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Pulmonary hypertension in patients with myelofibrosis secondary to myeloproliferative diseases.

We examined the clinical characteristics of six patients with myelofibrosis secondary to myeloproliferative diseases whose clinical courses were complicated by pulmonary hypertension to determine possible causal links between the two disorders. Six patients (four male, two female), with diagnoses of myeloproliferative disease, myelofibrosis (one with polycythemia vera, three with agnogenic myeloid metaplasia, one with unclassified myeloproliferative syndrome, one with essential thrombocytosis), and pulmonary hypertension are presented. Measurement of the pulmonary artery pressure was performed by Doppler echocardiography in all patients and by right sided heart catheterization in four patients. The range of resting pulmonary artery systolic pressure was 35 to 47 mmHg above the mean right atrium by echocardiography. One patient had autopsy evidence of pulmonary myeloid metaplasia and interstitial fibrosis; another had acute leukemic infiltration of the lung parenchyma. All patients had thrombocytosis; symptomatology in one patient with marked thrombocytosis improved with plateletpheresis. Two patients suffered systemic thrombosis. All patients had severe hepatomegaly. Two patients had evidence of left ventricular dysfunction. The interval between the development of dyspnea and death was less than seven months in five of the patients. A causal link between pulmonary hypertension and myelofibrosis secondary to myeloproliferative diseases is suggested for each patient. Hematopoietic infiltration of the pulmonary parenchyma, portal hypertension, thrombocytosis, hypercoagulability, and left ventricular failure may account in part for the development of pulmonary hypertension in these patients. Patients with myelofibrosis and dyspnea should have Doppler echocardiography to evaluate pulmonary artery pressures.

Adult↗

Essential thrombocythemia. Clinical characteristics and course of 61 cases.

Sixty-one patients with essential thrombocythemia (ET) were followed from 1974 through 1987 at the Medizinische Poliklinik. Fifty-one patients (84%) presented with thromboembolic complications, and eight patients (13%) with hemorrhages. In seven patients (12%), a thrombocytosis was detected accidentally. Disturbances of the microcirculation (67%), mainly of the fingers and toes (53%), were the most frequent thromboembolic symptoms. The mean age of all patients was 58 years (male patients, 61 years; female patients, 56 years). The average platelet count at diagnosis was 897,000/microliter. The average maximal platelet count was 1.231 X 10(6)/microliter (range, 500,000/microliter to 4 X 10(6)/microliter). Seventy-two percent had a moderate leukocytosis (average, 12,400/microliter), 34% a splenomegaly, 29% a hepatomegaly. Signs of hypermetabolism were infrequent, lactate dehydrogenase (LDH) and uric acid elevations, if present, were moderate. Bleeding time and viscosity were normal in most patients. Spontaneous platelet aggregation was increased in 81% of patients (n = 40). Platelet aggregation studies with the aggregation inducing substances adenosine diphosphonate (ADP), platelet activating factor (PAF), thrombin, collagen, and adrenalin showed hypoaggregation in most patients. Adrenalin-induced aggregation distinguished best between ET-patients and reactive thrombocytosis showing hypoaggregation in all ET-patients tested (n = 16) and in none of 22 controls. Bone marrow studies were performed in 57 patients. The histologic studies (done in 49 patients) were consistent with a chronic myeloproliferative disorder in all cases. In 41 cases (84%) the picture of a megakaryocytic myelosis was found, in 12 of these a granulocyte-rich form of megakaryocytic myelosis. Cytologic studies only (eight patients) did not differentiate ET well from reactive thrombocytosis. Platelet aggregation studies and bone marrow histology may be of help in the diagnosis of difficult cases of thrombocytosis. The Philadelphia status was negative in all cases studied (14 patients). Fourteen patients died. The causes of death were thromboembolic complications in probably 11 and acute leukemia in two patients. The probability of 10-year survival is 64% after a mean follow-up time of approximately 5 years. It appears that considering the average age of ET patients at diagnosis, life expectancy is close to normal.

