Sometimes morphology tells the story before the data does.
High-purity RealDRG human iPSC-derived sensory neurons stained for ISL1 (white) and TUJ1 (red). This consistency helps make downstream assays more reproducible.
#painresearch#iPSC#neuroscience#drugdiscovery
📰From the Field: Gene supplementation for LBSL
Annals of Neurology shows AAV9-DARS2 improves mitochondrial function and axonal growth in iPSC sensory neurons, with in vivo rescue
Anatomic Senso-DM™ enabled patient sensory neuron modeling
🔗https://t.co/yJSijiMVem
New protocol 🚨 Co-culture RealDRG™ sensory neurons with RealDHN™ dorsal horn neurons on the eNUVIO OMEGA4 to model functional pain circuits and sensory–spinal connectivity.
Flexible workflow: use RealDRG™ alone or swap in your cell type of choice.
#NotYourAverageNeuron
Last weekend, Team Anatomic joined #Walk4CMT Minneapolis 💙 Proud to support an important cause, raise awareness, and help fund progress toward a cure. Thanks to everyone who walked with us and @cmtausa for organizing!
NEW Human Trigeminal Neurons for #MigraineResearch!
Phase-contrast images from our newest human iPSC-derived trigeminal neurons show high neuronal purity-no mitomycin C needed. Follow us for updates on functional characterization of migraine & pain targets #NotYourAverageNeuron
Motor neurons alone can't explain ALS or CMT. Schwann Cell Precursors reveal how disrupted glial-neuronal crosstalk drives disease. Co-cultures model early pathogenesis, glial dysfunction, and myelination defects more accurately
#CompleteTheCircuit#NotYourAverageNeuron
Add These Publications to Your Reading List📚
Explore all publications featuring Anatomic’s products in one place-a fast way to find relevant assays & new applications
See how our models are advancing discovery: https://t.co/AQ0c7xXrqm
#CompleteTheCircuit#NotYourAverageNeuron
The Kolber Lab at UTD has launched a core facility featuring a high-content screening assay for analgesic discovery using the Axion BioSystems Maestro Pro, now featured in their latest publication
Read the article here:
https://t.co/kEAHGnEwAf
Team Anatomic hit the pavement together for the #Walk4CMT 💙 Grateful to be part of a community that's raising awareness, showing support, and walking toward a cure. Huge to @cmtausa for putting on a well organized and meaningful event!
Keepin it local🤙🏼Attended the 3rd MN Organoid Symposium put on by the @umnmedschool & @MayoClinic earlier this week. Big shoutout to our Scitech intern Devanshi who gave her first poster presentation! Reach out to learn more about applications in this space➡️[email protected]
🌉Vince will be speaking at the @AxionBioSystems World Tour: San Francisco User Group Meeting on April 17, 2025!
🎤“Completing the Circuit: Advanced hiPSC-Based Models of the Peripheral Nervous System for Disease Modeling and Drug Discovery"
🔗Register https://t.co/h9GEnkBxfZ
💡 Enhance your research! Integrate Schwann cell precursors (SCPs) into your motor neuron (MNs) cultures
As SCPs mature, they migrate & align along axons, visualized using immunofluorescent staining—S100b/SOX10 (SCPs) & TUJ1 (MNs)
#CompleteTheCircuit#ALSResearch
💎Check-out the purity💎 Images of RealDHN hiPSC-derived dorsal horn neuron cultures, generated without the need for genetic engineering or Mitomycin C treatment
Visit https://t.co/Kd309EtnQD for more info on the molecular and functional characterization of the neurons!
Anatomic has been focused on developing CIPN-related assays for the last few years. The FDA’s new draft guidance underscores the need for better study designs and endpoints in CIPN research.
Read the full guidance below!
#CompleteTheCircuit#CIPNResearch
💎Check-out the purity💎 Images of co-cultures of RealSCP, hiPSC-derived Schwann cell precursors, and RealDRG, hiPSC-derived sensory neurons, generated without the need for genetic engineering or Mitomycin C
#CompleteTheCircuit#NotYourAverageNeuron
It’s always tough to pick favorites when there’s so much exciting data to explore! 🤩 We have compiled our favorite data from over the years onto a new page for your easy access
Check out our data highlights page at:
https://t.co/bwLpk7DhmH
Harnessing a more physiological in vitro model for CIPN! Dr. Nanna Elman Andersen’s Ph.D. thesis explores chemotherapy-induced neurotoxicity using hiPSC-derived Schwann cells & sensory neurons, studying paclitaxel, vincristine & bortezomib
https://t.co/xZ5On5jV3y