scholarly journals Clonal plasma cells from monoclonal gammopathy of undetermined significance, multiple myeloma and plasma cell leukemia show different expression profiles of molecules involved in the interaction with the immunological bone marrow microenvironment

Leukemia ◽  
2005 ◽  
Vol 19 (3) ◽  
pp. 449-455 ◽  
Author(s):  
M Pérez-Andrés ◽  
◽  
J Almeida ◽  
M Martín-Ayuso ◽  
M J Moro ◽  
...  
2021 ◽  
Vol 16 (3) ◽  
pp. 26-32
Author(s):  
A. S. Khudovekova ◽  
Ya. A. Rudenko ◽  
A. E. Dorosevich

Multiple myeloma is a tumor of plasma cells, one of the most common malignant blood diseases. It is preceded by a stage called monoclonal gammopathy of undetermined significance, from which true multiple myeloma develops in only a small percentage of cases. It was assumed that this process is associated with the accumulation of genetic mutations, but in recent years there is increasing evidence that the bone marrow microenvironment plays a key role in progression and that it can become a target for therapy that prevents the myeloma development. The review considers the role of mesenchymal stem cells, immune system cells, endotheliocytes, fibroblasts, adipocytes, osteoclasts and osteoblasts in multiple myeloma progression, as well as the impact of the sympathetic nervous system and microbiome composition.


Blood ◽  
1983 ◽  
Vol 62 (1) ◽  
pp. 166-171 ◽  
Author(s):  
PR Greipp ◽  
RA Kyle

We reviewed the clinical and morphological findings in 43 cases of monoclonal gammopathy of undetermined significance (MGUS), 9 of smoldering multiple myeloma (SMM), and 23 of overt multiple myeloma (MM). In all cases, the patients' physicians had requested a bone marrow examination because of the possibility of MM. In all 75 cases, 3H-thymidine labeling indices were performed. The plasma cell labeling index correctly classified 62 of the 75 cases (83%). A linear discriminant function combining the labeling index and percentage of plasma cells improved the accuracy to 92% (69/75), or to 95% (71/75) if patients in whom MM developed within 6 mo were considered to have MM. The labeling index was most critical for the differential diagnosis of MM from SMM (p less than 0.001). Serum or urine M-protein level, percentage of plasma cells or lymphocytes in the bone marrow, and plasma cell grade, asynchrony, and nucleolar size failed to discriminate the group with SMM from the group with MM. In patients with MGUS or SMM, a plasma cell labeling index greater than 0.4% warned of impending MM. The plasma cell labeling index is a reliable diagnostic test when applied in cases of monoclonal gammopathy, especially when differentiation from MM is difficult using standard clinical criteria.


Blood ◽  
1983 ◽  
Vol 62 (1) ◽  
pp. 166-171 ◽  
Author(s):  
PR Greipp ◽  
RA Kyle

Abstract We reviewed the clinical and morphological findings in 43 cases of monoclonal gammopathy of undetermined significance (MGUS), 9 of smoldering multiple myeloma (SMM), and 23 of overt multiple myeloma (MM). In all cases, the patients' physicians had requested a bone marrow examination because of the possibility of MM. In all 75 cases, 3H-thymidine labeling indices were performed. The plasma cell labeling index correctly classified 62 of the 75 cases (83%). A linear discriminant function combining the labeling index and percentage of plasma cells improved the accuracy to 92% (69/75), or to 95% (71/75) if patients in whom MM developed within 6 mo were considered to have MM. The labeling index was most critical for the differential diagnosis of MM from SMM (p less than 0.001). Serum or urine M-protein level, percentage of plasma cells or lymphocytes in the bone marrow, and plasma cell grade, asynchrony, and nucleolar size failed to discriminate the group with SMM from the group with MM. In patients with MGUS or SMM, a plasma cell labeling index greater than 0.4% warned of impending MM. The plasma cell labeling index is a reliable diagnostic test when applied in cases of monoclonal gammopathy, especially when differentiation from MM is difficult using standard clinical criteria.


Blood ◽  
2009 ◽  
Vol 114 (22) ◽  
pp. 4951-4951
Author(s):  
Pellegrino Musto ◽  
Maria Teresa Petrucci ◽  
Fortunato Morabito ◽  
Francesco Nobile ◽  
Fiorella D'Auria ◽  
...  

