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tag microarray cell molecular biology neuroscience

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 rendering of a human brain in blue on a dark background with blue and white lines surrounding the brain to represent the construction of new connections in the brain.
Defying Dogma: Decentralized Translation in Neurons
Danielle Gerhard, PhD | Sep 8, 2023 | 10+ min read
To understand how memories are formed and maintained, neuroscientists travel far beyond the cell body in search of answers.
Researchers in George Church&rsquo;s lab modified wild type ADK proteins (left) in <em >E.coli</em>, furnishing them with an nonstandard amino acid (nsAA) meant to biocontain the resulting bacterial strain.
A Pioneer of The Multiplex Frontier
Rashmi Shivni, Drug Discovery News | May 20, 2023 | 10 min read
George Church is at it again, this time using multiplex gene editing to create virus-proof cells, improve organ transplant success, and protect elephants.
Scorpion tags tumors
Amy Coombs | Oct 1, 2007 | 3 min read
Fluorescence indicates chlorotoxin binding to medulloblastoma cells in a mouse (right). Credit: Image by Mandana Veiseh, courtesy of AACR" />Fluorescence indicates chlorotoxin binding to medulloblastoma cells in a mouse (right). Credit: Image by Mandana Veiseh, courtesy of AACR Within minutes after being stung by the scorpion known as the deathstalker (Leiurus quinquestriatus), weakness starts to kick in. The feeling quickly spreads, paralyzing its prey (typically insects) for hours -
Complete model of fly brain neuron connections
How Larval Fruit Fly Brains Convert Sensory Signals to Movement
Laura Dattaro, Spectrum | Mar 10, 2023 | 4 min read
A wiring map diagrams more than half a million neuronal connections in the first complete connectome of Drosophila and holds clues about which brain architectures best support learning.
Roll-Your-Own Microarrays
Jim Kling | Jan 6, 2002 | 3 min read
CDNA microarrays hold great promise for characterizing disease and performing genetic studies, but they're not exactly an out-of-the-box technology just yet. Often the scientists must prepare their own chips. Yet, this process is limited by the amount of space on the array itself—forcing researchers to make choices about which genes to include in their sample. Clinical microarray applications are further limited by the availability of sufficient cell numbers for testing purposes. Illumina
A mutated cell with a spiky membrane
Mutations in Autism-Linked Gene Cause Membrane Mischief
Holly Barker, PhD, Spectrum | Jan 26, 2023 | 4 min read
Inactivating TAOK1 prompts tentacle-like protrusions to form all over a neuron’s surface, revealing the gene’s role in molding the membrane.
Coronal section of a brain
Immunity-Linked Genes Expressed Differently in Brains of Autistic People
Laura Dattaro, Spectrum | Jan 11, 2023 | 4 min read
Data from postmortem brain tissues adds to the evidence that inflammation is associated with autism.
Microarrays at Work
Amy Francis | Jun 11, 2000 | 8 min read
Photo: Jeff MillerTomas A Prolla Editor's Note: To keep up with topical research trends, LabConsumer continues to address various aspects of microarray technology in 2000. "Array of Options" (May 29, 2000) described the features of commercially available systems for arraying, scanning, and analyzing microarrays, and an upcoming issue (Sept. 4, 2000) will profile the growing variety of premade arrays for various applications. To gain further access to this burgeoning field, LabConsumer entered th
State of the Microarray: Challenges and Concerns with Microarrays
Aileen Constans | Feb 9, 2003 | 6 min read
Courtesy of CombiMatrix The research community's rapid acceptance of microarrays notwithstanding, technical challenges remain. Biochip developers continue to grapple with these issues while upgrading their offerings and adding new product lines in response to research trends. Perhaps the biggest challenge to microarray technology is standardization--ensuring that data collected from different microarray platforms can be accurately compared. Compounding this problem is the absence of a unified

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