Bone Marrow↗

Risk factors for visual loss in giant cell (temporal) arteritis: a prospective study of 174 patients.

OBJECTIVE: To determine the risk factors--especially the effects of thrombocytosis--for permanent visual loss in patients with temporal arteritis. METHODS: One hundred seventy-four patients with temporal arteritis (147 biopsy proven) were prospectively observed for the development of permanent visual loss. We used multivariate logistic regression analysis to determine which of 17 pretreatment characteristics were associated with visual loss. RESULTS: Visual ischemic manifestations occurred in 48 (28%) patients, including permanent visual loss in 23 (13%) patients. The independent predictors associated with an increased risk of permanent visual loss were a history of transient visual ischemic symptoms (odds ratio [OR] = 6.3; 95% confidence interval [CI]: 1.4 to 29; P = 0.02) and a higher platelet count (OR = 3.7 per SD; 95% CI: 1.8 to 7.9; P = 0.001). The presence of constitutional symptoms (OR = 0.14; 95% CI: 0.02 to 0.77, P = 0.01), polymyalgia rheumatica (OR = 0.04; 95% CI: 0.01 to 0.48, P = 0.02), and C-reactive protein level (OR = 0.35 per SD; 95% CI: 0.13 to 0.92, P = 0.03) were associated with a reduced risk. Upper limb artery involvement was excluded from the multivariate model, as no patients with that problem developed permanent visual loss. Of the 87 patients who presented with thrombocytosis (platelet count >400 x 10(9)/L), 32 (37%) developed ischemic visual symptoms, compared with 16 (18%) of those without thrombocytosis. CONCLUSIONS: An elevated platelet count is a risk factor for permanent visual loss in temporal arteritis. The finding of thrombocytosis in a patient with suspected temporal arteritis should emphasize the need for urgent treatment, with consideration of using inhibitors of platelet aggregation or anticoagulation therapy.

Aged↗

Pretreatment hemoglobin, platelet count, and prognosis in endometrial carcinoma.

We analyzed whether a low pretreatment hemoglobin level is a prognostic factor in endometrial cancer and whether it is associated with thrombocytosis. Two hundred and twelve patients with endometrial cancer treated with surgery were reviewed. Data were analyzed with Pearson's chi-squared test, Fisher's exact test in contingency tables, the Mann-Whitney U-test, the Student's t-test, and Kaplan-Meier estimates. Multivariate analysis was performed with the log-rank test and the Cox proportional hazard model. Thirty-nine patients (18%) had a pretreatment hemoglobin value of < 12.0 g/dL. These 39 patients had significantly higher rates of nonendometrioid histology, high-grade tumors, myometrial invasion of > 50%, adnexal involvement, lymph-vascular space involvement, and advanced FIGO stage than patients with hemoglobin > or = 12.0 g/dL. The rate of thrombocytosis was significantly higher in patients with a low hemoglobin level (36% vs. 8%, P < 0.01). The overall 5-year survival rate of patients with low pretreatment hemoglobin was 59% compared with 89% for those with hemoglobin > or = 12 g/dL (P < 0.01). In the multivariate analysis age, thrombocytosis, nonendometrioid histology, high-grade histology, and advanced FIGO stage were significantly associated with a poor prognosis whereas adnexal involvement, lymph-vascular space involvement, low hemoglobin and myometrial invasion were not. These data indicate that low pretreatment hemoglobin is a prognostic factor in patients with endometrial cancer and that it is associated with thrombocytosis. Low hemoglobin was strongly associated with other unfavorable prognostic factors so that it was significant in the univariate but not the multivariate analysis.

Endometrial Neoplasms↗

Circulating erythroid and megakaryocytic progenitors in polycythaemia vera and essential thrombocythaemia.

