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Tris(2-Carboxyethyl)Phosphine Hydrochloride

Tris-(2-carboxyethyl)-phosphine hydrochloride

CAS: 51805-45-9

Molecular Formula: C9H16ClO6P

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Tris(2-Carboxyethyl)Phosphine Hydrochloride - Names and Identifiers

Name Tris-(2-carboxyethyl)-phosphine hydrochloride
Synonyms 500 MM TCEP
TCEP-HCl, OMniPur(R)
Tris(carboxyethyl)phosphine.HC
3,3',3''-phosphanetriyltripropanoate
Tris(2-carboxyethyl)phosphine hydrochloride
Tris-(2-carboxyethyl)-phosphine hydrochloride
3,3',3''-phosphanetriyltripropanoic acid hydrochloride
Tris(2-carboxyethyl)phosphine hydrochloride solution,TCEP
Tris(2-carboxyethyl)phosphine hydrochloride, 0.5M soln in water
CAS 51805-45-9
EINECS 629-759-1
InChI InChI=1/C9H15O6P/c10-7(11)1-4-16(5-2-8(12)13)6-3-9(14)15/h1-6H2,(H,10,11)(H,12,13)(H,14,15)/p-3
InChIKey PBVAJRFEEOIAGW-UHFFFAOYSA-N

Tris(2-Carboxyethyl)Phosphine Hydrochloride - Physico-chemical Properties

Molecular FormulaC9H16ClO6P
Molar Mass286.65
Density1.041g/mLat 25°C
Melting Point177 °C
Boling Point519.4°C at 760 mmHg
Flash Point267.9°C
Water SolubilitySoluble in water and methanol.
Solubility Soluble in water (5 mg/ml), and methanol., Soluble in water (5 mg/ml), and methanol.
Vapor Presure3.51E-12mmHg at 25°C
AppearanceWhite powder
Colorwhite
Maximum wavelength(λmax)['λ: 260 nm Amax: 0.05',
, 'λ: 280 nm Amax: 0.03']
Merck14,9085
BRN3724376
pKa7.66(at 25℃)
PH7.0(aqueous solution; pH was adjusted with ammonium hydroxide)
Storage Condition2-8°C
StabilityStable for 1 year from date of purchase as supplied. Solutions in distilled water may be stored at -20°C for up to 1 month.
SensitiveMoisture Sensitive
Refractive Indexn20/D 1.367
MDLMFCD00145469
In vitro study TCEP hydrochloride has been introduced which o€ers the prospect of serving as an alternative to the more commonly employed DTT in the NF-κB-DNA binding reactions in vitro, using recombinant p50 protein and a 32 P-labelled κB oligonucleotide. DTT promotes NF-κB-DNA binding in concentrations from 0.25 to 2.6 mM in binding reactions. However, in the presence of 0.25 mM DTT, inhibition of NF-κB binding is seen only at Hg 2+ concentrations greater than 100 μM and results are highly variable. In contrast, TCEP hydrochloride promotes NF-κB-DNA binding in a dose-related manner in concentrations from 0.25 to 6 mM. In the presence of even 6 mM TCEP hydrochloride, Hg 2+ prevents NF-κB-DNA binding at concentrations as low as 20 μM in binding reactions. The human lactoferrin (hLF) peptide is dissolved in phosphate buffer to a concentration of 0.1 mm. Reduction of the disulfide bonds is obtained by adding a 30-fold molar excess of TCEP hydrochloride with subsequent incubation for 2 h at 37 ℃.

Tris(2-Carboxyethyl)Phosphine Hydrochloride - Risk and Safety

Risk CodesR36/38 - Irritating to eyes and skin.
R36/37/38 - Irritating to eyes, respiratory system and skin.
R34 - Causes burns
Safety DescriptionS26 - In case of contact with eyes, rinse immediately with plenty of water and seek medical advice.
S37/39 - Wear suitable gloves and eye/face protection
S36/37/39 - Wear suitable protective clothing, gloves and eye/face protection.
S27 - Take off immediately all contaminated clothing.
S45 - In case of accident or if you feel unwell, seek medical advice immediately (show the label whenever possible.)
UN IDsUN 3261 8/PG 2
WGK Germany2
FLUKA BRAND F CODES10
TSCANo
HS Code29319090
Hazard Class8
Packing GroupIII

