Determine the necessary mass, volume, or concentration for preparing a solution.
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SKU | Size | Availability | Price | Qty |
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A109762-25mg | 25mg | In stock | $15.90 | |
A109762-100mg | 100mg | In stock | $39.90 | |
A109762-250mg | 250mg | In stock | $66.90 | |
A109762-500mg | 500mg | In stock | $92.90 | |
A109762-1g | 1g | In stock | $129.90 | |
A109762-5g | 5g | In stock | $382.90 | |
A109762-10g | 10g | In stock | $612.90 |
Broad spectrum, irreversible serine protease inhibitor
Synonyms | 30827-99-7 | 4-(2-Aminoethyl)benzenesulfonyl fluoride hydrochloride | AEBSF HCl | AEBSF | AEBSF hydrochloride | Pefabloc SC | Pefabloc | 4-(2-Aminoethyl)benzene-1-sulfonyl fluoride hydrochloride | AEBSF (hydrochloride) | 4-(2-Aminoethyl)benzenesulphonyl fluoride hydrochlor |
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Specifications & Purity | ≥98% |
Biochemical and Physiological Mechanisms | Irreversible 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 Temp | Store at -20°C,Argon charged |
Shipped In | Ice chest + Ice pads |
Product Description |
4-(2-Aminoethyl)benzenesulfonyl fluoride hydrochloride (AEBSF) has been used: |
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Pubchem Sid | 488188547 |
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Pubchem Sid Url | https://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 |
Enter Lot Number to search for COA:
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Lot Number | Certificate Type | Date | Item |
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C2419023 | Certificate of Analysis | Mar 08, 2024 | A109762 |
A2423083 | Certificate of Analysis | Jan 17, 2024 | A109762 |
A2423084 | Certificate of Analysis | Jan 17, 2024 | A109762 |
A2423086 | Certificate of Analysis | Jan 17, 2024 | A109762 |
A2423088 | Certificate of Analysis | Jan 17, 2024 | A109762 |
A2423090 | Certificate of Analysis | Jan 17, 2024 | A109762 |
A2423091 | Certificate of Analysis | Jan 17, 2024 | A109762 |
A2423093 | Certificate of Analysis | Jan 17, 2024 | A109762 |
A2423095 | Certificate of Analysis | Jan 17, 2024 | A109762 |
A2423081 | Certificate of Analysis | Jan 17, 2024 | A109762 |
I2313587 | Certificate of Analysis | Jul 11, 2023 | A109762 |
I2313588 | Certificate of Analysis | Jul 11, 2023 | A109762 |
I2313589 | Certificate of Analysis | Jul 11, 2023 | A109762 |
C2329710 | Certificate of Analysis | Mar 16, 2023 | A109762 |
C2329711 | Certificate of Analysis | Mar 16, 2023 | A109762 |
C2329714 | Certificate of Analysis | Mar 16, 2023 | A109762 |
C2330128 | Certificate of Analysis | Mar 16, 2023 | A109762 |
B2308212 | Certificate of Analysis | Jan 31, 2023 | A109762 |
B2308213 | Certificate of Analysis | Jan 31, 2023 | A109762 |
B2308228 | Certificate of Analysis | Jan 31, 2023 | A109762 |
B2308230 | Certificate of Analysis | Jan 31, 2023 | A109762 |
B2308210 | Certificate of Analysis | Jan 31, 2023 | A109762 |
B2308211 | Certificate of Analysis | Jan 31, 2023 | A109762 |
B2308207 | Certificate of Analysis | Jan 31, 2023 | A109762 |
B2308208 | Certificate of Analysis | Jan 31, 2023 | A109762 |
B2308209 | Certificate of Analysis | Jan 31, 2023 | A109762 |
K2211061 | Certificate of Analysis | Nov 02, 2022 | A109762 |
K2211017 | Certificate of Analysis | Nov 02, 2022 | A109762 |
K2211018 | Certificate of Analysis | Nov 02, 2022 | A109762 |
K2211019 | Certificate of Analysis | Nov 02, 2022 | A109762 |
K2211023 | Certificate of Analysis | Nov 02, 2022 | A109762 |
H2217166 | Certificate of Analysis | Jul 08, 2022 | A109762 |
H2217165 | Certificate of Analysis | Jul 08, 2022 | A109762 |
C2211115 | Certificate of Analysis | Feb 20, 2022 | A109762 |
C2211114 | Certificate of Analysis | Feb 20, 2022 | A109762 |
C2211112 | Certificate of Analysis | Feb 20, 2022 | A109762 |
C2211104 | Certificate of Analysis | Feb 20, 2022 | A109762 |
C2211098 | Certificate of Analysis | Feb 20, 2022 | A109762 |
Solubility | Soluble in water 50 mg/mL or 100% ethanol. |
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Sensitivity | Moisture Sensitive;Heat sensitive |
Melt Point(°C) | 181-185°C |
Pictogram(s) | GHS05 |
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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 |
Starting at $138.90
Starting at $69.90
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] |
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] |
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:] |
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] |
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] |
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:] |