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1.
J Oncol Pharm Pract ; 30(2): 278-285, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-37254519

RESUMEN

INTRODUCTION: During administration of chemotherapies, disconnection presents risks for nurses. Thus, it is recommended to flush the infusion line with solvent to reduce this risk and ensure that the entire dose is administered. Objectives of this study were to evaluate flushing practices and to investigate the efficiency of flushing, according to the type of hospitalization, in hospitalization (HU) or day-care unit (DCU), for three drugs. METHODS: Twenty secondary infusion lines were collected in five HU and 20 in two DCU. Flushing volumes were estimated by weighing solvent bags. The amount of residual drug was measured for secondary lines by mass spectrometry coupled with high-performance liquid chromatography. RESULTS: Chemotherapies were administered by 26 nurses. All of infusion lines contained chemotherapy after flushing. Flushing volumes, residual concentrations and flushing efficiencies were significantly different between these two types of units. In contrast, flushing volumes administrated did not differ between chemotherapy drugs. CONCLUSIONS: Local recommendations are fully implemented in HU and partially in DCU. The use of small volumes in DCU is related to the patient length of stay, it may, also, be due to omitting the average tubing volume. All infusion lines still contained chemotherapy, including those with a flush volume much higher than recommended, showing that the risk of exposure persists. To achieve a rinse volume greater than 50 mL, it is necessary to use at least 100 mL. It is also important to insist on personal protective equipment and to consider closed safety system for administration.


Asunto(s)
Infusiones Intravenosas , Humanos , Solventes
2.
J Exp Bot ; 72(10): 3914-3928, 2021 05 04.
Artículo en Inglés | MEDLINE | ID: mdl-33718947

RESUMEN

Hydraulic failure has been extensively studied during drought-induced plant dieback, but its role in plant-pathogen interactions is under debate. During esca, a grapevine (Vitis vinifera) disease, symptomatic leaves are prone to irreversible hydraulic dysfunctions but little is known about the hydraulic integrity of perennial organs over the short- and long-term. We investigated the effects of esca on stem hydraulic integrity in naturally infected plants within a single season and across season(s). We coupled direct (ks) and indirect (kth) hydraulic conductivity measurements, and tylose and vascular pathogen detection with in vivo X-ray microtomography visualizations. Xylem occlusions (tyloses) and subsequent loss of stem hydraulic conductivity (ks) occurred in all shoots with severe symptoms (apoplexy) and in more than 60% of shoots with moderate symptoms (tiger-stripe), with no tyloses in asymptomatic shoots. In vivo stem observations demonstrated that tyloses occurred only when leaf symptoms appeared, and resulted in more than 50% loss of hydraulic conductance in 40% of symptomatic stems, unrelated to symptom age. The impact of esca on xylem integrity was only seasonal, with no long-term impact of disease history. Our study demonstrated how and to what extent a vascular disease such as esca, affecting xylem integrity, could amplify plant mortality through hydraulic failure.


Asunto(s)
Vitis , Agua , Hojas de la Planta , Tallos de la Planta , Estaciones del Año , Xilema
3.
BMC Evol Biol ; 17(1): 106, 2017 04 24.
Artículo en Inglés | MEDLINE | ID: mdl-28438135

RESUMEN

BACKGROUND: While mutualistic interactions between different genotypes are pervasive in nature, their evolutionary origin is not clear. The dilemma is that, for mutualistic interactions to emerge and persist, an investment into the partner genotype must pay off: individuals of a first genotype that invest resources to promote the growth of a second genotype must receive a benefit that is not equally accessible to individuals that do not invest. One way for exclusive benefits to emerge is through spatial structure (i.e., physical barriers to the movement of individuals and resources). RESULTS: Here we propose that organisms can evolve their own spatial structure based on physical attachment between individuals, and we hypothesize that attachment evolves when spatial proximity to members of another species is advantageous. We tested this hypothesis using experimental evolution with combinations of E. coli strains that depend on each other to grow. We found that attachment between cells repeatedly evolved within 8 weeks of evolution and observed that many different types of mutations potentially contributed to increased attachment. CONCLUSIONS: We postulate a general principle by which passive beneficial interactions between organisms select for attachment, and attachment then provides spatial structure that could be conducive for the evolution of active mutualistic interactions.


