Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0240066 (iron deficiency)
7,156 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A patient with regional enteritis had received iron dextran for treatment of iron deficiency. Subsequently he developed a large (3.1 g/100 ml) IgG-K serum spike which had precipitin activity against dextran sulfate but not a variety of other antigens. There has been no evidence of multiple myeloma and the spike gradually disappeared spontaneously over the course of 2 years. We speculate that the monoclonal protein may have developed as a response to the iron dextran injections under the immunologic stress of a chronic inflammatory disease.
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PMID:Transient monoclonal immunoglobulin G with anti-dextran activity. 41 80

The percentage of fat-cell areas in bone marrow particles from 22 patients with untreated myelomatosis was estimated. In only 1 patient was the mean fat cell area below 25% of the bone marrow area measured. A negative correlation was found between the area of fat cells and plasma cells, indicating a displacement of the fat cell area by the plasma cells. 28% of the patients had empty bone marrow deposits of iron. However, based on a normal iron saturation of S-transferrin and a normal sideroblast count in the bone marrow, the supply of iron to the erythropoiesis was considered sufficient. All patients but one had normoblastic bone marrows. Using a deoxyuridine suppression test in 10 patients, no biochemical defect could be demonstrated. To judge from the correlation coefficient a minor degree (9-14%) of the variation in Hb values could be predicted from the cellularity in the bone marrow while a major degree (70%) could be predicted from the renal glomerular filtration rate. The results do not support a displacement of blood-forming elements, iron deficiency, vitamin B12 or folic acid deficiency to be of general significance in the pathogenesis of anaemia, but agrees with a causal relationship between anaemia and renal failure.
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PMID:Bone marrow studies in myelomatosis. 71 78

In the evaluation of patients older than 50 with severe back pain and chronic simple anemia, the diagnosis of multiple myeloma must be considered. Due to the age group affected, degenerative changes on spinal films may be misdiagnosed as osteoporosis, and anemia may be attributed to iron deficiency. These errors can be avoided in more than 99% of the cases of multiple myeloma by ordering a serum protein electrophoresis (SPE). Abnormal SPE patterns include monoclonal gammopathy and hypogammaglobulinemia. In the detection of multiple myeloma, magnetic resonance imaging has been found superior to plain radiograph, computed tomography and bone scan.
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PMID:Back pain: the primrose path--a case report. 213 82

The most common cause of limited response to recombinant human erythropoietin (r-HuEPO) is unrecognized, mild-to-moderate iron deficiency, either at the start of treatment or secondary to enhanced iron utilization by newly formed erythrocytes. Iron stores in patients with chronic renal failure (CRF) are often depleted through gastrointestinal bleeding, blood loss during haemodialysis, and blood sampling. Mobilization of iron stores may be inadequate, especially during rapid haemoglobin regeneration. Aluminium overload may also interfere with gastrointestinal and cellular iron uptake. Overt or unrecognized infection or inflammation is another common cause of hyporesponsiveness, and is a consequence of increased blood concentrations of cytokines such as tumour necrosis factor (TNF), interleukin-1 (IL-1), and interferon-gamma (IFN-gamma), which suppress erythrocyte stem-cell proliferation. Less common causes include severe secondary hyperparathyroidism and myeloma (during chemotherapy). Response to r-HuEPO can be best predicted by baseline fibrinogen (a marker of subclinical inflammation); baseline transferrin receptor (sTfR) concentrations (a marker of functional iron deficiency); and sTfR increment after 2 weeks (a marker of early change in erythropoietic activity).
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PMID:R-HuEPO hyporesponsiveness--who and why? 764 9

Generalized or localized itch without primary skin manifestations may be the presenting symptom of serious internal diseases. Five characteristic cases of pruritus are discussed: Hodgkin's disease, primary sclerosing cholangitis, polycythemia vera, iron deficiency (with pica), and uremia. Other important causes must be considered; all forms of cholestasis, including primary biliary cirrhosis, drug-induced, pregnancy-related, and extrahepatic cholestasis; other hematologic and malignant disorders such as non-Hodgkin's lymphoma, leukemia, multiple myeloma, solid tumors, and myelodysplastic syndromes; metabolic and endocrine diseases, most notably diabetes mellitus, hyperthyroidism, hypothyroidism, and carcinoid syndrome; focal neurologic diseases such as brain tumors, cerebral infarctions and multiple sclerosis; adverse drug reactions without rash; infectious diseases, especially parasitic and HIV infections. A diagnostic laboratory screening for pruritus of undetermined origin is suggested.
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PMID:[Pruritus--also a challenge in internal medicine]. 852 44

