43 research outputs found

    Case Report Catheter-Related Acremonium kiliense Fungemia in a Patient with Ulcerative Colitis under Treatment with Infliximab

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    is properly cited. Acremonium spp. are filamentous, cosmopolitan fungi commonly isolated from plant debris and soil. They are infrequent pathogens in humans. Acremonium fungemia has been reported in neutropenic patients associated with central venous catheters and in nonneutropenic patients receiving long-term total parenteral nutrition. TNF-α blockade is associated with fungal infections, but no Acremonium spp. infection had been reported up to the present. In this paper, we present a patient with ulcerative colitis who developed Acremonium kiliense fungemia associated with infliximab therapy while receiving total parenteral nutrition. The patient was successfully treated with voriconazole. Acremonium sp. infection must be suspected as another cause of fungal infection in patients under treatment with infliximab

    Early paleocene paleoceanography and export productivity in the Chicxulub crater

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    The Chicxulub impact caused a crash in productivity in the world''s oceans which contributed to the extinction of ~75% of marine species. In the immediate aftermath of the extinction, export productivity was locally highly variable, with some sites, including the Chicxulub crater, recording elevated export production. The long-term transition back to more stable export productivity regimes has been poorly documented. Here, we present elemental abundances, foraminifer and calcareous nannoplankton assemblage counts, total organic carbon, and bulk carbonate carbon isotope data from the Chicxulub crater to reconstruct changes in export productivity during the first 3 Myr of the Paleocene. We show that export production was elevated for the first 320 kyr of the Paleocene, declined from 320 kyr to 1.2 Myr, and then remained low thereafter. A key interval in this long decline occurred 900 kyr to 1.2 Myr post impact, as calcareous nannoplankton assemblages began to diversify. This interval is associated with fluctuations in water column stratification and terrigenous flux, but these variables are uncorrelated to export productivity. Instead, we postulate that the turnover in the phytoplankton community from a post-extinction assemblage dominated by picoplankton (which promoted nutrient recycling in the euphotic zone) to a Paleocene pelagic community dominated by relatively larger primary producers like calcareous nannoplankton (which more efficiently removed nutrients from surface waters, leading to oligotrophy) is responsible for the decline in export production in the southern Gulf of Mexico. © 2021. American Geophysical Union. All Rights Reserved

    Drilling-induced and logging-related features illustrated from IODP-ICDP Expedition 364 downhole logs and borehole imaging tools

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    Expedition 364 was a joint IODP and ICDP mission-specific platform (MSP) expedition to explore the Chicxulub impact crater buried below the surface of the Yucatán continental shelf seafloor. In April and May 2016, this expedition drilled a single borehole at Site M0077 into the crater's peak ring. Excellent quality cores were recovered from ~ 505 to ~1335m below seafloor (m b.s.f.), and high-resolution open hole logs were acquired between the surface and total drill depth. Downhole logs are used to image the borehole wall, measure the physical properties of rocks that surround the borehole, and assess borehole quality during drilling and coring operations. When making geological interpretations of downhole logs, it is essential to be able to distinguish between features that are geological and those that are operation-related. During Expedition 364 some drilling-induced and logging-related features were observed and include the following: effects caused by the presence of casing and metal debris in the hole, logging-tool eccentering, drilling-induced corkscrew shape of the hole, possible re-magnetization of low-coercivity grains within sedimentary rocks, markings on the borehole wall, and drilling-induced changes in the borehole diameter and trajectory

    Desarrollo de un suero equino hiperinmune para el tratamiento de COVID-19 en Argentina

