8,833 Matching Annotations
  1. Aug 2020
    1. Felipe, L. S., Vercruysse, T., Sharma, S., Ma, J., Lemmens, V., Looveren, D. van, Javarappa, M. P. A., Boudewijns, R., Malengier-Devlies, B., Kaptein, S. F., Liesenborghs, L., Keyzer, C. D., Bervoets, L., Rasulova, M., Seldeslachts, L., Jansen, S., Yakass, M. B., Quaye, O., Li, L.-H., 
 Dallmeier, K. (2020). A single-dose live-attenuated YF17D-vectored SARS-CoV2 vaccine candidate. BioRxiv, 2020.07.08.193045. https://doi.org/10.1101/2020.07.08.193045

    1. Ferretti, A. P., Kula, T., Wang, Y., Nguyen, D. M., Weinheimer, A., Dunlap, G. S., Xu, Q., Nabilsi, N., Perullo, C. R., Cristofaro, A. W., Whitton, H. J., Virbasius, A., Olivier, K. J., Baiamonte, L. B., Alistar, A. T., Whitman, E. D., Bertino, S. A., Chattopadhyay, S., & MacBeath, G. (2020). COVID-19 Patients Form Memory CD8+ T Cells that Recognize a Small Set of Shared Immunodominant Epitopes in SARS-CoV-2. MedRxiv, 2020.07.24.20161653. https://doi.org/10.1101/2020.07.24.20161653

    1. Zhu, F.-C., Guan, X.-H., Li, Y.-H., Huang, J.-Y., Jiang, T., Hou, L.-H., Li, J.-X., Yang, B.-F., Wang, L., Wang, W.-J., Wu, S.-P., Wang, Z., Wu, X.-H., Xu, J.-J., Zhang, Z., Jia, S.-Y., Wang, B.-S., Hu, Y., Liu, J.-J., 
 Chen, W. (2020). Immunogenicity and safety of a recombinant adenovirus type-5-vectored COVID-19 vaccine in healthy adults aged 18 years or older: A randomised, double-blind, placebo-controlled, phase 2 trial. The Lancet, 0(0). https://doi.org/10.1016/S0140-6736(20)31605-6

    1. Hogan, A. B., Jewell, B. L., Sherrard-Smith, E., Vesga, J. F., Watson, O. J., Whittaker, C., Hamlet, A., Smith, J. A., Winskill, P., Verity, R., Baguelin, M., Lees, J. A., Whittles, L. K., Ainslie, K. E. C., Bhatt, S., Boonyasiri, A., Brazeau, N. F., Cattarino, L., Cooper, L. V., 
 Hallett, T. B. (2020). Potential impact of the COVID-19 pandemic on HIV, tuberculosis, and malaria in low-income and middle-income countries: A modelling study. The Lancet Global Health, 0(0). https://doi.org/10.1016/S2214-109X(20)30288-6

    1. Guo, L., Boocock, J., Tome, J. M., Chandrasekaran, S., Hilt, E. E., Zhang, Y., Sathe, L., Li, X., Luo, C., Kosuri, S., Shendure, J. A., Arboleda, V. A., Flint, J., Eskin, E., Garner, O. B., Yang, S., Bloom, J. S., Kruglyak, L., & Yin, Y. (2020). Rapid cost-effective viral genome sequencing by V-seq. BioRxiv, 2020.08.15.252510. https://doi.org/10.1101/2020.08.15.252510

    1. Corbett, K. S., Edwards, D. K., Leist, S. R., Abiona, O. M., Boyoglu-Barnum, S., Gillespie, R. A., Himansu, S., SchĂ€fer, A., Ziwawo, C. T., DiPiazza, A. T., Dinnon, K. H., Elbashir, S. M., Shaw, C. A., Woods, A., Fritch, E. J., Martinez, D. R., Bock, K. W., Minai, M., Nagata, B. M., 
 Graham, B. S. (2020). SARS-CoV-2 mRNA vaccine design enabled by prototype pathogen preparedness. Nature, 1–8. https://doi.org/10.1038/s41586-020-2622-0

