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At least 19 recordsLinked to original sources

The incidence and epidemiology of plasma cell neoplasms.

Plasma cell neoplasia includes monoclonal gammopathy of undetermined significance (MGUS), multiple myeloma (MM), and Waldenström's macroglobulinemia (WM). In MGUS, a large, stable clone does not cause symptoms; additional change(s) is/are required to convert this clone into a progressively expanding tumor that becomes symptomatic, as in MM or WM. The prevalence of MGUS (i.e., the number of cases in a defined population at a certain time) is 20 times greater than MM. The incidence (i.e., the number of cases developing in a defined population in a defined period) has not been determined for MGUS. Between 1960 and 1969, the average, annual, age-adjusted (1950 standard) incidence of MM in Malmö, Sweden was 3.4/10(5). The incidence of MM is strongly influenced by the age and race of the population, and the diagnostic services available. MM is a disease of old age; it rarely occurs before the age of 40. The incidence of MM increases rapidly with age, is lowest among the Chinese and Japanese, intermediate among Caucasians in America and Europe, and highest among blacks in the USA. The striking differences in the incidence of MM in different countries appears to be due to racial rather than environmental differences, since the low incidence among the Chinese and Japanese in Asia has migrated with them to the Bay area of California and to Hawaii. The high incidence of MM in USA black males (10.8/10(5)) and females (7.2/10(5)) is more than twice the rate for whites in the same regions.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Head and neck manifestations of plasma cell neoplasms.

Multiple myeloma, solitary plasmacytoma of bone, and extramedullary plasmacytoma are plasma cell neoplasms. They represent distinct manifestations of a disease continuum, whereby the clinical findings are critical to diagnosis. Plasma cell neoplasms are histologically similar, and distinguishing one from the other has significant implications for treatment and survival. Plasma cell neoplasms are relatively unusual malignancies of the head and neck region. We present a case series of plasma cell neoplasms involving the skull base, paranasal sinus, larynx, and mandible as an introduction to a complete review of the literature on plasma cell neoplasms of the head and neck area.

Adult↗

Plasma cell neoplasm involving the thyroid.

Involvement of the thyroid gland by plasma cell neoplasms is very rare. On review of 248 cases, we found 4 cases in which pathological evidence of plasma cell neoplasm in the thyroid was verified. This was a heterogeneous group of patients; the thyroid involvement was clinically recognized as a site of extramedullary plasma cell neoplasm in one patient and as a part of generalized disease in two patients. In another patient with generalized disease, the thyroid involvement was discovered at autopsy.

Adult↗

CT features of abdominal plasma cell neoplasms.

The aim of this study was to describe the CT features of abdominal plasma cell neoplasms. We reviewed CT imaging findings in 11 patients (seven men, four women; mean age 62 years) with plasma cell neoplasms and abdominal involvement. Helical CT of the entire abdomen and pelvis was performed following intravenous administration of contrast material. Images were analyzed in consensus by two radiologists. Diagnoses were made from biopsy, surgery and/or clinical follow-up findings. Multiple myeloma was found in seven patients and extramedullary plasmacytoma in four patients. All patients with multiple myeloma had multifocal disease with involvement of perirenal space (4/7), retroperitoneal and pelvic lymph nodes (3/7), peritoneum (3/7), liver (2/7), subcutaneous tissues (2/7) and kidney (1/7). In three of the four patients with extramedullary plasmacytoma, a single site was involved, namely stomach, vagina and retroperitoneum. In the fourth patient, a double site of abdominal involvement was observed with rectal and jejunal masses. Plasma cell neoplasm should be considered in the differential diagnosis of single or multiple enhancing masses in the abdomen or pelvis. Abdominal plasma cell neoplasms were most frequently seen as well-defined enhancing masses (10/11).

Abdominal Neoplasms↗

Treatment of plasma cell neoplasm with recombinant leukocyte A interferon and human lymphoblastoid interferon.

