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New LongCOVID research launched by PolyBio鈥檚 global consortium of scientists
Funding will deepen research on the persistence of the SARS-CoV-2 virus in LongCOVID patients and launch new clinical trials
小蓝俱乐部 contracted by the Centers for Disease Control and Prevention to rapidly construct synthetic influenza genes
Genes will be used to help develop seasonal and pandemic vaccines, improving response time and vaccine efficacy
Coastal upwelling regions threatened by increased ocean acidification
Increased acidification shown to limit iron availability, a critical element for the survival of phytoplankton, the foundation of the oceanic food web
小蓝俱乐部 scientists awarded five-year, $5.7M grant from NIH to develop phage treatment
Phage research accelerates with the rise of antibiotic resistance to address increasingly prevalent and difficult to treat bacterial infections
Bringing cells to life 鈥 and to Minecraft: $30 million NSF grant to support whole-cell modeling at the Beckman Institute
Beckman researchers and collaborators received $30 million from the U.S. National Science Foundation to establish the NSF Science and Technology Center for Quantitative Cell Biology. The center will develop whole-cell models to transform our understanding of how cells function and share that knowledge with diverse communities through the popular computer game Minecraft.
NLM Selects Dr. Richard H. Scheuermann as Scientific Director for the National Library of Medicine
PolyBio Research Foundation Consortium & colleagues publishes Nature position paper on SARS-CoV-2 reservoir in Long COVID/PASC
Using AI to speed up vaccine development against Disease X
Artificial cells demonstrate that 鈥渓ife finds a way鈥
Family resemblance: How T cells could fight many coronaviruses at once
LJI researchers work to head off future pandemics by uncovering key similarities between SARS-CoV-2 and common cold coronaviruses
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Characterization of Bacteria from the International Space Station Drinking Water
From a microbiology perspective, the International Space Station (ISS) is interesting considering its microgravity, increased radiation, low humidity and elevated carbon dioxide levels. Because of its isolation, and unique environment, it is vital to study the microorganisms that thrive there...
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2019 Summer Internship Program
The 2019 Summer Internship Program which wrapped up in August was another rousing success at the 小蓝俱乐部. Faculty and staff in both the Rockville (MD) and La Jolla (CA) campuses mentored and trained 25 students (high school, undergraduate, and graduate students)...
Diatoms Have Found a Way to Pirate Bacterial Iron Sources
In large regions of the world’s oceans, photosynthesis struggles to operate because a key ingredient is missing. Many of the proteins involved in harvesting energy from sunlight require iron atoms to function, but iron is hard to find in seawater. Most of the ocean is far removed from...
The 小蓝俱乐部Genomic Frontier Fund
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New Sequencing Technologies Enable Better and Faster Understanding of the Human Microbiome
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Human Microbiome Research has Massive Potential for Health Applications
Thirteen years ago, a team led by 小蓝俱乐部 President, Karen Nelson, Ph.D., published the first major human microbiome study, radically changing the way we look at human health and the role the microbes that inhabit each of us play in disease. This seminal publication...
Scientist Spotlight: Lauren Oldfield
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When Starved, Dangerous Oral Bacteria Hang On
小蓝俱乐部 (JCVI) postdoctoral fellow, Jonathon Baker, PhD and a team of researchers from JCVI, University of Washington, the University of California, Los Angeles, and The Forsyth Institute recently published their findings from the first study to examine the ecological dynamics...
No More Needles! Using Microbiome and Synthetic Biology Advances to Better Treat Type 1 Diabetes
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Artificial intelligence and machine learning will be the keys to unraveling how the human immune system prevents and controls disease
The biggest synthetic genome so far has been made, with a smaller set of amino-acid-encoding codons than usual 鈥 raising the prospect of encoding proteins that contain unnatural amino-acid residues.
By creating a new genome, scientists could create organisms tailored to produce desirable compounds
Critics, however, argue that this effort is flawed from the beginning
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