Tris(2-Carboxyethyl)Phosphine Hydrochloride - Reference

Reference
Show more
1. Cheng, Zhongzhe, et al. "Determination of thailandepsin B in rat plasma with a LC–MS/MS method." Bioanalysis 7.1 (2015): 39-52.36.161.84.113
2. Baoshan He, Xiaoze Dong, Nb.BbvCI powered DNA walking machine-based Zr-MOFs-labeled electrochemical aptasensor using Pt@AuNRs/Fe-MOFs/PEI-rGO as electrode modification material for patulin detection, Chemical Engineering Journal, Volume 405, 2021, 126642,
3. [IF=13.273] Baoshan He et al."Nb.BbvCI powered DNA walking machine-based Zr-MOFs-labeled electrochemical aptasensor using Pt@AuNRs/Fe-MOFs/PEI-rGO as electrode modification material for patulin detection."Chem Eng J. 2021 Feb;405:126642
4. [IF=10.588] Yuanyuan Liu et al."A magnetic relaxation switching and visual dual-mode sensor for selective detection of Hg2+ based on aptamers modified Au@Fe3O4 nanoparticles."J Hazard Mater. 2020 Apr;388:121728
5. [IF=7.46] Min Wei et al."Development of the signal amplification based on Au@Pt/MIL-101(Cr) as mimetic enzyme and RecJf exonuclease-assistant target recycling."Sensor Actuat B-Chem. 2020 Jun;312:128019
6. [IF=3.361] Huali Jin et al."An electrochemical aptasensor for lead ion detection based on catalytic hairpin assembly and porous carbon supported platinum as signal amplification."Rsc Adv. 2020 Feb;10(11):6647-6653
7. [IF=3.223] Min Wei et al."Electrochemical Aptasensor for Zearalenone Based on DNA Assembly and Exonuclease III as Amplification Strategy."Electroanal. 2021 Jul;33(7):1691-1698
8. [IF=1.967] Chenling Qu et al."A homogeneous electrochemical aptasensor based on DNA assembly for zearalenone detection."J Chin Chem Soc-Taip. 2021 Oct;68(10):1998-2005
9. [IF=4.464] Lina Lv et al."A “signal off” aptasensor based on AuNPs/Ni-MOF substrate-free catalyzed for detection Enrofloxacin."J Electroanal Chem. 2022 Apr;911:116251
10. [IF=9.229] Miaomiao Han et al."Amyloid Protein-Biofunctionalized Polydopamine Nanoparticles Demonstrate Minimal Plasma Protein Fouling and Efficient Photothermal Therapy."Acs Appl Mater Inter. 2022;XXXX(XXX):XXX-XXX
11. [IF=14.188] Xuehui Liu et al."Stimuli-Mediated Specific Isolation of Exosomes from Blood Plasma for High-Throughput Profiling of Cancer Biomarkers."Small Methods. 2021 Dec 19
12. [IF=13.273] Yuan Li et al."Biocatalytic living materials built by compartmentalized microorganisms in annealable granular hydrogels."CHEMICAL ENGINEERING JOURNAL. 2022 Oct;445:136822
13. [IF=3.223] Zeping Lv et al."An ultrasensitive DNA sensor for Hg2+ assay based on electrodeposited Au/carbon nanofibers-chitosan and reduced graphene oxide."ELECTROANALYSIS

Tris(2-Carboxyethyl)Phosphine Hydrochloride - Reference Information

Introduction Tris (2-carboxyethyl) phosphine hydrochloride (TCEP hydrochloride) is a new type of thiolated DNA reducing agent And deprotectant. The sulfhydrated DNA terminal sulfur atoms tend to form dimers in solution, especially in the presence of oxygen. This dimerization greatly reduces the efficiency of some coupling reaction experiments (such as the immobilization of DNA in the biosensor); and the addition of tris (2-carboxyethyl) phosphine hydrochloride (TCEP) in the DNA solution. Hydrochloride), removed after a period of reaction, can reduce the dimerization of DNA.
Use Tris (2-carbonylethyl) phosphorus hydrochloride is an organophosphorus compound, which can be used as a water-soluble reagent for the selective reduction of disulfide; It is more stable than DTT in mass spectrometry applications; it can also be used for selective reduction of disulfide in water.
Water-soluble reagent for selective reduction of disulfide. 1 is more stable than DTT in mass spectrometry applications.
Water-soluble reagent for selective reduction of disulfide. It is more stable than DTT in mass spectrometry applications. It is used for the selective reduction of disulfide in water. After alkalization, the water-soluble ligand can realize the simple removal of ruthenium-based metathesis catalyst through the crude product of the aqueous washing reaction.
Biological activity TCEP hydrochloride (Tris(2-carboxyethyl)phosphine hydrochloride) is a non-thiol reducing agent, which is more stable than other chemical reducing agents And produce faster S-S reduction reactions. TCEP hydrochloride is a trialkylphosphine that selectively reduces protein decomposition without changing its properties or interacting with thiol guides in the reaction mixture. TCEP hydrochloride is also a commonly used reducing agent in DNA/AuNP chemistry.
Last Update:2024-04-10 22:29:15
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View History
Tris(2-Carboxyethyl)Phosphine Hydrochloride
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