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tag microscope culture cell molecular biology

Microfluidics: Biology’s Liquid Revolution
Laura Tran, PhD | Feb 26, 2024 | 8 min read
Microfluidic systems redefined biology by providing platforms that handle small fluid volumes, catalyzing advancements in cellular and molecular studies.
Microscopic image of a live amoeba.
Illuminating Specimens Through Live Cell Imaging
Charlene Lancaster, PhD | Mar 14, 2024 | 8 min read
Live cell imaging is a powerful microscopy technique employed by scientists to monitor molecular processes and cellular behavior in real time.
Green and red fluorescent proteins in a zebrafish outline the animal’s vasculature in red and lymphatic system in green in a fluorescent image. Where the two overlap along the bottom of the animal is yellow.
Serendipity, Happenstance, and Luck: The Making of a Molecular Tool
Shelby Bradford, PhD | Dec 4, 2023 | 10+ min read
The common fluorescent marker GFP traveled a long road to take its popular place in molecular biology today.
A person moving the hands of a vintage clock backwards.
Synthetic Circuits Reveal the Key to Rewinding the Cellular Clock
Charlene Lancaster, PhD | Mar 12, 2024 | 4 min read
Using a circuit-based system, scientists determined the ideal transcription factor levels to promote the successful reprogramming of fibroblasts into induced pluripotent stem cells.
dna microscopy visualization RNA cDNA mRNA transcripts cell biology
New Technique Maps RNAs in Cells Without a Microscope
Kerry Grens | Jun 20, 2019 | 1 min read
DNA microscopy pinpoints the locations of transcripts by laying a grid of tags over the molecules and labeling each connection.
bacteria and DNA molecules on a purple background.
Engineering the Microbiome: CRISPR Leads the Way
Mariella Bodemeier Loayza Careaga, PhD | Mar 15, 2024 | 10+ min read
Scientists have genetically modified isolated microbes for decades. Now, using CRISPR, they intend to target entire microbiomes.
Confocal Microscopes Widen Cell Biology Career Horizons
Diana Morgan | Jul 22, 1990 | 7 min read
Innovative instruments, often jerry-built from parts of other devices, are making a wide array of new projects possible One look through something called a confocal microscope was all it took for William Sunderland to make a drastic change in his career plans. A math student with what appeared to be a bright future in computers, he peeked one day through the lens of a microscope invented in the lab where he worked. The dazzlingly detailed pictures of living cells convinced him to switch his ma
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. 
Image of pancreatic organoids under a microscope with immunofluorescent staining
Pancreatic Organoids Take the Stage
Laura Tran, PhD | Dec 1, 2023 | 2 min read
Meritxell Huch tackled her pipedream of growing three-dimensional pancreatic tissue in a dish.
Human large intestine tissue under microscope view
Mini-Guts to the Rescue: Introducing 3-D Organoid Cell Cultures
The Scientist and MilliporeSigma | Jan 19, 2022 | 2 min read
A cost-effective 3-D organoid biobank provides a versatile translational research tool.

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