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PMID: 11463616 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Modeling pO(2) distributions in the bone marrow hematopoietic compartment. I. Krogh's model.

Biophysical journal ·Vol. 81 ·No. 2 ·2001-08-00 ·Pages 675-84

Chow DC, Wenning LA, Miller WM, Papoutsakis ET

Abstract

Human bone marrow (BM) is a tissue of complex architectural organization, which includes granulopoietic loci, erythroblastic islets, and lymphocytic nodules. Oxygen tension (pO(2)) is an important determinant of hematopoietic stem and progenitor cell proliferation and differentiation. Thus, understanding the impact of the BM architectural organization on pO(2) levels in extravascular hematopoietic tissue is an important biophysical problem. However, currently it is impossible to measure pO(2) levels and their spatial variations in the BM. Homogeneous Kroghian models were used to estimate pO(2) distribution in the BM hematopoietic compartment (BMHC) and to conservatively simulate pO(2)-limited cellular architectures. Based on biophysical data of hematopoietic cells and characteristics of BM physiology, we constructed a tissue cylinder solely occupied by granulocytic progenitors (the most metabolically active stage of the most abundant cell type) to provide a physiologically relevant limiting case. Although the number of possible cellular architectures is large, all simulated pO(2) profiles fall between two extreme cases: those of homogeneous tissues with adipocytes and granulocytic progenitors, respectively. This was illustrated by results obtained from a parametric criterion derived for pO(2) depletion in the extravascular tissue. Modeling results suggest that stem and progenitor cells experience a low pO(2) environment in the BMHC.

