PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “hematologic malignancies”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 91 records · Page 5Linked to original sources

Cytogenetic biclonality in malignant hematologic disorders.

Generally, malignant hematologic disorders have been believed to be of monoclonal origin. However, cytogenetically unrelated clones have been reported in some disorders including one case of acute leukemia (AL), one of acute lymphoblastic leukemia (ALL), one of acute myeloblastic leukemia (AMMoL), and five of myelodysplastic syndromes (MDS). The most frequent chromosome abnormality was trisomy 8 (75%), followed by trisomy 21 (37.5%, including tetrasomy 21) and trisomy 11 (25%). Two patients showed both trisomy 8 and 11, one also had trisomy 21 (triclonal). One patient showed two cytogenetically distinctive clones in which one was 47,XY,+8, related to myeloid cells, and the other had a del(6q) and del(9p), suggesting lymphoid cells. One patient we report and 5 from the literature had two unrelated clones with trisomy 8 and deletion of the long arm of chromosome 5 (5q-); all had MDS. Review of our records showed that 11 patients with both trisomy 8 and 5q- in the same abnormal karyotype (not biclonal) had AL, i.e., 10 of acute nonlymphocytic leukemia (ANNL) and one of chronic myelogenous leukemia (CML) in blastic crisis. These findings suggest that cytogenetically unrelated clones may indicate hematopoietic biclonality.

Acute Disease↗

A comparative study of T-cell depleted and non-depleted marrow transplantation for hematological malignancy.

Sixteen patients with hematological malignancy received cyclophosphamide (120 mg/kg), fractionated total body irradiation (12 Gy), oral cyclosporin, and an HLA-identical sibling marrow transplant depleted of T cells by incubation with the monoclonal antibody anti-HuLy-m1 (CD2) and rabbit complement with (five patients) or without (11 patients) anti-HuLy-m8). These 16 patients were compared historically to 84 patients with hematological malignancy receiving cyclophosphamide (120 mg/kg), fractionated total body irradiation (12 or 14 Gy), oral cyclosporin, and unmanipulated HLA-identical sibling marrow, for parameters of engraftment and graft-versus-host disease (GVHD). Graft failure occurred in one of the 16 T-cell depleted recipients and in one of the 84 nondepleted recipients. Engraftment was slightly but significantly slower in the T-cell depleted group and bacterial infections significantly more frequent and severe than in the unmanipulated group. There was a suggestion that the severity of acute GVHD was reduced in those receiving T depleted marrow. Randomized trials will be necessary to determine if marrow T-cell depletion results in superior long-term leukemia-free survival.

Acute Disease↗

Cell surface antigen and molecular targeting in the treatment of hematologic malignancies.

Conventional cytotoxic therapy of hematologic malignancies is often associated with significant morbidity. This morbidity is often due to the lack of specificity for hematopoietic cells. Therefore, the concept of targeted therapy for patients with hematologic malignancies has received attention for many years. The goal of monoclonal antibody therapy is to target specific cell surface antigens on malignant hematopoietic cells, while sparing normal cells and tissues. Currently, monoclonal antibodies are being evaluated for their cytotoxic effects as well as their ability to deliver toxic agents or radiation. Rituximab, a chimeric anti-CD20 antibody, has shown response rates of approximately 50% with minimal toxicity in patients with refractory indolent lymphoma. Campath-1H (anti-CD52) has shown encouraging results in patients previously treated for chronic lymphocytic leukemia, with response rates up to 33%, although with significant toxicity. Anti-CD33 antibodies are being used to deliver cytotoxic agents, such as calicheamicin to patients with acute myeloid leukemia with response rates up to 30%. In addition, anti-CD33 and anti-CD45 antibodies have been used to deliver radiation directly to leukemic cells. (131)I-labeled anti-CD45 antibodies are being studied in combination with conventional preparative regimens in patients receiving bone marrow transplantation. Lastly, the therapeutic agent STI571 (signal transduction inhibitor 571) has demonstrated the capability of targeting specific molecular abnormalities seen in hematologic malignancies. STI571 targets the tyrosine kinase activity of the bcr-abl fusion protein seen in chronic myeloid leukemia. STI571 has induced complete hematologic responses in up to 98% of patients evaluated in clinical trials.