We studied the behaviour in culture of erythroid and megakaryocyte progenitor cells (BFU-E, CFU-MK) obtained from peripheral blood (PB) in 38 patients: 15 with essential thrombocythaemia, 3 with reactive thrombocytosis, 16 with polycythaemia vera and 4 with secondary polyglobulia. Clonal erythroid growth without added erythropoietin was observed in all patients with polycythaemia vera and in 5 out of 15 with essential thrombocythaemia, but in none of the patients with reactive thrombocytosis or secondary polyglobulia or in controls. When the CFU-MK were cultured without phytohaemagglutinin-stimulated medium (PHA-LCM), all patients with essential thrombocythaemia and 7 out of 16 with polycythaemia vera showed circulating CFU-MK but none of those with reactive thrombocytosis or secondary polyglobulia or controls did so. This study indicates that the growth in vitro of megakaryocytic and erythroid progenitors from such a readily available source as peripheral blood can be valuable in the diagnosis of certain borderline cases of thrombocytosis or erythrocytosis.

Cells, Cultured↗

Quantitative changes in platelet counts following major urological pelvic surgery.

Postperative quantitative changes in platelet counts have been reported following various extensive surgical procedures. It is generally accepted that reactive thrombocytosis at levels less than 1,000,000/mm3 is a benign condition and is not associated with increased risk of postoperative thrombohemorrhagic complications. The role of prophylactic treatment with platelet inhibitors in these situations is controversial. We assessed retrospectively the timing and the extent of postoperative thrombocytosis in 85 consecutive patients following major urological pelvic surgery and evaluated its possible clinical significance to hemorrhagic and thromboembolic complications, in view of the coincidence of multiple potential risk factors for thromboembolism in these patients. 73 (85.9%) patients demonstrated marked postoperative changes of platelet counts. In 12 patients (14.1%) we found only minor fluctuations in platelet counts throughout the postoperative period. Two distinct groups of 26 and 47 patients respectively could be identified among these 73 patients, who differed in the rate and extent of changes in platelet counts. Those fluctuations were characterized by an early decrease in platelet levels (mean percentage change of 40 and 60% in groups I and II respectively). This was followed by a gradual increase leading to delayed thrombocytosis (mean percentage change of 225 and 305% in groups I and II respectively). Thromboembolic complications were diagnosed in 5 patients. The occurrence of thromboembolism preceded any significant increase in platelet counts in all 5 patients. There was no correlation between the timing of thromboembolic complications and timing and extent of the change in platelet count. We conclude that reactive thrombocytosis following major urological pelvic surgery is a frequent innocuous finding and is not associated with hemorrhagic or thromboembolic complications.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Early treatment decisions with interferon-alfa therapy in early chronic-phase chronic myelogenous leukemia.

PURPOSE: To determine, in patients with Philadelphia chromosome (Ph)-positive chronic myelogenous leukemia (CML) on interferon alfa (IFNalpha), whether combining pretreatment characteristics and early response profiles would distinguish patients with differential benefits that would allow better decisions on subsequent therapy. PATIENTS AND METHODS: A total of 274 patients treated from 1982 through 1990 with IFNalpha regimens were analyzed. A second group of 137 patients treated with IFNalpha and low-dose cytarabine (ara-C) between 1990 and 1994 was later used to confirm the guidelines derived from the original study group analysis. Patients' pretreatment factors and response to IFNalpha therapy at 3, 6, and 12 months were analyzed in relation to subsequent achievement of major cytogenetic response. After univariate analysis of prognostic factors, a multivariate analysis selected, at 6 months, independent pretreatment factors that added to the response status in predicting subsequent outcome. The results were then applied at the 3- and 12-month periods and confirmed in the subsequent population. RESULTS: Response to IFNalpha therapy at 3, 6, and 12 months was a significant predictor of later major cytogenetic response. The presence of splenomegaly > or = 5 cm below the costal margin (BCM) or thrombocytosis > or = 700 x 10(9)/L pretreatment added significant independent prediction to response. At 6 months, patients with a partial hematologic response (PHR) or resistant disease had a less than 10% chance of achieving a later major cytogenetic response, as were those in complete hematologic response (CHR) and who had pretreatment splenomegaly and thrombocytosis. Applying the model at 3 months showed that only patients with < or = PHR and pretreatment splenomegaly or thrombocytosis at 3 months had such a low major cytogenetic response rate. Finally, at 12 months, patients with CHR still had a 15% to 25% chance of having a major cytogenetic response later if they did not have pretreatment splenomegaly and thrombocytosis. CONCLUSION: This analysis allows better selection of patients with Ph-positive CML on IFNalpha therapy for continuation of IFNalpha versus changing therapy early in the course of CML. For treatment programs that choose to change patients to other investigational therapies (eg, intensive chemotherapy and/or autologous stem-cell transplantation [SCT]), baseline outcome expectations are provided for patients continued on IFNalpha therapy, against which the results of new approaches can be compared.

