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2-(4-Benzoylamino-phenyl)-propionic acid is a chemical compound with the molecular formula C16H15NO3. It is a derivative of propionic acid, featuring a benzoylamino group attached to a phenyl ring. 2-(4-Benzoylamino-phenyl)-propionic acid is known for its potential applications in the pharmaceutical industry, particularly as a building block for the synthesis of various drugs. Its structure allows for the formation of different chemical entities, making it a versatile intermediate in organic synthesis. The compound's properties, such as its reactivity and solubility, can be influenced by the presence of the benzoylamino group, which can participate in various chemical reactions, including acylation and amidation. This makes 2-(4-Benzoylamino-phenyl)-propionic acid an important precursor in the development of new therapeutic agents.

67266-23-3

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67266-23-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 67266-23-3 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 6,7,2,6 and 6 respectively; the second part has 2 digits, 2 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 67266-23:
(7*6)+(6*7)+(5*2)+(4*6)+(3*6)+(2*2)+(1*3)=143
143 % 10 = 3
So 67266-23-3 is a valid CAS Registry Number.

67266-23-3Downstream Products

67266-23-3Relevant academic research and scientific papers

Design of noncompetitive interleukin-8 inhibitors acting on CXCR1 and CXCR2

Moriconi, Alessio,Cesta, Maria Candida,Cervellera, Maria Neve,Aramini, Andrea,Coniglio, Silvia,Colagioia, Sandro,Beccari, Andrea Rosario,Bizzarri, Cinzia,Cavicchia, Michela Rita,Locati, Massimo,Galliera, Emanuela,Di Benedetto, Paola,Vigilante, Paolo,Bertini, Riccardo,Allegretti, Marcello

, p. 3984 - 4002 (2008/02/11)

Chemokines CXCL8 and CXCL1 play a key role in the recruitment of neutrophils at the site of inflammation. CXCL8 binds two membrane receptors, CXCR1 and CXCR2, whereas CXCL1 is a selective agonist for CXCR2. In the past decade, the physiopathological role of CXCL8 and CXCL1 has been investigated. A novel class of small molecular weight allosteric CXCR1 inhibitors was identified, and reparixin, the first drug candidate, is currently under clinical investigation in the prevention of ischemia/reperfusion injury in organ transplantation. Reparixin binding mode to CXCR1 has been studied and used for a computer-assisted design program of dual allosteric CXCR1 and CXCR2 inhibitors. In this paper, the results of modeling-driven SAR studies for the identification of potent dual inhibitors are discussed, and three new compounds (56, 67, and 79) sharing a common triflate moiety have been selected as potential leads with optimized pharmacokinetic characteristics.

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