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Flow cytometric evaluation of platelet activation in blood collected into EDTA vs. Diatube‐H, a sodium citrate solution supplemented with theophylline, adenosine, and dipyridamole

Kühne, Thomas ; Hornstein, Adriana ; Semple, John LU ; Chang, Wilda ; Blanchette, Victor and Freedman, John (1995) In American Journal of Hematology 50(1). p.40-45
Abstract

With platelet activation, there is modulation of platelet surface molecule expression. In flow cytometric analyses of in vivo platelet activation, results are often confounded by activation induced in vitro by the preparative procedures. It is particularly important therefore to prevent or retard platelet activation as soon as possible after withdrawal of the blood sample. Taking blood into paraformaldehyde, or fixing the cells with paraformaldehyde as soon as possible after withdrawal, has been employed to prevent platelet activation in vitro, but paraformaldehyde‐fixed platelets cannot be further used in functional studies. We investigated the efficacy of Diatube‐H, a commercially available combination of platelet antagonists... (More)

With platelet activation, there is modulation of platelet surface molecule expression. In flow cytometric analyses of in vivo platelet activation, results are often confounded by activation induced in vitro by the preparative procedures. It is particularly important therefore to prevent or retard platelet activation as soon as possible after withdrawal of the blood sample. Taking blood into paraformaldehyde, or fixing the cells with paraformaldehyde as soon as possible after withdrawal, has been employed to prevent platelet activation in vitro, but paraformaldehyde‐fixed platelets cannot be further used in functional studies. We investigated the efficacy of Diatube‐H, a commercially available combination of platelet antagonists (theophylline, adenosine, and dipyridamole), in preventing or retarding platelet activation in vitro, along with its effects on modulation of platelet membrane glycoproteins (GP) and adhesion molecules. In contrast to blood taken into EDTA, blood taken into Diatube‐H vacutainer tubes could be stored at room temperature for up to 4 hr prior to paraformaldehyde fixation without significant in vitro platelet activation, as measured by CD62P, CD63 and modulation of GPIb and GPIIbIIIa surface expression. Hence, paraformaldehyde fixation could be deferred for several hours, permitting transport of samples from distant sites. Studies of thrombin‐induced platelet activation indicated that platelets taken into Diatube‐H remained functional i.e. were able to be activated. Expression of the CD29, CD49b and CD31 adhesion molecules on the platelet surface was unaffected by storage in Diatube‐H. The results suggest that Diatube‐H may be a useful reagent for flow cytometric studies of platelets when the samples cannot be processed immediately.

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author
; ; ; ; and
publishing date
type
Contribution to journal
publication status
published
keywords
adenosine, dipyridamole, flow cytometry, platelet activation, platelets, theophylline
in
American Journal of Hematology
volume
50
issue
1
pages
6 pages
publisher
John Wiley & Sons Inc.
external identifiers
  • scopus:0029125087
  • pmid:7668222
ISSN
0361-8609
DOI
10.1002/ajh.2830500108
language
English
LU publication?
no
id
e8969e41-3438-43a4-8172-e0bed74d69d1
date added to LUP
2019-12-03 10:32:33
date last changed
2024-01-02 01:32:45
@article{e8969e41-3438-43a4-8172-e0bed74d69d1,
  abstract     = {{<p>With platelet activation, there is modulation of platelet surface molecule expression. In flow cytometric analyses of in vivo platelet activation, results are often confounded by activation induced in vitro by the preparative procedures. It is particularly important therefore to prevent or retard platelet activation as soon as possible after withdrawal of the blood sample. Taking blood into paraformaldehyde, or fixing the cells with paraformaldehyde as soon as possible after withdrawal, has been employed to prevent platelet activation in vitro, but paraformaldehyde‐fixed platelets cannot be further used in functional studies. We investigated the efficacy of Diatube‐H, a commercially available combination of platelet antagonists (theophylline, adenosine, and dipyridamole), in preventing or retarding platelet activation in vitro, along with its effects on modulation of platelet membrane glycoproteins (GP) and adhesion molecules. In contrast to blood taken into EDTA, blood taken into Diatube‐H vacutainer tubes could be stored at room temperature for up to 4 hr prior to paraformaldehyde fixation without significant in vitro platelet activation, as measured by CD62P, CD63 and modulation of GPIb and GPIIbIIIa surface expression. Hence, paraformaldehyde fixation could be deferred for several hours, permitting transport of samples from distant sites. Studies of thrombin‐induced platelet activation indicated that platelets taken into Diatube‐H remained functional i.e. were able to be activated. Expression of the CD29, CD49b and CD31 adhesion molecules on the platelet surface was unaffected by storage in Diatube‐H. The results suggest that Diatube‐H may be a useful reagent for flow cytometric studies of platelets when the samples cannot be processed immediately.</p>}},
  author       = {{Kühne, Thomas and Hornstein, Adriana and Semple, John and Chang, Wilda and Blanchette, Victor and Freedman, John}},
  issn         = {{0361-8609}},
  keywords     = {{adenosine; dipyridamole; flow cytometry; platelet activation; platelets; theophylline}},
  language     = {{eng}},
  month        = {{01}},
  number       = {{1}},
  pages        = {{40--45}},
  publisher    = {{John Wiley & Sons Inc.}},
  series       = {{American Journal of Hematology}},
  title        = {{Flow cytometric evaluation of platelet activation in blood collected into EDTA vs. Diatube‐H, a sodium citrate solution supplemented with theophylline, adenosine, and dipyridamole}},
  url          = {{http://dx.doi.org/10.1002/ajh.2830500108}},
  doi          = {{10.1002/ajh.2830500108}},
  volume       = {{50}},
  year         = {{1995}},
}