Adolescent↗

Essential thrombocythemia in a dog: case report and literature review.

A 10.5-year-old, castrated male shih tzu was presented for evaluation of weakness, pica, and pallor of the mucous membranes. A hemogram indicated an inflammatory leukogram and a regenerative anemia with spherocytosis and thrombocytosis. The dog responded well to conservative therapy for immune-mediated hemolytic anemia (IMHA). However, the thrombocytosis did not resolve. Serial hemograms were characterized by persistent thrombocytosis (platelet count, 577,000 to 1,200,000/microl) with abnormal platelet morphology. A systematic investigation ruled out causes of physiological and reactive thrombocytoses. A diagnosis of essential thrombocythemia was made by fulfilling the criteria of the Polycythemia Vera Study Group of the National Cancer Institute. The marked thrombocytosis was nonresponsive to hydroxyurea therapy. The dog remains healthy despite the marked increase in the number of circulating platelets. A review of causes of thrombocytoses in humans and animals is presented, and the criteria for diagnosis of essential thrombocythemia are examined.

Anemia↗

Essential thrombocythemia: a review of diagnostic and pathologic features.

CONTEXT: Essential thrombocythemia (ET) is a chronic myeloproliferative disorder (CMPD) characterized predominately by thrombocytosis and abnormal megakaryocyte proliferation. The current diagnostic criteria require a combination of clinical, histologic, and cytogenetic data. The diagnosis relies largely on exclusion of other causes of thrombocytosis. OBJECTIVE: Describe historical, clinical, and laboratory features of ET in order to understand, clarify, and more accurately diagnose this entity. DATA SOURCES: Review contemporary and historical literature on ET and other causes of thrombocytosis. CONCLUSIONS: ET is a relatively indolent and often asymptomatic CMPD that is characterized primarily by a sustained elevation in platelets > or = 600 x 10(3)/microL (> or = 600 x 10(9)/L), proliferating enlarged and hyperlobated megakaryocytes, and minimal to absent bone marrow fibrosis. Significant changes and revisions to the diagnostic requirements and criteria for ET have occurred during the last 30 years. Recently, a mutation in the Janus kinase 2 (JAK2) gene has been found in a significant number of cases of ET and other CMPDs. In up to 57% of ET cases, a mutation in the JAK2 gene can be detected. In the absence of a JAK2 mutation and features of another CMPD, the diagnosis of ET remains a diagnosis of exclusion after other causes of thrombocytosis have been excluded.

Blood Platelets↗

Platelet production after administration of antiplatelet serum and 5-fluorouracil.

Although 5-fluorouracil induces relatively minimal thrombocytopenia in mice compared with antiplatelet serum, the ensuing rebound thrombocytosis is much greater. It also occurs several days later. Administration of 5-fluorouracil 24 hr after antiplatelet serum suppresses the increase in platelets produced by antiplatelet serum while the subsequent thrombocytosis is indistinguishable from that produced by 5-fluorouracil alone. It is concluded that the thrombocytosis that occurs after 5-fluorouracil originates from a class of primitive stem cells, or early megakaryocyte precursors, which are not killed by the drug. Thrombocytosis occurring after antiplatelet serum is derived from more mature precursor cells, which are sensitive to 5-fluorouracil.

