observed in those without breakthrough Delta variant infection. Booster vaccination enhanced neutralizing activities against ancestral strain and Delta variant compared with those induced by primary vaccination. These responses were maintained at high levels for at least 15 weeks. Our findings emphasize the importance of the first booster dose in producing cross-neutralizing antibodies against Omicron variant. A second booster to maintain long-term vaccine effectiveness against the currently circulating variants merits further research

    The global response: How cities and provinces around the globe tackled Covid-19 outbreaks in 2021

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    Background: Tackling the spread of COVID-19 remains a crucial part of ending the pandemic. Its highly contagious nature and constant evolution coupled with a relative lack of immunity make the virus difficult to control. For this, various strategies have been proposed and adopted including limiting contact, social isolation, vaccination, contact tracing, etc. However, given the heterogeneity in the enforcement of these strategies and constant fluctuations in the strictness levels of these strategies, it becomes challenging to assess the true impact of these strategies in controlling the spread of COVID-19.Methods: In the present study, we evaluated various transmission control measures that were imposed in 10 global urban cities and provinces in 2021 Bangkok, Gauteng, Ho Chi Minh City, Jakarta, London, Manila City, New Delhi, New York City, Singapore, and Tokyo.Findings: Based on our analysis, we herein propose the population-level Swiss cheese model for the failures and pit-falls in various strategies that each of these cities and provinces had. Furthermore, whilst all the evaluated cities and provinces took a different personalized approach to managing the pandemic, what remained common was dynamic enforcement and monitoring of breaches of each barrier of protection. The measures taken to reinforce the barriers were adjusted continuously based on the evolving epidemiological situation.Interpretation: How an individual city or province handled the pandemic profoundly affected and determined how the entire country handled the pandemic since the chain of transmission needs to be broken at the very grassroot level to achieve nationwide control

    Safety and efficacy of fluoxetine on functional outcome after acute stroke (AFFINITY): a randomised, double-blind, placebo-controlled trial

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    Background Trials of fluoxetine for recovery after stroke report conflicting results. The Assessment oF FluoxetINe In sTroke recoverY (AFFINITY) trial aimed to show if daily oral fluoxetine for 6 months after stroke improves functional outcome in an ethnically diverse population. Methods AFFINITY was a randomised, parallel-group, double-blind, placebo-controlled trial done in 43 hospital stroke units in Australia (n=29), New Zealand (four), and Vietnam (ten). Eligible patients were adults (aged ≥18 years) with a clinical diagnosis of acute stroke in the previous 2–15 days, brain imaging consistent with ischaemic or haemorrhagic stroke, and a persisting neurological deficit that produced a modified Rankin Scale (mRS) score of 1 or more. Patients were randomly assigned 1:1 via a web-based system using a minimisation algorithm to once daily, oral fluoxetine 20 mg capsules or matching placebo for 6 months. Patients, carers, investigators, and outcome assessors were masked to the treatment allocation. The primary outcome was functional status, measured by the mRS, at 6 months. The primary analysis was an ordinal logistic regression of the mRS at 6 months, adjusted for minimisation variables. Primary and safety analyses were done according to the patient's treatment allocation. The trial is registered with the Australian New Zealand Clinical Trials Registry, ACTRN12611000774921. Findings Between Jan 11, 2013, and June 30, 2019, 1280 patients were recruited in Australia (n=532), New Zealand (n=42), and Vietnam (n=706), of whom 642 were randomly assigned to fluoxetine and 638 were randomly assigned to placebo. Mean duration of trial treatment was 167 days (SD 48·1). At 6 months, mRS data were available in 624 (97%) patients in the fluoxetine group and 632 (99%) in the placebo group. The distribution of mRS categories was similar in the fluoxetine and placebo groups (adjusted common odds ratio 0·94, 95% CI 0·76–1·15; p=0·53). Compared with patients in the placebo group, patients in the fluoxetine group had more falls (20 [3%] vs seven [1%]; p=0·018), bone fractures (19 [3%] vs six [1%]; p=0·014), and epileptic seizures (ten [2%] vs two [<1%]; p=0·038) at 6 months. Interpretation Oral fluoxetine 20 mg daily for 6 months after acute stroke did not improve functional outcome and increased the risk of falls, bone fractures, and epileptic seizures. These results do not support the use of fluoxetine to improve functional outcome after stroke

    Impact des métaux lourds sur les interactions plante/ ver de terre/ microflore tellurique

