4-(2-Aminoethyl)benzenesulfonyl fluoride hydrochloride - 98%, high purity , CAS No.30827-99-7

  • ≥98%
Item Number
A109762
Grouped product items
SKUSizeAvailabilityPrice Qty
A109762-25mg
25mg
≥10
$15.90
A109762-100mg
100mg
5
$39.90
A109762-250mg
250mg
4
$66.90
A109762-500mg
500mg
6
$92.90
A109762-1g
1g
8
$129.90
A109762-5g
5g
2
$382.90
A109762-10g
10g
2
$612.90

Broad spectrum, irreversible serine protease inhibitor

Basic Description

SynonymsBenzenesulfonyl fluoride, 4-(2-aminoethyl)-, hydrochloride | DHA6VL95HL | 4-(2-aminoethyl)benzenesulfonyl fluoride hydrochloride [for biochemical research] | EX-A2487 | T70748 | AKOS015847774 | Pefabloc(R) SC, certified reference material, TraceCERT(R) |
Specifications & Purity≥98%
Biochemical and Physiological MechanismsIrreversible serine protease inhibitor. Inhibition constants are similar to those of PMSF and DFP. AEBSF has been shown to inhibit trypsin, chymotrypsin, plasmin kallikrein and thrombin. As an alternative to PMSF and DFP, AEBSF offers lower toxicity, impr
Storage TempStore at -20°C,Argon charged
Shipped InIce chest + Ice pads
Product Description

4-(2-Aminoethyl)benzenesulfonyl fluoride hydrochloride (AEBSF) has been used:
as a protease inhibitor in plasma samples to prevent acylated ghrelin (AG) degradation
as a snake venom serine proteinase (SVSP) inhibitor in SVSP inhibition or AEBSF assay to test the involvement of SVSPs on the fibrinogen-clotting activity
as a component in NP-40 lysis buffer to resuspend cell pellets for preparing cell lysates
Recommended concentrations for use are 0.1-1 mM.

AI Insight

Mechanisms of Action

Mechanism of ActionAction Typetarget IDTarget NameTarget TypeTarget OrganismBinding Site NameReferences

Names and Identifiers

Pubchem Sid488188547
Pubchem Sid Urlhttps://pubchem.ncbi.nlm.nih.gov/substance/488188547
IUPAC Name 4-(2-aminoethyl)benzenesulfonyl fluoride;hydrochloride
INCHI InChI=1S/C8H10FNO2S.ClH/c9-13(11,12)8-3-1-7(2-4-8)5-6-10;/h1-4H,5-6,10H2;1H
InChi Key WRDABNWSWOHGMS-UHFFFAOYSA-N
Canonical SMILES C1=CC(=CC=C1CCN)S(=O)(=O)F.Cl
Isomeric SMILES C1=CC(=CC=C1CCN)S(=O)(=O)F.Cl
WGK Germany 3
PubChem CID 186136
UN Number 3261
Molecular Weight 239.69
Beilstein 7604627
Reaxy-Rn 7604627

Certificates(CoA,COO,BSE/TSE and Analysis Chart)

