Date published: 2025-11-17

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Carbendazim (CAS 10605-21-7)

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Alternate Names:
N-1H-Benzimidazol-2-yl-carbamic Acid Methyl Ester
Application:
Carbendazim is is a fungicide
CAS Number:
10605-21-7
Molecular Weight:
191.19
Molecular Formula:
C9H9N3O2
Supplemental Information:
This is classified as a Dangerous Good for transport and may be subject to additional shipping charges.
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Carbendazim is is a fungicide. Carbendazim, a benzimidazole derivative, is an agricultural fungicide that safeguards crops against fungal attacks. This systemic and broad-spectrum fungicide is absorbed by plants and distributed throughout their tissues. Its versatility allows it to effectively combat a wide range of fungal infections like root rot, downy mildew, and powdery mildew. By obstructing the production of the enzyme β-tubulin, which is for fungal growth and development, carbendazim hampers the division of fungal cells, ultimately leading to their demise. Carbendazim exhibits various biochemical and physiological effects, including the inhibition of specific enzymes such as β-tubulin, vital for fungal growth. It also impacts plant growth and development, influencing factors like root systems and photosynthesis.


Carbendazim (CAS 10605-21-7) References

  1. Carbendazim Resistance of Fusarium graminearum From Henan Wheat.  |  Liu, S., et al. 2019. Plant Dis. 103: 2536-2540. PMID: 31424998
  2. Effects of carbendazim on catalase activity and related mechanism.  |  Lu, G., et al. 2020. Environ Sci Pollut Res Int. 27: 24686-24691. PMID: 31463747
  3. Assessment of Carbendazim Residues and Safety in Celery Under Different Cultivation Conditions.  |  Chen, L., et al. 2021. Bull Environ Contam Toxicol. 107: 276-280. PMID: 31950217
  4. Degradation of Carbendazim in Soil: Effect of Sewage Sludge-Derived Biochars.  |  Huang, T., et al. 2020. J Agric Food Chem. 68: 3703-3710. PMID: 32125839
  5. Chromatographic Methods for Detection and Quantification of Carbendazim in Food.  |  Wang, SY., et al. 2020. J Agric Food Chem. 68: 11880-11894. PMID: 33059442
  6. Carbendazim exposure during the larval stage suppresses major royal jelly protein expression in nurse bees (Apis mellifera).  |  Wang, K., et al. 2021. Chemosphere. 266: 129011. PMID: 33246707
  7. Occurrence and Detection of Carbendazim Resistance in Botryosphaeria dothidea from Apple Orchards in China.  |  Wang, L., et al. 2022. Plant Dis. 106: 207-214. PMID: 34227835
  8. Neurobehavioral Toxicity Induced by Carbendazim in Rats and the Role of iNOS, Cox-2, and NF-κB Signalling Pathway.  |  Ebedy, YA., et al. 2022. Neurochem Res. 47: 1956-1971. PMID: 35312909
  9. Metabolic Activation and Cytotoxicity of Fungicide Carbendazim Mediated by CYP1A2.  |  Shi, J., et al. 2022. J Agric Food Chem. 70: 4092-4101. PMID: 35316061
  10. Carbendazim imprinted electrochemical sensor based on CdMoO4/g-C3N4 nanocomposite: Application to fruit juice samples.  |  Yola, ML. 2022. Chemosphere. 301: 134766. PMID: 35490760
  11. Effect of carbendazim on honey bee health: Assessment of survival, pollen consumption, and gut microbiome composition.  |  Wang, K., et al. 2022. Ecotoxicol Environ Saf. 239: 113648. PMID: 35605324
  12. Highly sensitive detection of carbendazim in juices based on mung bean-derived porous carbon@chitosan composite modified electrochemical sensor.  |  Liu, R., et al. 2022. Food Chem. 392: 133301. PMID: 35636194
  13. Carbendazim toxicity in different cell lines and mammalian tissues.  |  Sharma, M., et al. 2022. J Biochem Mol Toxicol. 36: e23194. PMID: 35929398
  14. Carbendazim: Ecological risks, toxicities, degradation pathways and potential risks to human health.  |  Zhou, T., et al. 2023. Chemosphere. 314: 137723. PMID: 36592835

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Carbendazim, 250 mg

sc-211014
250 mg
$92.00

Carbendazim, 1 g

sc-211014A
1 g
$270.00