Animals↗

Total body irradiation and high-dose etoposide: a new preparatory regimen for bone marrow transplantation in patients with advanced hematologic malignancies.

In a phase I/II study, 47 patients (median age, 24 years) with hematologic malignancies (33 patients with acute leukemia not in first remission and 14 patients with other advanced malignant hematologic disorders) were treated with total body irradiation and high doses of etoposide (VP16-213) followed by bone marrow transplantation. At the time of analysis, 21 patients were alive, and 19 of them were in continued complete remission for 101 days to greater than 40 months (median, 12 months). The actuarial disease-free survival rate of the 33 acute leukemia patients is 43% (2 SEM, 18%) and the actuarial relapse rate is 32% (2 SEM, 20%). Five of the 14 patients with the other hematologic malignancies are alive, and four of them continue to be free of disease for 8 to 27 months. Pharmacokinetic studies established a strong correlation between the administered drug doses and their plasma levels and also demonstrated complete drug clearance prior to marrow grafting. An etoposide dose of 60 mg/kg body weight was found to be the maximum tolerated dose. This new preparatory regimen was well tolerated and was not associated with specific acute or long-term regimen-related toxicities. Our data suggest that total body irradiation with high-dose etoposide presents a viable alternative to other preparatory regimens. The role of this novel combination remains to be defined by future prospective randomized trials.

Acute Disease↗

[Elderly cases of hematological malignancies with second malignancies].

Recently an increase of the elderly patients with hematological malignancies has been pointed out. We analyzed second malignancies in elderly patients with hematological malignancies (95 age 65 or more), and made a comparative study with non-elderly case for the past 5 years. Second malignancies were observed in 26 cases out of the total of 282 hematological malignancies (9.2%). The percentage of patients with second malignancies in the elderly group (19/95; 20%) was significantly higher than that of the non-elderly group (7/187; 3.7%). Among the all kinds of hematological malignancies, the second malignancies were mainly observed in cases with myelodysplastic syndrome and chronic myelo-proliferative disorder. Colon carcinoma, gastric carcinoma and lung carcinoma accounted for nearly half of all the second malignancies. On 11 of the 26 cases with second malignancies, the first malignancies had been treated with some anti-cancer drug such as alkylating agents. Development of a second cancer was greater in cases in which the first hematological malignancy was treated with alkylating agents more than in cases in which the first carcinoma was not treated with alkylating agents.

Aged↗

Management of anemia in patients with hematologic malignancies.

Anemia is common in patients with hematologic malignancies, and it has negative effects on their quality of life. The current clinical practice guidelines recommend erythropoietic therapy in patients with cancer- or chemotherapy-related anemia, but anemia is often undertreated in patients with hematologic malignancies. Several randomized controlled trials have shown that treatment with erythropoiesis-stimulating proteins such as epoetin alfa (Procrit), epoetin beta, and darbepoetin alfa (Aranesp) increases hemoglobin levels, reduces the need for red blood cell transfusions, and improves quality of life in patients with hematologic malignancies and anemia receiving chemotherapy. Furthermore, preliminary data from a recent open-label study suggest that early treatment of mild anemia in patients with hematologic malignancies treated with chemotherapy produces marked improvements in quality of life and productivity. Increasing patients' hemoglobin levels may also improve their cognitive function. These findings support the use of erythropoietic therapy to manage anemia in patients with hematologic malignancies who are treated with chemotherapy.

Anemia↗

[Review of relationship between tumor necrosis factor genetic polymorphism and hematological malignancies].

Patients with malignant tumor including hematological malignancies have high plasma levels of tumor necrosis factor (TNF) and excessive production of TNF is associated with polymorphic variation of TNF locus. TNF polymorphism affects TNF expression by affecting transcriptional regulation. The aim of this paper was to review the correlation between TNF polymorphism and hematological malignancies such as lymphoma, chronic lymphocytic leukemia, hairy cell leukemia, acute lymphocytic leukemia and multiple myeloma and to make preparation for further research of their relationship.

