Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0023473 (chronic myeloid leukemia)
18,916 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Plasma UBBC-B12 and transcobalamins were measured in 112 patients suffering from different haematological disorders. The data showed different patterns of changes in plasma transcobalamin profile in different haematological disorders. Plasma UBBC-B12 and transcobalamins were significantly higher than normal in untreated chronic myeloid leukaemia, acute promyelocytic leukaemia, nutritional megaloblastic anaemia and in refractory anaemias with hypercellular marrow. Normal levels of these proteins were noted in chronic lymphatic leukaemias, in primary and secondary hypereosinophilic states and in multiple myeloma. Subnormal levels of these proteins were observed in hypoplastic anaemia and acute lymphoblastic leukaemia. Chronic myeloid leukaemia patients during blast crisis and acute myeloid leukaemia patients except those suffering from acute promyelocytic leukaemia showed varying pattern of plasma transcobalamins depending on type of blast crisis or FAB subtype of AML. The significance of these changes in plasma transcobalamins have been discussed along with the experience of other workers in this field.
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PMID:Plasma transcobalamins in haematological disorders. 243 89

Since the late 1970s, 18 clinical studies have been conducted in Japan with various types of human interferon (IFN) for their possible anti-tumor efficacy under the control of the Special Committee for Clinical Application of IFN of the Ministry of Health and Welfare. Objective antitumor effects have been observed in renal cell carcinoma, brain tumor, multiple myeloma, malignant lymphoma, adult T cell leukemia, chronic lymphocytic leukemia, chronic myelogenous leukemia, and by local injections in skin cancer such as malignant melanoma and cutaneous lymphoma. In this paper, updated results of clinical studies of the 3 types of IFNson various malignant tumors in Japan was reviewed, and the potential usefulness of IFNs as the first cytokine introduced into a clinical trial of the treatment of cancer was discussed.
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PMID:[Clinical studies on interferon in cancer therapy in Japan]. 243 62

Interferons are new and effective agents in the treatment of various haematological neoplasias. Alpha-interferon (natural or recombinant) has a high efficacy (90% response rate) in hairy cell leukaemia. Complete remissions are, however, rare and definite cure of the disease is unlikely. Alpha-interferon induces haematological remissions in about two thirds of patients with chronic myeloid leukaemia and leads to a reduction in Philadelphia chromosome in about 40% of patients. It is uncertain, however, whether this treatment will actually prolong the life of these patients as compared with conventional treatment. Alpha-interferon has a beneficial effect in some patients with low malignant non-Hodgkin lymphomas (in particular follicular lymphomas). The response rate in myeloma is rather small (20%). Gamma-interferon is not effective in hairy cell leukaemia, non-Hodgkin lymphoma and myeloma. It is, however, of some efficacy in chronic myeloid leukaemia (the response rate in lower than with alpha-interferon) and possibly has some effect in patients with acute myeloid leukaemia and myelodysplastic syndromes. The toxicity of interferons (alpha and gamma) consists of an influenza-like syndrome during the first days of treatment. Low doses of alpha-interferon show virtually no long-term toxicity. However, bone and muscular pain is sometimes dose-limiting with intermediate doses (5 to 15 million units) of alpha-interferon.
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PMID:[Interferon therapy in hematologic neoplasms]. 245 54

In the past decade, interferon, the first of a new class of biologic response modifiers, has undergone extensive Phase I and II clinical evaluation in a broad spectrum of cancers, including hematologic malignancies, lymphomas, and solid tumors. Interferon has been found to have important clinical activity in hairy-cell leukemia, low-grade non-Hodgkin's lymphoma, cutaneous T cell lymphoma, chronic myelogenous leukemia, previously untreated multiple myeloma, acquired immunodeficiency syndrome-related Kaposi's sarcoma, malignant carcinoid tumors, intravesically treated superficial bladder cancer, intraperitoneally treated ovarian carcinoma, renal cell carcinoma, and malignant melanoma. Recombinant DNA technology has produced molecules such as the interferons, which are antigenic and can induce antibody formation as part of a generalized immune response. The frequency of antibody occurrence, the magnitude of the antibody response, and the type of antibody induced by the interferons is thought to be related to several factors. These include the specific type of neoplasm for which interferon was administered; the specie of interferon administered; the dose, route, schedule, and duration of interferon administered; and the assay method and sampling time used to determine the antibody titer. Opinions and clinical observations about how these antibodies affect the clinical course of a disease vary among investigators. Some studies have demonstrated that antibody formation is associated with an abrogation of the clinical response, while others have not found any effects on the clinical course of a disease due to antibody presence.
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PMID:Biotherapy with interferon--1988. 246 49