C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

43 results found

Lot NumberCertificate TypeDateItem
A2503788Certificate of AnalysisDec 25, 2024 A109762
A2503784Certificate of AnalysisDec 25, 2024 A109762
A2503781Certificate of AnalysisDec 25, 2024 A109762
K2427234Certificate of AnalysisNov 01, 2024 A109762
K2427232Certificate of AnalysisNov 01, 2024 A109762
C2419023Certificate of AnalysisMar 08, 2024 A109762
A2423083Certificate of AnalysisJan 17, 2024 A109762
A2423095Certificate of AnalysisJan 17, 2024 A109762
A2423091Certificate of AnalysisJan 17, 2024 A109762
A2423081Certificate of AnalysisJan 17, 2024 A109762
A2423084Certificate of AnalysisJan 17, 2024 A109762
A2423086Certificate of AnalysisJan 17, 2024 A109762
A2423093Certificate of AnalysisJan 17, 2024 A109762
A2423090Certificate of AnalysisJan 17, 2024 A109762
A2423088Certificate of AnalysisJan 17, 2024 A109762
I2313589Certificate of AnalysisJul 11, 2023 A109762
I2313588Certificate of AnalysisJul 11, 2023 A109762
I2313587Certificate of AnalysisJul 11, 2023 A109762
C2329711Certificate of AnalysisMar 16, 2023 A109762
C2330128Certificate of AnalysisMar 16, 2023 A109762
C2329714Certificate of AnalysisMar 16, 2023 A109762
C2329710Certificate of AnalysisMar 16, 2023 A109762
B2308208Certificate of AnalysisJan 31, 2023 A109762
B2308209Certificate of AnalysisJan 31, 2023 A109762
B2308207Certificate of AnalysisJan 31, 2023 A109762
B2308230Certificate of AnalysisJan 31, 2023 A109762
B2308228Certificate of AnalysisJan 31, 2023 A109762
B2308213Certificate of AnalysisJan 31, 2023 A109762
B2308212Certificate of AnalysisJan 31, 2023 A109762
B2308211Certificate of AnalysisJan 31, 2023 A109762
B2308210Certificate of AnalysisJan 31, 2023 A109762
K2211061Certificate of AnalysisNov 02, 2022 A109762
K2211023Certificate of AnalysisNov 02, 2022 A109762
K2211019Certificate of AnalysisNov 02, 2022 A109762
K2211018Certificate of AnalysisNov 02, 2022 A109762
K2211017Certificate of AnalysisNov 02, 2022 A109762
H2217166Certificate of AnalysisJul 08, 2022 A109762
H2217165Certificate of AnalysisJul 08, 2022 A109762
C2211104Certificate of AnalysisFeb 20, 2022 A109762
C2211098Certificate of AnalysisFeb 20, 2022 A109762
C2211115Certificate of AnalysisFeb 20, 2022 A109762
C2211114Certificate of AnalysisFeb 20, 2022 A109762
C2211112Certificate of AnalysisFeb 20, 2022 A109762

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Safety and Hazards(GHS)

Pictogram(s) GHS05
Signal Danger
Hazard Statements

H314:Causes severe skin burns and eye damage

Precautionary Statements

P305+P351+P338:IF IN EYES: Rinse cautiously with water for several minutes. Remove contact lenses if present and easy to do - continue rinsing.

P280:Wear protective gloves/protective clothing/eye protection/face protection.

P310:Immediately call a POISON CENTER or doctor/physician.

WGK Germany 3
Reaxy-Rn 7604627

Related Documents

Reviews

Customer Reviews

Citations of This Product

1. Chenglin Li, Sifan Li, Xinsheng Li, Tao Yuan, Jialei Xu, Xixin Gu, Jianli Hua.  (2023)  A Turn-On Lipid Droplet-Targeted Near-Infrared Fluorescent Probe with a Large Stokes Shift for Detection of Intracellular Carboxylesterases and Cell Viability Imaging.  MOLECULES,  28  (5): (2317).  [PMID:36903562] [10.3390/molecules28052317]
2. Yi-Xuan Fu, Wu-Yingzheng Guo, Nan Wang, Yi-Jie Dai, Zi-Ye Zhang, Xin-Lin Sun, Wen-Chao Yang, Guang-Fu Yang.  (2022)  Diagnosis of Bacterial Plant Diseases via a Nitroreductase-Activated Fluorescent Sensor.  ANALYTICAL CHEMISTRY,  94  (50): (17692–17699).  [PMID:36469707] [10.1021/acs.analchem.2c04614]
3. Jingmin Zhang, Youmei Peng, Ying Li, Ning Wang, Yuna Chai, Chongzhen Qin, Xinru Wang, Suna Liu, Yubing Zhou, Xiaojian Zhang, Wenda Zhang.  (2022)  Development of a near-infrared fluorescent probe with large Stokes shift for carboxylesterases detection and its application in living systems.  DYES AND PIGMENTS,  198  (109993).  [PMID:] [10.1016/j.dyepig.2021.109993]
4. Yu Zhu Yang, Zi Yi Xu, Nian Bing Li, Hong Qun Luo.  (2021)  Ultrasensitive fluorescent probe for visual biosensing of esterase activity in living cells and its imaging application.  SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY,  262  (120094).  [PMID:34175764] [10.1016/j.saa.2021.120094]
5. Shuli Man, Miao Li, Jin Zhou, Haiyue Wang, Jinyan Zhang, Long Ma.  (2019)  Polyethyleneimine coated Fe3O4 magnetic nanoparticles induce autophagy, NF-κB and TGF-β signaling pathway activation in HeLa cervical carcinoma cells via reactive oxygen species generation.  Biomaterials Science,  (1): (201-211).  [PMID:31664285] [10.1039/C9BM01563A]
6. Hui Zhou, Jinbao Tang, Jie Zhang, Bochao Chen, Jianfei Kan, Weifen Zhang, Jin Zhou, Huimin Ma.  (2019)  A red lysosome-targeted fluorescent probe for carboxylesterase detection and bioimaging.  Journal of Materials Chemistry B,  (18): (2989-2996).  [PMID:] [10.1039/C9TB00310J]
7. Juan Wang, Mengmeng Song, Chengguo Hu, Kangbing Wu.  (2018)  Portable, Self-Powered, and Light-Addressable Photoelectrochemical Sensing Platforms Using pH Meter Readouts for High-Throughput Screening of Thrombin Inhibitor Drugs.  ANALYTICAL CHEMISTRY,  90  (15): (9366–9373).  [PMID:29998727] [10.1021/acs.analchem.8b01979]