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    La enfermedad denominada COVID-19 es causada por el coronavirus SARS-CoV-2 y es actualmente considerada una pandemia a nivel global. El desarrollo de vacunas es sin duda la mejor estrategia a largo plazo, pero debido a la emergencia sanitaria, existe una necesidad urgente de encontrar soluciones rápidas y efectivas para el tratamiento de la enfermedad. Hasta la fecha, el uso de plasma de convalecientes es la única inmunoterapia disponible para pacientes hospitalizados con COVID-19. El uso de anticuerpos policlonales equinos (EpAbs) es otra alternativa terapéutica interesante. La nueva generación de EpAbs incluyen el procesamiento y purificación de los mismos y la obtención de fragmentos F(ab’)2 con alta pureza y un excelente perfil de seguridad en humanos. Los EpAbs son fáciles de producir, lo cual permite el desarrollo rápido y la elaboración a gran escala de un producto terapéutico. En este trabajo mostramos el desarrollo de un suero terapéutico obtenido luego de la inmunización de caballos utilizando el receptor-binding domain de la glicoproteína Spike del virus. Nuestro producto mostró ser alrededor de 50 veces más potente en ensayos de seroneutralización in vitro que el promedio de los plasmas de convalecientes. Estos resultados nos permitirían testear la seguridad y eficacia de nuestro producto en ensayos clínicos de fase 2/3 a realizarse a partir de julio de 2020 en la zona metropolitana de Buenos Aires, Argentina.The disease named COVID-19, caused by the SARS-CoV-2 coronavirus, is currently generating a global pandemic. Vaccine development is no doubt the best long-term immunological approach, but in the current epidemiologic and health emergency there is a need for rapid and effective solutions. Convalescent plasma is the only antibody-based therapy available for COVID-19 patients to date. Equine polyclonal antibodies (EpAbs) put forward a sound alternative. The new generation of processed and purified EpAbs containing highly purified F(ab’)2 fragments demonstrated to be safe and well tolerated. EpAbs are easy to manufacture allowing a fast development and scaling up for a treatment. Based on these ideas, we present a new therapeutic product obtained after immunization of horses with the receptor-binding domain of the viral Spike glycoprotein. Our product shows around 50 times more potency in in vitro seroneutralization assays than the average of convalescent plasma. This result may allow us to test the safety and efficacy of this product in a phase 2/3 clinical trial to be conducted in July 2020 in the metropolitan area of Buenos Aires, Argentina.Fil: Zylberman, Vanesa. Inmunova; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Sanguineti, Santiago. Inmunova; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Pontoriero, Andrea. Dirección Nacional de Instituto de Investigación. Administración Nacional de Laboratorio e Instituto de Salud "Dr. C. G. Malbrán"; ArgentinaFil: Higa, Sandra V.. Instituto Biológico Argentino S.A.I.C.; ArgentinaFil: Cerutti, Maria Laura. Universidad Nacional de San Martín. Centro de Rediseño e Ingeniería de Proteínas; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Morrone Seijo, Susana María. Inmunova; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Pardo, Romina Paola. Inmunova; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Muñoz, Luciana. Inmunova; ArgentinaFil: Acuña Intieri, María Eugenia. Universidad Nacional de San Martín. Centro de Rediseño e Ingeniería de Proteínas; ArgentinaFil: Alzogaray, Vanina Andrea. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Parque Centenario. Instituto de Investigaciones Bioquímicas de Buenos Aires. Fundación Instituto Leloir. Instituto de Investigaciones Bioquímicas de Buenos Aires; ArgentinaFil: Avaro, Martín M.. Dirección Nacional de Instituto de Investigación. Administración Nacional de Laboratorio e Instituto de Salud "Dr. C. G. Malbrán"; ArgentinaFil: Benedetti, Estefanía. Dirección Nacional de Instituto de Investigación. Administración Nacional de Laboratorio e Instituto de Salud "Dr. C. G. Malbrán"; ArgentinaFil: Berguer, Paula Mercedes. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Parque Centenario. Instituto de Investigaciones Bioquímicas de Buenos Aires. Fundación Instituto Leloir. Instituto de Investigaciones Bioquímicas de Buenos Aires; ArgentinaFil: Bocanera, Laura. mAbxience; ArgentinaFil: Bukata, Lucas. Inmunova; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Bustelo, Marina S.. Inmunova; ArgentinaFil: Campos, Ana M.. Dirección Nacional de Instituto de Investigación. Administración Nacional de Laboratorio e Instituto de Salud "Dr. C. G. Malbrán"; ArgentinaFil: Colonna, Mariana. Inmunova; ArgentinaFil: Correa, Elisa. mAbxience; ArgentinaFil: Cragnaz, Lucí­a. mAbxience; ArgentinaFil: Dattero, María E.. Dirección Nacional de Instituto de Investigación. Administración Nacional de Laboratorio e Instituto de Salud "Dr. C. G. Malbrán"; ArgentinaFil: Dellafiore, María Andrea. mAbxience; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Foscaldi, Sabrina Andrea. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Parque Centenario. Instituto de Investigaciones Bioquímicas de Buenos Aires. Fundación Instituto Leloir. Instituto de Investigaciones Bioquímicas de Buenos Aires; ArgentinaFil: González, Joaquí­n V.. Inmunova; ArgentinaFil: Guerra, Luciano Lucas. mAbxience; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Klinke, Sebastian. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Parque Centenario. Instituto de Investigaciones Bioquímicas de Buenos Aires. Fundación Instituto Leloir. Instituto de Investigaciones Bioquímicas de Buenos Aires; ArgentinaFil: Labanda, María Soledad. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Parque Centenario. Instituto de Investigaciones Bioquímicas de Buenos Aires. Fundación Instituto Leloir. Instituto de Investigaciones Bioquímicas de Buenos Aires; ArgentinaFil: Lauché, Constanza Elena. Inmunova; ArgentinaFil: López, Juan C.. Instituto Biológico Argentino S.A.I.C.; ArgentinaFil: Martínez, Anabela M.. Instituto Biológico Argentino S.A.I.C.; ArgentinaFil: Otero, Lisandro Horacio. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Parque Centenario. Instituto de Investigaciones Bioquímicas de Buenos Aires. Fundación Instituto Leloir. Instituto de Investigaciones Bioquímicas de Buenos Aires; ArgentinaFil: Peyric, Elías H.. Instituto Biológico Argentino S.A.I.C.; ArgentinaFil: Ponziani, Pablo F.. Instituto Biológico Argentino S.A.I.C.; ArgentinaFil: Ramondino, Romina. Inmunova; ArgentinaFil: Rinaldi, Jimena Julieta. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Parque Centenario. Instituto de Investigaciones Bioquímicas de Buenos Aires. Fundación Instituto Leloir. Instituto de Investigaciones Bioquímicas de Buenos Aires; ArgentinaFil: Rodrí­guez, Santiago. mAbxience; ArgentinaFil: Russo, Javier E.. Instituto Biológico Argentino S.A.I.C.; ArgentinaFil: Russo, Mara Laura. Dirección Nacional de Instituto de Investigación. Administración Nacional de Laboratorio e Instituto de Salud "Dr. C. G. Malbrán"; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Saavedra, Soledad Lorena. Instituto Biológico Argentino S.A.I.C.; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: Seigelchifer, Mauricio. mAbxience; ArgentinaFil: Sosa, Santiago. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Parque Centenario. Instituto de Investigaciones Bioquímicas de Buenos Aires. Fundación Instituto Leloir. Instituto de Investigaciones Bioquímicas de Buenos Aires; ArgentinaFil: Vilariño, Claudio. Universidad Nacional de San Martín. Centro de Rediseño e Ingeniería de Proteínas; ArgentinaFil: López Biscayart, Patricia. Instituto Biológico Argentino S.A.I.C.; ArgentinaFil: Corley, Esteban. mAbxience; ArgentinaFil: Spatz, Linus. Inmunova; ArgentinaFil: Baumeister, Elsa. Dirección Nacional de Instituto de Investigación. Administración Nacional de Laboratorio e Instituto de Salud "Dr. C. G. Malbrán"; ArgentinaFil: Goldbaum, Fernando Alberto. Universidad Nacional de San Martín. Centro de Rediseño e Ingeniería de Proteínas; Argentina. Inmunova; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Parque Centenario. Instituto de Investigaciones Bioquímicas de Buenos Aires. Fundación Instituto Leloir. Instituto de Investigaciones Bioquímicas de Buenos Aires; Argentin