Recombinant erythropoietin (r-EPO) was administered to 37 patients with advanced, transfusion-dependent and chemo-resistant multiple myeloma (MM), at the fixed dose of 10,000/U s.c., 3 times a week, for 2 months. Thirteen patients (35.1%) achieved a significant response in terms of complete abolition of red cell transfusions. Factors significantly predictive of response were: a) inappropriate production of endogenous EPO, as expressed by a reduced observed/predicted ratio; b) presence of a consistent number of circulating erythroid precursors BFU-E; c) low serum levels of tumor necrosis factor (TNF) and interleukin-1 (IL-1), cytokines with inhibitory activity on erythropoiesis; d) a single line of previously received chemotherapy. Renal failure, bone marrow plasma cell infiltration, serum levels of IL-6 and other main clinical and laboratory parameters did not affect significantly the response to r-EPO. High fluorescence reticulocytes (HFR) and soluble transferrin receptor (sTfR) values were useful to detect an early stimulation of erythropoiesis in responders, while a high percentage of circulating hypochromic erythrocytes (HE), as assessed by an automated counter, identified those patients developing functional iron deficiency during r-EPO treatment. We conclude that about one-third of severely anemic patients with advanced MM, unresponsive to chemotherapy, may benefit by r-EPO therapy. The clinical management of these patients can be accomplished using non-invasive parameters, such as sTfR, HFR and HE.
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PMID:Clinical results of recombinant erythropoietin in transfusion-dependent patients with refractory multiple myeloma: role of cytokines and monitoring of erythropoiesis. 922 86

Recombinant human erythropoietin (EPO; epoetin) has been shown to be effective in improving anemia in a proportion of cancer patients. The response rate is approximately 60%, but varies considerably according to baseline hematocrit and transfusion needs, as well as the response criteria used. Response is not greatly influenced by the type of tumor, except in situations of major marrow involvement and limited residual hematopoiesis, or in the presence of specific mechanisms of anemia, such as hemolysis, splenomegaly, bleeding, hemodilution, or ineffective erythropoiesis. Stem cell damage by previous therapy as well as marrow suppression by current intensive chemotherapy can impair response. Besides its intensity, the type of chemotherapy may not be critical, although patients undergoing platinum-based chemotherapy may respond faster than those receiving non-platinum regimens. Complications, such as infections, bleeding, or nutritional deficiencies, may have a major negative impact on outcome. An important response-limiting factor is functional iron deficiency (ie, an imbalance between iron needs in the erythropoietic marrow and iron supply), which depends on the level of iron stores and its rate of mobilization. Functional iron deficiency is best monitored by the percentage of hypochromic red blood cells, and oral or intravenous iron supplements should be given when this percentage increases above 10%. All these factors explain why the response rate to epoetin is only approximately 60%. Therefore, it would be interesting to develop models that could help predict response to epoetin to help select the most appropriate cancer patients for this therapy. Few baseline parameters have been shown to be highly predictive of response in patients with solid tumors, although most studies in patients with myeloma or lymphoma have indicated that patients with a low baseline serum EPO level will respond better. Early changes after 2 to 4 weeks of treatment are also of great interest. Among these early changes, increments of soluble transferrin receptor, reticulocytes, and hemoglobin, as well as the persistence of elevated ferritin or EPO levels, have all shown some predictive value. Combination of baseline serum EPO and the 2-week increment of soluble transferrin receptor or hemoglobin may provide the best prediction of response.
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PMID:Prediction of response to optimize outcome of treatment with erythropoietin. 967 27

