Pro-apoptotic properties and mitochondrial functionality in platelet-like-particles generated from low

Platelets
|October 28, 2020
PubMed

Insights

Low-dose aspirin (ASA) exposure in megakaryocytes generates platelets more prone to apoptosis. This increased apoptotic sensitivity in newly formed platelets may be linked to altered mitochondrial function and nitric oxide production.

Area of Science:

  • Biochemistry
  • Cell Biology
  • Hematology

Background:

  • Low-dose aspirin (ASA) is a cornerstone for preventing thrombotic events.
  • The precise anti-platelet mechanisms of ASA are not fully elucidated.

Purpose of the Study:

  • To investigate whether in vitro exposure of human megakaryocytes to low ASA concentrations affects the apoptotic characteristics of newly formed platelets.
  • To explore the underlying molecular mechanisms, including mitochondrial function and nitric oxide (NO) pathways.

Main Methods:

  • Human megakaryoblastic (Meg-01) cells were cultured and stimulated to form platelet-like particles (PLPs) with or without ASA.
  • Analysis of pro-apoptotic proteins (Bax, Bak), mitochondrial markers (cytochrome c oxidase, PTEN-induced putative kinase-1), caspase-3 activity, and nitric oxide synthase 3 (NOS3) content in PLPs.
  • Assessment of mitochondrial membrane potential and cytosolic cytochrome C release upon stimulation with calcium ionophore A23187.

Main Results:

  • ASA-exposed megakaryocytes produced PLPs with higher Bax and Bak content, reduced cytochrome c oxidase activity, and increased PTEN-induced putative kinase-1.
  • Upon A23187 stimulation, ASA-derived PLPs exhibited elevated caspase-3 activity, cytosolic cytochrome C, and decreased mitochondrial membrane potential.
  • Higher NOS3 content was observed in PLPs from ASA-exposed cells, and inhibition of NO synthesis partially reversed caspase-3 activation.

Conclusions:

  • Megakaryocyte exposure to ASA results in newly generated platelets with an enhanced propensity for apoptosis under specific stimulation conditions.
  • This heightened apoptotic sensitivity is potentially mediated by alterations in mitochondrial functionality and nitric oxide production pathways.