Literature DB >> 33682704

In vitro effects of temperature on red blood cell deformability and membrane stability in human and various vertebrate species.

Adam Attila Matrai1,2, Gabor Varga1,2, Bence Tanczos1,2, Barbara Barath1,2, Adam Varga1,2, Laszlo Horvath3, Zsuzsanna Bereczky4, Adam Deak1, Norbert Nemeth1.   

Abstract

BACKGROUND: The effects of temperature on micro-rheological variables have not been completely revealed yet.
OBJECTIVE: To investigate micro-rheological effects of heat treatment in human, rat, dog, and porcine blood samples.
METHODS: Red blood cell (RBC) - buffer suspensions were prepared and immersed in a 37, 40, and 43°C heat-controlled water bath for 10 minutes. Deformability, as well as mechanical stability of RBCs were measured in ektacytometer. These tests were also examined in whole blood samples at various temperatures, gradually between 37 and 45°C in the ektacytometer.
RESULTS: RBC deformability significantly worsened in the samples treated at 40 and 43°C, more expressed in human, porcine, rat, and in smaller degree in canine samples. The way of heating (incubation vs. ektacytometer temperation) and the composition of the sample (RBC-PBS suspension or whole blood) resulted in the different magnitude of RBC deformability deterioration. Heating affected RBC membrane (mechanical) stability, showing controversial alterations.
CONCLUSION: Significant changes occur in RBC deformability by increasing temperature, showing inter-species differences. The magnitude of alterations is depending on the way of heating and the composition of the sample. The results may contribute to better understanding the micro-rheological deterioration in hyperthermia or fever.

Entities:  

Keywords:  Hyperthermia; fever; heat-treatment; hemorheology; interspecies differences

Year:  2021        PMID: 33682704     DOI: 10.3233/CH-211118

Source DB:  PubMed          Journal:  Clin Hemorheol Microcirc        ISSN: 1386-0291            Impact factor:   2.375


  1 in total

1.  Interspecies Diversity of Osmotic Gradient Deformability of Red Blood Cells in Human and Seven Vertebrate Animal Species.

Authors:  Adam Varga; Adam Attila Matrai; Barbara Barath; Adam Deak; Laszlo Horvath; Norbert Nemeth
Journal:  Cells       Date:  2022-04-15       Impact factor: 7.666

  1 in total

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