Results 101 to 110 of about 1,654,341 (292)
Engineered Mesenchymal Stem Cell–NK Cell Complexes for Spatially Targeted and Functionally Revitalized Cancer Immunotherapy
Advanced Science, EarlyView.IL‐15‐engineered stem cell–NK cell complexes, assembled via bioorthogonal chemistry, enable effective lung cancer immunotherapy. Abstract
Natural killer (NK) cells represent a powerful immunotherapeutic strategy due to their intrinsic cytotoxicity and ability to target tumor cells independently of antigen presentation.Qian Zhang, Bo Yin, Munaiwaier Sabier, Youlan Yang, Mengling Wu, Zhouping Zhao, Xuanzhi Luo, Yuehong Zhong, Xiuming Zhu, Jie Zhang, Jing Wang, Kai Chen, Fei Ruan, Wei Zhang, Zhimin Lu, Jiong Wang +15 morewiley +1 more sourceMeasurement of the Relative Branching Fraction of $\Upsilon(4S)$ to
Charged and Neutral B-Meson Pairs
, 2000 We analyze 9.7 x 10^6 B\bar{B}$ pairs recorded with the CLEO detector to
determine the production ratio of charged to neutral B-meson pairs produced at
the Y(4S) resonance.Ahmed, S, Alam, MS, Alexander, JP, Ammar, R, Anastassov, A, Anderson, S, Artuso, M, Asner, DM, Athar, SB, Avery, P, Ayad, R, Baker, R, Bean, A, Bebek, C, Behrens, BH, Berger, BE, Bergfeld, T, Berkelman, K, Besson, D, Blanc, F, Boisvert, V, Bonvicini, G, Boulahouache, C, Brandenburg, G, Briere, RA, Browder, TE, Bukin, K, Cassel, DG, Chen, S, Cinabro, D, Coan, TE, Cronin-Hennessy, D, Csorna, SE, Dambasuren, E, Danko, I, Davis, R, Dickson, M, Drell, PS, Duboscq, JE, Eckhart, E, Ecklund, KM, Edwards, KW, Ehrlich, R, Eisenstein, BI, Eppich, A, Ernst, J, Ershov, A, Fadeyev, V, Fast, J, Foland, AD, Ford, WT, Frolov, VV, Gaidarev, P, Gan, KK, Gao, YS, Gibbons, L, Gittelman, B, Gladding, GE, Godang, R, Gollin, GD, Gray, SW, Gritsan, A, Gwon, C, Hans, RM, Hart, T, Hartill, DL, Heltsley, BK, Hill, TS, Hinson, JW, Honscheid, K, Hopman, PI, Hufnagel, D, Jaffe, DE, Janicek, R, Jessop, CP, Jian, L, Johnson, E, Jones, CD, Kagan, H, Karamov, S, Karliner, I, Kass, R, Kim, DY, Kinoshita, K, Kopp, S, Kreinick, DL, Kubota, Y, Kwak, N, Kwon, Y, Lai, IC, Lee, J, Lee, SJ, Li, Y, Ling, L, Lipeles, E, Lohner, M, Lyon, AL, Magerkurth, A, Mahapatra, R, Mahmood, AH, Majumder, G, Maravin, Y, Marsh, MA, Marsiske, H, Masek, G, McGee, S, McLean, KW, Menon, N, Meyer, TO, Miller, DH, Mistry, NB, Moneti, GC, Morrison, RJ, Mountain, R, Márka, S, Narsky, I, Nordberg, E, O'Neill, JJ, Paar, HP, Palmer, M, Patel, PM, Patterson, JR, Pavlunin, V, Pedlar, TK, Perera, LP, Perl, ML, Peterson, D, Plager, C, Poling, R, Potter, EM, Prell, S, Prescott, C, Richichi, SJ, Riehle, T, Riley, D, Rodriguez, JL, Roy, J, Rubiera, AI, Sadoff, AJ, Saleem, M, Savinov, V, Schmidtler, M, Schrenk, S, Schuh, S, Schwarthoff, H, Sedlack, C, Selen, M, Severini, H, Shapiro, A, Sharma, V, Shibata, EI, Shipsey, IP, Skubic, P, Skwarnicki, T, Smith, A, Smith, JG, Stone, S, Stroynowski, R, Sun, WM, Thaler, JJ, Thayer, JB, Thayer, JG, Thies, PG, Thorndike, EH, Timm, S, Ugolini, D, Undrus, A, Urheim, J, Valant-Spaight, B, Viehhauser, G, von Toerne, E, Wang, JC, Wappler, F, Warburton, A, Weinstein, AJ, Williams, J, Wilson, R, Wlodek, T, Wolf, A, Wu, J, Würthwein, F, Xu, Z, Yamamoto, H, Ye, J, Yelton, J, Zhao, X, Zheng, J, Zhou, GJ, Zhou, X, Zoeller, MM +189 morecore +1 more sourceImproved Measurement of the Form Factors in the Decay Lambda_c^+ -->
Lambda e^+ nu_e
