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Biomedical subjects

B G Durie

Publications and source records attributed to B G Durie.

At least 19 recordsLinked to original sources

The epidemiology of multiple myeloma.

Increases in the incidence of multiple myeloma during this past century implicate environmental factors as important causal agents. The molecular and cytogenetic alterations in multiple myeloma are under investigation, but the precise causes of these abnormalities are largely unknown. Exposure to chemical substances and ionizing radiation are associated with an increased risk of multiple myeloma. A single insult is probably not sufficient to induce the disease, which results from the clonal expansion of an idiotypic plasma cell after cumulative mutational damage has altered its genetic makeup. Multiple myeloma does not have the same biology in all patients; it is best viewed as a heterogeneous disease with a different prognosis, clinical course, and response to therapeutic interventions in different subjects. Full details of the genetic background in a given patient are required to better understand the disease. Hopefully this information will be available soon, using DNA array and related technologies.

Carcinogens, Environmental↗

RT-PCR amplicons in the plasma of multiple myeloma patients--clinical relevance and molecular pathology.

The occurrence of RNA (RT-PCR amplicons) in the plasma of 70 patients was quantified: 65 patients with multiple myeloma (MM), 3 with Waldenstrom's macroglobulinemia (WM), 2 with monoclonal gammopathy of undetermined significance (MGUS), and 50 from healthy controls. A 713nt amplicon occurred in 16/18 MM patients in relapse, 5/8 untreated patients, 2,3 WM patients and 1,2 MGUS plasmas. None of the initial specimens from 37 patients in remission nor the 50 healthy controls was positive. Homology between 4 sequenced 713nt amplicons was > 99.7% and matched (99.6%) a 704nt sequence of the flanking region of the peroxisome proliferator activator receptor gene, located on chromosome 22q11.2. A 255mer within the 713nt amplicon had a 90.2% homology with an AluSc consensus sequence. The occurrence of RNA amplicons seemed to serve as accurate surrogate markers for active disease in MM that provide new insights to the molecular pathogenesis of the disease.

Adult↗

Patient preferences for interferon alfa in multiple myeloma.

PURPOSE: Interferon alfa treatment in multiple myeloma marginally improves relapse-free and overall survival. Often it does so at the expense of toxicity and financial cost. If patients are unwilling or unable to participate in the decision of whether to initiate such treatment, known patient preferences can serve as guidelines for the physician. We interviewed myeloma patients in the United States to obtain information that might facilitate medical decision-making. PATIENTS AND METHODS: Three hundred fifty-five myeloma patients throughout the United States were interviewed by telephone. Without identifying interferon alfa as the treatment agent, interviewers described potential adverse effects, financial cost, and self-injection procedures. The potential benefits of four treatment choices, derived from a meta-analysis of published data, were presented as gains in remission rate (+10%), remission duration (an additional 4 and 7 months, respectively, for induction and maintenance treatment), and overall survival (an additional 3 and 6 months, respectively, for induction and maintenance treatment). Patients' choices for or against use of the unidentified substance were recorded, and interferon was subsequently disclosed as the treatment. The profiles of patients making different choices were determined using multivariate regression techniques. RESULTS: Approximately half of the patients accepted the unidentified treatment if remission and/or survival improved by at least 6 months. Accepters were younger and more likely to have used interferon. Of patients who rejected the unidentified treatment, 25% to 50% would have been willing to accept it if the benefits were > or = 12 months. Test/retest reliability of all choices, determined in 36 cancer patients, was 0.896. CONCLUSION: In multiple myeloma, interferon therapy and, by inference, other treatments with comparable features are acceptable to approximately half of the patients if a 6-month gain in relapse-free or overall survival can be expected.

Adult↗

Analysis of multidrug-resistance (MDR-1) glycoprotein and CD56 expression to separate monoclonal gammopathy from multiple myeloma.

Monoclonal gammopathy of undetermined significance (MGUS) is different from multiple myeloma (MM) by a low proliferation and by its indolent clinical course. In this study, two biological parameters were investigated which mark the transition from MGUS to MM, i.e. expression of the P-170 glycoprotein associated with the multidrug resistance phenotype (MDR-1) and expression of the natural killer cell antigen. CD56. Strong MDR-1 expression was found in plasma cells of 32/38 untreated MGUS as compared with 33/105 untreated MM stage I-III (84% v 32%, P < 0.001) and in 0/10 normal plasma cell samples. CD56 expression in high density was present in 43/57 analysed untreated MM but in none of 23 MGUS (78% v 0%, P < 0.0001). Plasma cells did characteristically show a low Ki-67 proliferation index in 14/15 MGUS patients (mean 0.05%, range 0-0.2%) and a higher index in 25 analysed MM patients (mean 2.31%, range 1-7%, P < 0.03). These data indicate that MDR-1 expression together with absence of CD56 expression and a low proliferation index can be used to separate MGUS from MM.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Modulation of multidrug-resistant multiple myeloma by cyclosporin. The Leukaemia Group of the EORTC and the HOVON.

