Plasma exosomal miR-223 expression regulates inflammatory responses during cardiac surgery with cardiopulmonary bypass

Cardiopulmonary bypass (CPB) induces inflammatory responses, and effective endogenous homeostasis is important for preventing systemic inflammation. We assessed whether plasma exosomal microRNAs in patients undergoing cardiac surgery with CPB are involved in the regulation of inflammatory responses....

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Published inScientific reports Vol. 7; no. 1; pp. 10807 - 11
Main Authors Poon, Kin-Shing, Palanisamy, Kalaiselvi, Chang, Shih-Sheng, Sun, Kuo-Ting, Chen, Kuen-Bao, Li, Ping-Chun, Lin, Tso-Chou, Li, Chi-Yuan
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Published London Nature Publishing Group UK 07.09.2017
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Abstract Cardiopulmonary bypass (CPB) induces inflammatory responses, and effective endogenous homeostasis is important for preventing systemic inflammation. We assessed whether plasma exosomal microRNAs in patients undergoing cardiac surgery with CPB are involved in the regulation of inflammatory responses. Plasma samples were isolated from CPB patients (n = 21) at 5 specified time points: pre-surgery, pre-CPB and 2 hours (h), 4 h and 24 h after CPB began. Plasma TNF-α expression was increased after CPB began compared to that in the pre-surgery samples. Plasma IL-8 and IL-6 expression peaked at 4 h after CPB began but was downregulated at 24 h. The number of plasma exosomes collected at 2 h (55.1 ± 8.3%), 4 h (63.8 ± 10.1%) and 24 h (83.5 ± 3.72%) after CPB began was significantly increased compared to that in the pre-CPB samples (42.8 ± 0.11%). These exosomes had a predominantly parental cellular origin from RBCs and platelets. Additionally, the plasma exosomal miR-223 levels were significantly increased after CPB began compared to those in the pre-CPB samples. Further, exosomal miR-223 from plasma collected after CPB began downregulated IL-6 and NLRP3 expression in the monocytes. Here, we present the novel findings that increased plasma exosomal miR-223 expression during cardiac surgery with CPB might play homeostatic roles in downregulating inflammatory responses through intercellular communication.
AbstractList Cardiopulmonary bypass (CPB) induces inflammatory responses, and effective endogenous homeostasis is important for preventing systemic inflammation. We assessed whether plasma exosomal microRNAs in patients undergoing cardiac surgery with CPB are involved in the regulation of inflammatory responses. Plasma samples were isolated from CPB patients (n = 21) at 5 specified time points: pre-surgery, pre-CPB and 2 hours (h), 4 h and 24 h after CPB began. Plasma TNF-α expression was increased after CPB began compared to that in the pre-surgery samples. Plasma IL-8 and IL-6 expression peaked at 4 h after CPB began but was downregulated at 24 h. The number of plasma exosomes collected at 2 h (55.1 ± 8.3%), 4 h (63.8 ± 10.1%) and 24 h (83.5 ± 3.72%) after CPB began was significantly increased compared to that in the pre-CPB samples (42.8 ± 0.11%). These exosomes had a predominantly parental cellular origin from RBCs and platelets. Additionally, the plasma exosomal miR-223 levels were significantly increased after CPB began compared to those in the pre-CPB samples. Further, exosomal miR-223 from plasma collected after CPB began downregulated IL-6 and NLRP3 expression in the monocytes. Here, we present the novel findings that increased plasma exosomal miR-223 expression during cardiac surgery with CPB might play homeostatic roles in downregulating inflammatory responses through intercellular communication.
