Date published: 2025-9-29

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4,4′-DDT (CAS 50-29-3)

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Alternate Names:
1,1,1-Trichloro-2,2-bis(4-chlorophenyl)ethane; 1,1-Bis(4-chlorophenyl)-2,2,2-trichloroethane
Application:
4,4′-DDT is a pesticide and DDT derivative
CAS Number:
50-29-3
Purity:
98%
Molecular Weight:
354.49
Molecular Formula:
C14H9Cl5
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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4,4′-DDT is extensively used in research focusing on its environmental impact, particularly its persistence and bioaccumulation in ecosystems. This compound is studied for its ability to interact with various components of the environment, including its long-term stability in soil and water and its effects on wildlife. Researchers utilize 4,4′-DDT to understand the mechanisms of resistance developed by insects, as well as its impact on non-target species, which is critical for assessing ecological risks. Additionally, 4,4′-DDT is employed in studies aimed at developing methods for its detection and degradation, exploring both biological and chemical approaches to mitigate its environmental presence.


4,4′-DDT (CAS 50-29-3) References

  1. Exogenous Chemical Exposure Increased Transcription Levels of the Host Virus Receptor Involving Coronavirus Infection.  |  Jin, X., et al. 2022. Environ Sci Technol. 56: 1854-1863. PMID: 35049283
  2. Tapping the potential of a glucosamine polysaccharide-diatomaceous earth hybrid adsorbent in the solid phase extraction of a persistent organic pollutant and toxic pesticide 4,4'-DDT from water.  |  Kodali, J., et al. 2022. RSC Adv. 12: 5489-5500. PMID: 35425579
  3. Analysis of low-volatility pesticides in cabbage by high temperature comprehensive two-dimensional gas chromatography.  |  Janta, P., et al. 2022. Anal Methods. 14: 3180-3187. PMID: 35929731
  4. Environmental and biological monitoring of organochlorine pesticides in the city of Salamanca, Mexico.  |  Castro-Ramirez, I., et al. 2023. Environ Geochem Health. 45: 2839-2856. PMID: 36066703
  5. Organochlorine and organophosphorus pesticides may induce brain cancer through oxidative stress.  |  Yousefi, F., et al. 2022. Toxicol Ind Health. 38: 717-732. PMID: 36180968
  6. Determination of pesticide residues in rooibos (Aspalathus linearis) teas in South Africa.  |  Areo, OM., et al. 2022. Toxicol Rep. 9: 852-857. PMID: 36518471
  7. Persistent Organic Pollutant Levels in Maternal and Cord Blood Plasma and Breast Milk: Results from the Rio Birth Cohort Pilot Study of Environmental Exposure and Childhood Development (PIPA Study).  |  Santos, ASE., et al. 2022. Int J Environ Res Public Health. 20: PMID: 36613102
  8. Sorption of Organic Contaminants by Stable Organic Matter Fraction in Soil.  |  Ukalska-Jaruga, A., et al. 2023. Molecules. 28: PMID: 36615617
  9. Large-scale spatiotemporal variations, sources, and risk assessment of banned OCPs and PAHs in suspended particulate matter from the Negro river, Argentina.  |  Arias, AH., et al. 2023. Environ Pollut. 320: 121067. PMID: 36682613
  10. Organochlorine pesticides induce thyroid tumors through oxidative stress; an in vivo and in silico study.  |  Salimi, F., et al. 2023. Environ Sci Pollut Res Int. 30: 45046-45066. PMID: 36697984
  11. Organochlorine pesticides, oxidative stress biomarkers, and leukemia: a case-control study.  |  Rafeeinia, A., et al. 2023. J Investig Med. 71: 295-306. PMID: 36718847
  12. Pesticide Exposure and Alzheimer's Disease: A Case-control Study.  |  Kiani, Z., et al. 2023. Curr Alzheimer Res. 19: 892-903. PMID: 36744686
  13. Residue analysis of selected organophosphorus and organochlorine pesticides in commercial tomato fruits by gas chromatography mass spectrometry.  |  Wondimu, KT. and Geletu, AK. 2023. Heliyon. 9: e14121. PMID: 36923857

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

4,4′-DDT, 100 mg

sc-238975
100 mg
$76.00