Animals↗

Mesenteric venous thrombosis occurring late after splenectomy.

Two patients with mesenteric venous thrombosis which occurred late after splenectomy are reported. In the first case the thrombosis was seen, with preceding thrombocytosis, 3 years after splenectomy. In the second case the thrombosis occurred 2 years and 5 months postoperatively. Platelet counts had not been obtained before the mesenteric thrombosis in this case. In both instances persistent severe anaemia for several weeks preceded the symptoms and signs of mesenteric venous thrombosis. Both patients were treated by extended resection of the affected small bowel. Thus, dangerous thrombocytosis may occur in the presence of persistent severe anaemia even late after splenectomy. Thrombocytosis occurring immediately after splenectomy, which is almost inevitable, should be treated with heparin or other anticoagulants. In the late period the avoidance of persistent severe anaemia seems to be important in the prevention of thrombotic complications due to reactive thrombocytosis in splenectomized patients.

Adult↗

[Megakaryocytic myelosis--clinical aspects, morphology and platelet function].

The study reviews 22 patients, aged between 19 to 73 years, with megakaryocytic myelosis. In the course of the disease 11 patients presented haemorrhagic manifestations, 12 patients thrombotic complications, and 6 patients the association of haemorrhage and thrombosis. The maximum platelet counts ranged from 524 to 2700 x 10(9)/l. The bone marrow showed a conspicuous megakaryocytic proliferation with polyploidy of the nuclei, giant forms and clusters. Marked alterations of erythro- and granulopoiesis were excluded. There was no evidence for a reactive thrombocytosis in any case. Patients with thrombocythaemia due to megakaryocytic myelosis (n = 14), with secondary thrombocytosis of various origin (n = 16), and a control group of healthy donors (n = 20) were investigated with respect to the aggregation behaviour and the total calcium content of blood platelets. In 9 of 14 patients with megakaryocytic myelosis platelet rich plasma did not respond to epinephrine (15 mumol/l), a concentration which induced at least weak aggregation in 14 of 16 patients with secondary thrombocytosis and also in healthy subjects. In patients with megakaryocytic myelosis the mean extent of aggregation induced by epinephrine, collagen or adenosine diphosphate was significant lower as compared to controls whereas in patients with secondary thrombocytosis in most cases this parameter did not differ significantly from that of controls. The total calcium content of platelets was significantly lower in both groups of patients as compared to controls. In 14 patients with megakaryocytic myelosis the concentration of the glycoprotein (GP) IIb-IIIa complex was estimated by crossed- and rocket-immunoelectrophoresis and found to be decreased in 8 of them.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Diagnostic and prognostic value of bone marrow angiogenesis and megakaryocyte c-Mpl expression in essential thrombocythemia.

The lack of diagnostic certainty in some patients makes it difficult to distinguish between primary and secondary forms of thrombocytosis. To augment current diagnostic studies for thrombocytosis, we retrospectively evaluated clinical records and bone marrow trephine specimens of 183 patients with thrombocytosis-164 with essential thrombocythemia (ET), 19 with reactive thrombocytosis (RT)-for bone marrow angiogenesis, bone marrow megakaryocyte c-Mpl staining, and morphologic evidence of megakaryocyte proliferation. Angiogenesis was increased in patients with ET compared with healthy controls (P <.0001) and patients with RT (P =.006). In addition, an increase in angiogenesis was associated with certain disease features such as splenomegaly (P =.004) and reticulin fibrosis (P =.005). Decreased megakaryocyte c-Mpl staining was observed in a heterogeneous pattern in ET compared with healthy controls (P <.0001) and RT (P <.0001). Histologic stratifying criteria incorporating increased angiogenesis, decreased megakaryocyte c-Mpl expression, and marked megakaryocyte proliferation in the bone marrow was highly sensitive (97%) and specific (95%) for distinguishing ET from RT (P <.0001). However, with the current duration of follow-up available on the patients, none of the histologic features evaluated have yet demonstrated prognostic value for subsequent clinical course, vascular events, or survival.

