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Investigation of red blood cell mechanical properties using AFM indentation and coarse-grained particle method.

Sarah BarnsMarie Anne BalanantEmilie SauretRobert L P FlowerSuvash Chandra SahaYuanTong Gu
Published in: Biomedical engineering online (2017)
As the bilayer provides bending resistance, this infers that structural changes within the bilayer are responsible for the deformability changes experienced by deteriorating RBCs. The numerical model presented here established a foundation for future investigations into changes within the membrane that cause differences in stiffness between healthy and deteriorating RBCs, which have already been measured experimentally with AFM.
Keyphrases
  • red blood cell
  • atomic force microscopy
  • molecular dynamics
  • high speed
  • single molecule
  • current status
  • molecular dynamics simulations
  • high resolution
  • mass spectrometry