, 2005 Using the CLEO detector at the Cornell Electron Storage Ring, we have studied
the distribution of kinematic variables in the decay Lambda_c^+ -> Lambda e^+
nu_e. By performing a four-dimensional maximum likelihood fit, we determine the
form factor ratio, A. Bornheim, A. J. Sadoff, A. J. Weinstein, A. Magerkurth, A. Shapiro, A. Smith, A. Tomaradze, A. Warburton, B. Gittelman, B. I. Eisenstein, B. K. Heltsley, B. Sanghi, C. Boulahouache, C. Cawlfield, C. D. Jones, C. Gwon, C. J. Stepaniak, C. Plager, C. S. Park, C. Sedlack, D. Besson, D. Cinabro, D. Cronin-Hennessy, D. G. Cassel, D. H. Miller, D. L. Hartill, D. L. Kreinick, D. Peterson, D. Riley, D. T. Gong, D. Urner, E. Dambasuren, E. Eckhart, E. H. Thorndike, E. I. Shibata, E. Lipeles, E. von Toerne, F. Liu, F. Wappler, G. Bonvicini, G. D. Gollin, G. P. Chen, G. S. Huang, G. Tatishvili, H. Kagan, H. Mahlke-Krüger, H. Muramatsu, H. Schwarthoff, H. Severini, H. Stoeck, H. Vogel, I. Danko, I. Karliner, I. P. J. Shipsey, J. A. Mueller, J. B. Thayer, J. C. Wang, J. E. Duboscq, J. Ernst, J. G. Thayer, J. J. Thaler, J. Kandaswamy, J. Lee, J. P. Alexander, J. Pivarski, J. R. Patterson, J. Urheim, J. W. Hinson, J. Williams, J. Yelton, K. Arms, K. Benslama, K. Berkelman, K. Honscheid, K. K. Gan, K. K. Seth, K. M. Ecklund, K. W. Edwards, L. Breva-Newell, L. Gibbons, L. Hsu, L. Jian, M. Artuso, M. Dubrovin, M. E. Watkins, M. R. Shepherd, M. S. Alam, M. Saleem, M. Selen, M. Weinberger, N. B. Mistry, N. E. Adam, N. Lowrey, O. Dorjkhaidav, P. Avery, P. Skubic, P. Zweber, R. A. Briere, R. Ehrlich, R. Kass, R. Mountain, R. Nandakumar, R. Poling, R. Rangarajan, R. S. Galik, R. Stroynowski, S. A. Dytman, S. Ahmed, S. Anderson, S. B. Athar, S. Blusk, S. E. Csorna, S. J. Richichi, S. McGee, S. Nam, S. P. Pappas, S. Stone, S. W. Gray, S. Z. Li, T. E. Coan, T. Ferguson, T. K. Pedlar, T. O. Meyer, T. Skwarnicki, T. Wilksen, V. Boisvert, V. Pavlunin, V. Potlia, V. Savinov, V. V. Frolov, W. M. Sun, W. Park, Y. Kubota, Y. S. Gao, Z. Metreveli +134 morecore +1 more sourceRapid Remodeling of the Human Gut Microbiome in Response to Short‐Term Animal Product Restriction and Associations with Host Molecular Phenotypes
Advanced Science, EarlyView.A real‐world model of structured animal product restriction practiced for religious reasons reveals the dynamic adaptability of the human gut microbiome to dietary change and uncovers reductions in diversity and rare taxa loss. Integrated microbiome, metabolomic, and proteomic analyses uncover coordinated taxonomic and molecular shifts and identify ...Christina Emmanouil, Maria Anezaki, Alexandros Simistiras, Stavros Glentis, Nikolaos Scarmeas, Pantelis Hatzis, Konstantinos Rouskas, Antigone S. Dimas +7 morewiley +1 more sourcePERCEPŢII PRIVIND ANGAJAMENTUL DE ROL ŞI CONFLICTUL MUNCĂ-FAMILIE LA ANGAJAŢII DIN REPUBLICA MOLDOVA: STUDIU EXPLORATIV
Studia Universitatis Moldaviae: Stiinte ale Educatiei, 2017 Unul dintre conflictele motivaţionale întâlnite frecvent în mediul organizaţional este „conflictul familie-muncă”. Conflictul, în acest caz, derivă din nevoia de a integra în mod optim solicitările legate de rolul familial cu cele ale rolului profesional.Carolina PLATON, Natalia COJOCARU, Eugenia BÂZGU, Angela BORŞ, Veronica GRAUR, Aliona MÂRLEANU, Lidia MÂRZA, Iulia NICORICI, Anastasia PRUTEANU, Daniela ZAHARIA +9 moredoaj