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tag metal immunology genetics genomics

Bugs as Drugs to Boost Cancer Therapy
Danielle Gerhard, PhD | Jan 18, 2024 | 7 min read
Bioengineered bacteria sneak past solid tumor defenses to guide CAR T cells’ attacks.
Top 7 in Immunology
Edyta Zielinska | Aug 2, 2011 | 3 min read
A snapshot of the most highly ranked articles in microbiology and related areas, from Faculty of 1000
The Pangenome: Are Single Reference Genomes Dead?
Catherine Offord | Dec 1, 2016 | 10+ min read
Researchers are abandoning the concept of a list of genes sequenced from a single individual, instead aiming for a way to describe all the genetic variation within a species.
Top 10 Innovations 2021
2021 Top 10 Innovations
The Scientist | Dec 1, 2021 | 10+ min read
The COVID-19 pandemic is still with us. Biomedical innovation has rallied to address that pressing concern while continuing to tackle broader research challenges.
obituary, obituaries, roundup, end of the year, COVID-19, SARS-CoV-2, pandemic, coronavirus, immunology, genetics & genomics, cell & molecular biology, HIV
Those We Lost in 2020
Amanda Heidt | Dec 18, 2020 | 7 min read
The scientific community bid farewell to researchers who furthered the fields of molecular biology, virology, sleep science, and immunology, among others.
Close-up shot of smooth cauliflower polyps
Comprehensive Atlas of Reef-Building Coral’s Cells Created
Christie Wilcox, PhD | May 13, 2021 | 5 min read
Single-cell RNA sequencing helps to catalog the dozens of cell types present in a stony coral, including its elusive immune cells.
Toward a “Clickable Plant”
Jane Salodof Macneil | Feb 15, 2004 | 9 min read
By conscious design, plant genomics initiatives have devoted initial resources to new technology development. Part of that money went to developing functional genomics approaches, and part to new sequencing technologies.
The Scientist Staff | Mar 29, 2024
Pinpointing the Culprit
Rachel Berkowitz | Jun 1, 2017 | 8 min read
Identifying immune cell subsets with CyTOF
A Test Bed for Budding Technologies
Aileen Constans | Jul 4, 2004 | 6 min read
DELETION BY DESIGN:Courtesy of Guci GiaeverThe deletion cassette module used to delete each yeast gene contains two 74-basepair tags upstream and downstream (UPTAG and DNTAG) of the KanMX gene, which confers resistance to the drug geneticin. UPTAG and DNTAG contain 18 basepairs of genomic sequence to flank the yeast's open reading frame, and U1 and U2, or D1 and D2 PCR primers for amplifying a unique 20-basepair TAG region-the so-called molecular barcode. A second round of PCR adds 45 base-pairs

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