Adolescent↗

Production of thrombopoietin by human carcinomas and its novel isoforms.

Thrombocytosis is occasionally seen in patients with carcinomas and has been assumed to be attributable to interleukin-6 or granulocyte-macrophage colony-stimulating factor produced by carcinoma cells. In this study, we clarified whether thrombopoietin (TPO) is involved in carcinoma-associated thrombocytosis. Expression of TPO mRNA was observed in the majority of 27 carcinoma cell lines as determined by reverse transcriptase-polymerase chain reaction (RT-PCR). There were 6 PCR products differing in size; sequence analysis showed the full-length TPO mRNA (TPO-1), 12- and 116-bp deleted variants (TPO-2 and TPO-3, respectively), and 3 novel isoforms (197- and 128-bp deleted forms and a 60-bp insert form of TPO-3; named TPO-4, TPO-5, and TPO-6, respectively). Of 27 lines, 24 expressed TPO-1 mRNA with various other isoforms. Culture supernatants of COS-1 cells transfected with TPO-5 or TPO-6 cDNA did not promote the proliferation of TPO-responsive cells, whereas Western blot analysis on the cell lysates demonstrated TPO-5 but not TPO-6 protein, suggesting poor extracellular secretion (TPO-5) or poor protein synthesis (TPO-6). TPO protein was detected in 10-fold concentrated culture supernatants of cells of these carcinoma lines, with a median concentration of 0.38 fmol/mL as evaluated by enzyme-linked immunosorbent assay. High blood TPO levels were observed with a median value of 3.46 fmol/mL (range, 0.34 to 8.67 fmol/mL) in patients with advanced carcinomas associated with thrombocytosis. These results indicate that thrombocytosis in patients with carcinomas might be caused, at least in part, by TPO produced by carcinoma cells.

Amino Acid Sequence↗

Platelets counts closely correlate with the disease-free survival interval of pancreatic cancer patients.

BACKGROUND/AIMS: We investigated the relationship between preoperative platelets count and the outcome of pancreatic cancer patients. METHODOLOGY: We retrospectively reviewed the clinical records of 105 patients with invasive ductal carcinoma of the pancreas who underwent radical resection at our institution over a 20-year period. The patients were divided into two groups based on their preoperative platelets counts: a group with thrombocytosis (> or = 40x10(4)/mL) and a group with non-elevated platelets counts (< 40x10(4)/mL). Histopathological findings, survival rates, recurrence patterns, and disease-free survival intervals were compared between the two groups. RESULTS: The outcome of the group with thrombocytosis was significantly poorer than that of the group with non-elevated platelets counts (p=0.043). The mean disease-free interval of patients with thrombocytosis was 4.9 months as opposed to 46.5 months for those with non-elevated platelets counts (p=0.006). Patients were classified into four groups according to changes in platelets counts after surgery. Consistently, the outcome of the group with both pre- and postoperative non-elevated platelets counts was the best compared to groups with post- and/or postoperative thrombocytosis. CONCLUSIONS: Our clinical data suggest that high platelets counts in the preoperative and postoperative period may be associated with a poor outcome and shortening of postoperative disease-free survival interval.

Adult↗

The effect of splenectomy on platelet formation and megakaryocyte DNA content in rats.

The DNA content of rat bone marrow megakaryocytes (MK) was studied by Feulgen photometry following splenectomy and sham operation, respectively. The DNA measurements were preceded by acetylcholinesterase staining for identification of the 2N-8N MK. The number of 2N-8N MK decreased to minimum values, while the number of 16N-64N MK increased to maximum values about 4 days following both splenectomy and sham operation. However, the changes were somewhat more pronounced following splenectomy than sham operation. The total MK number did not change significantly. Platelet production, measured by 35S incorporation into platelets, increased during the first 2 days and remained high for 6-7 days, increasing the platelet counts. All values were about normal 30 days after surgery, except for a minor thrombocytosis following splenectomy. The early, highly significant thrombocytosis, following both splenectomy and general surgery, is caused by increased production of platelets due to the surgical trauma. This is caused by a direct action on bone marrow MK by transforming 2N-8N MK into higher ploidy classes. Lack of splenic platelet pooling may influence the grade and duration of the early thrombocytosis after splenectomy. The late, long-lasting, minor thrombocytosis, which occurs after splenectomy but not after sham operation, can be explained by the removal of the splenic platelet pool.