References

1. Marinea M et al..  (2021)  Soy Protein Pressed Gels: Gelation Mechanism Affects the In Vitro Proteolysis and Bioaccessibility of Added Phenolic Acids..  Foods,  10    [PMID:33450925]
2. Chenglin Li, Sifan Li, Xinsheng Li, Tao Yuan, Jialei Xu, Xixin Gu, Jianli Hua.  (2023)  A Turn-On Lipid Droplet-Targeted Near-Infrared Fluorescent Probe with a Large Stokes Shift for Detection of Intracellular Carboxylesterases and Cell Viability Imaging.  MOLECULES,  28  (5): (2317).  [PMID:36903562] [10.3390/molecules28052317]
3. Yi-Xuan Fu, Wu-Yingzheng Guo, Nan Wang, Yi-Jie Dai, Zi-Ye Zhang, Xin-Lin Sun, Wen-Chao Yang, Guang-Fu Yang.  (2022)  Diagnosis of Bacterial Plant Diseases via a Nitroreductase-Activated Fluorescent Sensor.  ANALYTICAL CHEMISTRY,  94  (50): (17692–17699).  [PMID:36469707] [10.1021/acs.analchem.2c04614]
4. Jingmin Zhang, Youmei Peng, Ying Li, Ning Wang, Yuna Chai, Chongzhen Qin, Xinru Wang, Suna Liu, Yubing Zhou, Xiaojian Zhang, Wenda Zhang.  (2022)  Development of a near-infrared fluorescent probe with large Stokes shift for carboxylesterases detection and its application in living systems.  DYES AND PIGMENTS,  198  (109993).  [PMID:] [10.1016/j.dyepig.2021.109993]
5. Yu Zhu Yang, Zi Yi Xu, Nian Bing Li, Hong Qun Luo.  (2021)  Ultrasensitive fluorescent probe for visual biosensing of esterase activity in living cells and its imaging application.  SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY,  262  (120094).  [PMID:34175764] [10.1016/j.saa.2021.120094]
6. Shuli Man, Miao Li, Jin Zhou, Haiyue Wang, Jinyan Zhang, Long Ma.  (2019)  Polyethyleneimine coated Fe3O4 magnetic nanoparticles induce autophagy, NF-κB and TGF-β signaling pathway activation in HeLa cervical carcinoma cells via reactive oxygen species generation.  Biomaterials Science,  (1): (201-211).  [PMID:31664285] [10.1039/C9BM01563A]
7. Hui Zhou, Jinbao Tang, Jie Zhang, Bochao Chen, Jianfei Kan, Weifen Zhang, Jin Zhou, Huimin Ma.  (2019)  A red lysosome-targeted fluorescent probe for carboxylesterase detection and bioimaging.  Journal of Materials Chemistry B,  (18): (2989-2996).  [PMID:] [10.1039/C9TB00310J]
8. Juan Wang, Mengmeng Song, Chengguo Hu, Kangbing Wu.  (2018)  Portable, Self-Powered, and Light-Addressable Photoelectrochemical Sensing Platforms Using pH Meter Readouts for High-Throughput Screening of Thrombin Inhibitor Drugs.  ANALYTICAL CHEMISTRY,  90  (15): (9366–9373).  [PMID:29998727] [10.1021/acs.analchem.8b01979]

Solution Calculators