    1. Walls, A. C., Fiala, B., SchĂ€fer, A., Wrenn, S., Pham, M. N., Murphy, M., Tse, L. V., Shehata, L., O’Connor, M. A., Chen, C., Navarro, M. J., Miranda, M. C., Pettie, D., Ravichandran, R., Kraft, J. C., Ogohara, C., Palser, A., Chalk, S., Lee, E.-C., 
 King, N. P. (2020). Elicitation of potent neutralizing antibody responses by designed protein nanoparticle vaccines for SARS-CoV-2. BioRxiv, 2020.08.11.247395. https://doi.org/10.1101/2020.08.11.247395

    1. Nguyen, L. H., Drew, D. A., Graham, M. S., Joshi, A. D., Guo, C.-G., Ma, W., Mehta, R. S., Warner, E. T., Sikavi, D. R., Lo, C.-H., Kwon, S., Song, M., Mucci, L. A., Stampfer, M. J., Willett, W. C., Eliassen, A. H., Hart, J. E., Chavarro, J. E., Rich-Edwards, J. W., 
 Zhang, F. (2020). Risk of COVID-19 among front-line health-care workers and the general community: A prospective cohort study. The Lancet Public Health, 0(0). https://doi.org/10.1016/S2468-2667(20)30164-X

    1. Menni, C., Valdes, A. M., Freidin, M. B., Sudre, C. H., Nguyen, L. H., Drew, D. A., ... & Visconti, A. (2020). Real-time tracking of self-reported symptoms to predict potential COVID-19. Nature Medicine, 1-4.

    1. Consiglio, C. R., Cotugno, N., Sardh, F., Pou, C., Amodio, D., Zicari, S., Ruggiero, A., Pascucci, G. R., Rodriguez, L., Santilli, V., Tan, Z., Eriksson, D., Wang, J., Lakshmikanth, T., Marchesi, A., Lakshmikanth, T., Campana, A., Villani, A., Rossi, P., 
 Brodin, P. (2020). The Immunology of Multisystem Inflammatory Syndrome in Children with COVID-19. MedRxiv, 2020.07.08.20148353. https://doi.org/10.1101/2020.07.08.20148353

    1. Les parents d’élĂšves jouent un rĂŽle essentiel. Ils s’engagent Ă  ne pas mettre leurs enfants Ă  l’école, au collĂšge ou au lycĂ©e en cas de fiĂšvre (38 °C ou plus) ou en cas d’apparition de symptĂŽmes Ă©voquant la Covid-19 chez l’élĂšve ou dans sa famille. Les personnels doivent s’appliquer les mĂȘmes rĂšgles. Les accompagnateurs ainsi que les intervenants extĂ©rieurs peuvent entrer dans les bĂątiments scolaires aprĂšs nettoyage et dĂ©sinfection des mains. Ils doivent porter un masque de protection.
    1. Feldmann, A., Gasser, O., Lichtblau, F., Pujol, E., Poese, I., Dietzel, C., Wagner, D., Wichtlhuber, M., Tapiador, J., Vallina-Rodriguez, N., Hohlfeld, O., & Smaragdakis, G. (2020). The Lockdown Effect: Implications of the COVID-19 Pandemic on Internet Traffic. ArXiv:2008.10959 [Cs]. http://arxiv.org/abs/2008.10959

    1. Martino, C., Kellman, B. P., Sandoval, D. R., Clausen, T. M., Marotz, C. A., Song, S. J., Wandro, S., Zaramela, L. S., Benítez, R. A. S., Zhu, Q., Armingol, E., Vázquez-Baeza, Y., McDonald, D., Sorrentino, J. T., Taylor, B., Belda-Ferre, P., Liang, C., Zhang, Y., Schifanella, L., 
 Knight, R. (2020). Bacterial modification of the host glycosaminoglycan heparan sulfate modulates SARS-CoV-2 infectivity. BioRxiv, 2020.08.17.238444. https://doi.org/10.1101/2020.08.17.238444

    1. Yonker, L. M., Neilan, A. M., Bartsch, Y., Patel, A. B., Regan, J., Arya, P., Gootkind, E., Park, G., Hardcastle, M., John, A. S., Appleman, L., Chiu, M. L., Fialkowski, A., Flor, D. D. la, Lima, R., Bordt, E. A., Yockey, L. J., D’Avino, P., Fischinger, S., 
 Fasano, A. (2020). Pediatric SARS-CoV-2: Clinical Presentation, Infectivity, and Immune Responses. The Journal of Pediatrics, 0(0). https://doi.org/10.1016/j.jpeds.2020.08.037