Thirty cases of plasma cell neoplasms (24 multiple myeloma, one plasma cell leukemia, and three primary macroglobulinemia) were treated with two kinds of highly purified alpha-interferons, recombinant human leukocyte interferon (rIFN-alpha A) (16 cases) and human lymphoblastoid interferon (HLBI) (14 cases). Partial remission (PR) was obtained in two of 16 evaluable cases treated with rIFN-alpha A and in two of 12 evaluable cases treated with HLBI. If minor response (MR) was included, responses were observed in seven (31.3%) and six (50%), respectively. Response (PR + MR) was noted in 38% of 21 previously treated patients and 71% of seven previously untreated patients. Side-effects were noted in more than two-thirds of the patients. They included fever, malaise, nausea/anorexia and myelosuppression. Thus, these two kinds of highly purified alpha-interferon were effective in plasma cell neoplasm, producing unequivocal response in 14.3% of the cases without unacceptable side-effects.

Aged↗

Insertion of c-Myc into Igh induces B-cell and plasma-cell neoplasms in mice.

We used gene targeting in mice to insert a His(6)-tagged mouse c-Myc cDNA, Myc(His), head to head into the mouse immunoglobulin heavy-chain locus, Igh, just 5' of the intronic enhancer, Emu. The insertion of Myc(His) mimicked both the human t(8;14)(q24;q32) translocation that results in the activation of MYC in human endemic Burkitt lymphomas and the homologous mouse T(12;15) translocation that deregulates Myc in certain mouse plasmacytomas. Beginning at the age of 6 months, Myc(His) transgenic mice developed B-cell and plasma neoplasms, such as IgM(+) lymphoblastic B-cell lymphomas, Bcl-6(+) diffuse large B-cell lymphomas, and CD138(+) plasmacytomas, with an overall incidence of 68% by 21 months. Molecular studies of lymphoblastic B-cell lymphoma, the most prevalent neoplasm (50% of all tumors), showed that the lymphomas were clonal, overexpressed Myc(His), and exhibited the P2 to P1 promoter shift in Myc expression, a hallmark of MYC/Myc deregulation in human endemic Burkitt lymphoma and mouse plasmacytoma. Only 1 (6.3%) of 16 lymphoblastic B-cell lymphomas contained a BL-typical point mutation in the amino-terminal transactivation domain of Myc(His), suggesting that most of these tumors are derived from naive, pregerminal center B cells. Twelve (46%) of 26 lymphoblastic B-cell lymphomas exhibited changes in the p19(Arf)-Mdm2-p53 tumor suppressor axis, an important pathway for Myc-dependent apoptosis. We conclude that Myc(His) insertion into Igh predictably induces B-cell and plasma-cell tumors in mice, providing a valuable mouse model for understanding the transformation-inducing consequences of the MYC/Myc-activating endemic Burkitt lymphoma t(8;14)/plasmacytoma T(12;15) translocation.

Amino Acid Sequence↗

Plasma cell neoplasms. Review of disease progression and report of a new variant.

Plasma cell neoplasms are generally categorized into four groups; multiple myeloma (MM), solitary plasmacytoma of the bone (SPB), plasma cell leukemias, and extramedullary plasmacytomas (EMP). A plasmacytoma is defined as any discrete, usually solitary mass of neoplastic plasma cells, either in the bone marrow or in various soft tissue sites. Each manifestation of a plasma cell neoplasm differs in terms of tumor recurrence and progression to MM. A gastric plasmacytoma (GP) is a rare presentation of extramedullary plasmacytoma and has not been previously reported as a site of recurrence for a SPB. This pattern of tumor recurrence is unique and the management of gastric plasmacytoma as part of this complex disease is discussed. The continuum of progression between various sites and manifestations of plasma cell manifestations is reviewed including a previously undiscovered sequence of bone disease, gastric disease, and finally multiple myeloma.

Aged↗

Bone marrow immunohistology of plasma cell neoplasms.

The application of immunohistology to the spectrum of plasma cell disorders has yet to be incorporated widely into routine haematology practice. This technique enables the direct visualisation of specific surface and cytoplasmic antigens in the context of the individual cell and the surrounding anatomical neighbourhood. This review outlines the role of bone marrow immunohistology in the laboratory evaluation of patients with suspected and established plasma cell neoplasms and its emerging role in understanding myeloma biology for possible future therapeutic application.

