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α-Hydroxy-3-benzylbenzophenone is an organic compound with the chemical formula C20H16O2. It is a derivative of benzophenone, featuring a hydroxyl group (-OH) at the alpha position and a benzyl group (C6H5-CH2-) attached to the third carbon atom. This molecule is characterized by its aromatic structure, with two phenyl rings connected by a carbonyl group (C=O). α-Hydroxy-3-benzylbenzophenone is known for its potential applications in the synthesis of various pharmaceuticals, agrochemicals, and other specialty chemicals due to its unique structural properties. It is typically synthesized through chemical reactions involving benzophenone and benzyl compounds, and its reactivity can be influenced by the presence of the hydroxyl and benzyl groups.

58308-09-1

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58308-09-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 58308-09-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 5,8,3,0 and 8 respectively; the second part has 2 digits, 0 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 58308-09:
(7*5)+(6*8)+(5*3)+(4*0)+(3*8)+(2*0)+(1*9)=131
131 % 10 = 1
So 58308-09-1 is a valid CAS Registry Number.

58308-09-1Relevant academic research and scientific papers

Synthesis and biochemical evaluation of benzoylbenzophenone thiosemicarbazone analogues as potent and selective inhibitors of cathepsin L

Parker, Erica N.,Song, Jiangli,Kishore Kumar,Odutola, Samuel O.,Chavarria, Gustavo E.,Charlton-Sevcik, Amanda K.,Strecker, Tracy E.,Barnes, Ashleigh L.,Sudhan, Dhivya R.,Wittenborn, Thomas R.,Siemann, Dietmar W.,Horsman, Michael R.,Chaplin, David J.,Trawick, Mary Lynn,Pinney, Kevin G.

, p. 6974 - 6992 (2015)

Upregulation of cathepsin L in a variety of tumors and its ability to promote cancer cell invasion and migration through degradation of the extracellular matrix suggest that cathepsin L is a promising biological target for the development of anti-metastatic agents. Based on encouraging results from studies on benzophenone thiosemicarbazone cathepsin inhibitors, a series of fourteen benzoylbenzophenone thiosemicarbazone analogues were designed, synthesized, and evaluated for their inhibitory activity against cathepsins L and B. Thiosemicarbazone inhibitors 3-benzoylbenzophenone thiosemicarbazone 1, 1,3-bis(4-fluorobenzoyl)benzene thiosemicarbazone 8, and 1,3-bis(2-fluorobenzoyl)-5-bromobenzene thiosemicarbazone 32 displayed the greatest potency against cathepsin L with low IC50 values of 9.9 nM, 14.4 nM, and 8.1 nM, respectively. The benzoylbenzophenone thiosemicarbazone analogues evaluated were selective in their inhibition of cathepsin L compared to cathepsin B. Thiosemicarbazone analogue 32 inhibited invasion through Matrigel of MDA-MB-231 breast cancer cells by 70% at 10 μM. Thiosemicarbazone analogue 8 significantly inhibited the invasive potential of PC-3ML prostate cancer cells by 92% at 5 μM. The most active cathepsin L inhibitors from this benzoylbenzophenone thiosemicarbazone series (1, 8, and 32) displayed low cytotoxicity toward normal primary cells [in this case human umbilical vein endothelial cells (HUVECs)]. In an initial in vivo study, 3-benzoylbenzophenone thiosemicarbazone (1) was well-tolerated in a CDF1 mouse model bearing an implanted C3H mammary carcinoma, and showed efficacy in tumor growth delay. Low cytotoxicity, inhibition of cell invasion, and in vivo tolerability are desirable characteristics for anti-metastatic agents functioning through an inhibition of cathepsin L. Active members of this structurally diverse group of benzoylbenzophenone thiosemicarbazone cathepsin L inhibitors show promise as potential anti-metastatic, pre-clinical drug candidates.

Reactions of difunctional electrophiles with functionalized aryllithium compounds: Remarkable chemoselectivity by flash chemistry

Nagaki, Aiichiro,Imai, Keita,Ishiuchi, Satoshi,Yoshida, Jun-Ichi

supporting information, p. 1914 - 1918 (2015/02/19)

Flash chemistry using flow microreactors enables highly chemoselective reactions of difunctional electrophiles with functionalized aryllithium compounds by virtue of extremely fast micromixing. The approach serves as a powerful method for protecting-group-free synthesis using organolithium compounds and opens a new possibility in the synthesis of polyfunctional organic molecules.

COMPOSITIONS AND METHODS FOR INHIBITION OF CATHEPSINS

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Paragraph 0125, (2013/10/08)

This invention is directed to compound of Formula I and methods of using these compounds in the treatment of conditions in which modulation of a cathepsin, particularly cathepsin K or cathepsin L, will be therapeutically useful.

Substituent effects in the intramolecular photoredox reactions of benzophenones in aqueous solution

Basaric, Nikola,Mitchell, Devin,Wan, Peter

, p. 561 - 571 (2008/02/12)

A number of α-hydroxy-3-benzylbenzophenones 7-11 have been synthesized for the purpose of studying the effect of a phenyl substituent on the intramolecular photoredox reaction of 3-(hydroxymethyl)benzophenone (5) discovered in our laboratory. This latter compound was found to undergo a unimolecular (formal) intramolecular redox reaction upon photolysis in aqueous acid that results in clean reduction of the benzophenone ketone (to secondary alcohol) and oxidation of the alcohol to aldehyde. Three of the phenyl-substituted compounds with simple phenyl (7), p-methylphenyl (8), and p-methoxyphenyl (9) were found to undergo the acid-catalyzed intramolecular photoredox reaction with the observation that 9 also undergoes a residual photoredox reaction that is not acid-mediated and may in-volve initial photoinduced electron transfer, which is supported by LFP data. The m-methoxyphenyl (10) compound did not undergo the reaction. The trend in observed relative reactivity may be partially rationalized by examining changes in molecular orbital coefficients observed in the calculated HOMOs and LUMOs. The photoredox reaction has also been applied twice in succession in a single compound 11, demonstrating that the photoredox reaction may be useful for sequential photoredox reactions in a multifunctional compound.

Formal intramolecular photoredox chemistry of meta-substituted benzophenones

Mitchell, Devin,Lukeman, Matthew,Lehnherr, Dan,Wan, Peter

, p. 3387 - 3389 (2007/10/03)

(Chemical Equation Presented) Photolysis of 3-(hydroxymethyl)benzophenone (1) in aqueous solution (pH -4 M) conditions. Evidence suggests that the highly efficient (Φ ~ 0.6) reaction involves a unimolecular mechanism and an overall formal intramolecular photoredox process, which requires electronic communication between the 1,3-positions of the benzene ring, an unprecedented example of the photochemical meta effect. The photoredox reaction was not observed in organic solvents, where only photoreduction of the benzophenone moiety was observed.

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