Cardiopulmonary bypass (CPB) induces inflammatory responses, and effective endogenous homeostasis is important for preventing systemic inflammation. We assessed whether plasma exosomal microRNAs in patients undergoing cardiac surgery with CPB are involved in the regulation of inflammatory responses. Plasma samples were isolated from CPB patients (n = 21) at 5 specified time points: pre-surgery, pre-CPB and 2 hours (h), 4 h and 24 h after CPB began. Plasma TNF-α expression was increased after CPB began compared to that in the pre-surgery samples. Plasma IL-8 and IL-6 expression peaked at 4 h after CPB began but was downregulated at 24 h. The number of plasma exosomes collected at 2 h (55.1 ± 8.3%), 4 h (63.8 ± 10.1%) and 24 h (83.5 ± 3.72%) after CPB began was significantly increased compared to that in the pre-CPB samples (42.8 ± 0.11%). These exosomes had a predominantly parental cellular origin from RBCs and platelets. Additionally, the plasma exosomal miR-223 levels were significantly increased after CPB began compared to those in the pre-CPB samples. Further, exosomal miR-223 from plasma collected after CPB began downregulated IL-6 and NLRP3 expression in the monocytes. Here, we present the novel findings that increased plasma exosomal miR-223 expression during cardiac surgery with CPB might play homeostatic roles in downregulating inflammatory responses through intercellular communication.Cardiopulmonary bypass (CPB) induces inflammatory responses, and effective endogenous homeostasis is important for preventing systemic inflammation. We assessed whether plasma exosomal microRNAs in patients undergoing cardiac surgery with CPB are involved in the regulation of inflammatory responses. Plasma samples were isolated from CPB patients (n = 21) at 5 specified time points: pre-surgery, pre-CPB and 2 hours (h), 4 h and 24 h after CPB began. Plasma TNF-α expression was increased after CPB began compared to that in the pre-surgery samples. Plasma IL-8 and IL-6 expression peaked at 4 h after CPB began but was downregulated at 24 h. The number of plasma exosomes collected at 2 h (55.1 ± 8.3%), 4 h (63.8 ± 10.1%) and 24 h (83.5 ± 3.72%) after CPB began was significantly increased compared to that in the pre-CPB samples (42.8 ± 0.11%). These exosomes had a predominantly parental cellular origin from RBCs and platelets. Additionally, the plasma exosomal miR-223 levels were significantly increased after CPB began compared to those in the pre-CPB samples. Further, exosomal miR-223 from plasma collected after CPB began downregulated IL-6 and NLRP3 expression in the monocytes. Here, we present the novel findings that increased plasma exosomal miR-223 expression during cardiac surgery with CPB might play homeostatic roles in downregulating inflammatory responses through intercellular communication.
ArticleNumber 10807
Author Li, Ping-Chun
Poon, Kin-Shing
Chang, Shih-Sheng
Chen, Kuen-Bao
Lin, Tso-Chou
Palanisamy, Kalaiselvi
Sun, Kuo-Ting
Li, Chi-Yuan
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  givenname: Kin-Shing
  surname: Poon
  fullname: Poon, Kin-Shing
  organization: Department of Anesthesiology, China Medical University and Hospital
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  givenname: Kalaiselvi
  surname: Palanisamy
  fullname: Palanisamy, Kalaiselvi
  organization: Graduate Institute of Clinical Medical Science, China Medical University
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  givenname: Shih-Sheng
  surname: Chang
  fullname: Chang, Shih-Sheng
  organization: Graduate Institute of Clinical Medical Science, China Medical University, Division of Cardiology, Department of Medicine, China Medical University Hospital
– sequence: 4
  givenname: Kuo-Ting
  surname: Sun
  fullname: Sun, Kuo-Ting
  organization: Department of Pediatric Dentistry, China Medical University Hospital, School of Dentistry, China Medical University
– sequence: 5
  givenname: Kuen-Bao
  surname: Chen
  fullname: Chen, Kuen-Bao
  organization: Department of Anesthesiology, China Medical University and Hospital
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  givenname: Ping-Chun
  surname: Li
  fullname: Li, Ping-Chun
  organization: Department of Surgery, China Medical University Hospital
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  givenname: Tso-Chou
  surname: Lin
  fullname: Lin, Tso-Chou
  organization: Department of Anesthesiology, Tri-Service General Hospital, National Defense Medical Center
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  givenname: Chi-Yuan
  surname: Li
  fullname: Li, Chi-Yuan
  email: cyli168@gmail.com
  organization: Department of Anesthesiology, China Medical University and Hospital, Graduate Institute of Clinical Medical Science, China Medical University
BackLink https://www.ncbi.nlm.nih.gov/pubmed/28883474$$D View this record in MEDLINE/PubMed
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Snippet Cardiopulmonary bypass (CPB) induces inflammatory responses, and effective endogenous homeostasis is important for preventing systemic inflammation. We...
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SubjectTerms 692/4019/592
692/700/459/1748
Cardiopulmonary Bypass - adverse effects
Cell signaling
Cytokines - blood
Exosomes
Exosomes - metabolism
Gene Expression Regulation
Heart
Heart diseases
Heart surgery
Homeostasis
Humanities and Social Sciences
Humans
Inflammation
Inflammation - pathology
Interleukin 6
Interleukin 8
MicroRNAs - blood
miRNA
Monocytes
multidisciplinary
Plasma - chemistry
Science
Science (multidisciplinary)
Thoracic Surgery
Time Factors
Tumor necrosis factor-α
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Title Plasma exosomal miR-223 expression regulates inflammatory responses during cardiac surgery with cardiopulmonary bypass
URI https://link.springer.com/article/10.1038/s41598-017-09709-w
https://www.ncbi.nlm.nih.gov/pubmed/28883474
https://www.proquest.com/docview/1957750447
https://www.proquest.com/docview/1937520494
https://pubmed.ncbi.nlm.nih.gov/PMC5589826
Volume 7
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