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Mitochondrial respiration in human peripheral blood mononuclear cells : methodology and influence of permeabilization and storage

Sekine, Shusuke LU ; Chamkha, Imen LU ; Elmér, Evelina LU orcid ; Åsander Frostner, Eleonor LU orcid ; Westerlund, Emil LU orcid ; Liu, Tianshi LU ; Ehinger, Johannes LU orcid ; Sjövall, Fredrik LU orcid ; Uchino, Hiroyuki and Elmér, Eskil LU orcid (2026) In Frontiers in Molecular Biosciences 13.
Abstract

Human peripheral blood mononuclear cells (PBMCs) can be easily sampled from healthy individuals and patients. Density gradient isolation from human blood or leukocyte concentrates yields a mononuclear cell population of mainly lymphocytes, monocytes, and natural killer (NK) cells. PBMCs are vital circulating cells of the immune system and rely on oxidative phosphorylation (OXPHOS) for their energy production. OXPHOS capacity can be assessed using oxygraphy in intact and permeabilized PBMCs and has been used to investigate disorders of the immune system, but also, similarly to platelets, employed as a bioenergetic biomarker, that is, a “liquid biopsy” of disease conditions unrelated to immune dysregulation. Here, we present some key... (More)

Human peripheral blood mononuclear cells (PBMCs) can be easily sampled from healthy individuals and patients. Density gradient isolation from human blood or leukocyte concentrates yields a mononuclear cell population of mainly lymphocytes, monocytes, and natural killer (NK) cells. PBMCs are vital circulating cells of the immune system and rely on oxidative phosphorylation (OXPHOS) for their energy production. OXPHOS capacity can be assessed using oxygraphy in intact and permeabilized PBMCs and has been used to investigate disorders of the immune system, but also, similarly to platelets, employed as a bioenergetic biomarker, that is, a “liquid biopsy” of disease conditions unrelated to immune dysregulation. Here, we present some key aspects of mitochondrial respiration in PBMCs isolated from leukocyte concentrates and whole blood using the Oroboros O2k oxygraph. We assessed the limits of sample amount and the impact of storage time and temperature and explored critical aspects of digitonin permeabilization. Furthermore, we provide respiratory rates and internal ratios from healthy controls using simple and comprehensive protocols for intact and permeabilized PBMCs, respectively. We conclude that detailed information on OXPHOS capacity in PBMCs can be reproducibly assessed ex vivo, but that great care must be taken during permeabilization to achieve correct measures of respiratory rates.

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organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
digitonin, electron transfer system, lymphocytes, Oroboros, peripheral blood mononuclear cells, permeabilization, respirometry, substrate–uncoupler–inhibitor titration protocol
in
Frontiers in Molecular Biosciences
volume
13
article number
1756657
publisher
Frontiers Media S. A.
external identifiers
  • scopus:105034518279
  • pmid:41907142
ISSN
2296-889X
DOI
10.3389/fmolb.2026.1756657
language
English
LU publication?
yes
id
335b1478-5349-4b07-8835-2186d9d8d268
date added to LUP
2026-05-11 11:03:20
date last changed
2026-09-30 12:09:19
@article{335b1478-5349-4b07-8835-2186d9d8d268,
  abstract     = {{<p>Human peripheral blood mononuclear cells (PBMCs) can be easily sampled from healthy individuals and patients. Density gradient isolation from human blood or leukocyte concentrates yields a mononuclear cell population of mainly lymphocytes, monocytes, and natural killer (NK) cells. PBMCs are vital circulating cells of the immune system and rely on oxidative phosphorylation (OXPHOS) for their energy production. OXPHOS capacity can be assessed using oxygraphy in intact and permeabilized PBMCs and has been used to investigate disorders of the immune system, but also, similarly to platelets, employed as a bioenergetic biomarker, that is, a “liquid biopsy” of disease conditions unrelated to immune dysregulation. Here, we present some key aspects of mitochondrial respiration in PBMCs isolated from leukocyte concentrates and whole blood using the Oroboros O2k oxygraph. We assessed the limits of sample amount and the impact of storage time and temperature and explored critical aspects of digitonin permeabilization. Furthermore, we provide respiratory rates and internal ratios from healthy controls using simple and comprehensive protocols for intact and permeabilized PBMCs, respectively. We conclude that detailed information on OXPHOS capacity in PBMCs can be reproducibly assessed ex vivo, but that great care must be taken during permeabilization to achieve correct measures of respiratory rates.</p>}},
  author       = {{Sekine, Shusuke and Chamkha, Imen and Elmér, Evelina and Åsander Frostner, Eleonor and Westerlund, Emil and Liu, Tianshi and Ehinger, Johannes and Sjövall, Fredrik and Uchino, Hiroyuki and Elmér, Eskil}},
  issn         = {{2296-889X}},
  keywords     = {{digitonin; electron transfer system; lymphocytes; Oroboros; peripheral blood mononuclear cells; permeabilization; respirometry; substrate–uncoupler–inhibitor titration protocol}},
  language     = {{eng}},
  publisher    = {{Frontiers Media S. A.}},
  series       = {{Frontiers in Molecular Biosciences}},
  title        = {{Mitochondrial respiration in human peripheral blood mononuclear cells : methodology and influence of permeabilization and storage}},
  url          = {{http://dx.doi.org/10.3389/fmolb.2026.1756657}},
  doi          = {{10.3389/fmolb.2026.1756657}},
  volume       = {{13}},
  year         = {{2026}},
}