Plasma cell myeloma is a more complex neoplasm than suggested by the relative uniformity of its dominant plasma cells, which represent the terminal stage of normal B-cell differentiation. Phenotypic, molecular, and cellular genetic data favor the presence of a myeloma stem cell early in hematopoietic development so that, as in chronic myelogenous leukemia (CML), a far distance exists between the primordial malignant cell that was the target of malignant transformation and the dominant clinical phenotype. Traces of pre-B, myeloid, and T cells are coexpressed with the mature B-cell phenotype, an occurrence unknown in normal B-cell differentiation. Analogous to CML, disease progression is marked by disease dedifferentiation, occasionally with cessation of myeloma protein production and development instead of extramedullary lymphomalike features with high LDH or myelodysplasia/acute myelogenous leukemia (AML) syndromes. The prognostic importance of serum LDH levels even in newly diagnosed myeloma suggests the early presence of tumor cells with "LDH phenotype," which, as a result of drug resistance and proliferative advantage, expand preferentially during disease progression. Further characterization of these cells may provide important clues about the ontogeny of multiple myeloma. Myeloma cells express many receptors for different biological signals that might be exploitable for therapy with immunotoxins or radioisotopes. Plasma cells and their precursors also produce a variety of cytokines, some of which have putatively autostimulatory functions (eg, IL-1, IL-5, IL-6) and/or are related to disease manifestations (eg, IL-1 and TNF-beta as OAF). The wealth of cellular expression by plasma cells provides clues for understanding the mechanisms of gene activation and the nature of abnormal growth and differentiation. The accuracy of prognostically relevant staging systems has been refined with the use of new quantitative parameters that reflect tumor mass (ie, serum B2M levels) and biology. Further studies of cellular and molecular biology (ie, CAL-LA, H-ras) may reveal those tumor cell features that define clinical entities, response to therapy, and long-term prognosis. The lack of a major advance in prognosis despite the use of more drugs and more intensive regimens justifies the continued use of standard melphalan-prednisone for patients with a highly favorable prognosis, for the very aged, and for those with a short life expectancy due to other major medical problems. However, a radical departure from standard practice is required to improve the prognosis for younger patients with poor risk features.(ABSTRACT TRUNCATED AT 400 WORDS)
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PMID:Plasma cell myeloma--new biological insights and advances in therapy. 246 90

The interferons are the first of a new class of biologic response modifiers that include, among others, the interleukins, colony-stimulating factors, erythropoietin, additional growth factors, and monoclonal antibodies. Interferons have exhibited important clinical activity in hematologic malignancies, lymphomas, and solid tumors. Specific diseases responding to interferons include hairy-cell leukemia (HCL), chronic myelogenous leukemia (CML), low-grade non-Hodgkin's lymphoma, cutaneous T-cell lymphoma, multiple myeloma, superficial bladder carcinoma, malignant carcinoid, acquired immunodeficiency syndrome (AIDS)-related Kaposi's sarcoma, ovarian carcinoma, renal cell carcinoma, and malignant melanoma. The potentially antigenic nature of the recombinant interferons can result in the formation of antibodies. These antibodies have been associated with the abrogation of some of the clinical responsiveness of some patients treated with interferons. It is hoped that the controversy existing over the role of antibody formation in treatment efficacy can be resolved by prospective trials using standardized methodology in such areas as assay type, sampling time, route of drug administration, treatment schedule, cumulative dose, and duration of treatment.
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PMID:Biotherapy in clinical practice. 247 4

