Abstract
The intravenous injection of bacterial endotoxins alter the coagulation system of rabbits' blood in vivo. Twenty-four hours after the first injection the fibrinogen level rises to twice normal values. The second injection at this time causes a 30 to 40 per cent decrease in fibrinogen content in 4 hours. Twenty hours later it again rises to twice normal values. A marked decrease in whole blood coagulation times in silicone occurs 4 hours after both injections but rises to normal values 24 hours following each injection. The circulating platelets drop from average levels of 300,000/c.mm. to 150,000/c.mm. after the first injection. The platelets remain at this low level and decrease to less than 100,000 after the second injection. During this time no fibrinolytic or fibrinogenolytic activity can be detected. Also, there is no significant change in the one stage prothrombin times or antithrombin titres. The marked decrease in circulating fibrinogen at the time when intracapillary thrombi are formed suggests that the "hyaline" thrombi of the generalized Shwartzman reaction are composed, in part, of fibrin. There appears to be a relationship between the level of circulating fibrinogen at the time of injection of bacterial endotoxin and the extent of the thrombosis. The higher the preinjection fibrinogen level, the more extensive is the thrombosis. There is also a relationship between the amount of fibrinogen loss and the extent of thrombosis after the injection. The more extensive the thrombosis the greater is the postinjection decrease in circulating fibrinogen. A comparison between the response of the hemostatic mechanism to tissue thromboplastin and bacterial endotoxin indicates that the latter acts in a unique manner and not by way of a simple "thromboplastic" activity. From the hematological standpoint, "preparation" for the generalized Shwartzman reaction is accompanied by an increased circulating fibrinogen, leukocytosis, and thrombocytopenia.
Keywords
ALLERGY/blood in
BLOOD COAGULATION/physiology
MeSH Terms
Animals
Blood Coagulation/physiology
Endotoxins
Fibrinogen
Hypersensitivity/blood
Rabbits
Shwartzman Phenomenon
Thrombocytopenia
Thromboplastin
Thrombosis
Chemicals
Endotoxins
Fibrinogen
Thromboplastin
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
McKAY D G
SHAPIRO S S
References (19)
19 references, click to expand
-
The fibrinoid of renal cortical necrosis due to the Shwartzman reaction; evidence for its origin from smooth muscle.
AMA Arch Pathol. 1956 Feb;61(2):169-76
PMID: 13282586
-
Studies on the mechanism of the Shwartzman phenomenon; certain factors involved in the production of the local hemorrhagic necrosis.
J Exp Med. 1951 May;93(5):489-504
PMID: 14832396
-
Studies on the generalized Shwartzman reaction. VII. The role of fibrinogen in the deposition of fibrinoid after combined injections of endotoxin and synthetic acidic polymer.
J Exp Med. 1955 Sep 1;102(3):263-78
PMID: 13252182
-
Effect of bacteria and their products on migration of leukocytes.
Proc Soc Exp Biol Med. 1952 Oct;81(1):286-8
PMID: 13047386
-
Studies on the generalized Shwartzman reaction. IV. Prevention of the local and generalized Shwartzman reactions with heparin.
J Exp Med. 1953 Jun;97(6):871-88
PMID: 13069642
-
The inhibition of the local Shwartzman reaction by heparin.
Bull Johns Hopkins Hosp. 1953 May;92(5):353-69
PMID: 13042460
-
Alterations in blood coagulation mechanism after incompatible blood transfusion; clinical and experimental observations.
Am J Surg. 1955 Mar;89(3):583-92
PMID: 13228816
-
The Shwartzman phenomenon when modified by nitrogen mustard, adrenocorticotrophic hormone (ACTH), and thorium dioxide.
South Med J. 1953 Mar;46(3):207-13
PMID: 13038533
-
Studies with radioactive endotoxin. I. The use of Cr51 to label endotoxin of Escherichia coli.
J Clin Invest. 1955 Jun;34(6):850-7
PMID: 14381514
-
Studies of the effect of bacterial endotoxins on rabbit leucocytes. I. Effect of intravenous injection of the substances with and without induction of the local Shwartzman reaction.
J Exp Med. 1953 Oct;98(4):331-48
PMID: 13096659
-
Cold-precipitation by heparin of a protein in rabbit and human plasma.
Proc Soc Exp Biol Med. 1954 Aug-Sep;86(4):813-8
PMID: 13204363
-
Studies on the mechanism of the Shwartzman-phenomenon; evidence for the participation of polymorphonuclear leucocytes in the phenomenon.
J Exp Med. 1951 Jan;93(1):49-63
PMID: 14803631
-
Shwartzman phenomenon. III. Modifications of nitrogen-mustard suppression.
Proc Soc Exp Biol Med. 1952 Oct;81(1):274-7
PMID: 13047381
-
Morphologic changes in rabbits following the intravenous administration of meningococcal toxin. III. The effects produced by endotoxin in association with certain high molecular weight acidic polymers.
Am J Pathol. 1955 Jul-Aug;31(4):669-85
PMID: 14388126
-
Experimental fibrinoid lesions in rabbits; production by cross transfusion and isolated renal perfusion.
AMA Arch Pathol. 1955 Dec;60(6):583-92
PMID: 13268196
-
A new method for the determination of fibrinogen in small samples of plasma.
J Lab Clin Med. 1951 Feb;37(2):316-20
PMID: 14814359
-
Influence of nitrogen mustard upon reactions to bacterial endotoxins; Shwartzman phenomenon and fever.
Proc Soc Exp Biol Med. 1952 Oct;81(1):304-7
PMID: 13047394
-
Studies with radioactive endotoxin. II. Correlation of physiologic effects with distribution of radioactivity in rabbits injected with radioactive sodium chromate.
J Clin Invest. 1955 Jun;34(6):858-66
PMID: 14381515
-
Pathologic study of intravascular coagulation following incompatible blood transfusion in dogs. I. Intravenous injection of incompatible blood.
Am J Surg. 1956 Jan;91(1):24-31
PMID: 13268775