iPSC Derived Cell Lines Products & Reviews

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iPSC Derived Cell Lines

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ioGlutamatergic Neurons human iPSC derived glutamatergic neurons

bit.bio

A highly defined, scalable, and consistent source of human central nervous system (CNS) neurons. ioGlutamatergic Neurons, part of the bit.bio ioCells portfolio, are reprogrammed from human induced pluripotent stem cells (iPSC) using bit.bio's precise reprogramming technology: opti-ox™ (optimised inducible overexpression).

5.0/5.0
|1 Review



ioGlutamatergic Neurons Huntington's Disease HTT 50CAG/WT Human iPSC-derived glutamatergic neurons

bit.bio

A highly defined, scalable, and consistent source of human central nervous system (CNS) neurons carrying the disease-relevant 50 CAG trinucleotide repeat expansion associated with Huntington’s disease.  ioGlutamatergic Neurons HTT 50CAG/WT have been reprogrammed from human-induced pluripotent stem cells (iPSCs) using bit.bio’s precise reprogramming technology: opti-ox™ (optimized inducible overexpression).

0.0/5.0
|0 Reviews

ioMicroglia Human iPSC-derived microglia

bit.bio

ioMicroglia are human induced pluripotent stem cell (iPSC)-derived microglia, precision reprogrammed using opti-ox™ technology. Within 10 days post-revival, ioMicroglia are ready for experimentation, expressing (>90%) key markers, including TMEM119, P2RY12, and IBA1. ioMicroglia display key functional traits including phagocytosis and proinflammatory cytokine secretion and can be co-cultured with ioGlutamatergic Neurons™.

0.0/5.0
|0 Reviews
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Isolated Immune Cells

BioIVT

Isolated immune cells play a crucial role across the stages of drug discovery and development from biomarker and target identification through screening and safety assessment to manufacturing. They can be used to create disease models, cell lines, gene editing techniques and more.

0.0/5.0
|0 Reviews

TARGATT™ iPSCs Kits

Applied StemCell

Build tomorrow’s cell therapies and cell-based disease models using TARGATT™ Human Induced Pluripotent Stem Cell (hiPSC) Kits. With the ability to efficiently and site-specifically insert 20+ kb of DNA (more with nested reactions), TARGATT™ hiPSC technology enables expression of large proteins and multi-protein complexes in hiPSC-derived human cell lines.

0.0/5.0
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axoCells™ Human iPSC-Derived Motor Neuron Cells, Media and Supplement kit, male donor, ≥2 million cells

Axol Bioscience

axoCells Human iPSC-Derived Motor Neurons (=2 million cells), Motor Neuron Maintenance Media (200ml), Motor Neuron Accelerator Supplement (1 ml), GDNF (10 µg), BDNF (10 µg), CNTF (20 µg), optimized for maximum post-thaw recovery of motor neurons. Motor neurons made from iPSCs generated from a 74-year-old male donor's pulmonary fibroblasts.

0.0/5.0
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