Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P02794 (ferritin)
17,525 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Hemophagocytic syndrome (HPS) presents with fever, pancytopenia, liver dysfunction and increase in hemophagocytic histiocytes in various organs. Although there are two major classifications of HPS in adults, malignant and reactive histiocytosis, it is often very difficult to distinguish between these disorders. We analyzed the laboratory data of patients with HPS to evaluate prognostic factors. Of 34 patients, 14 survived, and 20 died. The median age of survivors was 29.6+/-11.5 yr significantly younger than those who died (54.7+/-17.8 yr). Twenty patients had no obvious underlying disease, the other 13 had hematological malignancies or viral infections. Comparison of laboratory data revealed that nonsurvivors had significantly lower Hb and platelet values on admission. During treatment, worsening of anemia and thrombocytopenia, increase of transaminase and biliary enzymes were similarly more prominent. Risk factors associated with death were: age over 30 yr, presence of disseminated intravascular coagulation, increased ferritin and beta2-microglobulin, anemia accompanied by thrombocytopenia and jaundice. Our data suggests that patients with HPS and any of these risk factors should be treated aggressively with sufficient chemotherapy and supportive care.
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PMID:Prognostic factors of hemophagocytic syndrome in adults: analysis of 34 cases. 933 23

We describe 4 cases of lysinuric protein intolerance, which all fulfilled the diagnostic criteria for hemophagocytic lymphohistiocytosis. Mature histiocytes and neutrophil precursors participated in hemophagocytosis in the bone marrow. Moreover, serum levels of ferritin and lactate dehydrogenase were elevated, hypercytokinemia was present, and soluble interleukin-2 receptor levels were increased up to 18.6-fold. The diagnosis of lysinuric protein intolerance should therefore be considered in any patient presenting with hemophagocytic lymphohistiocytosis.
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PMID:Intermittent hemophagocytic lymphohistiocytosis is a regular feature of lysinuric protein intolerance. 1063 91

Two patients with hemophagocytic lymphohistiocytosis who presented with acute liver failure are reported. Both presented with fever, hepatosplenomegaly, markedly elevated liver function tests, abnormal coagulation profiles, and an increase in serum ferritin. Both infants were diagnosed with neonatal hemochromatosis based on a clinical picture of hepatic insufficiency with hyperferritinemia and were referred for liver transplantation. The first patient died of liver failure and septicemia before transplantation. Review of autopsy material revealed a hepatitis-like pattern and extensive infiltration of liver and other organs including bone marrow by histiocytes, some of which were hemophagocytic. The second patient underwent liver transplantation but died 44 days thereafter from progressive hemophagocytic lymphohistiocytosis. Examination of the resected liver demonstrated a hepatitis-like pattern, proliferation of histiocytes, and hemophagocytosis, and the bone marrow revealed hemophagocytic histiocytosis. Hemophagocytosis recurred in the allograft. Hepatic manifestations are common in hemophagocytic lymphohistiocytosis and overt hepatic failure may occur, but initial presentation as fulminant hepatic failure is not well recognized. Elevated serum ferritin can make the distinction from neonatal hemochromatosis and other forms of neonatal liver failure difficult. Hemophagocytic lymphohistiocytosis should be considered in the differential diagnosis of neonatal liver disease, especially when it is accompanied by cytopenias.
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PMID:Hemophagocytic syndrome presenting as acute hepatic failure in two infants: clinical overlap with neonatal hemochromatosis. 1034 80

A 40-day-old baby girl presented with intermittent fever, lymphadenopathy, massive hepatosplenomegaly, progressive pancytopenia and features of disseminated intravascular coagulopathy. A bone marrow aspiration was performed and showed florid histiocytic proliferation with marked hemophagocytosis. Based on the diagnostic guideline for Hemophagocytic Lymphohistiocytosis proposed by the Familial Hemophagocytic Lymphohistiocytosis Study Group of Histiocyte Society, this patient has fulfilled most of the criteria. We have also found that serum ferritin and lactate dehydrogenase to be very high in this patient. It remains uncertain whether the disorder is reactive or neoplastic.
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PMID:Serum ferritin and lactate dehydrogenase in a case of hemophagocytic lymphohistiocytosis. 1087 71

