AI, Machine Learning & Computational Biology
STAT+: Data show people racing to chatbots for health advice
You’re reading the web edition of STAT’s Health Tech newsletter, our guide to how technology is transforming the life sciences. Sign up to get it delivered in your inbox every Tuesday and Thursday.
Good morning health tech readers!
In one of the last prenatal appointments before I became a dad, I remember spotting a cheeky novelty mug on the doctor’s bookshelf begging patients not to “confuse your Google search with my medical degree.” As an item below shows, chatbots are rapidly becoming the first step in people’s health journeys. Nobody’s making mugs about ChatGPT yet. Easy money, who wants in?
You’re reading the web edition of STAT’s Health Tech newsletter, our guide to how technology is transforming the life sciences. Sign up to get it delivered in your inbox every Tuesday and Thursday.
Good morning health tech readers!
In one of the last prenatal appointments before I became a dad, I remember spotting a cheeky novelty mug on the doctor’s bookshelf begging patients not to “confuse your Google search with my medical degree.” As an item below shows, chatbots are rapidly becoming the first step in people’s health journeys. Nobody’s making mugs about ChatGPT yet. Easy money, who wants in?
AI, Machine Learning & Computational Biology
Molecular Devices and STEMCELL Technologies Team Up to Automate Organoid Research
Validated on the CellXpress.ai automated cell culture system, the new workflow combines organoid biology expertise and laboratory automation to help researchers reduce variability, expand scale, and move discoveries toward impact with more confidence.
The post Molecular Devices and STEMCELL Technologies Team Up to Automate Organoid Research appeared first on GEN – Genetic Engineering and Biotechnology News.
Molecular Devices and STEMCELL Technologies said they have a developed a validated automated workflow that can be used with STEMCELL’s IntestiCult
Plus organoid growth medium for human intestinal organoids culture on the Molecular Devices CellXpress.ai automated cell culture system.
Available as a downloadable protocol, the workflow provides researchers with a ready-to-implement approach to automating organoid culture, helping reduce hands-on time and experimental variability while enabling more consistent, scalable generation of human-relevant research models and accelerating discovery, according to an official at Molecular Devices.
The workflow marks the first milestone in a strategic collaboration to automate STEMCELL’s portfolio of organoid culture kits on the CellXpress.ai system. By combining STEMCELL’s expertise in organoid biology with Molecular Devices’ automation capabilities, the companies aim to help researchers more easily adopt and scale human-relevant models, reducing barriers to implementation and accelerating research workflows in laboratories worldwide, explained Mary Duseau, president of Molecular Devices.
Under the collaboration, Molecular Devices develops and validates automated workflows, while STEMCELL provides tissue-specific science for performance criteria and cell-based functional characterization to support protocol development and validation.
“Organoids have the potential to give researchers a more human-relevant view of disease and treatment response, but their broader use depends on making these models easier to implement at scale,” continued Duseau. “This collaboration is an important step toward giving more scientists practical access to advanced cellular models while freeing them to focus on the biological questions that can inform the development of better therapies.”
The workflow reportedly enables automated culture, monitoring, and analysis of human intestinal organoids within a standardized process on the CellXpress.ai system. Researchers can implement the validated protocol as provided or adapt it to meet specific experimental requirements, providing flexibility for a range of organoid research applications, noted Allen Eaves, PhD, president and CEO of STEMCELL Technologies.
“This collaboration helps make advanced organoid workflows more accessible to scientists working across drug discovery, disease research, and translational biology,” he said. “Together, we’re enabling researchers to combine well-established organoid culture systems with automation, supporting the adoption of new approach methodologies (NAMs) and making it easier to generate reproducible results and scale their work as research needs evolve.”
The companies plan to evaluate additional organoid models and workflows for automation on the CellXpress.ai system, creating a portfolio of validated applications for drug discovery, disease modeling, toxicology, and translational research.
The post Molecular Devices and STEMCELL Technologies Team Up to Automate Organoid Research appeared first on GEN - Genetic Engineering and Biotechnology News.
AI, Machine Learning & Computational Biology
Virtual biotech company puts thousands of AI scientist agents to work on drug discovery
The latest company to spin out of a Stanford Medicine lab is a biotech undertaking with 37,000 employees—and none of them are human. There’s no lab space, no lunch breaks and no payroll. It’s an artificial intelligence-powered virtual biotech company t…
AI, Machine Learning & Computational Biology
AI is changing the talent biotech companies compete to hire
As AI becomes more embedded in biotech R&D, companies are competing for professionals who can bridge biology, machine learning, data and engineering. Recruiting expert Darren Nelson explains which capabilities are becoming hardest to find—and why.
-
Fierce Biotech6 months ago
Scientists turn pig semen extract into eye drops that kill cancer in mice
-
Endpoints News6 months ago
Novartis to pay $2B upfront to take next-gen PI3Kα inhibitor from Synnovation
-
Uncategorized6 months agoNovartis buys Synnovation’s PI3Kα inhibitors for $3 billion
-
Nature Biotechnology6 months ago
Sustained nitric oxide production by engineered E. coli remodels the tumor microenvironment and potentiates immunotherapy
-
Uncategorized5 months agoOptical Pooled CRISPR Screen Reveals Regulators of NF-κB Dynamics in Human Cells
-
Uncategorized4 months ago
Relay’s PI3Kα inhibitor clears efficacy bar in Phase 2 vascular anomalies study
-
STAT News – Biotech6 months agoSTAT+: In private meetings, White House works to win pharma companies’ support for drug pricing bill
-
Nature Biotechnology6 months ago
Mapping cis-regulatory mutations at scale in sorghum enables modulation of gene expression
Scan to Read