Hematologic Neoplasms↗

Clinically useful information provided by the flow cytometric immunophenotyping of hematological malignancies: current status and future directions.

BACKGROUND: At present, immunophenotyping of hematological malignancies represents one of the most relevant clinical applications of flow cytometry. In recent years, its use has extended from clinical research to diagnostic laboratories. The aim of this report is to critically review the type of information provided by the flow cytometric immunophenotyping of hematological malignancies and its clinical impact as well as to highlight its potential future applications. METHODS: The currently available information, including that provided by different international consensus groups on the phenotypic characterization of hematologic malignancies, was reviewed. Additionally, recent reports on the immunophenotypic analysis of hematological malignancies published in hematology, oncology, pathology, immunology, and cell biology journals were also analyzed. RESULTS: A careful review of the literature showed that in spite of the well-established utility of immunophenotyping for the diagnosis, classification, prognostic stratification, and monitoring of hematological malignancies, only a small part of the information on the immunophenotypic characteristics of pathological hemopoietic cells has been used routinely. Specific and sensitive identification of neoplastic cells and their accurate enumeration and phenotypic characterization represent the major aims of these procedures. Similarities between leukemic and healthy cells allow the establishment of the lineage and maturation stage of the pathologic cells, this information being of great utility for the diagnosis, classification, and prognostic evaluation of different subtypes of hematological malignancies. On the other hand, the phenotypic aberrations displayed by leukemic cells could allow the selection of cases carrying specific genetic abnormalities in which further confirmatory molecular studies will be performed. CONCLUSIONS: The information provided by the flow cytometric immunophenotyping of hematological malignancies is of great clinical utility, with a major challenge for the near future being the standardization of technical procedures, data interpretation, and reporting.

Flow Cytometry↗

Laparoscopic splenectomy in patients with hematologic malignancies.

BACKGROUND: Although laparoscopic splenectomy (LS) for benign hematologic disease is well accepted, its role in hematologic malignancies is not clearly defined. This study examined the efficacy and feasibility of LS for hematologic malignancies. METHODS: Records were reviewed from patients who underwent LS at two university hospitals. Charts from 77 open splenectomies for malignancy (OM) during the same period were also reviewed. RESULTS: Fifty-three patients underwent LS, 22 for hematologic malignancies (LM) and 31 for benign hematologic disorders (LB). Median splenic weight was greater in the LM group (930 g) than in the LB group (164 g, P = 0.001). LM was associated with longer operations and greater blood loss than was LB. LM had a 41% conversion rate. Morbidity, mortality, and transfusion rates were similar. Median hospital stay was shorter for LM (4 days) than for OM (6 days, P = 0.001). CONCLUSIONS: LS is feasible in hematologic malignancies but is associated with increased operative time and blood loss and a high conversion rate. Morbidity and mortality, however, was similar. Shorter hospital stays for LM compared with OM may translate into earlier recovery and initiation of antineoplastic therapy.

Adult↗

A novel therapeutic approach for hematological malignancies based on cellular differentiation and apoptosis.

Hematological malignancies including acute leukemia, and multiple myeloma are disorders characterized by the accumulation of neoplastic hematopoietic cells, resulting in aggressive clinical manifestations with poor prognosis. The therapeutic approach to these disorders is basically chemotherapy for achieving complete remission based on the concept of total cell kill. However, severe side effects and complications such as serious infection and bleeding due to anti-cancer drugs are major problems in the clinical setting. In addition, repeated episodes of relapse of the disease may lead to refractory or chemotherapy-resistant disorders. These problems are occurred because anti-cancer agents have effects on both cancer cells and normal hematopoietic cells. The clinical evidences thus suggest the limitations of the chemotherapy for hematological malignancies: novel effective therapeutic approaches with less toxicity are therefore actively being sought. Differentiation-inducing therapy employing a physiologically active derivative of vitamin A, all-trans retinoic acid (ATRA), brought remarkably advances in the therapeutic outcome of APL at the end of last century. More recently, the clinical success of imatinib mesylate (STI571), potent competitive inhibitor of the Bcr/Abl protein tyrosine kinase, in the treatment of CML has focused enthusiasm toward molecular targeted therapy for the hematological malignancies. The therapeutic activity of these agents can be explained by their abilities to modify cellular growth, differentiation, and apoptosis in cells by activating unknown gene programs that molecular cellular proliferation. We have actively sought out new agents among natural products and cytokines with the ability to induce cellular differentiation and apoptosis. In this symposium, I will present our recent data of these novel compounds and their molecular mechanisms for inducing differentiation and apoptosis of hematological malignant cells.