Asunto(s)
Escherichia coli/genética , Escherichia coli/fisiología , Interacciones Microbianas , Aminoácidos/biosíntesis , Evolución Biológica , Escherichia coli/citología , Evolución Molecular , Mutación , Simbiosis
4.
PLoS Genet ; 6(2): e1000859, 2010 Feb 26.
Artículo en Inglés | MEDLINE | ID: mdl-20195515

RESUMEN

Bacteria of the Thiomonas genus are ubiquitous in extreme environments, such as arsenic-rich acid mine drainage (AMD). The genome of one of these strains, Thiomonas sp. 3As, was sequenced, annotated, and examined, revealing specific adaptations allowing this bacterium to survive and grow in its highly toxic environment. In order to explore genomic diversity as well as genetic evolution in Thiomonas spp., a comparative genomic hybridization (CGH) approach was used on eight different strains of the Thiomonas genus, including five strains of the same species. Our results suggest that the Thiomonas genome has evolved through the gain or loss of genomic islands and that this evolution is influenced by the specific environmental conditions in which the strains live.


Asunto(s)
Betaproteobacteria/genética , Evolución Molecular , Genoma Bacteriano/genética , Adaptación Fisiológica/genética , Arsénico/metabolismo , Carbono/metabolismo , Hibridación Genómica Comparativa , Metabolismo Energético/genética , Ambiente , Transferencia de Gen Horizontal/genética , Genes Bacterianos/genética , Genes Duplicados/genética , Variación Genética , Islas Genómicas/genética , Redes y Vías Metabólicas/genética , Plásmidos/genética , Profagos/genética
5.
Appl Microbiol Biotechnol ; 93(4): 1735-44, 2012 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-21792588

RESUMEN

Euglena mutabilis is a protist ubiquitously found in extreme environments such as acid mine drainages which are often rich in arsenic. The response of E. mutabilis to this metalloid was compared to that of Euglena gracilis, a protist not found in such environments. Membrane fatty acid composition, cell surface properties, arsenic accumulation kinetics, and intracellular arsenic speciation were determined. The results revealed a modification in fatty acid composition leading to an increased membrane fluidity in both Euglena species under sublethal arsenic concentrations exposure. This increased membrane fluidity correlated to an induced gliding motility observed in E. mutabilis in the presence of this metalloid but did not affect the flagellar dependent motility of E. gracilis. Moreover, when compared to E. gracilis, E. mutabilis showed highly hydrophobic cell surface properties and a higher tolerance to water-soluble arsenical compounds but not to hydrophobic ones. Finally, E. mutabilis showed a lower accumulation of total arsenic in the intracellular compartment and an absence of arsenic methylated species in contrast to E. gracilis. Taken together, our results revealed the existence of a specific arsenical response of E. mutabilis that may play a role in its hypertolerance to this toxic metalloid.


Asunto(s)
Adaptación Fisiológica , Arsénico/toxicidad , Euglena/efectos de los fármacos , Contaminantes del Suelo/toxicidad , Membrana Celular/química , Membrana Celular/efectos de los fármacos , Tolerancia a Medicamentos , Euglena/química , Euglena/fisiología , Ácidos Grasos/análisis , Interacciones Hidrofóbicas e Hidrofílicas , Locomoción , Fluidez de la Membrana/efectos de los fármacos , Propiedades de Superficie
6.
BMC Microbiol ; 9: 127, 2009 Jun 23.
Artículo en Inglés | MEDLINE | ID: mdl-19549320

