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221por Bitterwolf, Patrick, Zoheir, Ahmed E., Hertel, Julian, Kröll, Sandra, Rabe, Kersten S., Niemeyer, Christof M.“…The inCell‐AEH nanoparticles were generated from polycistronic vectors enabling simultaneous expression of two interacting enzymes, the Lactobacillus brevis alcohol dehydrogenase (ADH) and the Bacillus subtilis glucose‐1‐dehydrogenase (GDH), fused with a SpyCatcher or SpyTag, respectively. Formation of inCell‐AEH was analyzed by dynamic light scattering and atomic force microscopy. …”
Publicado 2022
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222por Adloff, C., Blaha, J., Blaising, J.J., Drancourt, C., Espargiliere, A., Gaglione, R., Geffroy, N., Karyotakis, Y., Prast, J., Vouters, G., Francis, K., Repond, J., Smith, J., Xia, L., Baldolemar, E., Li, J., Park, S.T., Sosebee, M., White, A.P., Yu, J., Buanes, T., Eigen, G., Mikami, Y., Watson, N.K., Goto, T., Mavromanolakis, G., Thomson, M.A., Ward, D.R., Yan, W., Benchekroun, D., Hoummada, A., Khoulaki, Y., Benyamna, M., Carloganu, C., Fehr, F., Gay, P., Manen, S., Royer, L., Blazey, G.C., Dyshkant, A., Lima, J.G.R., Zutshi, V., Hostachy, J.Y., Morin, L., Cornett, U., David, D., Falley, G., Gadow, K., Gottlicher, P., Gunter, C., Hermberg, B., Karstensen, S., Krivan, F., Lucaci-Timoce, A.I., Lu, S., Lutz, B., Morozov, S., Morgunov, V., Reinecke, M., Sefkow, F., Smirnov, P., Terwort, M., Vargas-Trevino, A., Feege, N., Garutti, E., Marchesini, I., Ramilli, M., Eckert, P., Harion, T., Kaplan, A., Schultz-Coulon, H.Ch, Shen, W., Stamen, R., Tadday, A., Bilki, B., Norbeck, E., Onel, Y., Wilson, G.W., Kawagoe, K., Dauncey, P.D., Magnan, A.M., Wing, M., Salvatore, F., Calvo Alamillo, E., Fouz, M.C., Puerta-Pelayo, J., Balagura, V., Bobchenko, B., Chadeeva, M., Danilov, M., Epifantsev, A., Markin, O., Mizuk, R., Novikov, E., Rusinov, V., Tarkovsky, E., Kirikova, N., Kozlov, V., Smirnov, P., Soloviev, Y., Buzhan, P., Dolgoshein, B., Ilyin, A., Kantserov, V., Kaplin, V., Karakash, A., Popova, E., Smirnov, S., Kiesling, C., Pfau, S., Seidel, K., Simon, F., Soldner, C., Szalay, M., Tesar, M., Weuste, L., Bonis, J., Bouquet, B., Callier, S., Cornebise, P., Doublet, Ph, Dulucq, F., Faucci Giannelli, M., Fleury, J., Li, H., Martin-Chassard, G., Richard, F., de la Taille, Ch., Poschl, R., Raux, L., Seguin-Moreau, N., Wicek, F., Anduze, M., Boudry, V., Brient, J.C., Jeans, D., Mora de Freitas, P., Musat, G., Reinhard, M., Ruan, M., Videau, H., Bulanek, B., Zacek, J., Cvach, J., Gallus, P., Havranek, M., Janata, M., Kvasnicka, J., Lednicky, D., Marcisovsky, M., Polak, I., Popule, J., Tomasek, L., Tomasek, M., Ruzicka, P., Sicho, P., Smolik, J., Vrba, V., Zalesak, J., Belhorma, B., Ghazlane, H., Takeshita, T., Uozumi, S., Sauer, J., Weber, S., Zeitnitz, C.“…The hadronic energy resolution of the CALICE setup, consisting of a silicon tungsten electromagnetic calorimeter, an analog hadron calorimeter and an analog tail catcher has been studied using data taken in 2007 at CERN and simulations. …”
Publicado 2012
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223por Li, Yuhang, Pu, Ruixue, Zhang, Yi, Zhang, Yiwen, Wei, Yujie, Zeng, Sheng, Gao, Chen, Wang, Ying, Yin, Daijiajia, Zhang, Yueyue, Wan, Jiqing, Zou, Quanming, Gu, Jiang“…METHODS: In this study, two well-studied antigen candidates, PcrV and OprI, were selected and connected to the ferritin nanoparticle by the Spytag/SpyCatcher system to generate the nanovaccine rePO-FN. …”
Publicado 2023
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224“…We optimized and employed the recently developed SpyTag/SpyCatcher technique to establish a protein assembly system for vaccine generation from pre-prepared subunit proteins. …”
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225por Ekimova, Maria, Quevedo, Wilson, Faubel, Manfred, Wernet, Philippe, Nibbering, Erik T. J.“…We observe that the derived thickness is of similar magnitude under 1 bar and under vacuum conditions. A catcher unit facilitates the recycling of the solutions, allowing measurements on small sample volumes (∼10 ml). …”