Animals↗

Secondary hemochromatosis as a long-term complication of the treatment of hematologic malignancies.

The increased cure rate of hematologic malignancies including the use of bone marrow transplantation has focused attention on the chronic toxicity and quality of life of the survivors. We have observed five patients who have been diagnosed with clinically significant iron overload, presumably due to packed red blood cell transfusions, >/=12 months after transplant for a hematologic malignancy. In these patients, there is no history of veno-occlusive disease or family history of hemochromatosis. The allotransplant patient has been free of chronic graft versus host disease. Family screening has been negative. No patient developed clinically significant endocrinopathy, arthropathy, or cardiac disease. The patients have been treated with phlebotomy to bring the transferrin saturation and ferritin levels to normal. The long-term follow-up of patients treated for a hematologic malignancy should include analysis of hepatitis C virus and iron status. This may prevent the development of clinically significant chronic liver disease and possibly malignancy.

Adult↗

Multiple primary cancers associated with hematological malignancies.

Two hundred and thirty-six cases of multiple primary cancer associated with hematological malignancies, collected from 35 medical institutions in Japan, are reported. Based on the time interval between the first cancer and the second cancer, they were divided into three groups: synchronous cancer (94 cases), metachronous cancer subsequent to hematological malignancy (61 cases) and metachronous hematological malignancy subsequent to carcinoma (76 cases). The most common initial cancers were acute leukemia (including atypical leukemia and erythroleukemia), non-Hodgkin's lymphoma, multiple myeloma and chronic myelogenous leukemia of the hematological malignancies, and gastric cancer of the carcinomas. Patients with cancer of the uterus and breast in the metachronous cancer group metachronously developed hematological malignancies more frequently than those in the synchronous cancer group. Multiple primary cancer was observed more frequently in men than in women both in the synchronous cancer group and in the group with metachronous cancer subsequent to hematological malignancies. Acute leukemia was the most frequent disease type in incidence among the metachronous hematological malignancies. This secondary acute leukemia was characterized by a mostly granulocytic nature, poor response to chemotherapy and poor prognosis.

Acute Disease↗

[Quality assurance of the molecular diagnostic tests in hematological malignancies].

Analyses of nucleic acid sequences in hematological malignancies are now essential in managing patients with hematological malignancies. Because of the impact of the test on decision-making in patient care, its accuracy is quite important. Detection of BCR-ABL mRNA by polymerase chain reaction, one of the most popular molecular diagnostic tests for hematological malignancies, has been used for diagnosis of Philadelphia-positive leukemias. Quality of the test must be assured in the process of diagnostic plan, sampling, measurement(nucleic acid isolation, amplification, detection), report and interpretation. Risk of false-positive results due to contamination of in vitro nucleic acid amplification reactions can be decreased through the use of protocols for contamination control. False-negative results may be caused by variability in BCR breakpoint, and loss or degradation of RNA due to inappropriate procedures as well as an insufficient detection sensitivity. Presence of inhibitors of amplification is also to be considered as a cause of false-negative results. Thus, quality control techniques such as internal standards are mandatory to ensure efficient amplification as well as RNA extraction. For the precise evaluation of minimal residual diseases, accurate and sensitive quantitative analyses are required. For quality assurance of assays in the present status of no commercially available kits, it is particularly important to monitor the clinical validation of the results by correlating them with the patient's status to prove clinically relevant. Staffs need to be trained to be familiar with both molecular pathogenesis and technology so that they can provide informative test results with a high quality.

Genes, abl↗

[Allogenic bone marrow transplantation in the treatment of malignant hematologic disease].