The anaemia associated with cancer can be effectively treated with recombinant human erythropoietin (rHuEpo) in about 60% of the patients. However, the response rate varies according to treatment modalities as well as the response criteria used. A number of disease- or chemotherapy-related factors determines the probability of response. Several specific mechanisms of anaemia, such as haemolysis, splenomegaly, bleeding, haemodilution, or ineffective erythropoiesis can seriously interfere with response. However, the type of tumor, in particular haematologic versus non-haematologic, is not critical, except in situations of major marrow involvement and limited residual haematopoiesis. Stem cell damage by previous therapy, reflected by low platelet counts or high transfusion needs, will impair response. In addition, marrow suppression by current intensive chemotherapy will also have a negative impact. Besides its intensity, the type of chemotherapy may not be critical, although patients undergoing platinum-based chemotherapy may respond faster than those receiving non-platinum regimens. Complications such as infections, bleeding or nutritional deficiencies may have a major negative impact on outcome. An important response-limiting factor is functional iron deficiency, i.e. an imbalance between iron needs in the erythropoietic marrow and iron supply, which depends on the level of iron stores and its rate of mobilisation. Therefore, oral or preferably intravenous iron supplements should be given when serum ferritin is below 40-100 micrograms/l, reflecting the absence of iron stores, or when the percentage of hypochromic red cells rises above 10%, indicating functional iron deficiency even in the presence of adequate storage iron. Because up to 40% of the patients will not respond to rHuEpo, it is of utmost importance to develop models that could help predict response to rHuEpo and thus select the most appropriate cancer patients for this therapy. Most studies of patients with myeloma or lymphoma have indicated that patients with a low baseline serum Epo level will respond better, but this is not true of patients with solid tumors. Also of considerable interest are early changes of erythropoietic parameters after 2 to 4 weeks of treatment, including increments of serum transferrin receptor (sTfR), reticulocytes and haemoglobin, as well as the persistence of elevated ferritin or Epo levels. Combination of baseline serum Epo and the 2-week increment of sTfR or haemoglobin may provide the best prediction of response.
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PMID:Prediction of response to treatment with recombinant human erythropoietin in anaemia associated with cancer. 978 36

The purpose of this study was to evaluate the sTfR-F index and hypochromic erythrocytes (HYPO%) as potential predictors of response to recombinant human erythropoietin (r-HuEPO) of anemic patients with multiple myeloma (MM) before treatment, as well as early in the course of treatment. Twenty-six newly diagnosed anemic MM patients received r-HuEPO 30,000 IU/wk sc, for six weeks. The sTfR-F index and HYPO% were determined at baseline and at weeks 2 and 6. Patients were classified in 1 of 4 categories of a diagnostic plot, according to erythropoietic state (ES I-IV), defined by the combination of sTfR-F index and HYPO%. Sixteen of 20 patients in ES I and II before treatment responded to r-HuEPO, whereas none of the 6 patients in ES III and IV responded (P < .001). At week 2, 44% of patients who responded and 60% of the nonresponders were in functional iron deficiency (FID) and the proportion increased to 69% and 80%, respectively, by week 6. Seven of the patients who did not respond received in addition 200 mg iron sucrose IV weekly, for the next 4 weeks, and 6 of them responded. These results suggest that combination of sTfR-F index and HYPO% in a diagnostic plot can be used as a predictive model to recognize patients who will benefit from r-HuEPO and identify FID requiring iron supplementation, before treatment and early in the course of treatment, contributing thus to optimization of r-HuEPO therapy.
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PMID:Evaluation of hypochromic erythrocytes in combination with sTfR-F index for predicting response to r-HuEPO in anemic patients with multiple myeloma. 1651 46

Red blood cell (RBC) aggregation in blood samples taken from healthy volunteers and from multiple myeloma (MM), iron deficiency (IDA) and beta-minor thalassemia (T) patients was studied by a novel method based on electrical properties of colloidal systems. It was found that RBC aggregation changes in the following order: MM > IDA > control > or = T. Comparison of aggregation data obtained by this and other techniques shows that the sensitivity of the proposed technique to detect abnormal changes in RBC aggregation is substantially higher. For example, the mean values of relative aggregation indices measured for MM by this method and that based on the phenomenon of light scattering are 13.0 and 4.2, respectively. The high sensitivity of this technique allows investigations of the effect of moderate aggregating agents (i.e., IgG) on RBC aggregation. It is assumed that the higher sensitivity of the proposed technique to abnormal changes in RBC aggregation may be helpful both in basic studies to improve the understanding of the reason(s) for these abnormal changes, and in clinical investigations for earlier diagnostics.
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PMID:A novel technique for quantification of erythrocyte aggregation abnormalities in pathophysiological situations. 1732 36


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