RESUMEN

BACKGROUND: Thiomonas strains are ubiquitous in arsenic-contaminated environments. Differences between Thiomonas strains in the way they have adapted and respond to arsenic have never been studied in detail. For this purpose, five Thiomonas strains, that are interesting in terms of arsenic metabolism were selected: T. arsenivorans, Thiomonas spp. WJ68 and 3As are able to oxidise As(III), while Thiomonas sp. Ynys1 and T. perometabolis are not. Moreover, T. arsenivorans and 3As present interesting physiological traits, in particular that these strains are able to use As(III) as an electron donor. RESULTS: The metabolism of carbon and arsenic was compared in the five Thiomonas strains belonging to two distinct phylogenetic groups. Greater physiological differences were found between these strains than might have been suggested by 16S rRNA/rpoA gene phylogeny, especially regarding arsenic metabolism. Physiologically, T. perometabolis and Ynys1 were unable to oxidise As(III) and were less arsenic-resistant than the other strains. Genetically, they appeared to lack the aox arsenic-oxidising genes and carried only a single ars arsenic resistance operon. Thiomonas arsenivorans belonged to a distinct phylogenetic group and increased its autotrophic metabolism when arsenic concentration increased. Differential proteomic analysis revealed that in T. arsenivorans, the rbc/cbb genes involved in the assimilation of inorganic carbon were induced in the presence of arsenic, whereas these genes were repressed in Thiomonas sp. 3As. CONCLUSION: Taken together, these results show that these closely related bacteria differ substantially in their response to arsenic, amongst other factors, and suggest different relationships between carbon assimilation and arsenic metabolism.


Asunto(s)
Adaptación Fisiológica , Arsénico/metabolismo , Betaproteobacteria/enzimología , Carbono/metabolismo , Arsenitos/metabolismo , Betaproteobacteria/clasificación , Betaproteobacteria/genética , Crecimiento Quimioautotrófico/efectos de los fármacos , Filogenia , Especificidad de la Especie
7.
Front Microbiol ; 6: 993, 2015.
Artículo en Inglés | MEDLINE | ID: mdl-26441922

RESUMEN

The acid mine drainage (AMD) in Carnoulès (France) is characterized by the presence of toxic metals such as arsenic. Several bacterial strains belonging to the Thiomonas genus, which were isolated from this AMD, are able to withstand these conditions. Their genomes carry several genomic islands (GEIs), which are known to be potentially advantageous in some particular ecological niches. This study focused on the role of the "urea island" present in the Thiomonas CB2 strain, which carry the genes involved in urea degradation processes. First, genomic comparisons showed that the genome of Thiomonas sp. CB2, which is able to degrade urea, contains a urea genomic island which is incomplete in the genome of other strains showing no urease activity. The urease activity of Thiomonas sp. CB2 enabled this bacterium to maintain a neutral pH in cell cultures in vitro and prevented the occurrence of cell death during the growth of the bacterium in a chemically defined medium. In AMD water supplemented with urea, the degradation of urea promotes iron, aluminum and arsenic precipitation. Our data show that ureC was expressed in situ, which suggests that the ability to degrade urea may be expressed in some Thiomonas strains in AMD, and that this urease activity may contribute to their survival in contaminated environments.

8.
Genome Biol Evol ; 5(5): 934-53, 2013.
Artículo en Inglés | MEDLINE | ID: mdl-23589360

RESUMEN

Arsenic is widespread in the environment and its presence is a result of natural or anthropogenic activities. Microbes have developed different mechanisms to deal with toxic compounds such as arsenic and this is to resist or metabolize the compound. Here, we present the first reference set of genomic, transcriptomic and proteomic data of an Alphaproteobacterium isolated from an arsenic-containing goldmine: Rhizobium sp. NT-26. Although phylogenetically related to the plant-associated bacteria, this organism has lost the major colonizing capabilities needed for symbiosis with legumes. In contrast, the genome of Rhizobium sp. NT-26 comprises a megaplasmid containing the various genes, which enable it to metabolize arsenite. Remarkably, although the genes required for arsenite oxidation and flagellar motility/biofilm formation are carried by the megaplasmid and the chromosome, respectively, a coordinate regulation of these two mechanisms was observed. Taken together, these processes illustrate the impact environmental pressure can have on the evolution of bacterial genomes, improving the fitness of bacterial strains by the acquisition of novel functions.


