Open-chain nitrogen compounds. Part VI. The formation of bis(1-aryl-3- methyltriazen-3-ylmethyl) methylamines in the reaction of diazonium ions with mixtures of formaldehyde and methylamine

1984 ◽  
Vol 62 (4) ◽  
pp. 749-754 ◽  
Author(s):  
Hartford W. Manning ◽  
Chantal M. Hemens ◽  
Ronald J. LaFrance ◽  
York Tang ◽  
Keith Vaughan

The synthesis of a series of N,N-bis(1-aryl-3-methyltriazen-3-ylmethyl) methylamines from coupling diazonium salts with mixtures of methylamine and formaldehyde is described. These novel bis-triazenes, or heptazanonadienes, have significant anti-tumour activity against the TLX5 lymphoma in mouse. The mechanism of formation of these triazenes is discussed with reference to the implication to the presumed equilibria taking place in the methylamine/formaldehyde solution. The formation of the bis-triazene is usually accompanied by the formation of a 3-hydroxymethyitriazene, and it has been shown that the hydroxymethyltriazene can be transformed into the bis-triazene. The proportions of the two products are strongly influenced by the relative amounts of methylamine and formaldehyde. Coupling the p-bromobenzenediazonium salt to a 1:1 methylamine/formaldehyde mixture affords mainly the bis-triazene, whereas a 1:50 mixture gives almost totally the hydroxymethyl triazene. These results suggest that the two triazenes arise from diazonium coupling to different species in the amine/formaldehyde mixture; this hypothesis is supported by the formation of identical product mixtures from coupling the diazonium ion with (a) a 1:1 MeNH2/CH2O mixture, and (b) the cyclic trimer of the carbinolamine MeNHCH2OH, and by the identification of a minor product from the reaction of p-chlorobenzenediazonium fluoroborate with MeNH2/CH2O as bis(1-p-chlorophenyl-3-methyltriazen-3-yl) methane.

1977 ◽  
Vol 55 (21) ◽  
pp. 3751-3754 ◽  
Author(s):  
Theresa A. Daniels ◽  
Shiraz Sidi ◽  
Keith Vaughan

Several triazenes of type Ar•N==N•NH•CH2Y, where Y is electron withdrawing, have been prepared by reaction of the diazonium salts X•C6H4N2+ (X = H, p-NO2, p-CO2Me, p-COPh, and o-COPh) with the α-substituted alkylamines NH2CH2Y (Y = CN, CO2Et, COPh, and CH(OCH3)2) in aqueous solution, without prior isolation of the diazonium salt. In all cases, the diazonium ion attacks at the NH2 moiety exclusively and the methylene group in NH2CH2Y shows no tendency to compete for the diazonium ion.


2011 ◽  
Vol 8 (8) ◽  
pp. 698-703 ◽  
Author(s):  
Q.-Y. Li ◽  
Y. Gao ◽  
W. Qiu ◽  
Y.-G. Zu ◽  
L. Su ◽  
...  

2019 ◽  
Vol 52 (5) ◽  
Author(s):  
Xueping Xie ◽  
Yuxin Zhang ◽  
Wenjuan Ma ◽  
Xiaoru Shao ◽  
Yuxi Zhan ◽  
...  

1959 ◽  
Vol 7 (1) ◽  
pp. 50-65 ◽  
Author(s):  
MARVIN M. NACHLAS ◽  
THEODORE P. GOLDSTEIN ◽  
DAVID H. ROSENBLATT ◽  
MARVIN KIRSCH ◽  
ARNOLD M. SELIGMAN

Reliability of enzymatic localization in tissue sections by the simultaneous coupling techniques is dependent to a great extent upon the speed of coupling. Therefore, the influence on coupling rate of the structure of the diazonium ion and of the coupling component was studied. Electro-negative groups in the diazonium ion increase the rate of coupling, while the same groups in the coupling component decrease the rate. Electro-positive groups in the coupling component accelerate coupling, but slow it when present in the diazonium ion. The relation of coupling rate and electro-negativity of the substituents in the diazonium ion follows Hammett's equation (8). Although the relations is linear on coupling with aromatic hydroxy compounds, it is not so with aromatic amines. The most active diazonium ions showed no increase in coupling rate with aromatic amines. This suggests that for those enzymes hydrolyzing an ester link, increase of coupling rate might be accomplished by modifying the structure of either the coupling component used in the substrate or the diazonium salt. However, for enzymes splitting amide linkages, the only possibility of improving the localization is by modifying the structure of the coupling component.


2010 ◽  
Vol 46 (18) ◽  
pp. 3251-3262 ◽  
Author(s):  
Birgit Geoerger ◽  
Jean-François Brasme ◽  
Estelle Daudigeos-Dubus ◽  
Paule Opolon ◽  
Corinne Venot ◽  
...  

2013 ◽  
Vol 394 ◽  
pp. 616-626 ◽  
Author(s):  
Cristina P. Matos ◽  
Andreia Valente ◽  
Fernanda Marques ◽  
Pedro Adão ◽  
M. Paula Robalo ◽  
...  

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