We have treated 28 patients (pts) with malignant hematological diseases with allogeneic bone marrow transplantation (BMT). 18 pts had acute lymphoblastic (ALL) and non lymphoblastic leukemia (ANLL), 5 chronic myeloid leukemia (CML), 2 severe aplastic anemia (SAA), 1 myelodisplasia, 1 Fanconi's anemia and 1 advanced Non Hodgkin's lymphoma. All but three received the graft from HLA identical sibling donors. We used conditioning with total body irradiation and chemotherapy (cyclophosphamide, cytarabine and etoposide) in 17 pts and chemotherapy alone in 11. 24 pts had full hematological recovery 18 to 25 days post BMT. 15 pts died after BMT as a consequence of toxicity or early infection (4), graft failure (2), graft versus host disease (4) or relapse (5). Actuarial event free survival for the group with favorable prognosis (SAA, ALL and ANLL in first or second remission and CML in chronic phase) is 57% at 36 months. Allogeneic BMT is an effective and feasible therapeutic procedure for selected patients with hematological malignancies.

Actuarial Analysis↗

[Molecular diagnosis and new gene engineering in hematological malignancies].

Advancement molecular diagnostics in hematological malignancy has provided us with a broad menu of new assays and techniques. By integrating the data gleaned from these techniques we can formulate a more rational broad-based diagnosis. Hematological malignancies have traditionally been classified by morphological criteria. However, molecular advances have provided new insights in the genetic backbone of chimeric genes. These malignancies have shown chromosome abnormalities of translocation with chimeric genes, and revealed the rearrangement of chimeric genes by PCR analysis and quantitative PCR system. This review summarized the recent technology for detecting chimeric genes along with concepts of laboratory performance.

Adult↗

Multidrug resistance in hematological malignancy.

The recent treatment of hematological malignancies appears to be unsatisfactory in child and adult patients with acute myeloid leukemia and adult patients with acute lymphocytic leukemia. A major problem in the treatment of leukemia is caused by the development of drug resistance to chemotherapeutic agents, which is already present at diagnosis or after chemotherapy as a minimal residual disease, their resistance having originated from genetic or epigenetic mutations during prior growth of the leukemia clone. It was suggested that the mechanisms of drug resistance consist of drug resistance proteins, which work as a drug efflux pump. These are the permeability-related glycoprotein (P-Gp), the multidrug-resistance associated protein (MRP), the lung resistance protein (LRP), and other MDR proteins such as the transporter associated with antigen processing (TAP), anthracyclin resistance associated protein (ARA), MRP 2-7, and breast cancer resistance protein (BCRP). In addition, anti-apoptosis mechanisms, alterations of tumor suppressor genes, altered immunogenicity, drug resistance mechanisms for individual drugs, and clinical risk factors such as white blood cell count, age, and other factors have been reported to act in drug resistance singly or in combinations. Here we describe the update of research on the biology of MDR in the hematological malignancies and also discuss how to overcome MDR and adapt the updated treatment methods in the clinical medical field.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

[Clinical evaluation of sulbactam/cefoperazone for infections during the chemotherapy of hematologic malignancy].

In 28 patients with hematologic malignancy, the clinical effect and the safety of sulbactam/cefoperazone (SBT/CPZ) were studied on 45 episodes during granulocytopenic stage after antineoplastic chemotherapy. The overall efficacy rate obtained with SBT/CPZ in combination with other drugs was 62%. The rates for sepsis, suspected sepsis and pneumonia were 67%, 94% and 38%, respectively. The efficacy in those cases that showed granulocyte count less than 300/microliters during the course of administration of SBT/CPZ was 53%, and in those cases that showed granulocyte counts recovery to more than 300/microliters was 73%. Prior antimicrobiological treatments had no influence on the efficacy of SBT/CPZ. SBT/CPZ showed an activity spectrum covering frequently isolated microorganism including Acinetobacter calcoaceticus, Pseudomonas aeruginosa, Enterobacter cloacae and Staphylococcus aureus. Mild adverse effect were observed in 4 episodes (8.8%). These result suggested that SBT/CPZ was thought to be a useful drug for empirical therapy in granulocytopenic patients with hematologic malignancies.

Adolescent↗