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tag chronic pain culture disease medicine developmental biology

The MSC: Regeneration Orchestrator
The Scientist Staff | Nov 16, 2020 | 7 min read
Scientists uncover the promise of mesenchymal stem cells (MSCs), also known as medicinal signaling cells, to modulate the immune system and regenerate tissue.
3d rendered medically accurate illustration of a human embryo anatomy
The Ephemeral Life of the Placenta
Danielle Gerhard, PhD | Dec 4, 2023 | 10+ min read
Recent advances in modeling the human placenta, the least understood organ, may inform placental disorders like preeclampsia.
Belief and Narrative
David Morris(dmorris@the-scientist.com) | Mar 27, 2005 | 7 min read
Culture shapes human pain. Lesions, neurons, neu rotransmitters, and genes may provide a starting point for an exploration of pain's roots in animal models, but among humans, it is our culture as well as our biology that invariably shapes pain.
Guts and Glory
Anna Azvolinsky | Apr 1, 2016 | 9 min read
An open mind and collaborative spirit have taken Hans Clevers on a journey from medicine to developmental biology, gastroenterology, cancer, and stem cells.
The Science of Stretch
Helene M. Langevin | May 1, 2013 | 10 min read
The study of connective tissue is shedding light on pain and providing new explanations for alternative medicine.
Glial Ties to Persistent Pain
Mark R. Hutchinson | Jan 1, 2018 | 10 min read
Immune-like cells in the central nervous system are now recognized as key participants in the creation and maintenance of persistent pain.
The Little Cell That Could
Megan Scudellari | Jul 1, 2012 | 7 min read
Critics point out that cell therapy has yet to top existing treatments. Biotech companies are setting out to change that—and prove that the technology can revolutionize medicine.
Alternative Medicines
The Scientist | Jul 1, 2012 | 10+ min read
As nonconventional medical treatments become increasingly mainstream, we take a look at the science behind some of the most popular.
Neuroaesthetics
Anjan Chatterjee | May 1, 2014 | 10+ min read
Researchers unravel the biology of beauty and art.
The Spin on Rotary Culture
A. J. S. Rayl | Oct 27, 2002 | 9 min read
Image: Courtesy of Leoncio A. Vergara, UTMB, Marguerite Sognier & Nasa/JSC Musculoskeletal Tissue Engineering Lab SPACE-AGE CELL CULTURE: This 3-D human rhabdomyosarcoma cell aggregate was grown in a disposable High Aspect-Ratio Vessel (HARV) in Synthecon's Rotating Cell Culture System. Biotechnology advances at a furious pace, yet for the most part, cell culture remains fixed in the past. Over the last decade, however, a new technology has emerged that models the microgravity of space--

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