    1. Independent SAGE {@independentSage} (2020) LIVE now: Independent SAGE's weekly briefing. Please join us for latest analysis & questions from the press & public. All welcome! Twitter. Retrieved from: https://twitter.com/IndependentSage/status/1296787775354630146

    1. Dr Emma Hodcroft [@firefoxx66} (2020) In June, after reopening, #SARSCoV2 #COVID19 cases in Florida began to rise. Hospitalisations & deaths, however, stayed low. Perhaps it just wasn't so bad after all? Perhaps something had changed? We see similar trends in Europe now. So what happened in Florida? Let's see. Twitter. Retrieved from: https://twitter.com/firefoxx66/status/1296080753013534721

    1. ReconfigBehSci {@SciBeh} (2020). it's definitely worth considering a broad range of ideas...but does this not run into the same difficulties that plagued "shielding"? Twitter. Retrieved from: https://twitter.com/i/web/status/1297563172723929088

    1. Harper, Craig A., and Darren Rhodes. ‘Ideological Responses to the Breaking of COVID-19 Social Distancing Recommendations’, 19 August 2020. https://doi.org/10.31234/osf.io/dkqj6.

    2. Harper, Craig A., and Darren Rhodes. ‘Ideological Responses to the Breaking of COVID-19 Social Distancing Recommendations’, 19 August 2020. https://doi.org/10.31234/osf.io/dkqj6.

    3. Harper, Craig A., and Darren Rhodes. ‘Ideological Responses to the Breaking of COVID-19 Social Distancing Recommendations’, 19 August 2020. https://doi.org/10.31234/osf.io/dkqj6.

    1. Rodda, L. B., Netland, J., Shehata, L., Pruner, K. B., Morawski, P. M., Thouvenel, C., Takehara, K. K., Eggenberger, J., Hemann, E. A., Waterman, H. R., Fahning, M. L., Chen, Y., Rathe, J., Stokes, C., Wrenn, S., Fiala, B., Carter, L. P., Hamerman, J. A., King, N. P., 
 Pepper, M. (2020). Functional SARS-CoV-2-specific immune memory persists after mild COVID-19. MedRxiv, 2020.08.11.20171843. https://doi.org/10.1101/2020.08.11.20171843

    1. Chen, Y., Yang, W.-H., Huang, L.-M., Wang, Y.-C., Yang, C.-S., Liu, Y.-L., Hou, M.-H., Tsai, C.-L., Chou, Y.-Z., Huang, B.-Y., Hung, C.-F., Hung, Y.-L., Chen, J.-S., Chiang, Y.-P., Cho, D.-Y., Jeng, L.-B., Tsai, C.-H., & Hung, M.-C. (2020). Inhibition of Severe Acute Respiratory Syndrome Coronavirus 2 main protease by tafenoquine in vitro. BioRxiv, 2020.08.14.250258. https://doi.org/10.1101/2020.08.14.250258

    1. Kreye, J., Reincke, S. M., Kornau, H.-C., SĂĄnchez-Sendin, E., Corman, V. M., Liu, H., Yuan, M., Wu, N. C., Zhu, X., Lee, C.-C. D., Trimpert, J., Höltje, M., Dietert, K., Stöffler, L., Wardenburg, N. von, Hoof, S. van, Homeyer, M. A., Hoffmann, J., Abdelgawad, A., 
 PrĂŒss, H. (2020). A SARS-CoV-2 neutralizing antibody protects from lung pathology in a COVID-19 hamster model. BioRxiv, 2020.08.15.252320. https://doi.org/10.1101/2020.08.15.252320

    1. Glasgow, A., Glasgow, J., Limonta, D., Solomon, P., Lui, I., Zhang, Y., Nix, M. A., Rettko, N. J., Lim, S. A., Zha, S., Yamin, R., Kao, K., Rosenberg, O. S., Ravetch, J. V., Wiita, A. P., Leung, K. K., Zhou, X. X., Hobman, T. C., Kortemme, T., & Wells, J. A. (2020). Engineered ACE2 receptor traps potently neutralize SARS-CoV-2. BioRxiv, 2020.07.31.231746. https://doi.org/10.1101/2020.07.31.231746