Resistance to chemotherapy in refractory multiple myeloma is frequently associated with expression of multidrug resistance (MDR). In resistant cells, intracellular accumulation of doxorubicin and vincristine does not occur because the MDR-1 gene product, a membrane glycoprotein (PgP), is an energy-dependent efflux pump. Cyclosporin is one of several non-cytotoxic drugs that can block the function of PgP. In a prospective study, we assessed the possibility that cyclosporin could be used clinically to modulate MDR. We studied 21 patients with multiple myeloma; disease had progressed during primary chemotherapy in 6 and was resistant to VAD (vincristine, doxorubicin, dexamethasone) in 15. The patients received cyclosporin by continuous infusion during VAD treatment; there were three cyclosporin dosage groups (5, 7.5, 10 mg/kg daily). Serum cyclosporin concentrations adequate for MDR modulation were reached in all patients receiving 7.5 or 10 mg/kg daily. 47% (7) of the VAD-refractory patients and 48% (10) of the whole group responded to VAD. Before treatment, MDR-1 expression was present in 12 patients. After VAD plus cyclosporin, no MDR-1-positive plasma cells were present in 6 of 8 patients tested. The response rate in MDR-1-positive patients was 58% compared with 33% in all our patients. Toxic effects were mild and reversible and did not include nephrotoxic or serious cardiovascular side-effects. 12 months after the start of treatment, survival was 85%, and disease-free survival at a median of 9 months after the response was 65%. Thus, in multiple myeloma clinical resistance to VAD can be circumvented by cyclosporin, which enables the cytotoxic drugs to eliminate resistant myeloma cells.

Adult↗

An unexpected complication following immunoadsorption with a staphylococcal protein A column.

Extracorporeal immune adsorption with staphylococcal protein A (SPA) columns can remove immune complexes and immunoglobulins in the treatment of a variety of diseases. We present the case of an elderly man with neuropathy associated with monoclonal gammopathy, treated by 3 on-line SPA procedures. At the completion of these treatments his neuropathy relapsed, progressing to near-total paralysis. Return to a baseline clinical status required several months. The reason for this severe relapse is not clear. Possible explanations include SPA activation of T-lymphocytes, with release of gamma interferon and increased antigen recognition, or removal of an antiidiotype control mechanism. We advise caution in the application of immunoadsorption to conditions in which it has not yet been evaluated.

Hereditary Sensory and Motor Neuropathy↗

Multiple myeloma. New treatment options.

Before proceeding to treatment selection for multiple myeloma, it is important to exclude monoclonal gammopathy of unknown significance or any similar smouldering or indolent type of myeloma not requiring immediate chemotherapy. In patients with active myeloma, pretreatment prognostic classification is important for appropriate balancing of the risks and benefits of particular treatment options. For example, conventional chemotherapy such as melphalan/prednisone may be appropriate for an elderly patient with active stage III myeloma, whereas high dose chemotherapy with or without bone marrow transplantation or cytokine support may be considered for the patient under age 45 with even earlier stage disease. A variety of options are now available for patients with relapsing or resistant disease, particularly using agents with potential for reversal of multi-drug resistance. The use of interferon-alpha as maintenance following initial response to chemotherapy is important for prolongation of remission, duration and potentially survival. A variety of supportive measures are also helpful including the use of epoetin (erythropoietin) to improve refractory anaemia and bisphosphonates for the inhibition of ongoing bone resorption. With the availability of various treatment options, it has become important for patients to be evaluated by a specialist in the field.

Antineoplastic Combined Chemotherapy Protocols↗

Cellular and molecular genetic features of myeloma and related disorders.

The last decade has seen major advances in the acquisition of knowledge concerning both the cellular and molecular genetics of multiple myeloma. Although discrete and specific changes associated with the plasma cell disorders have yet to be identified, a pattern is emerging that one can associate with the plasma cell disorders. This pattern includes the frequent involvement of chromosomes 1 and 14, and in particular presence of the 14q+ abnormality. But in addition there are typically many other numeric and/or structural changes that can, in fact, involve almost any chromosome, but particularly chromosomes 3, 5, 6, and 7, as well as 11, 14, 17, and 18. The presence of one or more unidentified marker chromosomes is also a typical feature. The ongoing challenges include identification of a crucial initial genetic change (if such exists) as well as the factors contributing to the ongoing karyotypic evaluation that results in complex karyotypes in patients with advanced disease. There is no doubt that the complex karyotypic picture contributes to the major heterogeneity of plasma cells that occurs in malignant plasma cell disorders. Karyotypic complexity underlies heterogeneity in cell morphology, surface antigen expression, response to cytokines, and a variety of other functional characteristics. The aberrant expression of antigens normally found on other hematopoietic progenitors has led to speculation about the true nature of the stem cell in myeloma. The overriding challenge, however, is to fully understand the plasma cell disorders at the molecular level. Although changes have already been noted in the functions of C-myc, the ras family of oncogenes, Bcl-2 expression, and several so called anti-oncogenes such as p53, it is likely that we have only begun to scratch the surface in the area of molecular changes. The potential for involvement at multiple molecular sites and the possibility of complex interactions between gene segments is truly overwhelming. However, it is hoped that at the molecular level a pattern will ultimately emerge. It is most interesting, as previously discussed, that there is an interplay among C-myc, N-ras, Bcl-2, and the Epstein-Barr virus in the predilection for a plasma cell phenotype. Undoubtedly there is much more to learn, and it is truly exciting to finally have some tools and probes at hand to more effectively study the genome in multiple myeloma and related disorders.

