Zobrazeno 1 - 10
of 33
pro vyhledávání: '"Daniel Majonis"'
Autor:
Lili Wang, Rukmini Bhardwaj, Howard Mostowski, Paul N Patrone, Anthony J Kearsley, Jessica Watson, Liang Lim, Jothir Pichaandi, Olga Ornatsky, Daniel Majonis, Steven R Bauer, Heba A Degheidy
Publikováno v:
PLoS ONE, Vol 16, Iss 3, p e0248118 (2021)
In the field of cell-based therapeutics, there is a great need for high-quality, robust, and validated measurements for cell characterization. Flow cytometry has emerged as a critically important platform due to its high-throughput capability and its
Externí odkaz:
https://doaj.org/article/fc55bfe175e14d39b3e4041820ef3b25
Autor:
Loryn P. Arnett, Rahul Rana, Wilson Wai-Yip Chung, Xiaochong Li, Mahtab Abtahi, Daniel Majonis, Jay Bassan, Mark Nitz, Mitchell A. Winnik
Publikováno v:
Chemical Reviews. 123:1166-1205
Publikováno v:
Chemical Science. 13:3233-3243
Mass cytometry is an emerging powerful bioanalytical technique for high-dimensional single-cell analysis. In this technique, cells are stained with metal-isotope-tagged antibodies and are analyzed by an inductively coupled plasma time-of-flight mass
Control of Metal Content in Polystyrene Microbeads Prepared with Metal Complexes of DTPA Derivatives
Autor:
Daniel Majonis, Jieyi Liu, Mitchell A. Winnik, Edmond Chi Ngae Wong, Elsa Lu, Jonathan Jarzabek
Publikováno v:
Chemistry of Materials. 33:3802-3813
Mass cytometry (MC) is an emerging analytical technique in which an inductively coupled plasma time-of-flight mass spectrometer is employed to analyze the signals of isotopic labels on cell and mic...
Autor:
Thomas D. Pfister, Shaida Ouladan, Huihui Yao, Daniel Majonis, Christina Loh, Nick Zabinyakov
Publikováno v:
Cancer Research. 83:677-677
Imaging Mass Cytometry™ (IMC™) is the leading platform for high-plex tissue imaging. IMC allows for detailed assessment of cell phenotype and function using 40-plus markers simultaneously at subcellular resolution on a single slide. A comprehensi
Autor:
Daniel Majonis, Vladimir Baranov, Nick Zabinyakov, Mitchell A. Winnik, Yefeng Zhang, Alexandre Bouzekri, Olga Ornatsky
Publikováno v:
Analytical Chemistry. 92:5741-5749
Mass cytometry (MC) is a bioanalytical technique that uses metal-tagged antibodies (Abs) for high-dimensional single-cell immunoassays. Currently, this technology can measure over 40 parameters simultaneously on individual cells using metal-chelating
Publikováno v:
Langmuir : the ACS journal of surfaces and colloids. 37(27)
Bead-based assays in flow cytometry are multiplexed analytical techniques that allow rapid and simultaneous detection and quantification of a large number of analytes from small volumes of samples. The development of corresponding bead-based assays i
Autor:
Thiru Selvanantham, Stephen K.H. Li, Nick Zabinyakov, Alexandre Bouzekri, Raymond Jong, Michael Sullivan, Alexander Laboda, Daniel Majonis, Christina Loh
Publikováno v:
Cancer Research. 82:3908-3908
High-parameter immune profiling is crucial in translational and clinical research to quantify changes in immune cell populations over time. CyTOF® mass cytometry is a high-plex, single-cell analysis platform that uses isotopically pure metal-labeled
Autor:
Stephen K.H. Li, Nick Zabinyakov, Alexandre Bouzekri, Rita Straus, Raymond Jong, Michael Sullivan, Alexander Loboda, Daniel Majonis, Christina Loh
Publikováno v:
The Journal of Immunology. 208:172.17-172.17
CyTOF® mass cytometry is a single-cell analysis platform that uses isotope-tagged antibodies to resolve 50-plus markers in a single tube without signal compensation, making CyTOF ideal for routine immunophenotyping. CyTOF XT™, the latest CyTOF sys
Autor:
Jieyi Liu, Daniel Majonis, Vladimir Baranov, Jessica L. Watson, Mitchell A. Winnik, Jonathan Jarzabek
Publikováno v:
Analytical chemistry. 92(1)
Mass cytometry (MC) measures metal isotope signals from single cells and bead samples. Since large numbers of isotopes can be employed as labels, mass cytometry is a powerful analytical technique for multiparameter cytometric assays. The calibration