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PMID: 4624453 Published · ppublish English Journal Article

Quantitative investigations of the adhesiveness of circulating polymorphonuclear leucocytes to blood vessel walls.

The Journal of physiology ·Vol. 222 ·No. 2 ·1972-04-00 ·Pages 447-74

Atherton A, Born GV

Abstract

1. A new simple method is described for quantitating the adhesiveness of circulating polymorphonuclear leucocytes, or granulocytes, to the walls of blood vessels. The cheek pouch of anaesthetized hamsters or a small part of the mesentery of anaesthetized mice were prepared for continuous microscopic observation of selected venules. Those granulocytes which moved sufficiently slowly to be individually visible were counted for 1 or 2 min periods as they rolled past a selected point on one side of a vessel. The velocity distribution of these cells was determined by analysing films. Films were used also to measure mean blood flow velocity in the venules by observing embolizing platelet thrombi induced by the iontophoretic application of adenosine diphosphate. Emigration of granulocytes into the tissues was quantitated by enumerating them in standard areas of stained histological sections.2. In control experiments with hamster cheek pouch venules, the rolling granulocyte count usually passed through a maximum shortly after the preparation was set up and then fell to a low constant value. In mouse mesentery venules the count remained at a low approximately constant value from the beginning for at least 3 hr.3. The mean velocity of blood flow in the venules was between 900 and 200 mu/sec. All rolling granulocytes moved much more slowly; in hamster cheek pouch venules the mean velocity was about 20 mu/sec and in mouse mesentery venules about 10 mu/sec. Around these means the velocity distribution of individual cells was narrow.4. Rolling of granulocytes was abolished by superfusing ethylenediamine tetra-acetate (EDTA, 0.1 M) suggesting that the phenomenon depends on calcium or magnesium ions.5. Agents were applied locally to the observed venules. Human serum albumin, trypsin or histamine in high concentrations did not affect the rolling granulocyte count.6. The rolling granulocyte count was increased during the application of Hammarsten casein or Escherichia coli culture filtrate which are chemotactic to granulocytes in vitro. These agents did not cause alterations in mean blood flow velocity in the observed venules which might have accounted for the effect on the rolling granulocyte counts. When E. coli culture filtrate was perfused through mouse intestine the increase in rolling granulocyte count in the draining venous blood was proportional to the logarithm of the concentration of filtrate.7. The rolling granulocyte count was also increased by the local application of plasma globulin permeability factor or lymph node permeability factor.8. Granulocyte counts in standard histological sections showed no significant increases in control preparations but considerable increases following the application of Hammarsten casein.

MeSH Terms
Animals Blood Flow Velocity Calcium/physiology Capillary Permeability/drug effects Caseins/pharmacology Cell Adhesion Cell Movement/drug effects Cheek Chemotaxis Cricetinae Culture Media Edetic Acid/pharmacology Escherichia coli Histamine/pharmacology Leukocyte Count Leukocytes/physiology Magnesium/physiology Mesenteric Veins Mice Serum Albumin/pharmacology Serum Globulins Trypsin/pharmacology Veins/physiology
Chemicals
Caseins Culture Media Serum Albumin Serum Globulins Histamine Edetic Acid Trypsin Magnesium Calcium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Atherton A
Born G V
References (12)
12 references, click to expand
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    J Pathol Bacteriol. 1967 Oct;94(2):389-96 PMID: 4965243
  2. Motility of granulocytes during wound healing in the rabbit ear chamber.
    Johns Hopkins Med J. 1968 Jul;123(1):23-8 PMID: 5667655
  3. Chemotaxis of leucocytes.
    Experientia. 1968 Jul 15;24(7):641-52 PMID: 4236546
  4. Growth rate in vivo of platelet thrombi, produced by iontophoresis of ADP, as a function of mean blood flow velocity.
    Nature. 1970 Aug 29;227(5261):926-30 PMID: 5448995
  5. Chemotaxis of granulocytes.
    J Pathol Bacteriol. 1953 Jul;66(1):135-46 PMID: 13109626
  6. Role of chemotaxis in inflammation.
    Physiol Rev. 1954 Jul;34(3):529-62 PMID: 13185754
  7. Enzyme-like globulins from serum reproducing the vascular phenomena of inflammation. IV. Activable permeability factor and its inhibitor in the serum of the rat and the rabbit.
    Br J Exp Pathol. 1958 Jun;39(3):228-50 PMID: 13546545
  8. Vascular permeability factors in the secretion of the guinea pig coagulating gland.
    Nature. 1958 Jul 19;182(4629):174-5 PMID: 13566223
  9. Electron micrographic observations on the emigration of leucocytes.
    Q J Exp Physiol Cogn Med Sci. 1960 Oct;45:343-8 PMID: 13766495
  10. THE MIGRATION OF LYMPHOCYTES THROUGH THE ENDOTHELIUM OF VENULES IN LYMPH NODES: AN ELECTRON MICROSCOPE STUDY.
    Proc R Soc Lond B Biol Sci. 1964 Jan 14;159:283-90 PMID: 14114164
  11. THE EFFECT OF VASCULAR PERMEABILITY FACTORS ON THE EMIGRATION OF LEUCOCYTES.
    J Pathol Bacteriol. 1964 Apr;87:341-6 PMID: 14137694
  12. EFFECTS OF INORGANIC IONS AND OF PLASMA PROTEINS ON THE AGGREGATION OF BLOOD PLATELETS BY ADENOSINE DIPHOSPHATE.
    J Physiol. 1964 Mar;170:397-414 PMID: 14165175
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1972-04-00
Pages
447-74
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1331392
Subset
IM
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