Search results for "ENO.1"
showing 10 items of 27 documents
Excess electronic recoil events in XENON1T
2020
We report results from searches for new physics with low-energy electronic recoil data recorded with the XENON1T detector. With an exposure of 0.65 t-y and an unprecedentedly low background rate of $76\pm2$ events/(t y keV) between 1 and 30 keV, the data enables sensitive searches for solar axions, an enhanced neutrino magnetic moment, and bosonic dark matter. An excess over known backgrounds is observed at low energies and most prominent between 2 and 3 keV. The solar axion model has a 3.4$\sigma$ significance, and a 3D 90% confidence surface is reported for axion couplings to electrons, photons, and nucleons. This surface is inscribed in the cuboid defined by $g_{ae}<3.8 \times 10^{-12}$,…
Vaccination with ENO1 DNA Prolongs Survival of Genetically Engineered Mice with Pancreatic Cancer
2013
Background & Aims Pancreatic ductal adenocarcinoma (PDA) is an aggressive tumor, and patients typically present with late-stage disease; rates of 5-year survival after pancreaticoduodenectomy are low. Antibodies against α-enolase (ENO1), a glycolytic enzyme, are detected in more than 60% of patients with PDA, and ENO1-specific T cells inhibit the growth of human pancreatic xenograft tumors in mice. We investigated whether an ENO1 DNA vaccine elicits antitumor immune responses and prolongs survival of mice that spontaneously develop autochthonous, lethal pancreatic carcinomas. Methods We injected and electroporated a plasmid encoding ENO1 (or a control plasmid) into Kras G12D /Cre (KC) mice …
CCDC 1995028: Experimental Crystal Structure Determination
2020
Related Article: Justin J. Dressler, Joshua E. Barker, Lucas J. Karas, Hannah E. Hashimoto, Ryohei Kishi, Lev N. Zakharov, Samantha N. MacMillan, Carlos J. Gomez-Garcia, Masayoshi Nakano, Judy I. Wu, Michael M. Haley|2020|J.Org.Chem.|85|10846|doi:10.1021/acs.joc.0c01387
CCDC 1014064: Experimental Crystal Structure Determination
2014
Related Article: Yann Bernhard, Pascale Winckler, Remi Chassagnon, Philippe Richard, Élodie Gigot, Jean-Marie Perrier-Cornet, Richard A. Decréau|2014|Chem.Commun.|50|13975|doi:10.1039/C4CC05503A
CCDC 1949614: Experimental Crystal Structure Determination
2020
Related Article: Justin J. Dressler, Abel Cárdenas Valdivia, Ryohei Kishi, Gabriel E. Rudebusch, Austin M. Ventura, Brian E. Chastain, Carlos J. Gómez-García, Lev N. Zakharov, Masayoshi Nakano, Juan Casado, Michael M. Haley|2020|Cell Press: Chem|6|1353|doi:10.1016/j.chempr.2020.02.010
CCDC 1408336: Experimental Crystal Structure Determination
2017
Related Article: Debin Xia, Xin Guo, Manfred Wagner, Martin Baumgarten, Dieter Schollmeyer, Klaus Müllen|2017|Cryst.Growth Des.|17|2816|doi:10.1021/acs.cgd.7b00272
CCDC 1949613: Experimental Crystal Structure Determination
2020
Related Article: Justin J. Dressler, Abel Cárdenas Valdivia, Ryohei Kishi, Gabriel E. Rudebusch, Austin M. Ventura, Brian E. Chastain, Carlos J. Gómez-García, Lev N. Zakharov, Masayoshi Nakano, Juan Casado, Michael M. Haley|2020|Cell Press: Chem|6|1353|doi:10.1016/j.chempr.2020.02.010
CCDC 1456530: Experimental Crystal Structure Determination
2016
Related Article: Yann Bernhard, Elodie Gigot, Victor Goncalves, Mathieu Moreau, Nicolas Sok, Philippe Richard, Richard A. Decréau|2016|Org.Biomol.Chem.|14|4511|doi:10.1039/C6OB00530F
CCDC 843819: Experimental Crystal Structure Determination
2012
Related Article: H.Isla, B.Grimm, E.M.Perez, M.R.Torres, M.A.Herranz, R.Viruela, J.Arago, E.Orti, D.M.Guldi, N.Martin|2012|Chemical Science|3|498|doi:10.1039/c1sc00669j
CCDC 623710: Experimental Crystal Structure Determination
2007
Related Article: E.M.Perez, M.Sierra, L.Sanchez, M.R.Torres, R.Viruela, P.M.Viruela, E.Orti, N.Martin|2007|Angew.Chem.,Int.Ed.|46|1847|doi:10.1002/anie.200604327