Related Experiment Videos
Effects of human interleukin-6 on megakaryocyte development and thrombocytopoiesis in primates
C P Stahl1, D Zucker-Franklin, B L Evatt
1Division of Immunologic, Oncologic, and Hematologic Diseases, Centers for Disease Control, Atlanta, GA 30333.
Abstract:
Recombinant human interleukin-6 (IL-6) has previously been shown to increase platelet counts in mice and primates. To elucidate the mechanisms underlying this phenomenon, serial analyses were performed on megakaryocytes obtained from rhesus monkeys treated for 8 days with 30 micrograms/kg/d of recombinant human IL-6. Platelet counts increased to a maximum of 7.8 x 10(5)/microL with biphasic peaks on days 7 and 12 without significant changes in platelet volumes. Large increases in DNA content were seen by two-color flow cytometry and digital image analysis. Ploidy distribution underwent a significant shift between study days 3 and 11 (P less than .0001) with large increases in the frequency of 64N and 128N megakaryocytes. The modal ploidy increased from the normal 16N to 64N. Megakaryocyte size, as measured by area, was increased 2- to 2.7-fold. On day 3, multiple megakaryocytes were seen in endomitosis, along with an abundance of young cells with wide, organelle-free peripheral zones. The giant megakaryocytes seen on days 5 to 7 exhibited marked membrane hyperplasia that occupied much of the cell. Emperipolesis occurred frequently, as did megakaryocyte cell death. No giant platelets were seen. We conclude that IL-6 significantly alters the process of megakaryocyte maturation and thrombocytopoiesis, and that these effects, at least in the doses of IL-6 administered, should not be equated with the physiologic mechanisms operative during accelerated platelet production.
Insights
Recombinant human interleukin-6 (IL-6) significantly increases platelet production by altering megakaryocyte maturation. This study reveals IL-6
Area of Science:
- Hematology
- Immunology
- Cell Biology
Background:
- Recombinant human interleukin-6 (IL-6) is known to elevate platelet counts in animal models.
- Understanding the precise mechanisms of IL-6-induced thrombopoiesis is crucial for therapeutic applications.
Purpose of the Study:
- To investigate the cellular mechanisms by which recombinant human IL-6 influences megakaryocyte maturation and platelet production.
- To analyze the effects of IL-6 on megakaryocyte ploidy, size, and morphology.
Main Methods:
- Rhesus monkeys were treated with recombinant human IL-6 for 8 days.
- Serial analyses of megakaryocytes were performed using two-color flow cytometry and digital image analysis.
- Changes in megakaryocyte DNA content, ploidy distribution, and cell size were quantified.
Main Results:
- IL-6 treatment led to biphasic peaks in platelet counts.
- Significant increases in megakaryocyte DNA content and ploidy were observed, with a shift from 16N to 64N modal ploidy.
- Megakaryocyte size increased 2- to 2.7-fold, with evidence of endomitosis, membrane hyperplasia, emperipolesis, and cell death.
Conclusions:
- IL-6 profoundly alters megakaryocyte maturation and the process of thrombocytopoiesis.
- The observed effects of IL-6 on platelet production may not represent physiological mechanisms of accelerated platelet production.