Publicado 2015
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226por Webster, Ben, Ivanov, Peter, Russell, Ben, Collins, Sean, Stora, Thierry, Ramos, Joao Pedro, Köster, Ulli, Robinson, Andrew Paul, Read, David“…Terbium-155 prepared by proton irradiation and on-line mass separation at the CERN-ISOLDE and CERN-MEDICIS facilities contains radioactive (139)Ce(16)O and also zinc or gold, depending on the catcher foil used. A method using ion-exchange and extraction chromatography resins in two column separation steps has been developed to isolate (155)Tb with a chemical yield of ≥95% and radionuclidic purity ≥99.9%. …”
Publicado 2019
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227por Cohen, Alexander A., Yang, Zhi, Gnanapragasam, Priyanthi N. P., Ou, Susan, Dam, Kim-Marie A., Wang, Haoqing, Bjorkman, Pamela J.“…It has been suggested that B-cells with receptors that recognize conserved epitopes would be preferentially stimulated through avidity effects by mosaic particles presenting multiple forms of a variable antigen. We adapted SpyCatcher-based platforms, AP205 virus-like particles (VLPs) and mi3 nanoparticles (NPs), to covalently co-display SpyTagged hemagglutinin (HA) trimers from group 1 and group 2 influenza A strains. …”
Publicado 2021
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228por Salzer, Ralf, Clark, Jordan J., Vaysburd, Marina, Chang, Veronica T., Albecka, Anna, Kiss, Leo, Sharma, Parul, Gonzalez Llamazares, Andres, Kipar, Anja, Hiscox, Julian A., Owen, Andrew, Aricescu, A. Radu, Stewart, James P., James, Leo C., Löwe, Jan“…Here, we show that ferritin‐like Dps from hyperthermophilic Sulfolobus islandicus, covalently coupled with SARS‐CoV‐2 antigens via the SpyCatcher system, forms stable multivalent dodecameric vaccine nanoparticles that remain intact even after lyophilisation. …”
Publicado 2021
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229por Chevillard, Christopher, Amen, Axelle, Besson, Solène, Hannani, Dalil, Bally, Isabelle, Dettling, Valentin, Gout, Evelyne, Moreau, Christophe J., Buisson, Marlyse, Gallet, Salomé, Fenel, Daphna, Vassal-Stermann, Emilie, Schoehn, Guy, Poignard, Pascal, Dagher, Marie-Claire, Fender, Pascal“…In the present work, we adapted a previously designed non-infectious adenovirus-inspired 60-mer dodecahedric VLP (ADDomer) to display a multimeric array of large antigens through a SpyTag/SpyCatcher system. To validate the platform as a potential COVID-19 vaccine approach, we decorated the newly designed VLP with the glycosylated receptor binding domain (RBD) of SARS-CoV-2. …”
Publicado 2022
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230por Goksøyr, Louise, Funch, Anders B., Okholm, Anna K., Theander, Thor G., de Jongh, Willem Adriaan, Bonefeld, Charlotte M., Sander, Adam F.“…In this study, we used the versatile Tag/Catcher AP205 capsid virus-like particle (cVLP) vaccine platform to develop an IL-1β-targeted vaccine and to assess the immunogenicity and in vivo efficacy of the vaccine in a translational mouse model of ACD. …”
Publicado 2022
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231por Yi, Yu, Hu, Jianming, Ding, Shenwei, Mei, Jianfeng, Wang, Xudong, Zhang, Yanlu, Chen, Jianshu, Ying, Guoqing“…Herein, a feasible strategy for directing protein immobilization on silica magnetic beads for ligand fishing based on SpyTag/SpyCatcher (ST/SC)-mediated anchoring is presented. Carboxyl functional groups on the surface of silica-coated magnetic beads (SMBs) were coupled with SC using the 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide hydrochloride/N-hydroxysulfosuccinimide method, named SC-SMBs. …”
Publicado 2022
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232por Yi, Qikun, Dai, Xin, Park, Byung Min, Gu, Junhao, Luo, Jiren, Wang, Ri, Yu, Cong, Kou, Songzi, Huang, Jinqing, Lakerveld, Richard, Sun, Fei“…These yeast cells have been genetically engineered to display the protein pairs SpyTag/SpyCatcher or CL7/Im7 on their surfaces, which enable their assembly into multicellular structures capable of further growth and proliferation. …”
