scholarly journals Characterization and separation of the arachidonic acid 5-lipoxygenase and linoleic acid omega-6 lipoxygenase (arachidonic acid 15-lipoxygenase) of human polymorphonuclear leukocytes.

1985 ◽  
Vol 260 (7) ◽  
pp. 4508-4515 ◽  
Author(s):  
R J Soberman ◽  
T W Harper ◽  
D Betteridge ◽  
R A Lewis ◽  
K F Austen
Author(s):  
Christopher E. Walsh ◽  
Lawrence R. Dechatelet ◽  
Floyd H. Chilton ◽  
Robert L. Wykle ◽  
Moseley Waite

Blood ◽  
1992 ◽  
Vol 80 (2) ◽  
pp. 447-451
Author(s):  
N Maugeri ◽  
V Evangelista ◽  
P Piccardoni ◽  
G Dell'Elba ◽  
A Celardo ◽  
...  

Human polymorphonuclear leukocytes (PMN) activated by n-formyl- methionyl-leucyl-phenylalanine (fMLP), in the presence of cytochalasin B, are able to induce activation of coincubated autologous platelets “via” cathepsin G released from the azurophilic granules. However, thromboxane (Tx) B2 production in this system cannot be completely explained by cathepsin G-stimulated platelet arachidonate metabolism. Indeed, the amount of TxB2 found in supernatants of platelet/PMN suspensions challenged with 1 mumol/L fMLP was twofold to fourfold higher than that measured when platelets were stimulated by supernatants from fMLP-activated PMN. In the present report, we analyzed the possibility that PMN-induced TxB2 production in this system is the result of transcellular metabolism of arachidonic acid (AA) between fMLP-activated PMN and cathepsin G-stimulated platelets. 3H-AA-labeled PMN were used to test if a transfer of AA or metabolite(s) occur from PMN to platelets. Our results showed that: (1) 3H-TxB2 and 3H-12-HHT are synthesized when 3H-AA-labeled PMN are activated mixed to unlabeled platelets; (2) total radioactivity released by fMLP-stimulated PMN is increased in the presence of platelets, whereas the membrane content of unesterified 3H-AA is reduced; (3) platelet cyclooxygenase inhibition completely prevents 3H- TxB2 synthesis; and (4) inhibition of cathepsin G-induced platelet activation with the antiprotease eglin C blocks the formation of 3H- TxB2. These data show that in the experimental system used, platelets use PMN-derived unmetabolized AA to synthesize TxB2.


FEBS Letters ◽  
1983 ◽  
Vol 162 (1) ◽  
pp. 151-155 ◽  
Author(s):  
Mercedes Garcia Gil ◽  
Michiel W. van Lookeren Campagne ◽  
Susana Alemany ◽  
Angel M. Municio ◽  
Jose M. Mato

1981 ◽  
Vol 20 ◽  
pp. 735-738 ◽  
Author(s):  
David A. Bass ◽  
Joseph T. O'Flaherty ◽  
Edward J. Goetzl ◽  
Lawrence R. DeChatelet ◽  
Charles E. McCall

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