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ONTOLOGY REPORT - ANNOTATIONS


Term:blood microparticle formation
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Accession:GO:0072564 term browser browse the term
Definition:The cellular component organization process in which microparticles bud off from a parent cell. A microparticle is a phospholipid microvesicle that is derived from any of several cell types, such as platelets, blood cells, endothelial cells, or others, and contains membrane receptors as well as other proteins characteristic of the parental cell.
Synonyms:exact_synonym: microparticle generation;   microparticle release


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positive regulation of blood microparticle formation term browser
Symbol Object Name Evidence Notes Source PubMed Reference(s) RGD Reference(s) Position
G Cd36 CD36 molecule ISO (MGI:MGI:4850200|PMID:20978343) RGD PMID:20978343 MGI:MGI:4850200 NCBI chr 4:14,150,309...14,191,498
Ensembl chr 4:14,001,761...14,249,749
JBrowse link
G Tnf tumor necrosis factor ISO (PMID:24998411) RGD PMID:24998411 NCBI chr20:5,189,382...5,192,000
Ensembl chr20:5,189,390...5,192,000
JBrowse link

Term paths to the root
Path 1
Term Annotations click to browse term
  biological_process 20017
    developmental process 6813
      anatomical structure formation involved in morphogenesis 1210
        blood microparticle formation 2
          endothelial microparticle formation + 0
          negative regulation of blood microparticle formation + 0
          positive regulation of blood microparticle formation + 2
          regulation of blood microparticle formation + 2
Path 2
Term Annotations click to browse term
  biological_process 20017
    developmental process 6813
      anatomical structure development 6256
        anatomical structure morphogenesis 2872
          anatomical structure formation involved in morphogenesis 1210
            blood microparticle formation 2
              endothelial microparticle formation + 0
              negative regulation of blood microparticle formation + 0
              positive regulation of blood microparticle formation + 2
              regulation of blood microparticle formation + 2
paths to the root

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RGD is funded by grant HL64541 from the National Heart, Lung, and Blood Institute on behalf of the NIH.