Neural stem cell research

Growth factors and cytokines from Qkine

QkineQkine is committed to manufacturing enhanced-quality bioactive proteins to improve scientific outcomes and reproducibility. They provide a complete portfolio of animal-origin free and carrier protein-free growth factors and cytokines for neural stem cell culture.

 

30% 

Year-End Promo at BIOZOL: 30% off all products from Qkine.

 

Quote: EOY2024

Valid until: December 31st, 2024

See offer

 

hPSC-differentiation-neural-stem-cell

Neuroscience includes several areas of research such as molecular and cellular neuroscience, neurooncology, and developmental neuroscience. It seeks to understand the function or development of the nervous system in healthy conditions and in neurodegenerative diseases, neurological and psychiatric disorders, and brain cancer.

Although the field of neuroscience has made significant advancements in recent years, shedding light on many aspects of brain function, it is still challenged by the complexity of neural tissue and the availability of model systems. Advances in stem cell research have provided better models of the unique features of the brain using human induced pluripotent stem cells (hiPSCs). HiPSCs can be differentiated into many neural and glial cell types including cortical or dopaminergic neurons, astrocytes, and microglia. More complex 3D modelling using brain organoids can be generated to better recapitulate the environment of the brain and to study the cell-cell and cell-matrix interactions.

High-quality growth factors are essential for developing and maintaining robust, reproducible, and physiologically relevant neural cultures. Growth factors developed in an animal-free expression system have a higher lot-to-lot consistency and fewer contamination risks from viruses, prions, and other animal-derived ingredients. All growth factors and cytokines from Qkine pass stringent biochemical and bioactivity quality control testing, ensuring you complete confidence in the reagents for your neural stem cell cultures.

 

Growth factors for neural stem cell culture

Neural induction and maintenance

EGF (Qk011)

FGF-2 145aa (Qk025)

FGF-2 154aa (Qk027)

Noggin (Qk034)

VEGF 165 (Qk048)

FGF2-G3 145 aa (Qk052)

FGF2-G3 154 aa (Qk053)  

Neural differentiation and maturation

IGF-1 (Qk047)

BDNF (Qk050)

GDNF (Qk051)

TGF-β3 (Qk054)

Shh (Qk055)

FGF-8a (Qk059)

FGF-8b (Qk057)

NT-3 (Qk058)

Mouse EGF (Qk066)

     

Glial differentiation and maturation

Activin A (Qk001) Activin A PLUS (Qk005)

EGF (Qk011)

Follistatin-resistant Activin A (Qk035)

LIF (Qk036)

Mouse LIF (Qk018)

PDGF-AA (Qk043)

PDGF-BB (Qk044)

NRG-1 (Qk045)

IGF-1 (Qk047)

GDNF (Qk051)

NT-3 (Qk058)

CNTF (Qk063)      

 

12.12.1984

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