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Updated: Aug 3, 2025

Megakaryocyte Differentiation and Platelet Formation from Human Cord Blood-derived CD34+ Cells
Published on: December 27, 2017
Ontogenesis of functional platelet subpopulations from preterm and term neonates to adulthood: The PLINIUS study
Lukas J Weiss1,2, Maria Drayss1,2, Kristina Mott1
1University Hospital Würzburg, Institute of Experimental Biomedicine, Würzburg, Germany.
Insights
Platelet function and phenotype in neonates continuously evolve from early prematurity to adulthood. Neonatal platelets show altered aggregate formation and blunted activation, which gradually normalize with age.
Area of Science:
- Hematology
- Neonatal Physiology
- Thrombopoiesis
Background:
- Fetal to postnatal circulation involves hemoglobin switching, but perinatal thrombopoiesis remains poorly understood.
- Platelet ontogenesis and functional maturation from prematurity to adulthood require further investigation.
Purpose of the Study:
- To assess the ontogenesis of platelet phenotype and function from early prematurity to adulthood.
- To investigate changes in platelet surface receptors, activation, and aggregate formation in neonates.
Main Methods:
- Recruited 64 subjects across a wide age range (extremely preterm to adults).
- Collected blood at multiple time points in neonates for analysis of platelet surface receptors, activation markers (CD62P, CD63, PAC-1), and aggregate formation.
- Utilized automated clustering for platelet subpopulation analysis.
Main Results:
- Reduced expression of major platelet surface receptors in neonates correlated with decreased platelet size but normal surface density.
- Neonatal platelets exhibited blunted GPIIb/IIIa activation, with continuous improvement until adulthood.
- Increased platelet-monocyte and platelet-neutrophil aggregates were observed in neonates, partly dependent on CD62P activation.
Conclusions:
- Platelet phenotype and function undergo continuous evolution from neonates to adulthood.
- Neonatal platelets display distinct characteristics in activation and aggregate formation compared to adults.
- The PLatelets In Neonatal Infants Study (PLINIUS) highlights the dynamic nature of platelet development post-birth.
Abstract:
Erythrocytes undergo a well-defined switch from fetal to postnatal circulation, which is mainly reflected by the stage-specific expression of hemoglobin chains. Perinatal alterations in thrombopoiesis are poorly understood. We assessed the ontogenesis of platelet phenotype and function from early prematurity to adulthood. We recruited 64 subjects comprising 7 extremely preterm (27-31 weeks gestational age), 25 moderately preterm (32-36 weeks), 10 term neonates, 8 infants (<2 years), 5 children (2-13 years), and 9 adults (>13 years). Blood was withdrawn at up to 3 different time points in neonates (t1: 0-2, t2: 3-7, and t3: 8-14 days after birth). We found that the expression levels of the major surface receptors for fibrinogen, collagen, vWF, fibronectin, and laminin were reduced but correlated with decreased platelet size, indicating a normal surface density. Although CD62P and CD63 surface exposure upon stimulation with TRAP-6, ADP, or U46619 was unaltered or only slightly reduced in neonates, GPIIb/IIIa inside-out and outside-in activation was blunted but showed a continuous increase until adulthood, correlating with the expression of the GPIIb/IIIa regulating tetraspanin CD151. Platelet subpopulation analysis using automated clustering revealed that neonates presented with a CD63+/PAC-1- pattern, followed by a continuous increase in CD63+/PAC-1+ platelets until adulthood. Our findings revealed that the number of platelet-monocyte and platelet-neutrophil aggregates, but not platelet-lymphocyte aggregates, is increased in neonates and that neonatal aggregate formation depends in part on CD62P activation. Our PLatelets In Neonatal Infants Study (PLINIUS) provides several lines of evidence that the platelet phenotype and function evolve continuously from neonates to adulthood.
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