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    L'objectif de ce travail était d'étudier les interactions entre une plante à phytoremédiatrice ?, Lantana camara (Verbenaceae), le ver de terre, Pontoscolex corethrurus (Glossoscolecidae) et les microorganismes telluriques d'un sol pollué au plomb. Dans un premier temps, il apparaît que dans les sols contaminés, la présence de ver conduit à un accroissement de la biomasse des parties aériennes et racinaires des plantes ainsi qu'à une augmentation de l'absorption de plomb. La caractérisation physico-chimique des agrégats racinaires a montré que l'activité des vers augmente le taux de matière organique, la capacité d'échange cationique ainsi que l'azote total, le potassium total et disponible. De plus, la présence des vers augmente certaines activités enzymatiques de la rhizosphère. La croissance accrue de L. camara pourrait résulter de ces différentes actions. L'action des vers de terre sur les plantes se ferait via les communautés microbiennes telluriques. Ainsi, la biomasse des microorganismes, bactéries et champignons, des agrégats racinaires augmente en présence de vers. La PCR-DGGE n'a pas permis de mettre en évidence de modifications de la structure taxonomique des communautés bactériennes sous l'influence du Pb et/ou du vers, par contre l'analyse des profils physiologiques par plaques Biolog montre clairement une diversification fonctionnelle bactérienne. Les communautés fongiques voient, elles, leur diversité taxonomique, augmenter sous l'action des vers. La restructuration des populations microbiennes, en présence de vers, des agrégats racinaires élaborés par les plantes en milieu pollué au plomb est l'élément déterminant pour la compréhension de l'impact de P. corethrurus sur la croissance et la phytoremédiation de L. camara. L'association de ces deux organismes aurait donc un potentiel considérable pour le traitement de sites industriels pollués au plombThe objective of this work was to study the interactions between phytoremediating plant Lantana camara (Verbenaceae), the earthworm Pontoscolex corethrurus (Glossocolecidae) and microorganisms in soil contaminated with lead. Initially, it appears that in the contaminated soil, the presence of earthworm leads to an increase in the biomass of root and aerial parts of plants and increased absorption of lead. The physico-chemical characterization of root-aggregates showed that the activity of earthworms increases the rate of organic matter, cation exchange capacity, total nitrogen, total and available potassium. Moreover, the presence of earthworms increases certain enzymatic activities in the rhizosphere. The increased growth of L. camara could result from these different actions. The action of earthworm on plants would be through terrestrial microbial-communities. Thus, the biomass of microorganisms, bacteria and fungi, of root-aggregates increase in the presence of earthworms. By PCR-DGGE, we were unable to demonstrate differences in taxonomic diversity of the bacteria community but the analysis of physiological profiles with Biolog plates showed that the activities of earthworm enhance the functional diversity of soil bacteria. In other hand, the restructuring of fungal taxonomy has been clearly observed by the activity of earthworm. All changes observed can explain increased growth of plants and improved phytoextraction of heavy metal. Finally, the study underlines the role of the earthworms on the growth and the phytoextraction efficiency of the plants. So, the combination of earthworm P. corethrurus and plant L. camara could be considerable potential for the treatment of industrial sites polluted with lea

    Impact des métaux lourds sur les interactions plante/ ver de terre/ microflore tellurique

    No full text
    L objectif de ce travail était d étudier les interactions entre une plante phytoremédiatrice , Lantana camara (Verbenaceae), le ver de terre, Pontoscolex corethrurus (Glossoscolecidae) et les microorganismes telluriques d un sol pollué au plomb. Dans un premier temps, il apparaît que dans les sols contaminés, la présence de ver conduit à un accroissement de la biomasse des parties aériennes et racinaires des plantes ainsi qu à une augmentation de l absorption de plomb. La caractérisation physico-chimique des agrégats racinaires a montré que l activité des vers augmente le taux de matière organique, la capacité d échange cationique ainsi que l azote total, le potassium total et disponible. De plus, la présence des vers augmente certaines activités enzymatiques de la rhizosphère. La croissance accrue de L. camara pourrait résulter de ces différentes actions. L action des vers de terre sur les plantes se ferait via les communautés microbiennes telluriques. Ainsi, la biomasse des microorganismes, bactéries et champignons, des agrégats racinaires augmente en présence de vers. La PCR-DGGE n a pas permis de mettre en évidence de modifications de la structure taxonomique des communautés bactériennes sous l influence du Pb et/ou du vers, par contre l analyse des profils physiologiques par plaques Biolog montre clairement une diversification fonctionnelle bactérienne. Les communautés fongiques voient, elles, leur diversité taxonomique, augmenter sous l action des vers. La restructuration des populations microbiennes, en présence de vers, des agrégats racinaires élaborés par les plantes en milieu pollué au plomb est l élément déterminant pour la compréhension de l impact de P. corethrurus sur la croissance et la phytoremédiation de L. camara. L association de ces deux organismes aurait donc un potentiel considérable pour le traitement de sites industriels pollués au plombThe objective of this work was to study the interactions between phytoremediating plant Lantana camara (Verbenaceae), the earthworm Pontoscolex corethrurus (Glossocolecidae) and microorganisms in soil contaminated with lead. Initially, it appears that in the contaminated soil, the presence of earthworm leads to an increase in the biomass of root and aerial parts of plants and increased absorption of lead. The physico-chemical characterization of root-aggregates showed that the activity of earthworms increases the rate of organic matter, cation exchange capacity, total nitrogen, total and available potassium. Moreover, the presence of earthworms increases certain enzymatic activities in the rhizosphere. The increased growth of L. camara could result from these different actions. The action of earthworm on plants would be through terrestrial microbial-communities. Thus, the biomass of microorganisms, bacteria and fungi, of root-aggregates increase in the presence of earthworms. By PCR-DGGE, we were unable to demonstrate differences in taxonomic diversity of the bacteria community but the analysis of physiological profiles with Biolog plates showed that the activities of earthworm enhance the functional diversity of soil bacteria. In other hand, the restructuring of fungal taxonomy has been clearly observed by the activity of earthworm. All changes observed can explain increased growth of plants and improved phytoextraction of heavy metal. Finally, the study underlines the role of the earthworms on the growth and the phytoextraction efficiency of the plants. So, the combination of earthworm P. corethrurus and plant L. camara could be considerable potential for the treatment of industrial sites polluted with leadPARIS-EST-Université (770839901) / SudocSudocFranceF