Chromosome Aberrations↗

Workshop on growth factors.

The 'Workshop on Growth Factors' which took place at the Lugano Lymphoma Conference on June 8, 1990, included a presentation by Michael Sporn on the concept that loss of inhibitory control mechanisms may be important in the development and growth of human cancer. Examples illustrating this were taken from current experimental biology research into transforming growth factor beta (TGF-beta) interactions. Brian Durie presented recent data on the biology of interleukin-6 (IL-6) and its putative role in plasma cell diseases. These studies have culminated in the first clinical study of the role of an antibody to a growth factor as therapy for a human cancer (anti-IL-6 antibody as therapy for patients with myeloma). Derek Crowther presented data concerning the current clinical role of the haematopoietic growth factors in patients undergoing chemotherapy for cancer. Recent clinical research has established the role of granulocyte colony-stimulating factor (G-CSF) and granulocyte-macrophage colony-stimulating factor (GM-CSF) in improving the safety of high-dose or accelerated chemotherapy, and their use is associated with enhanced neutrophil recovery following ablative therapy and bone marrow rescue. This session was followed by the presentation of three papers concerning the use of G-CSF and GM-CSF in association with chemotherapy for patients with malignant lymphoma.

Animals↗

Plasma cells in multiple myeloma express a natural killer cell-associated antigen: CD56 (NKH-1; Leu-19).

Bone marrow samples from 55 patients with multiple myeloma (MM) and 23 patients with monoclonal gammopathy of undertermined significance (MGUS) were evaluated with a broad panel of monoclonal antibodies. Plasma cells from 78% (43/55) of patients with MM strongly expressed the natural killer cell antigen CD56 (NKH-1, Leu-19). Of the 23 patients with MGUS, none showed strong CD56 reactivity, although three had weak reactivity in less than 20% of plasma cells. Myeloma cells expressing CD56 did not coexpress the CD57 or CD16 antigens. Patients with CD56-positive plasma cells had both indolent and aggressive disease. However, the 12 CD56-negative patients had predominantly aggressive disease with an unexpected preponderance of kappa Bence Jones only myeloma (5/10[50%] evaluable patients). Polyclonal plasma cells from non-neoplastic tissue sites (normal bone marrows, lymph nodes, tonsillar biopsies, and gut-mucosa biopsies) showed a near absence of CD56. We conclude that isolated, strong CD56 expression is common in MM, but not in MGUS or reactive plasma cells. The potential biologic importance of CD56 positivity in myeloma is reviewed.

ADP-ribosyl Cyclase↗

Prognostic value of pretreatment serum beta 2 microglobulin in myeloma: a Southwest Oncology Group Study.

Six hundred twelve eligible, previously untreated patients with active multiple myeloma and at least some data available for analysis were entered into a randomized trial (Southwest Oncology Group [SWOG] Phase III myeloma study 8229/30), in which the prognostic significance of pretreatment serum beta 2 microglobulin levels was evaluated. Because there was no statistically significant survival difference between the alternating and syncopating VMCP/VBAP regimens, it was possible to evaluate serum beta 2 microglobulin for the total population all together. The serum beta 2 microglobulin measurements showed the highest significance of any prognostic factor, both in the bivariate and multivariate regression analyses. The median survival was 36 months for the 322 patients with pretreatment serum beta 2 microglobulin values of less than 6 micrograms/mL, as compared with a median survival of 23 months for the 225 patients with a beta 2 level of greater than or equal to 6 mcg/mL (P less than .0001). The stepwise multiple regression model first contained serum beta 2 microglobulin, followed by serum albumin, serum calcium, age, and serum creatinine. Serum beta 2 microglobulin was highly correlated with stage: median values ranged from 3.7 micrograms/mL for stage IA, to 10.1 for stage IIIB. It was possible to stratify myeloma patients based on combinations of serum beta 2 microglobulin with both albumin and age, producing excellent separation of patients into low-, intermediate-, and high-risk categories. It is concluded that serum beta 2 microglobulin is the most powerful prognostic factor currently available for multiple myeloma and that it can be used alone or in combination with other variables for pretreatment stratification.

Age Factors↗