PSC Neural Induction Medium
Gibco™

PSC Neural Induction Medium

Gibco™ PSC Neural Induction Medium is a serum-free medium that provides high efficiency neural induction of human pluripotent stems cells자세히 알아보기
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카탈로그 번호수량
A1647801500 mL
카탈로그 번호 A1647801
제품 가격(KRW)
883,000
온라인 행사
Ends: 30-Sep-2026
981,000
할인액 98,000 (10%)
Each
수량:
500 mL
제품 가격(KRW)
883,000
온라인 행사
Ends: 30-Sep-2026
981,000
할인액 98,000 (10%)
Each
Gibco™ PSC Neural Induction Medium is a serum-free medium that provides high efficiency neural induction of human pluripotent stems cells (PSCs) in only 7 days. Unlike existing methodologies, use of PSC Neural Induction Medium does not require the intermediary step of embryoid body (EB) formation, which adds time, labor, and variability. Neural Stem Cells (NSCs) generated using PSC Neural Induction Medium have high expression of NSC markers and can be further differentiated into other neural cell types.

PSC Neural Induction Medium enables:

Rapid induction of NSCs—high efficiency neural induction in only 7 days, without EB formation
Scalable production of NSCs:—generate >20 million NSCs starting from 1 million PSCs
Generation of high quality NSCs—resulting NSCs can be cryopreserved, expanded, and differentiated

Rapid Induction of NSCs
PSC Neural Induction Medium simplifies the NSC generation workflow by eliminating the need to form EBs or rosettes. By removing this step, PSC Neural Induction Medium enables a more reproducible process with high efficiency neural induction in only 7 days.

Scalable Production of NSCs
PSC Neural Induction Medium is a robust medium that has been shown to generate over 20 million NSCs from 1 million PSCs. The medium has been tested with multiple hPSC lines including hiPSCs derived from use of Episomal iPSC Reprogramming Vectors and the CytoTune™-iPS Sendai Reprogramming Kit.

Generation of High Quality NSCs
Neural stem cells generated using PSC Neural Induction Medium have >80% expression of Sox1, Sox2, and Nestin (NSC markers), and <1% expression of Oct4 (pluripotency marker). In addition, expanded NSCs maintained phenotype, exhibited normal karyotype, and could be differentiated into neurons, astrocytes, and oligodendrocytes.
For Research Use Only. Not for use in diagnostic procedures.
사양
세포 유형Embryonic Stem Cells (ESCs), Induced Pluripotent Stem Cells (iPSCs), Human Stem Cells
제품 유형PSC Neural Induction Media
수량500 mL
Serum LevelSerum-free
Unit SizeEach
구성 및 보관
• 500 mL Basal medium (store at 2–8°C and protect from light)
• 10 mL Supplement (store at -5 to -20°C and protect from light)

인용 및 참조 문헌 (18)

인용 및 참조 문헌
Abstract
A comprehensive protocol for efficient differentiation of human NPCs into electrically competent neurons.
Authors:Romito E,Battistella I,Plakhova V,Paplekaj A,Forastieri C,Toffolo E,Musio C,Conti L,Battaglioli E,Rusconi F
Journal:Journal of neuroscience methods
PubMed ID:39053772
Efficient and rapid derivation of primitive neural stem cells and generation of brain subtype neurons from human pluripotent stem cells.
Authors:Yan Y, Shin S, Jha BS, Liu Q, Sheng J, Li F, Zhan M, Davis J, Bharti K, Zeng X, Rao M, Malik N, Vemuri MC,
Journal:
PubMed ID:24113065
'Human pluripotent stem cells (hPSCs), including human embryonic stem cells and human induced pluripotent stem cells, are unique cell sources for disease modeling, drug discovery screens, and cell therapy applications. The first step in producing neural lineages from hPSCs is the generation of neural stem cells (NSCs). Current methods of ... More
New type of Sendai virus vector provides transgene-free iPS cells derived from chimpanzee blood.
Authors:Fujie Y, Fusaki N, Katayama T, Hamasaki M, Soejima Y, Soga M, Ban H, Hasegawa M, Yamashita S, Kimura S, Suzuki S, Matsuzawa T, Akari H, Era T,
Journal:
PubMed ID:25479600
'Induced pluripotent stem cells (iPSCs) are potentially valuable cell sources for disease models and future therapeutic applications; however, inefficient generation and the presence of integrated transgenes remain as problems limiting their current use. Here, we developed a new Sendai virus vector, TS12KOS, which has improved efficiency, does not integrate into ... More
Differentiation of Human Neural Stem Cells into Motor Neurons Stimulates Mitochondrial Biogenesis and Decreases Glycolytic Flux.
Authors:O'Brien LC, Keeney PM, Bennett JP,
Journal:
PubMed ID:25892363
Differentiation of human pluripotent stem cells (hPSCs) in vitro offers a way to study cell types that are not accessible in living patients. Previous research suggests that hPSCs generate ATP through anaerobic glycolysis, in contrast to mitochondrial oxidative phosphorylation (OXPHOS) in somatic cells; however, specialized cell types have not been ... More
Induced pluripotent stem cell - derived neurons for the study of spinocerebellar ataxia type 3.
Authors:Hansen SK, Stummann TC, Borland H, Hasholt LF, Tümer Z, Nielsen JE, Rasmussen MA, Nielsen TT, Daechsel JC, Fog K, Hyttel P
Journal:Stem Cell Res
PubMed ID:27596958
'The neurodegenerative disease spinocerebellar ataxia type 3 (SCA3) is caused by a CAG-repeat expansion in the ATXN3 gene. In this study, induced pluripotent stem cell (iPSC) lines were established from two SCA3 patients. Dermal fibroblasts were reprogrammed using an integration-free method and the resulting SCA3 iPSCs were differentiated into neurons. ... More