Suppressive effect of CORM-2 on LPS-induced platelet activation by glycoprotein mediated HS1 phosphorylation interference.

In recent years, it has been discovered that septic patients display coagulation abnormalities. Platelets play a major role in the coagulation system. Studies have confirmed that carbon monoxide (CO) has important cytoprotective and anti-inflammatory function. However, whether CO could alter abnorma...

Full description

Bibliographic Details
Main Authors: Dadong Liu, Feng Liang, Xu Wang, Jie Cao, Weiting Qin, Bingwei Sun
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3869782?pdf=render
_version_ 1818201561502842880
author Dadong Liu
Feng Liang
Xu Wang
Jie Cao
Weiting Qin
Bingwei Sun
author_facet Dadong Liu
Feng Liang
Xu Wang
Jie Cao
Weiting Qin
Bingwei Sun
author_sort Dadong Liu
collection DOAJ
description In recent years, it has been discovered that septic patients display coagulation abnormalities. Platelets play a major role in the coagulation system. Studies have confirmed that carbon monoxide (CO) has important cytoprotective and anti-inflammatory function. However, whether CO could alter abnormal activation of platelets and coagulation and thereby reduce the incidence of mortality during sepsis has not been defined. In this report, we have used CO-releasing molecules (CORM-2) to determine whether CO inhibits LPS-induced abnormal activation of platelets and have explored the potential mechanisms. LPS was used to induce activation of platelets in vitro, which were purified from the peripheral venous blood of healthy adult donors. CORM-2 was applied as a potential therapeutic agent. CORM-2 preconditioning and delayed treatment were also studied. We found that in the LPS groups, the function of platelets such as spreading, aggregation, and release were enhanced abnormally. By contrast, the platelets in the CORM-2 group were gently activated. Further studies showed that the expression of platelet membrane glycoproteins increased in the LPS group. Coincidently, both hematopoietic lineage cell-specific protein 1 and its phosphorylated form also increased dramatically. These phenomena were less dramatically seen in the CORM-2 groups. Taken together, we conclude that during LPS stimulation, platelets were abnormally activated, and this functional state may be associated with the signal that is transmitted between membrane glycoproteins and HS1. CORM-released CO suppresses the abnormal activation of platelets by interfering with glycoprotein-mediated HS1 phosphorylation.
first_indexed 2024-12-12T02:55:31Z
format Article
id doaj.art-3efbd47a4b0245c08890c895c932be5c
institution Directory Open Access Journal
issn 1932-6203
language English
last_indexed 2024-12-12T02:55:31Z
publishDate 2013-01-01
publisher Public Library of Science (PLoS)
record_format Article
series PLoS ONE
spelling doaj.art-3efbd47a4b0245c08890c895c932be5c2022-12-22T00:40:47ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01812e8311210.1371/journal.pone.0083112Suppressive effect of CORM-2 on LPS-induced platelet activation by glycoprotein mediated HS1 phosphorylation interference.Dadong LiuFeng LiangXu WangJie CaoWeiting QinBingwei SunIn recent years, it has been discovered that septic patients display coagulation abnormalities. Platelets play a major role in the coagulation system. Studies have confirmed that carbon monoxide (CO) has important cytoprotective and anti-inflammatory function. However, whether CO could alter abnormal activation of platelets and coagulation and thereby reduce the incidence of mortality during sepsis has not been defined. In this report, we have used CO-releasing molecules (CORM-2) to determine whether CO inhibits LPS-induced abnormal activation of platelets and have explored the potential mechanisms. LPS was used to induce activation of platelets in vitro, which were purified from the peripheral venous blood of healthy adult donors. CORM-2 was applied as a potential therapeutic agent. CORM-2 preconditioning and delayed treatment were also studied. We found that in the LPS groups, the function of platelets such as spreading, aggregation, and release were enhanced abnormally. By contrast, the platelets in the CORM-2 group were gently activated. Further studies showed that the expression of platelet membrane glycoproteins increased in the LPS group. Coincidently, both hematopoietic lineage cell-specific protein 1 and its phosphorylated form also increased dramatically. These phenomena were less dramatically seen in the CORM-2 groups. Taken together, we conclude that during LPS stimulation, platelets were abnormally activated, and this functional state may be associated with the signal that is transmitted between membrane glycoproteins and HS1. CORM-released CO suppresses the abnormal activation of platelets by interfering with glycoprotein-mediated HS1 phosphorylation.http://europepmc.org/articles/PMC3869782?pdf=render
spellingShingle Dadong Liu
Feng Liang
Xu Wang
Jie Cao
Weiting Qin
Bingwei Sun
Suppressive effect of CORM-2 on LPS-induced platelet activation by glycoprotein mediated HS1 phosphorylation interference.
PLoS ONE
title Suppressive effect of CORM-2 on LPS-induced platelet activation by glycoprotein mediated HS1 phosphorylation interference.
title_full Suppressive effect of CORM-2 on LPS-induced platelet activation by glycoprotein mediated HS1 phosphorylation interference.
title_fullStr Suppressive effect of CORM-2 on LPS-induced platelet activation by glycoprotein mediated HS1 phosphorylation interference.
title_full_unstemmed Suppressive effect of CORM-2 on LPS-induced platelet activation by glycoprotein mediated HS1 phosphorylation interference.
title_short Suppressive effect of CORM-2 on LPS-induced platelet activation by glycoprotein mediated HS1 phosphorylation interference.
title_sort suppressive effect of corm 2 on lps induced platelet activation by glycoprotein mediated hs1 phosphorylation interference
url http://europepmc.org/articles/PMC3869782?pdf=render
work_keys_str_mv AT dadongliu suppressiveeffectofcorm2onlpsinducedplateletactivationbyglycoproteinmediatedhs1phosphorylationinterference
AT fengliang suppressiveeffectofcorm2onlpsinducedplateletactivationbyglycoproteinmediatedhs1phosphorylationinterference
AT xuwang suppressiveeffectofcorm2onlpsinducedplateletactivationbyglycoproteinmediatedhs1phosphorylationinterference
AT jiecao suppressiveeffectofcorm2onlpsinducedplateletactivationbyglycoproteinmediatedhs1phosphorylationinterference
AT weitingqin suppressiveeffectofcorm2onlpsinducedplateletactivationbyglycoproteinmediatedhs1phosphorylationinterference
AT bingweisun suppressiveeffectofcorm2onlpsinducedplateletactivationbyglycoproteinmediatedhs1phosphorylationinterference