The effects and toxicities of interferon alfa are described, and the role of the pharmacist in making decisions and providing education about biologic response modifiers (BRMs) is discussed. Interferons have both direct antitumor activity and extensive effects on the immune system. Two recombinant interferon alfa products--interferon alfa-2a and interferon alfa-2b are available commercially. Indications in FDA-approved labeling for interferon alfa include the treatment of hairy-cell leukemia, acquired immunodeficiency syndrome-related Kaposi's sarcoma, and genital warts; however, it also is being used successfully against early chronic myelogenous leukemia, low-grade non-Hodgkin's lymphoma, cutaneous T-cell lymphoma, and previously untreated multiple myeloma. Other malignancies that respond to treatment with interferon alfa are malignant melanoma, ovarian carcinoma, and renal cell carcinoma. The toxic pattern of interferon alfa consists of flu-like symptoms, which are seen at all doses, on all schedules, and in virtually all patients. After repeated dosing, the chronic toxicities of anorexia, weight loss, and malaise and fatigue may develop. Myelosuppression, central nervous system toxicity, increased hepatic enzyme concentrations, nausea and vomiting, and cardiovascular toxicity also are possible. Serum neutralizing antibodies may be formed during therapy; this phenomenon may affect the clinical outcome. Numerous BRMs are being investigated for clinical use, and pharmacists must become conversant in the issues that surround these agents. Areas in which pharmacist involvement and knowledge are important include overall cost, product similarities and differences, dosing and scheduling, drug delivery systems, ways to minimize waste, adverse effects and their management, drug interactions, storage requirements, differences in production and purification techniques among manufacturers, and education of patients and staff.(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:Biologic response modifiers: the interferon alfa experience. 248 96

Evaluation of double-stranded RNA by flow cytometric analysis is an important parameter for discriminating quantitatively between human tumoral and normal cells. We studied double-stranded RNA (ds-RNA) measurements using propidium-iodide after DNase treatment in bone marrow and in peripheral blood cells from patients with acute lymphoblastic leukemia, acute myeloid leukemia, chronic myeloid leukemia and multiple myeloma. The highest incidence of ds-RNA excess (greater than 30%) was observed in patients with acute leukemia (75%), while those displaying it in complete remission phase were 20-25% and in relapse about 80%. A high incidence was also noted in patients with chronic myeloid leukemia in blastic crisis (100%) and in patients with multiple myeloma with heavy tumor stage myeloma (78%). We never observed an elevated ds-RNA excess in the control group, formed by normal peripheral blood lymphocytes. Indeed the specificity of this tumor marker is attested to not only by its high levels in various hematologic malignancies, but also by its absence in normal cells. Hence the importance of its clinical implications in malignant hematologic diseases is confirmed.
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PMID:Double-stranded RNA excess in hematologic diseases: clinical implications. 263 84

Thirty patients with malignant hematological disease underwent allogeneic bone marrow transplantation following Busulphan (Bu) and Cyclophosphamide (Cy). The diseases were chronic myelogenous leukemia, acute lymphoblastic and non lymphoblastic leukemia, myelofibrosis and multiple myeloma in complete remission and in relapse. A sustained disease-free survival (DFS) was achieved in 0/5 acute leukemia patients transplanted in relapse, in 5/7 acute leukemia patients transplanted in remission (600-1550 days) and in 6/9 CML patients transplanted in the chronic phase of the disease (500-950 days). A sustained DFS was also achieved in one 2nd BMT for relapsed CML. The data suggest that the Bu-Cy protocol combines high tumor ablative capability with toxicity comparable to previously described conditioning regimens for allogeneic BMT, particularly in diseases involving a great expansion of the bone marrow.
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PMID:Allogeneic bone marrow transplantation for hematological malignancies following therapy with high doses of busulphan and cyclophosphamide. 251 Nov 15

The antigen pattern pertaining to the ABO (A, B, AB, O (H)), Rh (D, C, c, E, e), Duffy (Fya and b), Kell (K, k) and MNS (M, N) systems were determined in 144 patients between 1 and 74 years of age who had leukemia, lymphoma or myeloma. An association of phenotype Fy (a-b+) with acute lymphatic leukemia and phenotype NN with chronic myeloid leukemia was demonstrated (p less than 0.05, chi sq). Other associations were statistically not significant. Thus, a susceptibility of the aforementioned phenotype patterns to the type of leukemia described is suggested by these findings.
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PMID:[Relationship between various erythrocyte antigens and hematologic disorders]. 251 95


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