Publicado 2022
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233“…Here, the plastic-degrading enzyme IsPETase was cyclized in a range of topologies including a cyclic monomer, cyclic dimer and catenane using SpyTag/SpyCatcher technologies, and their tolerance towards different stresses including mechanical agitation was investigated. …”
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234por Nolen, J A, Shepard, K W, Pardo, R C, Savard, G, Rehm, K E, Schiffer, J P, Henning, W F, Jiang, C L, Ahmad, L, Back, B B, Kaye, R A, Petra, M, Portillo, M, Greene, J, Clifft, B E, Specht, J R, Janssens, R V F, Siemssen, R H, Gómez, I, Reed, C B, Hassanein, A M“…To effectively utilize the high beam power of the driver two-step target /ion source geometries are proposed: (1) Neutron production with intermediate energy deuterons on $9 a primary target to produce neutron- rich fission products in a secondary /sup 238/U target, and (2) Fragmentation of neutron-rich heavy ion beams such as /sup 18/O in a target/catcher geometry. Heavy ion beams with total energies in $9 the 1-10 GeV range are also available for radionuclide production via high-energy spallation reactions: at the present time R&D is in progress to develop superconducting resonator structures for a driver linac to cover the energy $9 range up to 100 MeV per nucleon for heavy ions and 200 MeV for protons. …”
Publicado 1999
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235por Russ, Marissa, Ehret, Anna K., Hörner, Maximilian, Peschkov, Daniel, Bohnert, Rebecca, Idstein, Vincent, Minguet, Susana, Weber, Wilfried, Lillemeier, Björn F., Yousefi, O. Sascha, Schamel, Wolfgang W.“…Here, we developed a strategy to generate cells that display PhyB as a membrane-bound protein by expressing the SpyCatcher fused to a transmembrane domain in HEK-293T cells and covalently coupling purified PhyB-SpyTag to these cells. …”
Publicado 2023
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236por Yang, Jeong In, Sepúlveda, Dagoberto, Vardia, Irina, Skov, Jakob, Goksøyr, Louise, Sander, Adam F., Lorenzen, Niels“…The VapA and capsid proteins were expressed individually in E. coli and VapA was fused to auto-assembled VLPs using the SpyTag/SpyCatcher technology. Rainbow trout were vaccinated/immunized with the VapA-VLP vaccines by intraperitoneal injection and were challenged with A. salmonicida 7 weeks later. …”
Publicado 2023
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237“…The samples from pet dogs were collected from the ground immediately after voiding with the help of the owner, whereas stray dogs were caught by using a dog catcher, and the samples were collected directly from the rectum by using a gloved index finger. …”
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238por Vicente-Garcés, Clara, Maynou, Joan, Fernández, Guerau, Esperanza-Cebollada, Elena, Torrebadell, Montserrat, Català, Albert, Rives, Susana, Camós, Mireia, Vega-García, Nerea“…This study aimed to compare the applicability of 5 fusion calling pipelines (Arriba, deFuse, CICERO, FusionCatcher, and STAR-Fusion), as well as to define and develop an integrative bioinformatics pipeline (Fusion InPipe) to detect clinically relevant gene fusions in acute pediatric leukemia. …”
Publicado 2023
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239por Hamed, Amira, Orabi, Ahmed, Salem, Hend, Ismaiel, Doaa, Saad, Gamal, Abdelhamid, Ismail, Elwahy, Ahmed, Elsabee, Maher“…In addition, the prepared cross-linked chitosan bis-aldehyde derivatives were examined as U(VI) catcher from waste solutions. GRAPHICAL ABSTRACT: [Image: see text]…”
Publicado 2022
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240“…Towards a generic route to thermo-resilience, we established the SpyRing approach, cyclizing enzymes by sandwiching between SpyTag and SpyCatcher (peptide and protein partners which lock together via a spontaneous isopeptide bond). …”
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