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Chemical Structure| 115-20-8 Chemical Structure| 115-20-8

Structure of 2,2,2-Trichloroethanol
CAS No.: 115-20-8

Chemical Structure| 115-20-8

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2,2,2-Trichloroethanol, the active form of the sedative hypnotic drug chloral hydrate, is an agonist for the nonclassical K2P channels TREK-1 (KCNK2) and TRAAK (KCNK4).

Synonyms: Trichloroethanol

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Product Citations

Product Citations

Iram Muzaffar ;

Abstract: Over the years bacteria have developed resistance against antibiotics. Overuse and misuse of antibiotics is one of the main reasons of this increased bacterial resistance. A recently discovered peptide antibiotic known as teixobactin has shown potent activity against Gram-positive bacteria including methicillin-resistant Staphylococcus. aureus (MRSA), Mycobacterium tuberculosis, and vancomycin-resistant enterococci, (VRE). The structure of teixobactin consists of several uncommon amino acids including D-amino-acids and L-allo-enduracididine. L-allo-Enduracididine is a unique amino acid residue consisting of a 5-membered guanidine ring, which offers a great challenge for its synthesis. Most of the reported syntheses of L-allo-enduracididine are lengthy and consist of a lack of stereoselectivity and overall low yields, which stresses the need to develop a more efficient synthetic route to enduracididine using readily available reagents.A synthetic strategy was proposed to construct the 5-membered cyclic guanidine structure using a C-H amination reaction catalyzed by Rh2(esp)2 as the key step. For this purpose, attempts to synthesize various arginine derivatives bearing a 2,2,2-trichloroethoxysulfonyl- (Tces-) protected guanidine were conducted by condensing isothiourea 21 with different derivatives of L-ornithine. First, 2,2,2-trichloroethylsulfamate (24) was synthesized from chlorosulfonyl isocyanate (CSI) with 57% yield. S,S-Dimethyl-N-(2,2,2-trichloroethoxysulfonyl)carbonimidodithionate (25) was made from 24 in 89% yield, which was consequently converted to S-Methyl-N-(2,2,2-trichloroethoxysulfonyl)isothiourea (21) in 94 % yield. Ester derivatives of L-ornithine were synthesized, including N-(δ-tert-butoxycarbonyl)-N-(α-([fluoren-9-yl]methoxy)carbonyl)-L-ornithine methyl ester (28) in 80% yield, and N-(δ-tert-butoxycarbonyl)-N-(α-([fluoren-9-yl]methoxy)carbonyl-L-ornithine allyl ester (34) in 93 % yield. Removal of the Boc protecting group was followed by the attempted coupling of the L-ornithine derivatives with 21, which was unsuccessful and instead gave product whose NMR data was consistent with the formation of a lactam (38) resulting from reaction of the -amino group with the ester. C-H amination was attempted on L-Ornithine, N2-[(9H-fluoren-9-ylmethoxy)carbonyl]-N5-[imino[[(4-methylphenyl)sulfonyl]amino]methyl], methyl ester (41) by using Rh2(esp)2 which gave a complex mixture of compounds. The presented strategy could be used in the future for synthesizing protected arginine derivatives by modifications in the starting molecules. These would serve as substrates for making nitrogen-based heterocyclic compounds via C-H amination by exploring different Rh based catalysts.

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Alternative Products

Product Details of 2,2,2-Trichloroethanol

CAS No. :115-20-8
Formula : C2H3Cl3O
M.W : 149.40
SMILES Code : ClC(Cl)(Cl)CO
Synonyms :
Trichloroethanol
MDL No. :MFCD00004677
InChI Key :KPWDGTGXUYRARH-UHFFFAOYSA-N
Pubchem ID :8259

Safety of 2,2,2-Trichloroethanol

GHS Pictogram:
Signal Word:Danger
Hazard Statements:H302-H315-H318-H335-H410
Precautionary Statements:P261-P264-P270-P271-P280-P302+P352-P304+P340-P305+P351+P338-P310-P330-P362+P364-P403+P233-P501
Class:9
UN#:3082
Packing Group:

Isoform Comparison

Biological Activity

Description
2,2,2-Trichloroethanol activates these nonclassical potassium channels in cerebrovascular smooth muscle, leading to dilation of the middle cerebral artery[1].

Protocol

Bio Calculators
Preparing Stock Solutions 1mg 5mg 10mg

1 mM

5 mM

10 mM

6.69mL

1.34mL

0.67mL

33.47mL

6.69mL

3.35mL

66.93mL

13.39mL

6.69mL

Dissolving Methods
Please choose the appropriate dissolution scheme according to your animal administration guide.For the following dissolution schemes, clear stock solution should be prepared according to in vitro experiments, and then cosolvent should be added in turn:

in order to ensure the reliability of the experimental results, the clarified stock solution can be properly preserved according to the storage conditions; The working fluid for in vivo experiment is recommended to be prepared now and used on the same day;

The percentage shown in front of the following solvent refers to the volume ratio of the solvent in the final solution; If precipitation or precipitation occurs in the preparation process, it can be assisted by heating and/or ultrasound.
Protocol 1
Protocol 2

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