Date published: 2026-5-24

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cis-δ2-11-methyl-Dodecenoic Acid (CAS 677354-23-3)

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Application:
cis-Δ2-11-methyl-Dodecenoic Acid is a signal factor in extracellular microbial and fungal communication systems
CAS Number:
677354-23-3
Molecular Weight:
212.3
Molecular Formula:
C13H24O2
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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cis-Δ2-11-methyl-Dodecenoic Acid, with the CAS number 677354-23-3, is a specialized organic compound featuring a distinct molecular structure characterized by a cis double bond and a methyl group. This structural configuration lends the compound specific chemical properties that have made it an object of interest in the field of organic chemistry and material science research. The presence of the cis double bond significantly influences the molecule′s reactivity and interaction with other chemical entities, making it a valuable agent in studies exploring the synthesis and behavior of complex organic molecules. Researchers have utilized cis-Δ2-11-methyl-Dodecenoic Acid in studies focused on the development of new synthetic pathways and the creation of polymers with unique properties. Its ability to participate in various chemical reactions, such as addition reactions or polymerization, allows scientists to investigate the kinetics and mechanisms of these processes. Moreover, the compound′s distinct molecular architecture can be exploited in the design of organic compounds with desired physical and chemical characteristics, such as increased stability or altered solubility. These attributes render cis-Δ2-11-methyl-Dodecenoic Acid a critical component in advancing the understanding of molecular interactions and the development of innovative materials.


cis-δ2-11-methyl-Dodecenoic Acid (CAS 677354-23-3) References

  1. Extracellular fatty acids facilitate flagella-independent translocation by Stenotrophomonas maltophilia.  |  Huang, TP. and Lee Wong, AC. 2007. Res Microbiol. 158: 702-11. PMID: 18054205
  2. The effect of imipenem and diffusible signaling factors on the secretion of outer membrane vesicles and associated Ax21 proteins in Stenotrophomonas maltophilia.  |  Devos, S., et al. 2015. Front Microbiol. 6: 298. PMID: 25926824
  3. Fatty acid DSF binds and allosterically activates histidine kinase RpfC of phytopathogenic bacterium Xanthomonas campestris pv. campestris to regulate quorum-sensing and virulence.  |  Cai, Z., et al. 2017. PLoS Pathog. 13: e1006304. PMID: 28369120
  4. Automated Microscopic Analysis of Metal Sulfide Colonization by Acidophilic Microorganisms.  |  Bellenberg, S., et al. 2018. Appl Environ Microbiol. 84: PMID: 30076195
  5. Formin nanoclustering-mediated actin assembly during plant flagellin and DSF signaling.  |  Ma, Z., et al. 2021. Cell Rep. 34: 108884. PMID: 33789103
  6. Diffusible signal factor signaling controls bioleaching activity and niche protection in the acidophilic, mineral-oxidizing leptospirilli.  |  Bellenberg, S., et al. 2021. Sci Rep. 11: 16275. PMID: 34381075
  7. Integration of DSF and Temperature Signals for RpfC/RpfG Two-Component System Modulating Protease Production in Stenotrophomonas maltophilia FF11.  |  Wang, Q., et al. 2022. Curr Microbiol. 79: 54. PMID: 34982238
  8. BDSF Is a Degradation-Prone Quorum-Sensing Signal Detected by the Histidine Kinase RpfC of Xanthomonas campestris pv. campestris.  |  Tian, XQ., et al. 2022. Appl Environ Microbiol. 88: e0003122. PMID: 35369702
  9. Regulation of Burkholderia cenocepacia virulence by the fatty acyl-CoA ligase DsfR as a response regulator of quorum sensing signal.  |  Li, X., et al. 2024. Cell Rep. 43: 114223. PMID: 38748879

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

cis-Δ2-11-methyl-Dodecenoic Acid, 1 mg

sc-205256
1 mg
$130.00

cis-Δ2-11-methyl-Dodecenoic Acid, 5 mg

sc-205256A
5 mg
$592.00