Animals↗

The effects of 5-fluorouracil on hematopoiesis: studies of murine megakaryocyte-CFC, granulocyte-macrophage-CFC, and peripheral blood cell levels.

the effect of 5-fluorouracil (5-FU) on megakaryocytopoiesis in mice was studied with assays of megakaryocyte colony-forming cells (Meg-CFC) in bone marrow and spleen and simultaneous determinations of peripheral blood counts, after a single intraperitoneal dose (150 mg/kg) of 5-FU. Although only moderate thrombocytopenia (platelet count 40% of control values) occurred at 7 days following administration of 5-FU, sustained rebound thrombocytosis (platelets 200-250% of control values) was observed from days 11 to 17. No rebound leukocytosis was detected despite comparable initial leukopenia. Megakaryocyte colony-forming cells (Meg-CFC) in bone marrow and spleen were decreased for 2 and 5 days, respectively, after administration of 5-FU. Subsequently, there was a prolonged rebound increase in the total number of Meg-CFC in the spleen from days 11 to 17 after 5-FU, a phenomenon which did not occur with Meg-CFC derived from the bone marrow. Granulocyte-macrophage colony-forming cells (GM-CFC) in bone marrow and spleen exhibited alterations which were similar to those of Meg-CFC, indicating similar sensitivities of GM-CFC and Meg-CFC to 5-FU. Normal feedback mechanisms which control platelet levels are perturbed for almost 3 wk after administration of 5-FU. The simultaneous occurrence of maximal thrombocytosis and increased splenic Meg-CFC suggests that increased platelet production after 5-FU is associated with concomitant stimulation of the megakaryocyte progenitor compartment in the mouse spleen. However, the concurrence of thrombocytosis and increased splenic Meg-CFC indicates that elevated levels of Meg-CFC did not initiate the period of thrombocytosis.

Animals↗

Pretreatment with cytosine arabinoside does not protect against the delayed effects of irradiation on thrombopoiesis and erythropoiesis.

We have examined the capacity of the thrombopoietic and erythropoietic systems to respond to challenge with the cytotoxic drug 5-fluorouracil (5-FU) following sublethal doses of irradiation. Normal adult mice respond to 5-FU with a mild thrombocytopenia followed by a marked rebound thrombocytosis. One month after 2 Gy whole-body radiation, platelet counts took longer than normal to reach a nadir after 5-FU, and the rebound thrombocytosis was reduced. A normal response was seen when the interval after radiation was extended to 4 months. Increasing the radiation dose to 6.5 Gy resulted in a much smaller rebound thrombocytosis when 5-FU was given 1 month later. Extending the interval before the drug was given resulted in a normal response being regained between 4 and 7 months. Erythrocyte levels were temporarily depressed after 5-FU in all mice, and it took longer for recovery to occur if they had been irradiated. In another series of experiments, we investigated the effect of priming the mice before irradiation to see if this resulted in radioprotection. An injection of cytosine arabinoside (Ara-C) 2 days before a dose of 6.5 Gy resulted in the expected earlier recovery in platelet counts. To see if cells of the megakaryocyte lineage were protected from the delayed effects of irradiation by this treatment, mice were given 5-FU 1 month after Ara-C plus irradiation. The period of thrombocytopenia was followed by only a small rebound thrombocytosis, and platelet counts were indistinguishable from those found for mice not primed with Ara-C before irradiation. These experiments revealed a delayed effect of irradiation on the thrombopoietic and erythropoietic systems, which was long-lasting but not permanent at the doses used. The effects were not eliminated by priming mice with Ara-C before irradiation.

Animals↗