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embryo toxicity

" in MedChemExpress (MCE) Product Catalog:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-110296

    Endogenous Metabolite Metabolic Disease
    EC19 is an analogue of 13-cis retinoic acid (HY-15127). EC19 shows embryo toxicity. EC19 causes mild effects on upper beak outgrowth .
    EC19
  • HY-119896

    Herbicide Neurological Disease
    Clethodim is a postemergence herbicide. Clethodim shows developmental toxicity and neurotoxicity in zebrafish embryos and larvae .
    Clethodim
  • HY-124021

    Others Others
    Benzyl 2-naphthyl ether is a compound mentioned in the study of the effects of aromatic sensitizers on zebrafish embryos. It can cause morphological abnormalities and changes in gene expression in zebrafish embryos. Its toxicity mechanism is partly related to AHR, and there may be other mechanisms independent of AHR.
    Benzyl 2-naphthyl ether
  • HY-119896R

    Herbicide Neurological Disease
    Clethodim (Standard) is the analytical standard of Clethodim. This product is intended for research and analytical applications. Clethodim is a postemergence herbicide. Clethodim shows developmental toxicity and neurotoxicity in zebrafish embryos and larvae .
    Clethodim (Standard)
  • HY-120367

    Carbonic Anhydrase Cancer
    DTP348 is an inhibitor for carbonic anhydrase IX with a Ki of 8.3 nM in vitro and an IC50 of 19.26 μM in Xenopus oocytes. DTP348 exhibits slight toxicity in zebrafish embryos with LD50 of 3.5 mM. DTP348 can be used in the anti-cancer research .
    DTP348
  • HY-155331

    Fungal Infection
    Antifungal agent 77 (Compound 13h) is an antifungal agent. Antifungal agent 77 (500 μg/mL) also shows good insecticidal activity against Mythimna separate, Helicoverpa armigera, Ostrinia nubilalis, and Spodoptera frugiperda with a death rate of 30%, 25%, 40%, and 25%. Antifungal agent 77 shows toxicity in zebrafish embryo with a LC50 of 2.43 μg/mL .
    Antifungal agent 77
  • HY-B2041

    Insecticide Infection
    Benfuracarb is a broad-spectrum carbamate insecticide with crop protection activity. Benfuracarb is used to control springtails, aphids, and other pests, typically on sugar beet crops. Benfuracarb exhibits toxicity to humans and aquatic organisms. Benfuracarb exposure to zebrafish embryos resulted in a reduction in the body length of zebrafish larvae. Superoxide dismutase (SOD) activity was significantly increased after Benfuracarb treatment. Benfuracarb also interfered with the transcriptional levels of marker genes associated with early embryonic development .
    Benfuracarb
  • HY-B2041R

    Parasite Infection
    Benfuracarb (Standard) is the analytical standard of Benfuracarb. This product is intended for research and analytical applications. Benfuracarb is a broad-spectrum carbamate insecticide with crop protection activity. Benfuracarb is used to control springtails, aphids, and other pests, typically on sugar beet crops. Benfuracarb exhibits toxicity to humans and aquatic organisms. Benfuracarb exposure to zebrafish embryos resulted in a reduction in the body length of zebrafish larvae. Superoxide dismutase (SOD) activity was significantly increased after Benfuracarb treatment. Benfuracarb also interfered with the transcriptional levels of marker genes associated with early embryonic development .
    Benfuracarb (Standard)
  • HY-144818

    Apoptosis Microtubule/Tubulin Cancer
    Tubulin inhibitor 23 is a potent Tubulin inhibitor with an IC50 of 4.8 µM. Tubulin inhibitor 23 induces cell apoptosis. Tubulin inhibitor 23 shows antiangiogenic activity in a dose-dependent manner. Tubulin inhibitor 23 has the potential for the research of leukaemia .
    Tubulin inhibitor 23
  • 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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