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tag tools microbiology cell molecular biology developmental biology

Developmental Biology
The Scientist Staff | Jan 3, 1999 | 3 min read
L.B. Zimmerman, J.M. De Jesús-Escobar, R.M. Harland, "The Spemann organizer signal noggin binds and inactivates bone morphogenetic protein 4," Cell, 86:599-606, 1996. (Cited in more than 180 papers since publication) Comments by Richard M. Harland, Choh Hao Li professor of biochemistry and molecular biology, University of California, Berkeley Richard M. Harland Researchers had long suspected that the protein noggin's interaction with bone morphogenetic proteins (BMPs) dictated devel
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.
Developmental Biology
The Scientist Staff | Apr 1, 1996 | 3 min read
Edited by Karen Young Kreeger H. Roelink, A. Augsburger, J. Heemskerk, V. Korzh, S. Norlin, A. Ruiz i Altaba, Y. Tanabe, M. Placzek, T. Edlund, T.M. Jessell, J. Dodd, "Floor plate and motor neuron induction by vhh-1, a vertebrate homolog of hedgehog expressed by the notochord," Cell, 76:761-75, 1994. (Cited in nearly 90 publications as of February 1996) Comments by Henk Roelink, University of Washington SIGNALS FROM SONIC HEDGEHOG: Using cDNA, University of Washington's Henk Roelink and col
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.
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.
Molecular Biology
The Scientist Staff | Nov 14, 1993 | 2 min read
p.17 A.A. Levin, L.J. Sturzenbecker, S. Kazmer, T. Bosakowski, C. Huselton, G. Allenby, J. Speck, C. Kratzeisen, M. Rosenberger, A. Lovey, J.F. Grippo, "9-Cis retinoic acid stereoisomer binds and activates the nuclear receptor RXRa," Nature, 355:359-61, 1992. Arthur A. Levin and Joseph F. Grippo (Department of Toxicology and Pathology, Hoffmann-La Roche Inc., Nutley, N.J.): "The biologic activities of the all-trans (t) isomer of retinoic acid (RA) are mediated through the binding and activati
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.
Individual bacterial transcriptomes each plotted as a single point create a ring-shaped structure.
Rapidly Dividing Bacteria Coordinate Gene Expression and Replication
Kamal Nahas, PhD | Mar 15, 2024 | 4 min read
E. coli divides faster than it can replicate its genome, while simultaneously expressing its genes. Scientists recently revealed the intricate molecular coordination that makes this possible.
suzanne eaton max planck
Developmental Biologist Suzanne Eaton Found Dead in Greece
Ashley P. Taylor | Jul 9, 2019 | 2 min read
Eaton studied morphology and growth during development at the Max Planck Institute of Molecular Cell Biology and Genetics.
The figure shows two waves made of DNA double helixes representing gene expression changes in the malaria parasite and its human host. These changes reveal a synchronization between parasite and host.
Malaria Parasites Sync with Hosts’ Molecular Rhythms
Mariella Bodemeier Loayza Careaga, PhD | Sep 1, 2023 | 2 min read
Evidence of malaria parasites aligning with their human hosts may pave the way for new antimalarial agents.

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