Amyloidosis↗

Novel targeted deregulation of c-Myc cooperates with Bcl-X(L) to cause plasma cell neoplasms in mice.

Deregulated expression of both Myc and Bcl-X(L) are consistent features of human plasma cell neoplasms (PCNs). To investigate whether targeted expression of Myc and Bcl-X(L) in mouse plasma cells might lead to an improved model of human PCN, we generated Myc transgenics by inserting a single-copy histidine-tagged mouse Myc gene, Myc(His), into the mouse Ig heavy-chain Calpha locus. We also generated Bcl-X(L) transgenic mice that contain a multicopy Flag-tagged mouse Bcl-x(Flag) transgene driven by the mouse Ig kappa light-chain 3' enhancer. Single-transgenic Bcl-X(L) mice remained tumor free by 380 days of age, whereas single-transgenic Myc mice developed B cell tumors infrequently (4 of 43, 9.3%). In contrast, double-transgenic Myc/Bcl-X(L) mice developed plasma cell tumors with short onset (135 days on average) and full penetrance (100% tumor incidence). These tumors produced monoclonal Ig, infiltrated the bone marrow, and contained elevated amounts of Myc(His) and Bcl-X(L)(Flag) proteins compared with the plasma cells that accumulated in large numbers in young tumor-free Myc/Bcl-X(L) mice. Our findings demonstrate that the enforced expression of Myc and Bcl-X(L) by Ig enhancers with peak activity in plasma cells generates a mouse model of human PCN that recapitulates some features of human multiple myeloma.

Animals↗

CDDO-Imidazolide inhibits growth and survival of c-Myc-induced mouse B cell and plasma cell neoplasms.

BACKGROUND: Gene-targeted iMycEmu mice that carry a His6-tagged mouse Myc(c-myc)cDNA, MycHis, just 5' of the immunoglobulin heavy-chain enhancer, Emu, are prone to B cell and plasma cell neoplasms, such as lymphoblastic B-cell lymphoma (LBL) and plasmacytoma (PCT). Cell lines derived from Myc-induced neoplasms of this sort may provide a good model system for the design and testing of new approaches to prevent and treat MYC-driven B cell and plasma cell neoplasms in human beings. To test this hypothesis, we used the LBL-derived cell line, iMycEmu-1, and the newly established PCT-derived cell line, iMycEmu-2, to evaluate the growth inhibitory and death inducing potency of the cancer drug candidate, CDDO-imidazolide (CDDO-Im). METHODS: Morphological features and surface marker expression of iMycEmu-2 cells were evaluated using cytological methods and FACS, respectively. mRNA expression levels of the inserted MycHis and normal Myc genes were determined by allele-specific RT-PCR and qPCR. Myc protein was detected by immunoblotting. Cell cycle progression and apoptosis were analyzed by FACS. The expression of 384 "pathway" genes was assessed with the help of Superarray cDNA macroarrays and verified, in part, by RT-PCR. RESULTS: Sub-micromolar concentrations of CDDO-Im caused growth arrest and apoptosis in iMycEmu-1 and iMycEmu-2 cells. CDDO-Im-dependent growth inhibition and apoptosis were associated in both cell lines with the up-regulation of 30 genes involved in apoptosis, cell cycling, NFkappaB signaling, and stress and toxicity responses. Strongly induced (> or = 10 fold) were genes encoding caspase 14, heme oxygenase 1 (Hmox1), flavin-containing monooxygenase 4 (Fmo4), and three members of the cytochrome P450 subfamily 2 of mixed-function oxygenases (Cyp2a4, Cyp2b9, Cyp2c29). CDDO-Im-dependent gene induction coincided with a decrease in Myc protein. CONCLUSION: Growth arrest and killing of neoplastic mouse B cells and plasma cells by CDDO-Im, a closely related derivative of the synthetic triterpenoid 2-cyano-3,12-dioxooleana-1,9-dien-28-oic acid, appears to be caused, in part, by drug-induced stress responses and reduction of Myc.

Animals↗