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tag germany microbiology

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Jeffrey Perkel | Apr 29, 2001 | 2 min read
Antigen-specific T lymphocytes must be quantified in order to gauge the quality of an immune response. Typically this is accomplished using cytotoxicity assays or limiting dilution analysis (LDA), but these techniques are lengthy and provide indirect quantitation. Also, LDA cannot count nonproliferative cells. In 1996, Stanford University's Mark Davis developed an alternative strategy that overcomes these problems.1 Davis generated phycoerythrin-conjugated tetramers of human lymphocyte antigen (
Illustration of newly discovered mechanism allowing kinesin to “walk” down a microtubule. A green kinesin molecule with an attached yellow fluorophore is shown passing through a blue laser as it rotates step by step along a red and purple microtubule, fueled by blue ATP molecules that are hydrolyzed into orange ADP and phosphate groups.
High-Resolution Microscope Watches Proteins Strut Their Stuff
Holly Barker, PhD | Mar 31, 2023 | 3 min read
Modification on a high-resolution fluorescent microscopy technique allow researchers to track the precise movements of motor proteins. 
An Italian greyhound curled up by a window
Opinion: A Dog Has Caught Monkeypox from One of Its Owners, Highlighting Risk of the Virus Infecting Pets and Wild Animals
Amy Macneill, The Conversation | Aug 19, 2022 | 5 min read
The monkeypox virus can easily spread between humans and animals. A veterinary virologist explains how the virus could go from people to wild animals in the USand why that could be a problem. 
A white lab mouse peers over the wall of a sprawling maze
Bacterial Metabolite May Regulate Cognition in Mice
Sophie Fessl, PhD | Jun 3, 2022 | 3 min read
Microbes in the gut influence the death of support cells in the brain by producing isoamylamine, a study suggests.
small striped mammal
Gut Microbes Help Ground Squirrels Endure Hibernation
Alejandra Manjarrez, PhD | Jan 27, 2022 | 4 min read
By breaking down urea, the animals’ gut bacteria recycle nitrogen, which can be then used to build new molecules during prolonged fasting.
Collage of images including sperm, bacteria, coral, and an illustration of a researcher
Our Favorite Cell and Molecular Biology Stories of 2021
Jef Akst | Dec 2, 2021 | 3 min read
Beyond The Scientist’s coverage of COVID-19’s molecular underpinnings were many other stories highlighting the advances made in scientists’ understanding of the biology of cells.
Updated Mar 8
A healthcare worker holds up three syringes with clear medicine
To Booster or Not: Scientists and Regulators Debate
Jef Akst | Sep 16, 2021 | 7 min read
President Biden’s planned rollout of additional COVID-19 vaccine doses is set to begin next week, but questions remain about who should get them.
Measuring Membrane Proteins with Mass-Sensitive Particle Tracking
The Scientist Creative Services Team in collaboration with Refeyn | May 26, 2021 | 2 min read
Researchers will discuss a new mass photometry method that characterizes molecules in their native state on supported lipid bilayers.
A scanning electron micrograph of a coculture of E. coli and Acinetobacter baylyi. Nanotubes can be seen extending from the E. coli.
What’s the Deal with Bacterial Nanotubes?
Sruthi S. Balakrishnan | Jun 1, 2021 | 10+ min read
Several labs have reported the formation of bacterial nanotubes under different, often contrasting conditions. What are these structures and why are they so hard to reproduce?
Alfred Pühler
Cormac Sheridan | Jan 12, 2009 | 3 min read
Alfred Pühler Forty years (and counting) at the forefront of microbiology research have not dimmed Pühler's infectious enthusiasm or voracious work ethic. By Cormac Sheridan Alfred Pühler has been a powerhouse in German microbiological research—initially in the area of plant-microbe interactions and later in industrial microbiology—over the past four decades. But he actually started out in nuclear physics, obtain

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