    Evaluating Dose- and Time-Dependent Effects of Vitamin C Treatment on a Parkinson’s Disease Fly Model

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    Parkinson’s disease (PD) is a common neurodegenerative disorder and characterized by progressive locomotive defects and loss of dopaminergic neurons (DA neuron). Currently, there is no potent therapy to cure PD, and the medications merely support to control the symptoms. It is difficult to develop an effective treatment, since the PD onset mechanism of PD is still unclear. Oxidative stress is considered as a major cause of neurodegenerative diseases, and there is increasing evidence for the association between PD and oxidative stress. Therefore, antioxidant treatment may be a promising therapy for PD. Drosophila with knockdown of dUCH, a homolog of UCH-L1 which is a PD-related gene, exhibited PD-like phenotypes including progressive locomotive impairments and DA neuron degeneration. Moreover, knockdown of dUCH led to elevated level of ROS. Thus, dUCH knockdown flies can be used as a model for screening of potential antioxidants for treating PD. Previous studies demonstrated that curcumin at 1 mM and vitamin C at 0.5 mM could improve PD-like phenotypes induced by this knockdown. With the purpose of further investigating the efficiency of vitamin C in PD treatment, we used dUCH knockdown Drosophila model to examine the dose- and time-dependent effects of vitamin C on PD-like phenotypes. The results showed that although vitamin C exerted neuroprotective effects, high doses of vitamin C and long-term treatment with this antioxidant also resulted in side effects on physiology. It is suggested that dose-dependent effects of vitamin C should be considered when used for treating PD

    Evaluating the Potential of Portulaca oleracea L. for Parkinson’s Disease Treatment Using a Drosophila Model with dUCH-Knockdown

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    Parkinson’s disease (PD), which is characterized by the decreased motor function and the loss of dopaminergic neurons, is a common neurodegenerative disorder in elders. There have been numerous in vitro and in vivo models developed to study mechanisms of PD and screen potential drug. Recently, dUCH-knockdown Drosophila model has been established and showed potential for screening antioxidants for PD treatment. The dUCH-knockdown Drosophila model of PD mimics most of main PD pathologies such as dopaminergic neurons degeneration, locomotor dysfunction, and shortage of dopamine in the brain. Common purslane (Portulaca oleracea L.) is a nutritious vegetable containing a variety of antioxidants, levodopa, and dopamine, a neurotransmitter closely related to PD. Purslane has been reported to exert neuroprotective effects against several neurotoxins including rotenone and 6-OHDA in PD models. However, the recent data have not provided sufficient evidence for using purslane to treat PD or decelerate disease progression. Therefore, in this study, we utilized dUCH-knockdown fly to evaluate the capacity of purslane extracts for PD treatment. The results showed that purslane extracts improved locomotor ability in the larval stage and decelerated disease progression in the adult stage. Additionally, purslane extracts also reduced dopaminergic neuron degeneration. Taken together, our data strongly demonstrated that purslane extracts effectively rescued PD-like phenotypes in the fly model. This result contributed a foundation for further study on the application of purslane in PD treatment
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