Seven patients with peripheral B-cell lymphoma associated with hemophagocytic syndrome are reported. In all cases, the histologic subtype was diffuse large B-cell lymphoma. Hemophagocytic features were noted in the bone marrow with lymphomatous infiltration. Hemophagocytic syndrome occurred with presentation of the lymphoma and was characterized by high fever, cytopenias, and elevated levels of lactate dehydrogenase, ferritin, C-reactive protein, and cytokines [interferon gamma, macrophage colony-stimulating factor, soluble interleukin (sIL)-2R, and IL-6] without evidence of infection. The phenotypes of lymphomas were suspected CD19+, CD20+, S-Ig+, CD10-, and coexpression of CD5 in some cases. Flow cytometric analysis showed a low CD4/CD8 ratio in peripheral blood and bone marrow. We suggest that the pathogenesis of hemophagocytic syndrome is hypercytokinemia induced by a proliferation of reactive CD8+ T cells. Previous reports of B-cell lymphoma with hemophagocytic syndrome demonstrated similar clinical manifestations and poor prognoses. The invasion patterns of these diffuse large B-cell lymphomas with hemophagocytosis may be classified into three groups: microscopic lymph-node involvement type, gross lymph-node involvement type, and splenic lymphoma type. Although hemophagocytic syndromes have been reported to be associated with T-cell lymphomas, our results indicate an association with diffuse large B-cell lymphoma.
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PMID:B-cell lymphoma-associated hemophagocytic syndrome: clinicopathological characteristics. 1096 86

To determine the pathogenesis of hemophagocytic lymphohistiocytosis (HLH), serum levels of neuron-specific enolase (NSE) and cytokine profiles were investigated. Serum concentrations of NSE and several cytokines were measured by immunoassays, and the association was evaluated in 18 HLH patients. Serum NSE levels increased (> 10 ng/mL) in 27/29 samples (93%) during the active febrile phase, the mean level of which (35.9 ng/mL) was much higher than that during the remission phase (11.2 ng/mL) (P = .001). The peak levels of NSE in 11 patients who required cytotoxic agents were higher than those in 7 patients without chemotherapy, 64.6 +/- 49.4 and 17.9 +/- 12.9, respectively (P = .265). The NSE levels correlated positively with the levels of interferon (IFN)-gamma (Pearson's correlation coefficient [r] = 0.408, P = .044), soluble interleukin-2 receptor (sIL-2R) (r = 0.464, P = .048), lactate dehydrogenase (r = 0.830, P < .00001), aspartate aminotransferase (r = 0.531, P = .003), and ferritin (r = 0.715, P < .00001), and correlated negatively with platelet count (r = -0.422, P = .021), but not with other parameters, including tumor necrosis factor-alpha, IL-1 beta, IL-18, soluble Fas ligand and C-reactive protein. Multiple regression analysis indicated that the correlation of NSE with platelet count was independent of other correlations. Sequential NSE changes well reflected the clinical course of patients. Immunohistochemical staining revealed an appreciable number of NSE-positive histiocytes in bone marrow specimens with florid hemophagocytosis. These results suggest that the circulating NSE originated from macrophages stimulated with IFN-gamma/sIL-2R, and partly from the destruction of platelets. Serum NSE level may be a useful marker for predicting the disease progression of HLH.
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PMID:Neuron-specific enolase in hemophagocytic lymphohistiocytosis: a potential indicator for macrophage activation? 1097 10

Hemophagocytic syndrome (HPS) causes pancytopenia, increased blood LDH level, liver dysfunction, DIC, etc. with macrophages appearing in the bone marrow, spleen, lymph nodes, etc. Adult HPS is mostly secondary to various infections, malignant tumors, etc. and sometimes has a serious outcome. Particularly infection associated HPS (IAHS) is triggered by viral, bacterial and fungal infections. The cases of unknown primary disease and suspected IAHS of unidentified pathogenic microorganism are often encountered in the clinical setting. The authors compared IAHS and malignant associated HPS (MAHS) and classified IAHS into viral associated HPS (VAHS), bacterial associated HPS (BAHS) and fungal types to compare the test values based on the test findings at the onset in the HPS cases treated at our Department. The patients consisted of 21 HPS cases, 11 IAHS cases (VAHS 4, BAHS 5, fungal 2) and 10 MAHS cases. Based on the test findings (WBC, Hb, Plt, LDH, ferritin, myelogram, cytokines, [IFN alpha, TNF gamma, IL-6, sIL-2R, M-CSF], adhesion molecules [sICAM-1, sVCAM-1, sELAM-1, sL-selectin]) at the onset, a comparison between IAHS and MAHS and among the IAHS cases classified by pathogenic microorganism was made. In the comparison between IAHS and MAHS, the Hb value was significantly decreased and sIL-2R tended to be increased at the onset in MAHS. When comparing the IAHS cases by pathogenic microorganism, Plt was significantly decreased and sICAM-1 and sVCAM-1 were increased at the onset in the BAHS, The BAHS cases had serious underlying diseases and poor prognosis with high incidence of DIC complications. We are going to accumulate more cases for early diagnosis and treatment of IAHS.
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PMID:[Clinical study of infection associated hemophagocytic syndrome]. 1101 10

