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1.
Journal of Experimental Hematology ; (6): 1284-1288, 2007.
Article Dans Chinois | WPRIM | ID: wpr-318739

Résumé

This study was aimed to investigate the effects of DMSO on platelets during pre-treatment for lyophilization, including centrifugation, washing and loading trehalose. After pre-treatment for lyophilization, the expression of platelet membrane surface glycoprotein (GP) including CD62p and PAC-1 was analyzed by FCM before and after induction with thrombin, the mean platelet volume (MPV) and platelet maximal aggregation with several platelet inducers were investigated. The results showed that the expression rates of CD62p and PAC-1, as the platelet activation signs, increased and were 30.37% and 15.01% respectively in group without DMSO after pre-treatment. And their differences in comparison with control were statistically significant, but that of CD62p was 10.72% and PAC was 10.11% in group with DMSO, in comparison with group without DMSO respectively, their differences were statistically significant after diluting with DMSO, CD62p was re-expressed to 54.39% in group with DMSO and more than that in group without DMSO and lower than control statistically significant. PAC-1 was re-expressed to 49.28% in group with DMSO and more than that in group without DMSO (p<0.01) and reached to control. Platelet maximal aggregations induced by thrombin, restocetin and propyl gallate were 92.76%, 91.24% and 89.66 respectively in group with DMSO. These were closed to that in control group and in group without DMSO. But the aggregation induced by ADP was 34.33%, it was less than control (p<0.01) and more than that in group without DMSO (p<0.01). It is concluded that DMSO can inhibit the expression of CD62p and PAC-1 on platelet in vitro. But when diluted with plasma, platelets can express CD62p and PAC-1 induced by thrombin and be led to aggregate by several inducers, so the inhibitory effects of DMSO on platelet activation are reversible. DMSO play roles in inhibitor damage from platelet activation and cryoprotectant. This property of DMSO is very important in research of platelets lyophilization.


Sujets)
Humains , Plaquettes , Biologie cellulaire , Métabolisme , Conservation de sang , Méthodes , Survie cellulaire , Cryoconservation , Méthodes , Cryoprotecteurs , Pharmacologie , Diméthylsulfoxyde , Pharmacologie , Lyophilisation , Activation plaquettaire , Physiologie , Tréhalose , Sang , Pharmacologie
2.
Journal of Experimental Hematology ; (6): 878-881, 2007.
Article Dans Chinois | WPRIM | ID: wpr-276802

Résumé

This study was aimed to compare the difference of quality between buffy-coat-collected platelet concentrates (BC-PC) and single-donor plateletpheresis (SDP). 15 packs of BC-PC and 15 units SDP were stored at 20 degrees C - 24 degrees C with agitation. Platelet concentration, platelet volume, residual leukocyte and residual erythrocyte in two groups were examined after preparation for 1 hour. Mean platelet volume, pH value, hypotonic shock response (HSR), CD62p expression and CD62p re-expression of platelet were detected on 0, 1, 2, 3, 4, 5 days of platelet preservation. The results showed that the platelet yields, residual leukocyte and residual erythrocyte in two groups accorded with the national quality standard respectively, but residual leukocyte and residual erythrocyte in BC-PC group were higher than those in SDP group when platelet yields in two groups were equal (p < 0.01). Lactate concentration, CD62p expression of platelet increased with prolongation of preseved time, while pH value decreased gradually. Compared with SDP group, there were significant differences in CD62p expression, CD62p re-expression of platelet preserved for 0 - 5 days (p < 0.01), and in pH value of platelet preserved 2 - 5 days (p < 0.01). There was no changes in HSR of SDP group for 0 - 5 days, while HSR in BC-PC group decreased gradually. There were significant differences in HSR of platelet preserved for 1 - 5 days (p < 0.01). It is concluded that the platelet concentrates prepared by BC-PC are not equal to SDP in quality, the preparation technology of BC-PC should be optimized further in order to reduce residual leukocyte, residual erythrocyte and activated platelet yields, as well as improve the quality of BC-PC.


Sujets)
Humains , Plaquettes , Métabolisme , Physiologie , Conservation de sang , Séparation cellulaire , Méthodes , Érythrocytes , Biologie cellulaire , Acide lactique , Sang , Leucocytes , Biologie cellulaire , Sélectine P , Sang , Numération des plaquettes , Thrombocytaphérèse , Méthodes , Contrôle de qualité
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