Asunto(s)
Arsenitos/metabolismo , Bacterias , Genoma Bacteriano , Rhizobium , Arsenitos/química , Procesos Autotróficos , Bacterias/genética , Bacterias/aislamiento & purificación , Bacterias/metabolismo , Biopelículas , Aptitud Genética , Oro/química , Oxidación-Reducción , Filogenia , Rhizobium/genética , Rhizobium/aislamiento & purificación , Rhizobium/metabolismo , Simbiosis/genética
9.
PLoS One ; 6(8): e23181, 2011.
Artículo en Inglés | MEDLINE | ID: mdl-21876737

RESUMEN

Biofilms represent the most common microbial lifestyle, allowing the survival of microbial populations exposed to harsh environmental conditions. Here, we show that the biofilm development of a bacterial species belonging to the Thiomonas genus, frequently found in arsenic polluted sites and playing a key role in arsenic natural remediation, is markedly modified when exposed to subinhibitory doses of this toxic element. Indeed, arsenite [As(III)] exposure led to a considerable impact on biofilm maturation by strongly increasing the extracellular matrix synthesis and by promoting significant cell death and lysis within microcolonies. These events were followed by the development of complex 3D-biofilm structures and subsequently by the dispersal of remobilized cells observed inside the previously formed hollow voids. Our results demonstrate that this biofilm community responds to arsenite stress in a multimodal way, enhancing both survival and dispersal. Addressing this complex bacterial response to As(III) stress, which might be used by other microorganisms under various adverse conditions, may be essential to understand how Thiomonas strains persist in extreme environments.


Asunto(s)
Arsenitos/toxicidad , Betaproteobacteria/efectos de los fármacos , Betaproteobacteria/crecimiento & desarrollo , Betaproteobacteria/citología , Betaproteobacteria/fisiología , Biopelículas/efectos de los fármacos , Recuento de Colonia Microbiana , Matriz Extracelular/efectos de los fármacos , Matriz Extracelular/metabolismo , Movimiento/efectos de los fármacos , Ácidos Nucleicos/metabolismo , Polisacáridos Bacterianos/efectos de los fármacos , Polisacáridos Bacterianos/metabolismo
10.
ISME J ; 5(11): 1735-47, 2011 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-21562598

RESUMEN

By their metabolic activities, microorganisms have a crucial role in the biogeochemical cycles of elements. The complete understanding of these processes requires, however, the deciphering of both the structure and the function, including synecologic interactions, of microbial communities. Using a metagenomic approach, we demonstrated here that an acid mine drainage highly contaminated with arsenic is dominated by seven bacterial strains whose genomes were reconstructed. Five of them represent yet uncultivated bacteria and include two strains belonging to a novel bacterial phylum present in some similar ecosystems, and which was named 'Candidatus Fodinabacter communificans.' Metaproteomic data unravelled several microbial capabilities expressed in situ, such as iron, sulfur and arsenic oxidation that are key mechanisms in biomineralization, or organic nutrient, amino acid and vitamin metabolism involved in synthrophic associations. A statistical analysis of genomic and proteomic data and reverse transcriptase-PCR experiments allowed us to build an integrated model of the metabolic interactions that may be of prime importance in the natural attenuation of such anthropized ecosystems.


Asunto(s)
Arsénico/metabolismo , Bacterias/genética , Bacterias/metabolismo , Ecosistema , Metagenómica , Proteómica , Bacterias/clasificación , Bacterias/aislamiento & purificación , Hierro/metabolismo , Minería , Filogenia , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa , Azufre/metabolismo
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