Search PubMed⌕ Search

PubMed · 3898926

[Hematologic changes induced by extracorporeal circulation].

Abstract

The plasma and cellular changes seen during the use of extracorporeal circulatory circuits define the system's degree of haemocompatibility. Heparin is still very much used to prevent activation of the blood clotting mechanisms and to reduce their effects. The fall in concentration of the clotting factors and their inhibitors is usually moderate; it is due to haemodilution, particularly important in cardiac surgery and during plasma exchanges. Fibrinolysis is often activated. In cardiac surgery, it is seen in nearly 20% of cases straight after the end of the ECC, and in nearly 80% of cases during the ECC. In all cases of resin haemoperfusion, there is an early transitory fibrinolytic burst, seen only rarely during haemodialysis and plasma exchanges. This phenomenon is usually well controlled by the natural inhibitors; it can be prevented by antifibrinolytic drugs. Cellular changes show the same trends during cardiac surgery, haemoperfusion and haemodialysis. Thrombopaenia is seen within a few minutes starting of ECC. It is caused by platelet activation, with aggregate formation; these are then trapped by the microcirculation. Leukopaenia occurs at the same time, later followed by rebound; complement activation could be the main cause by forming aggregates of polymorphonuclear cells and monocytes. Intravascular mechanical haemolysis reaches significant levels only in a few cardiac surgical procedures. The great speed of activation of the plasma and platelet enzyme systems by the ECC circuits explains these early changes. They are not only due to direct effects of the physiological circulatory characteristics and to contact with artificial surfaces, but also to plasma-cell interactions and to the patients' reaction to these first alterations.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

A Watel, D Mathieu, A Pol, P Dequiedt, G Soots, A Cosson. 1985. [Hematologic changes induced by extracorporeal circulation].. https://doi.org/10.1016/s0750-7658(85)80106-4

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Hematological abnormalities during the first week of life among neonates with Down syndrome: data from a multihospital healthcare system.

Various hematological abnormalities have been reported among neonates with Down syndrome. Thrombocytosis, thrombocytopenia, polycythemia, neutrophilia, transient myeloproliferative disorder (TMD), and congenital leukemia have all been reported. The two largest case series previously reported involved 63 and 31 cases. To acquire hematological data from a larger case series, we obtained all CBCs done during the first week after birth on all neonates with Down syndrome cared for in an Intermountain Healthcare (IHC) hospital with a date of birth between January 1, 2001 and December 31, 2005. During this period, 145,522 live births were recorded at 18 hospitals. Down syndrome was recognized in 226 (1 in 644). One hundred fifty-eight (70%) of these had one or more CBCs obtained before the seventh day (144 hr). Neonates who did versus did not have a CBC in the first week had a similar gestational age, birth weight, percentage who were LGA and SGA, and length of stay. Neutrophilia was the most common hematological abnormality detected, with 80% of absolute neutrophil counts above the upper limit of normal for age. Six percent (9/158) had blasts identified on the blood film and three, where this was persistent, were referred to the pediatric hematology service for further evaluation. The next most commonly detected abnormality was thrombocytopenia, with 66% of platelet counts <150,000/microl, and with 6% of counts <50,000/microl. The mean platelet volume did not correlate with the platelet count, but tended to run slightly large (9.2 +/- 1.3 fl), with 24% of values above 10 fl. Only one had a platelet transfusion. Polycythemia was the next most common hematological abnormality detected, with 33% of hematocrit values above 65% or hemoglobin concentrations above 22 g/dl. Six had a reduction transfusion. One patient had significant anemia (hematocrit <15%) and received an erythrocyte transfusion. One had neutropenia associated with an infection after bowel surgery. Neutrophilia, thrombocytopenia, and polycythemia were the most common hematological abnormalities observed among neonates with Down syndrome. Anemia, thrombocytosis, and neutropenia were not more common than among neonates who do not have Down syndrome. Hematological abnormalities were so common in this group that it seems reasonable to recommend that one or more CBCs be obtained on all neonates with Down syndrome.

Blood Cell Count↗

Profound thrombocytopenia related to G-CSF.

Severe thrombocytopenia in association with G-CSF therapy is extremely rare. Here we report a case of profound thrombocytopenia in a 57-year-old male with refractory cardiac ischemia, who received G-CSF during an angiogenesis trial. After 5 days of G-CSF therapy (10 microg/kg/day) the platelet count fell progressively to a nadir of 5x10(9)/L. The patient received steroid, immunoglobulin and platelet support and recovered without sequelae. Subsequent investigations suggested an underlying immune-mediated thrombocytopenia, which we hypothesize was exacerbated by G-CSF therapy.

Blood Cell Count↗

In vivo effects of sequential granulocyte-macrophage colony stimulating factor (GM-CSF) and interleukin-2 (IL-2) on circulating dendritic cells (DC) in patients with surgically resected high risk cutaneous melanoma.

Dendritic cells were assayed repeatedly in the peripheral blood of consenting melanoma patients receiving adjuvant biotherapy for high risk (stages IIb-IV) melanoma. Postoperatively, adjuvant biotherapy consisted of granulocyte-macrophage colony-stimulating factor [125 microg/m2/day] for 14 consecutive days, followed by interleukin-2 [9 million IU/m2/day] for the next 4 days, and then no treatment for 10-12 days. This was repeated monthly for six cycles. Although white blood cell counts increased, there was no significant elevation in dendritic cell counts during therapy of eleven patients. Within the first cycle during granulocyte-macrophage colony-stimulating factor treatment of seven patients, the absolute DC count decreased (p < 0.04), the percentage of myeloid BDCA-1+ BDCA-2- dendritic cells was significantly lower than baseline (p < 0.003) and the percentage of plasmacytoid BDCA-1- BDCA-2+ dendritic cells was significantly higher than baseline (p < 0.009). Our data suggest mechanisms of potential anti-tumor responses in patients receiving systemic sequential granulocyte-macrophage colony-stimulating factor and interleukin-2 do not include a cumulative gain in peripheral dendritic cell counts or an increase in myeloid BDCA-1+ BDCA-2- dendritic cell subset in the peripheral blood.

Blood Cell Count↗