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4-[(2,4-diamino-pyrido[3,2-d]pyrimidin-6-ylmethyl)-amino]-benzoic acid is a complex organic compound with a molecular formula of C16H15N7O2. It is characterized by a pyrido[3,2-d]pyrimidin-6-ylmethyl group attached to an aminobenzoic acid structure. 4-[(2,4-diamino-pyrido[3,2-d]pyrimidin-6-ylmethyl)-amino]-benzoic acid is known for its potential applications in medicinal chemistry, particularly as a building block for the synthesis of various biologically active molecules. Its structure features two amino groups on the pyrido[3,2-d]pyrimidine ring, which can participate in various chemical reactions, making it a versatile intermediate in the development of new drugs and pharmaceuticals. The compound's properties, such as solubility and stability, can be influenced by the presence of these functional groups, and its reactivity can be harnessed in the creation of more complex molecules with specific therapeutic effects.

2312-90-5

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2312-90-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 2312-90-5 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,3,1 and 2 respectively; the second part has 2 digits, 9 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 2312-90:
(6*2)+(5*3)+(4*1)+(3*2)+(2*9)+(1*0)=55
55 % 10 = 5
So 2312-90-5 is a valid CAS Registry Number.

2312-90-5Downstream Products

2312-90-5Relevant academic research and scientific papers

Synthesis and potent antifolate activity and cytotoxicity of B-ring deaza analogues of the nonpolyglutamatable dihydrofolate reductase inhibitor N(α)-(4-amino-4-deoxypteroyl)-N(δ)-hemiphthaloyl-L-ornithine (PT523)

Rosowsky, Andre,Wright, Joel E.,Vaidya, Chitra M.,Bader, Henry,Forsch, Ronald A.,Mota, Clara E.,Pardo, Jorge,Chen, Cindy S.,Chen, Ying-Nan

, p. 5310 - 5319 (2007/10/03)

Six new B-ring analogues of the nonpolyglutamatable antifolate N(α)- (4-amino-4-deoxypteroyl)-N(δ)-hemiphthaloyl-L-ornithine (PT523, 3) were synthesized with a view to determining the effect of modifications at the 5- and/or 8-position on dihydrofolate reductase (DHFR) binding and tumor cell growth inhibition. The 5- and 8-deaza analogues were prepared from methyl 2- L-amino-5-phthalimidopentanoate and 4-amino-4-deoxy-N10-formyl-5-deaza- and 8-deazapteroic acid, respectively. The 5,8-dideaza analogues were prepared from methyl 2-L-[(4-aminobenzoyl)-amino]-5-phthalimidopentanoate and 2,4- diaminoquinazoline-6-carbonitriles. The K(i) for inhibition of human DHFR by the 5-deaza and 5-methyl-5-deaza analogues was about the same as that of 3 (0.35 pM), 11-fold lower than that of aminopterin (AMT, 1), and 15-fold lower than that of methotrexate (MTX, 2). However the K(i) of the 8-deaza analogue was 27-fold lower than that of 1, and that of the 5,8-dideaza, 5-methyl-5,8- dideaza, and 5-cloro-5,8-dideaza analogues was approximately 50-fold lower. This trend was consistent with the published literature on the corresponding DHFR inhibitors with a glutamate side chain. In colony formation assays against the human head and neck squamous carcinoma cell line SCC25 after 72 h of treatment, the 5- and 8-deaza analogues were approximately as potent as 3, whereas the 5,8-dideaza analogue was 3 times more potent. 5-Methyl and 5- chloro substitution was also favorable, with the 5-methyl-5-deaza analogue being 2.5-fold more potent than the 5-deaza analogue. However the effect of 5-methyl substitution was less pronounced in the 5,8-dideaza analogues than in the 5-deaza analogues. The 5-chloro-5,8-dideaza analogue of 3 was the most active member of the series, with an IC50 = 0.33 nM versus 1.8 nM for 3 and 15 nM for MTX. The 5-methyl-5-deaza analogue of 3 was also tested at the National Cancer Institute against a panel of 50 human tumor cell lines in culture and was consistently more potent than 3, with IC50 values in the low-nanomolar to subnanomolar range against most of the tumors. Leukemia and colorectal carcinoma cell lines were generally most sensitive, though good activity was also observed against CNS tumors and carcinomas of the breast and prostate. The results of this study demonstrate that B-ring analogues of 3 inhibit DHFR activity and tumor cell colony formation as well as, or better than, the parent compound. In view of the fact that 3 and its B-ring analogues cannot form polyglutamates, their high cytotoxicity relative to the corresponding B-ring analogues of AMT is noteworthy.

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