Abstract Abstract 4951 Background Primary Plasma Cell Leukemia (PPCL) is an aggressive, rare variant of multiple myeloma, with clinical, molecular and phenotypic peculiarities, which accounts approximately for 2% to 4% of all myeloma diagnoses. The prognosis of PPCL patients is usually poor, with less than half of patients responding to conventional chemotherapy and a median survival of 7 months. Even by using autologous or allogeneic transplant procedures, survival generally does not exceed three years. Bortezomib has recently provided some promising results in this setting, but, given all the above, new treatments for PPCL are greatly awaited. Lenalidomide is a new immunomodulating agent with great efficacy in multiple myeloma, especially when associated with dexamethasone or other drugs. There are, indeed, some sporadic case reports of PPCL patients treated with lenalidomide as salvage therapy, but no data are currently available on the use of this drug as first line therapy in this disease. Patients and Methods On March, 2009, we started an open label, prospective, multicenter, exploratory, single arm, two-stage study aiming to evaluate safety and antitumor activity of the lenalidomide/low dose dexamethasone combination (Rd), as first line therapy in patients with PPCL. The primary endpoint was early response rate according to International Uniform Criteria. The secondary endpoints were TTP, PFS, OS, percentage of eligible PPCL patients able to collect peripheral blood stem cells and to undergo autologous or allogeneic stem cells transplantation after Rd, serious and severe adverse event rate. According to this study protocol, all eligible, newly diagnosed adult patients with PPCL receive Lenalidomide at a dose of 25 mg daily for 21 days every 28 days. Oral dexamethasone is administered at a dose of 40 mg daily on days 1, 8, 15, and 22 for each 28-day cycle. After 4 cycles, patients who achieve at least PR and not eligible for autologous or allogeneic stem cell transplantation, continue with Rd until clinically appropriate (disease progression, unacceptable toxicity, patient's decision to leave the protocol). In these patients, a maintenance dose of lenalidomide alone equal to 10 mg/die days 1-21 every month is considered after at least 8 full dose Rd cycles. Patients responding after 4 Rd cycles and eligible for transplant procedures, proceed according to single Centre transplant policy. Patients not responding after 4 cycles or progressing under Rd treatment are considered off-study. Appropriate contraception methods and anti-thrombotic prophylaxis are planned. Results Four enrolled patients (1 male, 3 female, mean age 65 years, range 58-69) are currently evaluable for early response. All had unfavourable cytogenetics, including del13, t(4;14), t (14;16), or a complex karyotype. Circulating plasma cells ranged from 4.4 to 9.2 ×10e9/l. One patient had at baseline a moderate degree of renal failure (serum creatinine levels 2 mg/dl). After at least 2 Rd cycles (range 2-4), two PR and two VGPR were achieved (overall response rate 100%), with disappearance or near complete reduction of circulating plasma cells in all cases. The most relevant toxicities were grade 3 neutropenia and pneumonia, occurring in one patient and resolved by appropriate lenalidomide dose reduction, introduction of G-CSF and antibiotic therapy. One patient died in PR, due to causes unrelated to PPCL or treatment. As, according to the Simon, two-stage design adopted, more than two responses occurred within the first ten patients enrolled (stage 1), a total of 22 PPCL subjects will be accrued to complete the stage 2 of the trial. Conclusions These findings, though very preliminary, suggest that the combination of lenalidomide and dexamethasone may be a safe and promising initial therapy for PPCL patients, which can rapidly control the disease and could permit to perform following single patient-adapted therapeutic strategies. An update of this study, including molecular data, a larger number of patients and a longer follow-up, will be presented at the Meeting. Disclosures Musto: Janssen-Cilag: Honoraria; Celgene: Honoraria, Research Funding. Off Label Use: Lenalidomide is approved in Italy for advanced multiple myeloma, not for plasma cell leukemia. This is a clinical trial registered at AIFA (Italian regulatory Agency for Drugs), EudraCT No. 2008-003246 28. Petrucci:Janssen-Cilag: Honoraria; Celgene: Honoraria. Morabito:Celgene: Honoraria; Janssen-Cilag: Honoraria. Cavo:Celgene: Honoraria; Janssen-Cilag: Honoraria. Boccadoro:Celgene: Honoraria; Janssen-Cilag: Honoraria. Palumbo:Celgene: Honoraria; Janssen-Cilag: Honoraria.


Blood ◽  
2005 ◽  
Vol 106 (11) ◽  
pp. 5083-5083
Author(s):  
Mehran S. Neshat ◽  
Haiming Chen ◽  
Melinda S. Gordon ◽  
James R. Berenson ◽  
Benjamin Bonavida

Abstract The transcription factor Yin Yang 1 (YY1) regulates cellular differentiation and response to apoptotic stimuli. YY1 exerts its pleiotropic effects through regulation of promoter activity of critical genes, as well as association and direct modulation of stability and function of a subset of proteins. Genes that are regulated by YY1 include those that control the cell cycle, development, differentiation and tumor suppression. For example, it has been reported that YY1 inhibits the proto-oncoprotein c-Myc (Austen, et al., Oncogene, 1998, 17:511) and negatively regulates the tumor suppressor gene p53 (Sui, et al., 2004, Cell 117: 859). Thus, expression and activity of YY1 in tumor cells may be involved in the pathogenesis of disease, as well as controlling response to drug stimuli. YY1 is regulated at transcriptional and post-translational levels in response to intra and extracellular signals. It has been reported that YY1 undergoes proteolytic cleavage. Caspase-dependent N-terminal cleavage of YY1 has been reported in response to physiological (Fas, TNF, L-glutamate) and chemical (staurosporine, etoposide, okadaic acid) death promoting factors. Similar presence of truncated YY1 is observed in in vitro models of skeletal and cardiac muscle differentiation. N-terminal truncated YY1 lacks its transactivation domain, while DNA binding remains unaltered. Hence, YY1 function may be altered by truncated forms. We hypothesized that post-translational processing of YY1 occurs in bone marrow and may be important in tumor progression and response to therapeutic agents. This study thereby aimed to determine whether altered levels and/or forms of YY1 are expressed in the bone marrow of multiple myeloma patients and to identify their potential downstream effectors. YY1 expression in protein lysates of bone marrow aspirates from nine patients was determined by Western blot analysis. Truncated species of YY1 were present in 6/8 samples. In contrast to myeloma bone marrow, one plasma cell leukemia sample showed high levels of YY1 and no truncated forms. Similar high levels of YY1 expression was observed in established tumor xenografts of a plasma cell leukemia tumor. We are presently extending the pool of analyzed normal and cancer harboring tissues and examining potential correlation of YY1 and its altered forms with disease status and prior therapeutic history. Identification and purification of cell populations that generate altered forms of the protein and its effect on expression and function of YY1 interacting proteins are under investigation.


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