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tag mass spectrometry bioinformatics biomarkers flow cytometry cell culture

Understanding Hybridoma Technology for Monoclonal Antibody Production
Understanding Hybridoma Technology for Monoclonal Antibody Production
Alpana Mohta, MD | May 9, 2023 | 5 min read
By fusing antibody-producing cells with immortal myeloma cells, researchers produce reliable supplies of highly specific antibodies.
2017 Top 10 Innovations
The Scientist | Dec 1, 2017 | 10+ min read
From single-cell analysis to whole-genome sequencing, this year's best new products shine on many levels.
A Comprehensive Guide to Proteomics
An Introductory Guide to Proteomics
Sejal Davla, PhD | Jan 16, 2023 | 5 min read
Deconstructing concepts, approaches, and data analysis in proteomics workflows.  
2022 Top 10 Innovations 
2022 Top 10 Innovations
The Scientist | Dec 12, 2022 | 10+ min read
This year’s crop of winning products features many with a clinical focus and others that represent significant advances in sequencing, single-cell analysis, and more.
Integrating Multiple -Omics in Individual Cells
Sandeep Ravindran | Oct 1, 2018 | 8 min read
New techniques combine DNA, RNA, and protein information from single cells.
2019 Top 10 Innovations
The Scientist | Dec 1, 2019 | 10+ min read
From a mass photometer to improved breath biopsy probes, these new products are poised for scientific success.
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Mapping the Cellular Social Network of Proteins
Melissae Fellet | Feb 1, 2019 | 7 min read
Three techniques capture data on numerous protein interactions in plants, mice, and human cells.
How to Track Cell Lineages As They Develop
Kelly Rae Chi | Dec 1, 2016 | 7 min read
Sequencing and gene-editing advances make tracing a cells journey throughout development easier than ever.
2020 Top 10 Innovations
The Scientist | Dec 1, 2020 | 10+ min read
From a rapid molecular test for COVID-19 to tools that can characterize the antibodies produced in the plasma of patients recovering from the disease, this year’s winners reflect the research community’s shared focus in a challenging year.
Surpassing the Law of Averages
Jeffrey M. Perkel | Sep 1, 2009 | 7 min read
By Jeffrey M. Perkel Surpassing the Law of Averages How to expose the behaviors of genes, RNA, proteins, and metabolites in single cells. By necessity or convenience, almost everything we know about biochemistry and molecular biology derives from bulk behavior: From gene regulation to Michaelis-Menten kinetics, we understand biology in terms of what the “average” cell in a population does. But, as Jonathan Weissman of the University of Califo

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