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tag scientific illustration cell molecular biology developmental biology evolution

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.
Infusion of Artificial Intelligence in Biology
Meenakshi Prabhune, PhD | Feb 23, 2024 | 10 min read
With deep learning methods revolutionizing life sciences, researchers bet on de novo proteins and cell mapping models to deliver customized precision medicines.
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.
Genes and Cells In Today's Biology
Wh Massover | Oct 19, 1986 | 2 min read
MOLECULAR CELL BIOLOGY James DarneD, Harvey Lodish and David Baltimore. Freeman (Scientific American Books), New York, 1986. 1222 pp., illus. $42.95.   Molecular Cell Biology is a gigantic new textbook attempting to integrate molecular and cellular bioscience into a "new biology." The book's 25 chapters are divided into four groups. The first group discusses research history, chemical molecules, biochemical metabolism, cytology, subcellular organelles, research models and tools, and basic p
Different colored cartoon viruses entering holes in a cartoon of a human brain.
A Journey Into the Brain
Danielle Gerhard, PhD | Mar 22, 2024 | 10+ min read
With the help of directed evolution, scientists inch closer to developing viral vectors that can cross the human blood-brain barrier to deliver gene therapy.
A Periodic Table for Biology
John Torday | Jun 20, 2004 | 5 min read
COOPERATIVE CELLS:Courtesy of Michael CarrollThe evolution of complex biologic organisms began with the symbiotic relationship between pro- and eukaryotes (I). This relationship gave rise to mitochondria (II), and the resulting diversity of unicellular organisms (III) led to their metabolic cooperativity (IV) mediated by ligand-receptor interactions and cell-cell signaling. Natural selection generated an increasing complexity (V). Failed homeostatic signaling (VI) recapitulates hylogeny/ontogeny
Cartoon of scientist deciding whether to go down the path of well-studied genes or that of the neglected genes. 
Stepping Into the Unknome
Danielle Gerhard, PhD | Mar 8, 2024 | 5 min read
A database of neglected genes may help unlock the mysteries hiding in the overlooked regions of the proteome.
A Summing Up, and a Look Ahead, in Biology
Patrick Wigge | Jun 11, 2000 | 5 min read
Illustration: A. Canamucio Biology today, though uncovering more and more knowledge at an amazingly rapid rate, is more specialized, fragmented, and incomprehensible to the layperson than ever. Part of this is inevitable, due to the rapid expansion of knowledge brought about by the great advances of molecular techniques. However, disciplinary boundaries are also part of the problem. Could we not try to overcome such obstacles and integrate some of the many strands of knowledge, to see what we mi
Cell Biology Leads Way As Biological Sciences Progress, But Experts Are Wondering Where All The Jobs Have Gone
Susan L-J Dickinson | Dec 12, 1993 | 8 min read
As more researchers flock to the popular field, observers fear a widening gap between supply and demand When scientists convene in New Orleans next week for the 33rd annual meeting of the American Society for Cell Biology (ASCB), nine symposia, 20 minisymposia, and countless informal gatherings are sure to focus on the recent achievements and continuing progress in this exciting and rapidly expanding scientific field. There is likely to be little excitement in the air, however, concerning the
Cellular DNA and epigenetics
Do Epigenetic Changes Influence Evolution?
Katarina Zimmer | Nov 1, 2022 | 10+ min read
Evidence is mounting that epigenetic marks on DNA can influence future generations in a variety of ways. But how such phenomena might affect large-scale evolutionary processes is hotly debated.

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