MeSH Terms
Cell Size Cytosol/metabolism Granulocytes/cytology,metabolism Hematopoiesis Hematopoietic Stem Cells/cytology,metabolism Humans Models, Biological Oxygen/metabolism Partial Pressure Permeability
Chemicals
Oxygen
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Chow D C
Department of Chemical Engineering, Northwestern University, Evanston, Illinois 60208-3120, USA.
Wenning L A
Miller W M
Papoutsakis E T
References (36)
36 references, click to expand
  1. The number and distribution of capillaries in muscles with calculations of the oxygen pressure head necessary for supplying the tissue.
    J Physiol. 1919 May 20;52(6):409-15 PMID: 16993405
  2. The rate of diffusion of gases through animal tissues, with some remarks on the coefficient of invasion.
    J Physiol. 1919 May 20;52(6):391-408 PMID: 16993404
  3. Diffusion with irreversible chemical reaction in heterogeneous media: application to oxygen transport in respiring tissue.
    J Theor Biol. 1977 Jan 21;64(2):237-51 PMID: 839802
  4. Diffusion pathways in oxygen supply of cardiac muscle.
    Adv Exp Med Biol. 1987;215:171-7 PMID: 3673718
  5. Interstitial pH and pO2 gradients in solid tumors in vivo: high-resolution measurements reveal a lack of correlation.
    Nat Med. 1997 Feb;3(2):177-82 PMID: 9018236
  6. Determination of gaseous and dissolved oxygen in a closed fat cell culture system.
    Anal Biochem. 1995 Sep 1;230(1):149-53 PMID: 8585610
  7. The effect of cell size and capillary spacing on myocardial oxygen supply.
    Adv Exp Med Biol. 1984;180:463-75 PMID: 6241980
  8. Control of mitochondrial and cellular respiration by oxygen.
    J Bioenerg Biomembr. 1995 Dec;27(6):583-96 PMID: 8746845
  9. Distribution of the myocardial tissue PO2 in the rat and the inhomogeneity of the coronary bed.
    Pflugers Arch. 1978 Apr 25;374(1):57-66 PMID: 567333
  10. Physiologically significant effects of pH and oxygen tension on granulopoiesis.
    Exp Hematol. 2000 Mar;28(3):267-75 PMID: 10720691
  11. Oxygenation of head and neck cancer: changes during radiotherapy and impact on treatment outcome.
    Radiother Oncol. 1999 Nov;53(2):113-7 PMID: 10665787
  12. Differential response of bone marrow and extramedullary adipose cells to starvation.
    Experientia. 1974 Apr 15;30(4):424-5 PMID: 4858192
  13. Oxygen tension influences the differentiation, maturation and apoptosis of human megakaryocytes.
    Br J Haematol. 2000 Dec;111(3):879-89 PMID: 11122151
  14. Kinetics of hemopoietic stem cells in a hypoxic culture.
    Eur J Haematol. 1988 Feb;40(2):126-9 PMID: 3278928
  15. The ultrastructure of the hemopoietic environment of the marrow: a review.
    Exp Hematol. 1981 Apr;9(4):391-410 PMID: 7016565
  16. Improvement of culture conditions for human megakaryocytic and pluripotent progenitor cells by low oxygen tension.
    Int J Cell Cloning. 1987 Sep;5(5):412-20 PMID: 3624921
  17. Theory of oxygen transport to tissue.
    Crit Rev Biomed Eng. 1989;17(3):257-321 PMID: 2673661
  18. Reduced oxygen tension increases hematopoiesis in long-term culture of human stem and progenitor cells from cord blood and bone marrow.
    Exp Hematol. 1992 Feb;20(2):264-70 PMID: 1544397
  19. The hematopoietic microenvironment of the bone marrow: an ultrastructural study of the stroma in rats.
    Anat Rec. 1976 Oct;186(2):161-84 PMID: 984472
  20. Interstitial hypertension in carcinoma of uterine cervix in patients: possible correlation with tumor oxygenation and radiation response.
    Cancer Res. 1991 Dec 15;51(24):6695-8 PMID: 1742744
  21. Oxygen tension alters the effects of cytokines on the megakaryocyte, erythrocyte, and granulocyte lineages.
    Exp Hematol. 1998 Aug;26(9):835-43 PMID: 9694504
  22. Microcirculation and transport of oxygen to neurons of the brain.
    Microvasc Res. 1979 Nov;18(3):434-41 PMID: 537518
  23. Characterization of hematopoietic cell expansion, oxygen uptake, and glycolysis in a controlled, stirred-tank bioreactor system.
    Biotechnol Prog. 1998 May-Jun;14(3):466-72 PMID: 9622528
  24. Angiogenesis in cancer and other diseases.
    Nature. 2000 Sep 14;407(6801):249-57 PMID: 11001068
  25. Tumor oxygenation in hormone-dependent tumors during vascular endothelial growth factor receptor-2 blockade, hormone ablation, and chemotherapy.
    Cancer Res. 2000 Aug 15;60(16):4556-60 PMID: 10969807
  26. A theoretical analysis of intracellular oxygen diffusion.
    J Theor Biol. 1995 Oct 21;176(4):433-45 PMID: 8551742
  27. Respiration and glycolysis of normal human lymphocytes.
    Blood. 1966 Aug;28(2):163-74 PMID: 5913049
  28. Angiogenesis, microvascular architecture, microhemodynamics, and interstitial fluid pressure during early growth of human adenocarcinoma LS174T in SCID mice.
    Cancer Res. 1992 Dec 1;52(23):6553-60 PMID: 1384965
  29. The relationship of stromal cells to hemopoietic cells in marrow.
    Kroc Found Ser. 1984;18:3-29 PMID: 6397574
  30. Determination of specific oxygen uptake rates in human hematopoietic cultures and implications for bioreactor design.
    Ann Biomed Eng. 1996 May-Jun;24(3):373-81 PMID: 8734058
  31. Lipids of human leukocytes: relation to celltype.
    J Lipid Res. 1967 Jul;8(4):321-7 PMID: 5231291
  32. The metabolism of leukocytes taken from peripheral blood of leukemic patients.
    Cancer. 1951 Sep;4(5):1009-14 PMID: 14879367
  33. Predictive power of the tumor oxygenation status.
    Adv Exp Med Biol. 1999;471:533-9 PMID: 10659187
  34. The effect of oxygen tension on haemopoietic and fibroblast cell proliferation in vitro.
    J Cell Physiol. 1978 Dec;97(3 Pt 2 Suppl 1):517-22 PMID: 730784
  35. Lipid composition of subcellular particles of human blood platelets.
    J Lipid Res. 1969 Jan;10(1):108-14 PMID: 5764109
  36. Bone marrow adipose tissue: response to acute starvation.
    Am J Hematol. 1979;6(3):191-8 PMID: 484542
Article Info
Journal
Biophysical journal
Abbr.
Biophys J
ISSN
0006-3495
Published
2001-08-00
Pages
675-84
Language
English
Region
United States
NLM ID
0370626
PMCID
PMC1301544
Subset
IM
Grants
NHLBI NIH HHS · R01HL48276 · United States
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