    Modeling Site Suitability of Living Shoreline Design Options in Connecticut

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    Erosion is both a natural and anthropogenic phenomenon that threatens many properties along the coast. Installing hard structures has been the status quo method to protect waterfront property. However, structural barriers such as seawalls and groins have adverse environmental impacts on coastal processes and ecosystem services, such as food, recreation, and storm protection. Living shorelines are viable alternatives to shoreline armoring in low to moderate wave energy climates. Living shorelines are nature-based shoreline protection strategies which also enhance natural habitat and promote ecosystem services. In an attempt to improve coastal resilience in Connecticut, this study developed an automated geospatial model which determined the suitability of various living shoreline designs along Connecticut\u27s Long Island Sound shoreline. The model uses coastal conditions and site characteristics to determine stretches of coastline suitable for living shorelines. Inputs such as fetch, bathymetry, erosion rates, marsh, and beach are taken into consideration in producing living shoreline site suitability. Outputs from the geospatial model include beach enhancement and marsh enhancement, as well as two hybrid design options –offshore breakwaters and marsh with structures. Results from this study reveal that overall 47% of the Connecticut shoreline is suitable for living shoreline design options. The model is a crucial first step for environmental planners, homeowners, environmental engineers, and consultants in considering shoreline protection alternatives to shoreline hardening

    From global health security to global health solidarity, security and sustainability

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    The connotation of the word ‘security’ which often translates into a restrictive use of the term “global health security” tends to mask these core assumptions and perpetuates a state-centric approach focused on the viewpoint of the global North. We believe that the use of the concept of global health solidarity, security, and sustainability will provide a clearer outlook and more efficient basis to tackle “global health security” at the level of science as well as at the level of global public health action
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