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2-(Benzylthio)propanoic acid, with the chemical formula C10H12O2S, is a derivative of propanoic acid that features a benzene ring attached to a thiol group. This unique structure endows it with potential applications in various fields, particularly in pharmaceuticals and chemical research, due to its versatile chemical properties and potential biological activities.

2899-64-1

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2899-64-1 Usage

Uses

Used in Pharmaceutical Industry:
2-(Benzylthio)propanoic acid is used as a chemical precursor for the synthesis of various drugs, leveraging its unique structure to contribute to the development of new medicinal compounds.
Used in Chemical Research and Organic Synthesis:
In the realm of chemical research, 2-(Benzylthio)propanoic acid serves as a valuable intermediate in organic synthesis, facilitating the creation of complex organic molecules for further study and application.
Used in Anti-Inflammatory Applications:
2-(Benzylthio)propanoic acid has been studied for its potential biological activities, including its role as an anti-inflammatory agent, making it a candidate for therapeutic applications in treating inflammation-related conditions.
Overall, 2-(Benzylthio)propanoic acid's potential uses in medicine and research are underscored by its distinctive structural attributes and the promising biological effects it exhibits.

Check Digit Verification of cas no

The CAS Registry Mumber 2899-64-1 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,8,9 and 9 respectively; the second part has 2 digits, 6 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 2899-64:
(6*2)+(5*8)+(4*9)+(3*9)+(2*6)+(1*4)=131
131 % 10 = 1
So 2899-64-1 is a valid CAS Registry Number.
InChI:InChI=1/C10H12O2S/c1-8(10(11)12)13-7-9-5-3-2-4-6-9/h2-6,8H,7H2,1H3,(H,11,12)

2899-64-1Relevant academic research and scientific papers

Nonenzymatic dynamic kinetic resolution of α-(arylthio)- and α-(alkylthio)alkanoic acids

Yang, Xing,Birman, Vladimir B.

supporting information; experimental part, p. 5553 - 5555 (2011/07/09)

Dynamic solution: The title acids undergo dynamic kinetic resolution during an enantioselective esterification catalyzed by (S)-homobenzotetramisole ((S)-HBTM; see scheme). This method extends the scope of the carboxylic acid derivatives that are amenable to the nonenzymatic version of this transformation. Copyright

Kinetic resolution of α-substituted alkanoic acids promoted by homobenzotetramisole

Yang, Xing,Birman, Vladimir B.

supporting information; experimental part, p. 11296 - 11304 (2011/10/19)

A new method for catalytic nonenzymatic kinetic resolution of α-substituted alkanoic acids has been developed, which relies on their activation with DCC followed by enantioselective alcoholysis of the intermediate symm-anhydrides in the presence of the amidine-based catalyst homobenzotetramisole (HBTM). Moderate to excellent selectivity factors (s=5-96) have been obtained in the case of several classes of substrates, namely, α-aryl-, α-aryloxy/alkoxy-, α-halo-, α-azido-, and α-phthalimido-alkanoic acids. Under similar conditions, α-(arylthio/alkylthio)-alkanoic acids undergo dynamic kinetic resolution providing corresponding esters in up to 92 % ee and up to 93 % yield. Copyright

Trichosporon beigelli esterase (TBE): A versatile esterase for the resolution of economically important racemates

Koul, Surrinder,Koul, Jawahir Lal,Singh, Budh,Kapoor, Munish,Parshad, Rajinder,Manhas, Kuldeep S.,Taneja, Subhash C.,Qazi, Ghulam N.

, p. 2575 - 2591 (2007/10/03)

A hydrolase producing strain Trichosporon beigelli esterase (TBE) isolated from local cottage cheese in its native form has displayed versatility and high efficacy in the kinetic resolution of a wide range of economically important substrates, which include racemic secondary alcohols, such as 1-(6-methoxy-2-naphthyl)ethanol (E ~ 316), 1-(3,4-methylenedioxyphenyl) ethanol and pentanol (E ~ 180 and 156 resp.), and alkyl esters of carboxylic acids such as ibuprofen (E ~ 340), 2-(benzylthio)propanoic acid (E ~ 1000). In other substrates such as in the primary alcohol 2-(6-methoxy-2- naphthyl)propan-1-ol and carboxylic acids such as 2-(5-bromo-6-methoxy-2- naphthyl)propanoic acid, 2-(2-naphthyloxy)propanoic acid, and substituted 2-thiopropanoic acids, it displayed moderate to low selectivity. Commercial lipases such as CCL, PPL, and PSL were also used in the resolution of the substrates for comparative studies.

Mass Spectrometry of 2-Alkylthio-2-methylpropanoic Acids and Their Esters and Amides. Structural and Steric Effects on the McLafferty Rearrangement

Mori, Yuji,Fujiwara, Shigeru,Miyachi, Toshiko,Kitanishi, Hiroyuki,Oya, Masayuki,et al.

, p. 1505 - 1517 (2007/10/02)

The electron ionization mass spectra (MS) of S-methylated derivatives of N-(2-mercapto-2-methylpropanoyl)-L-cysteine and 2-alkylthio-2-methylpropanoic acids, as well as their esters and amides, were examined.Use of the deuterium labeling technique and accurate mass measurement supported the proposed fragmentation pathways.Extensive loss of CH2S from a molecular ion by the McLafferty rearrangementof a primary hydrogen is important in the MS of S-methyl compounds of amide derivatives.It was demonstrated that the intensity of the rearrangement ion decreases in the order of amide, ester, and acid, and in the case if amides the reaarangement is suppressed by the nonbonded interaction between methyl groups on the α carbon and the amide nitrogen.Keywords-N-(2-mercapto-2-methylpropanoyl)-L-cysteine; 2-alkylthio-2-methylpropanoic acid and methyl ester; 2-alkylthio-2-methylpropanamide; electron impact mass spectrometry; McLafferty rearrangement; steric interaction

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