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Results for "

neuro-developmental disorders

" in MedChemExpress (MCE) Product Catalog:

11

Inhibitors & Agonists

2

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-139580

    CAD-9303

    iGluR Neurological Disease
    Plazinemdor is a N-methyl-D-aspartate(NMDA) receptor positive allosteric modulator. Plazinemdor can be uses in the research of psychiatric, neurological, and neurodevelopmental disorders, as well as diseases of the nervous system ..
    Plazinemdor
  • HY-138830

    Histone Demethylase Neurological Disease
    TAK-418 is a selective, orally active LSD1 (KDM1A) enzyme inhibitor with an IC50 of 2.9 nM. TAK-418 unlocks aberrant epigenetic machinery and improves autism symptoms in neurodevelopmental disorder models .
    TAK-418
  • HY-148130A

    RG6091 sodium; RO7248824 sodium

    E1/E2/E3 Enzyme Others
    Rugonersen sodium is a locked-nucleic acid (LNA)- modified antisense oligonucleotides (ASOs), and results in reduction of ubiquitin-protein ligase E3A (UBE3A) silencing. Angelman syndrome (AS) sodium is a severe neurodevelopmental disorder caused by the loss of neuronal E3 ligase UBE3A, Rugonersen has been used for AS reasearch .
    Rugonersen sodium
  • HY-172127

    AMPK CDK Neurological Disease Cancer
    NUAK1-IN-1 (Compound 9) is a NUAK1 (IC50 of 5.012 nM) and CDK4 inhibitor. NUAK1-IN-1 can be used in cancer, neurodevelopmental disorders and Alzheimer's disease research .
    NUAK1-IN-1
  • HY-172128

    AMPK CDK Neurological Disease Cancer
    NUAK1-IN-2 (Compound 24) is a NUAK1 (IC50 of 3.162 nM) and CDK2/4/6 inhibitor. NUAK1-IN-2 can be used in cancer, neurodevelopmental disorders and Alzheimer's disease research .
    NUAK1-IN-2
  • HY-106769A

    (3aR,9aR)-GR50360 hydrochloride

    Others Neurological Disease
    (3aR,9aR)-Fluparoxan ((3aR,9aR)-GR50360) hydrochloride is a compound that can be used to synthesize and prevent and improve neurodevelopmental disorders .
    (3aR,9aR)-Fluparoxan hydrochloride
  • HY-120229

    Protein Prenyltransferase Neurological Disease
    GGTI-2147 is a potent GGTase I inhibitor. GGTI-2147 blocks geranyl-geranylation of Rap1A and reduces the activity of Rac1 (one of substrates for GGTI) and ameliorates the OGD/R-induced neuronal apoptosis.GGTI-2147 can be used for neurodevelopmental disorders research, such as autism, depression, and schizophrenia .
    GGTI-2147
  • HY-148130

    RG6091; RO7248824

    E1/E2/E3 Enzyme Others
    Rugonersen (RG6091; RO7248824) is a locked-nucleic acid (LNA)- modified antisense oligonucleotides (ASOs), and results in reduction of ubiquitin-protein ligase E3A (UBE3A) silencing. Angelman syndrome (AS) is a severe neurodevelopmental disorder caused by the loss of neuronal E3 ligase UBE3A, Rugonersen has been used for AS reasearch .
    Rugonersen
  • HY-138830A

    Histone Demethylase Neurological Disease
    (S,S)-TAK-418 is a potent inhibitor of lysine-specific demethylase 1 (LSD1), demonstrating significant normalization of aberrant gene expression in neurodevelopmental disorders. (S,S)-TAK-418 also ameliorates ASD-like behaviors in rodent models affected by maternal exposure to valproate or poly I:C. (S,S)-TAK-418 modulates gene expression differently across various models and ages, indicating its potential as a therapeutic agent for conditions like autism spectrum disorder and schizophrenia.
    (S,S)-TAK-418
  • HY-106769B

    (3aR,9aR)-GR50360

    Adrenergic Receptor Neurological Disease
    (3aR,9aR)-Fluparoxan ((3aR,9aR)-GR50360) is a highly selective and potent α2B adrenaline receptor antagonist with the activity of preventing, improving or inhibiting neurodevelopmental disorders and neurodegenerative diseases. As an α2B receptor antagonist, (3aR,9aR)-Fluparoxan can promote the recovery of neurological function. The mechanism of action of (3aR,9aR)-Fluparoxan makes it have important application potential in neuroscience research .
    (3aR,9aR)-Fluparoxan
  • HY-104044A

    BGB-290 maleate

    Apoptosis Neurological Disease
    Pamiparib maleate (BGB-290 maleate) is a highly potent and selective PARP inhibitor with neurotoxicity-inducing activity. Pamiparib maleate can effectively penetrate the blood-brain barrier and cause cerebral hemorrhage, brain atrophy, and movement disorders in zebrafish embryos exposed. Pamiparib maleate exposure downregulates the activities of acetylcholinesterase (AChE) and adenosine triphosphatase (ATPase) and leads to upregulation of oxidative stress, which triggers apoptosis and interferes with the expression of neurodevelopment-related genes. The use of pamiparib maleate is also accompanied by downregulation of the Notch signaling pathway, while activation of the Notch signaling pathway can partially rescue neurodevelopmental toxicity. Therefore, pamiparib maleate provides a reference for evaluating its potential neurotoxicity during embryonic development .
    Pamiparib maleate

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