α-Synuclein aggregate binder 3
α-Synuclein aggregate binder 3 is a probe for α-synuclein aggregates. The Ki value of α-Synuclein aggregate binder 3 for binding to sonicated α-synuclein fibrils is 0.8 nM. α-Synuclein aggregate binder 3 can be used for α-synuclein imaging, as well as for detecting disorders associated with α-synuclein aggregation, such as Parkinson's disease, dementia with Lewy bodies, and multiple system atrophy.
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- CAS No.: 2648041-95-4
- 화학식: C15H13FN4
- 분자량:268.29
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보관:
Please store the product under the recommended conditions in the Certificate of Analysis.
All α-synuclein Isoforms
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Biological Activity
제품 설명
IC50 & Target
[1]|
α-synuclein Aggregation |
In Vitro
α-Synuclein aggregate binder 3 (compound 3) binds to sonicated α-synuclein fibrils with a Ki of 0.95 nM[1].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
Chemical Information
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CAS No. 2648041-95-4
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분자량 268.29
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화학식 C15H13FN4
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SMILES
FC1=NC=CC(C2=CC(C3=CC=C(NC)C=C3)=NN2)=C1
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선적
Room temperature in continental US; may vary elsewhere.
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보관
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocol
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Human pluripotent stem cell midbrain dopaminergic neuron differentiation
Human pluripotent stem cells are directed toward midbrain dopaminergic neurons by first inducing a neural floor-plate-like progenitor state, then patterning cells with ventralizing SHH signaling and midbrain/WNT-FGF cues, and finally maturing progenitors into neurons expressing dopaminergic markers such as TH, NURR1/NR4A2, PITX3, DAT/SLC6A3, VMAT2/SLC18A2, GIRK2/KCNJ6, FOXA2, LMX1A, and EN1. The main readouts are loss of pluripotency, acquisition of FOXA2+/LMX1A+ midbrain floor-plate progenitors, emergence of βIII-tubulin+/MAP2+ neurons, and production of TH+ dopaminergic neurons with molecular, dopamine-release, and electrophysiological features of midbrain dopaminergic identity.
순도&문서
References
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)