Differential expression of exosomal microRNAs in fresh and senescent apheresis platelet concentrates

Ziyue Mi1,2, Li Gong2,3, Yujie Kong1,2

  • 1Clinical Transfusion Research Center, Institute of Blood Transfusion, Chinese Academy of Medical Sciences and Peking Union Medical College, Chengdu, SC, China.

Platelets
|August 15, 2022
PubMed

Insights

Platelet storage increases bioactive exosomes containing microRNAs (miRNAs), potentially causing adverse reactions. This study identified specific exosomal miRNAs that change during storage, offering insights into transfusion safety.

Area of Science:

  • Biotechnology
  • Molecular Biology
  • Transfusion Medicine

Background:

  • Platelet products carry a risk of adverse reactions, particularly after 5 days of storage.
  • Bioactive exosomes, containing microRNAs (miRNAs), accumulate in platelet products during storage and are linked to adverse events.
  • MicroRNAs are crucial exosomal cargoes involved in cellular processes like differentiation, metabolism, and immunomodulation.

Purpose of the Study:

  • To investigate the differential expression of exosomal microRNAs in apheresis platelet concentrates during storage.
  • To predict the functions of target genes regulated by these differentially expressed microRNAs.

Main Methods:

  • Exosomes were isolated from apheresis platelet concentrates using ultracentrifugation and characterized.
  • MicroRNA expression profiling was performed using microarrays comparing platelets stored for 1 day versus 5 days.
  • Target gene prediction and functional enrichment analyses (Gene Ontology, KEGG) were conducted.
  • Quantitative reverse transcription-polymerase chain reactions (qRT-PCR) were used for validation.

Main Results:

  • A total of 134 microRNAs showed differential expression between day 1 and day 5 storage (57 upregulated, 77 downregulated).
  • Key upregulated microRNAs, including hsa-miR-22-3p, hsa-miR-223-3p, and hsa-miR-21-5p, showed significant increases (up to 14.6-fold).
  • Functional analysis indicated that target genes are involved in cell proliferation, nervous system development, stem cell pluripotency, and signaling pathways related to immunomodulation (e.g., prolactin, FoxO, TNF).

Conclusions:

  • Storage of apheresis platelet concentrates leads to significant changes in exosomal microRNA profiles.
  • Specific microRNAs, notably hsa-miR-22-3p, accumulate during storage and may mediate adverse reactions.
  • These findings highlight potential biomarkers for platelet storage quality and transfusion safety.

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