Clinical and Diagnostic Laboratory Immunology, September 1998, p. 675-682, Vol. 5, No. 5
1071-412X/98/$04.00+0
Copyright © 1998, American Society for Microbiology. All rights reserved.
Active Biotech,
Received 13 November 1997/Returned for modification 2 March
1998/Accepted 24 June 1998
The objective of this study was to investigate whether the
superantigen staphylococcal enterotoxin A (SEA), which binds to HLA
class II and T-cell receptor V
chains, can direct cytotoxic T cells
to lyse cytokine-stimulated endothelial cells (EC). In addition, we
wanted to determine whether SEA-primed cytotoxic T cells could be
targeted to EC surface molecules as a means of a novel cancer
immunotherapy. Human umbilical vein EC (HUVEC), dermal microvascular EC
(HMVEC), or the EC line EA.hy926 stimulated with gamma interferon
(IFN-
) or tumor necrosis factor alpha (TNF-
) displayed
upregulated HLA class II and adhesion molecule (CD54 and CD106)
expression, respectively. SEA-primed T cells induced a strong
cytotoxicity against IFN-
- and TNF-
-activated EA.hy926 which had
been preincubated with SEA. Blocking of CD54 completely abrogated the
T-cell attack. SEA-D227A, which has a mutated class II binding site,
did not promote any cytotoxicity. A strong lysis was observed when a
fusion protein consisting of protein A and SEA-D227A was added together
with T cells to TNF-
-induced EA.hy926 and HUVEC precoated with
monoclonal antibodies (MAb) directed against HLA class I, CD54, or
CD106 molecules. Finally, an scFv antibody fragment reactive with an
unknown EC antigen was fused with SEA-D227A. Both EA.hy926 and HMVEC
were efficiently lysed by scFv-SEA-D227A-triggered cytotoxic T cells.
Taken together, superantigen-activated T-cell-dependent EC killing was
induced when EC expressed an inflammatory phenotype. Moreover, specific MAb targeting of the superantigen to surface antigens induced EC lysis.
Our data suggest that directed T-cell-mediated lysis of unwanted
proliferating EC, such as those in the tumor microvasculature, can be
clinically useful.
*
Corresponding author. Mailing address: Active Biotech,
Lund Research Center, Scheelev. 22, P.O. Box 724, S-220 07 Lund,
Sweden. Phone: 46 46 190000. Fax: 46 46 191134. E-mail:
kristian.riesbeck{at}mikrobiol.mas.lu.se.
Astra Draco AB, Preclinical R&D, S-22100 Lund, Sweden.
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