Macrophage activation syndrome (MAS) is a serious complication of childhood systemic inflammatory disorders that is thought to be caused by excessive activation and proliferation of T lymphocytes and macrophages. Recent findings in hemophagocytic lymphohistiocytosis, a disease that is clinically similar to MAS, highlight the possible pathogenetic role of a defective function of perforin, a protein involved in the cytolytic processes and control of lymphocyte proliferation. Although the clinical features of MAS have been well documented, early diagnosis can be difficult. Measurement of the serum ferritin level may assist in the diagnosis and may be a useful indicator of disease activity, therapy response, and prognosis. The recognition that MAS belongs to the secondary or reactive hemophagocytic syndromes has led to the proposal to rename it according to the contemporary classification of histiocytic disorders. Cyclosporin A has been found effective in patients with corticosteroid-resistant MAS. A recent report has suggested that etanercept may be a useful adjunctive therapeutic agent.
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PMID:Macrophage activation syndrome. 1219 53

A 7-year-old previously healthy Czech boy was admitted due to fever, hepatosplenomegaly and pancytopenia. Aspiration of bone marrow revealed no signs of hemoblastosis (nor hemophagocytosis). He was treated with antibiotics and virostatics without effect. Progression of hepatosplenomegaly and pancytopenia induced suspicion of hemophagocytic lymphohistiocytosis (HLH). Five weeks later, bone marrow hemophagocytosis of erythrocytes, nuclear elements and platelets was detected. He was given corticoids and intravenous immunoglobulins and transferred to our haematology department. Laboratory findings of mild pancytopenia, hypofibrinogenaemia, hyperlipidaemia and elevated levels of ferritin, LDH and immunoglobulins were compatible to the diagnosis of HLH. Immunologic evaluation revealed T-lymphocyte activation. Appropriate immunosuppressive treatment with Dexamethasone, etoposide and Cyclosporine A was launched, followed by transient subside of fever and improvement of peripheral blood count, but not regression of hepatosplenomegaly. Four weeks later, relapse of fever and deterioration of blood count led to intensification of immunosuppression. However, no effect was evident. Moreover, hypertrophic cardiomyopathy with ventricular arrhythmia occurred. Treatment with antilymphocytic globulin for resistant course of HLH was planned. Before that, a fifth bone marrow aspiration was performed. Surprisingly, many Leishmania amastigotes were observed within marrow macrophages. Leishmania infection was confirmed by positive serology. Immunosuppressive treatment was withdrawn and changed for causal treatment with liposomal Amphotericin B. Positive clinical effect with subside of fever was evident in ten days, splenomegaly gradually resolved during three weeks, restoration of normal blood count lasted six weeks. No relapses of HLH nor leishmaniasis occurred. In control bone marrow aspirate performed three months later, the parasites were not detected. Ten months after the event, the patient is in complete remission of HLH with normal immunologic parameters. Most probably, he contracted visceral leishmaniasis during a visit of a Neapol area in Italy 3 months before the onset of the disease.
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PMID:[Hemophagocytic lymphohistiocytosis as a manifestation of visceral leishmaniasis]. 1242 69

A 66-year-old man was admitted to our hospital for fever on January 19, 1998. He began showing periodic high fever in June 1997 and an increased serum LDH in August 1997. His history included surgery for esophageal cancer in 1993. On admission, the patient's body temperature was 38.5 degrees C. Physical examination was negative for lymphadenopathy, hepatosplenomegaly, and skin rash. Peripheral blood revealed a hemoglobin level of 8.6 g/dl and a platelet count of 7.9 x 10(4)/microliter. Bone marrow examination showed hypocellularity with marked histiocytic hemophagocytosis. The various bacterial cultures were negative. Serum LDH was elevated to 1,606 IU/l, and ferritin was greater than 3,000 ng/ml. Antinuclear antibodies were negative. No significant elevation of viral antibody titers including that to Epstein-Barr virus was found. Hemophagocytic syndrome (HPS) was diagnosed, but no underlying diseases was identified. The patient's condition was complicated by interstitial pneumonia and pleural effusion. gamma-globulin and pulse methylprednisolone both proved ineffective for the HPS; however, complete remission was achieved with cyclic intravenous administration of etoposide (VP-16, 150 mg/day). Interestingly, the interstitial pneumonia resolved promptly with etoposide therapy. The patient relapsed, in July 2001, exhibiting high fever, cytopenia, and marrow hemophagocytosis. His condition was ameliorated by administration of etoposide. This was a rare case of chronic and recurrent HPS of unknown etiology accompanied by interstitial pneumonia. Etoposide should be considered as a primary therapy for HPS and its complications in cases such as our patients.
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PMID:[Successful use of etoposide in an elderly patient with chronic recurrent hemophagocytic syndrome]. 1270 51


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