CRA-024781

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Reagent Code: #99350
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CAS Number 783355-60-2

science Other reagents with same CAS 783355-60-2

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scatter_plot Molecular Information
Weight 397.42 g/mol
Formula C₂₁H₂₃N₃O₅
badge Registry Numbers
MDL Number MFCD10565969
inventory_2 Storage & Handling
Storage -20℃

description Product Description

CRA-024781 is a potent and selective inhibitor of the neuronal K+-Cl- cotransporter isoform 2 (KCC2), a key regulator of chloride homeostasis in neurons. It is primarily used in research settings to study GABAergic signaling and neuronal excitability in the central nervous system. By inhibiting KCC2, CRA-024781 shifts the intracellular chloride concentration, reducing inhibitory GABAergic tone and increasing neuronal activity. This makes it a valuable tool for investigating potential treatments for neurological disorders such as epilepsy, neuropathic pain, anxiety, depression, and schizophrenia. Researchers also explore its effects on neuroplasticity, synaptic function, and inflammation-related pathways in the brain. Its applications remain experimental, with ongoing studies to assess efficacy, safety, and therapeutic potential.

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inventory 1mg
10-20 days ฿3,390.00

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CRA-024781
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CRA-024781 is a potent and selective inhibitor of the neuronal K+-Cl- cotransporter isoform 2 (KCC2), a key regulator of chloride homeostasis in neurons. It is primarily used in research settings to study GABAergic signaling and neuronal excitability in the central nervous system. By inhibiting KCC2, CRA-024781 shifts the intracellular chloride concentration, reducing inhibitory GABAergic tone and increasing neuronal activity. This makes it a valuable tool for investigating potentia

CRA-024781 is a potent and selective inhibitor of the neuronal K+-Cl- cotransporter isoform 2 (KCC2), a key regulator of chloride homeostasis in neurons. It is primarily used in research settings to study GABAergic signaling and neuronal excitability in the central nervous system. By inhibiting KCC2, CRA-024781 shifts the intracellular chloride concentration, reducing inhibitory GABAergic tone and increasing neuronal activity. This makes it a valuable tool for investigating potential treatments for neurological disorders such as epilepsy, neuropathic pain, anxiety, depression, and schizophrenia. Researchers also explore its effects on neuroplasticity, synaptic function, and inflammation-related pathways in the brain. Its applications remain experimental, with ongoing studies to assess efficacy, safety, and therapeutic potential.

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