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Effects of osmolality and solutes on the morphology of red blood cells according to three-dimensional refractive index tomography

  • Minkook Son
  • , Ye Sung Lee
  • , Mahn Jae Lee
  • , Yong Keun Park
  • , Hae Rahn Bae
  • , Seung Yeob Lee
  • , Myung Geun Shin
  • , Sung Yang*
  • *Corresponding author for this work
  • Gwangju Institute of Science and Technology
  • Korea Advanced Institute of Science and Technology
  • Dong-A University
  • Chonnam National University

Research output: Contribution to journalJournal articlepeer-review

Abstract

Phosphate-buffered saline (PBS) and Alsever’s solution (AS) are frequently used as media in blood-related studies, while 0.9% normal saline (NS) is frequently used in transfusion medicine. Despite the frequent use, the effects of these solutions on the shape and volume of red blood cells (RBCs) have not been reported. We collected blood samples from five healthy adults and used three-dimensional refractive index tomography to investigate the changes in the morphology of RBCs caused by changes in osmolality and solutes at the single-cell level. After diluting 2 μL of RBCs 200-fold with each solution (PBS, AS, and 0.9% NS), 40 randomly selected RBCs were microscopically observed. RBC shape was measured considering sphericity, which is a dimensionless quantity ranging from 0 (flat) to 1 (spherical). RBCs in plasma or AS showed a biconcave shape with a small sphericity, whereas those in 0.9% NS or PBS showed a spherical shape with a large sphericity. Moreover, we confirmed that sodium chloride alone could not elicit the biconcave shape of RBCs, which could be maintained only in the presence of an osmotic pressure-maintaining substance, such as glucose or mannitol. Although 0.9% NS solution is one of the most commonly used fluids in hematology and transfusion medicine, RBCs in 0.9% NS or PBS are not biconcave. Therefore, as the debate on the use of NS continues, future clinical studies or applications should consider the effect of glucose or mannitol on the shape of RBCs.

Original languageEnglish
Article numbere0262106
JournalPLoS ONE
Volume16
Issue number12 December
DOIs
StatePublished - 2021.12.31

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