8617 Background: Waldenstrom’s macroglobulinemia (WM) is a B-cell malignancy characterized by the presence of a serum monoclonal IgM protein, which is used to monitor both disease burden and response to treatment. Serum free light chains (sFLC) have recently emerged as a reliable tool to assess disease activity in patients with plasma cell disorders. Methods: To determine the role of sFLC in WM, we retrospectively-assessed the baseline levels of sFLC in 145 untreated, asymptomatic, patients using the Freelite sFLC assay (The Binding Site Ltd. UK). We also correlated sFLC with response to treatment, and performed serial measurements on symptomatic patients who received treatment on a clinical trial with BDR [Bortezomib, Dexamethasone, Rituximab]. Results: Of the 145 WM patients evaluated, 114 (78.6%) had an IgM-k and 31 (21.4%) had an IgM-λ paraprotein. Of the 114 patients with IgM-k, 88 (77%) had an elevated free k-LC and 103 (90%) had an abnormal κ/λ ratio. In the remaining 31 patients with IgM-λ, 23 (74%) had an elevated free λ-LC while 18 (58%) had an abnormal κ/λ ratio. Baseline sFLC levels were lower in asymptomatic patients [mean k-LC 129.42 mg/L (n=34) and mean λ- LC 49.97 mg/L (n=6)] compared to those with symptomatic disease [mean k-LC 261.45 mg/L (n=62) and mean λ-LC 301.73 mg/L (n=19), but did not reach statistical significance. Serial measurements of FLCs and comparison to the changes in the corresponding IgM values demonstrated a significant decrease in 2/6 responders tested 10 and 46 days post-treatment (10 days: 55% vs. 18%, 46 days: 81% vs. 39%). Similarly, an earlier increase in sFLCs was observed in the 2/4 non-responder patients after the 2nd-course of therapy, with a 44% and 128% increase in k and l-FLC vs. a 16% and 17% decrease in IgM, respectively. Conclusion: These results demonstrate that sFLC are significantly-elevated in patients with WM. Higher levels were observed in symptomatic versus asymptomatic patients. Preliminary evidence also suggests that sFLC maybe a more-sensitive and a better marker of response to treatment and disease progression than the current standard of serum IgM. No significant financial relationships to disclose.
A higher percentage of apoptotic cells (apoptotic index or AI) is consistently found in bone marrow (BM) biopsies compared to BM aspirates of patients with myelodysplastic syndrome (MDS). Most studies have only investigated the low-density fraction (LDF) mononuclear cells from BM aspirates following density separation for AI determination. In the present study, both LDF and high-density fraction (HDF) cells for AI were examined by electron microscopy (EM) in 10 MDS patients and 4 healthy donors. Matched BM biopsies were subjected to AI detection by in situ end labeling (ISEL) of fragmented DNA. The results indicate that in LDF and HDF cells, AI is consistently higher in MDS patients (8.5% vs 1.5%, respectively; P = .039) compared to healthy donors (27% vs 4%, respectively; P = .004). The BM biopsy AI was also higher in MDS patients than in healthy donors (3+ vs 0+, respectively; P = .036). In addition, in MDS patients, more apoptotic cells were found in HDF cells than in LDF cells (27% vs 8.5%, respectively;P = .0001). All stages of maturation, ranging from blasts to terminally mature cells belonging to all 3 lineages, were represented in the dying cells in both compartments. Using EM, typical Pelger-Huett–type cells appeared to be apoptotic granulocytes. Both LDF and HDF cells should be examined for an accurate estimation of apoptotic cells because AI would be underestimated if only the LDF cells were studied. Ultrastructural studies consistently show a higher AI in BM biopsies compared to BM aspirates despite the correction factor of HDF cells provided by AI. This may represent the actual extant state, which could conceivably be due to a higher concentration of proapoptotic signals in the biopsies.
Serum lipid profiles were obtained in 108 patients with myelodysplastic syndrome (MDS) and compared to 28 healthy volunteers. Serum cholesterol and low-density and high-density lipoproteins (LDL and HDL) were found to be significantly lower in MDS patients than in normals (p = 0.0001, 0.0038 and 0.037, respectively). This difference was significant for all MDS categories. Serum cholesterol and HDL were negatively related to biopsy cellularity (p = 0.001 and 0.0001, respectively), and serum triglycerides were negatively related to labeling index (p = 0.0003). No differences were noted in the lipid profiles of MDS patients with normal versus abnormal karyotypes. However, low-risk MDS patients with abnormal karyotypes had significantly lower triglyceride levels compared with the high-risk patients (p = 0.027), as did low-risk patients with normal cytogenetics (p = 0.015). Serum HDL levels were significantly higher for the low-risk group with normal cytogenetics as well (p = 0.003). We conclude that serum cholesterol, LDL, and HDL are significantly reduced in MDS patients, probably indicating excessive intracellular lipid biosynthesis in the expanding clone. These relatively simple measurements could serve as important prognostic markers and reliable indicators of disease activity in individual patients. Prospective studies to determine their utility as independent variables that guide the need for active therapeutic intervention are warranted.
Breast cancer is being diagnosed more frequently in young women. It is important to identify tumors with greater metastatic potential since this information will provide a basis for noninvasive staging of the axilla. The studied population consisted of 66 patients with infiltrating breast carcinoma (56 ductal, 10 lobular) aged 20-34 (mean 29) years. Lymph node status was correlated with the following parameters: size, grade, p53 expression, MIB-1, CD44, c-Erb-2, estrogen, progesterone receptors, and a family history of breast cancer. Immunohistochemical studies utilizing avidin-biotin-peroxidase complex method were performed on formalin-fixed, paraffin embedded tissue. Thirty-nine patients (59%) had positive lymph nodes and 27 (41%) had negative lymph nodes. Ln multivariate logistic regression analysis, two models with size (p = .0002) and p53 (p = .0379) or size (p = .0002) and MLB-1 (p = .0462) were predictive of nodal involvement. For T1 lesions, p53 positivity increased the probability of nodal involvement from 18% to 46% and, for T2 lesions, from 65% to 89%. Ln the second model, for T1 lesions MIB-1 positivity increased the probability of nodal involvement from 10% to 36% and, for T2 lesions, from 48% to 82%. Size, p53, and MIB-1 were found to be valid independent predictors of lymph node metastasis in T1 and T2 breast carcinomas in young women. The combination of size with p53 or MIB-1 increases dramatically the predictive impact of these parameters on nodal status. These data may prove useful in selecting patients with increased risk of dissemination and provide a basis for staging the axilla noninvasively.
Forty-three patients with myelodysplastic syndromes (MDS) were treated with a combination of pentoxifylline and ciprofloxacin (PC) with the addition of dexamethasone (PCD) in 18 patients who failed to respond to PC. There were 15 females and 28 males, and the median age was 67 years. A total of 18 patients either showed a hematopoietic improvement, a partial or complete cytogenetic response or a combination of both for an overall response rate of 42%. Seven PC only patients responded, four showing hematologic improvement, two cytogenetic responses and one patient showing a combined response. This 16% response rate to PC was increased to 61% by the addition of dexamethasone with 11/18 patients showing a response. Four of the 7 patients who responded initially to PC were given dexamethasone after at least 12 weeks of PC therapy, and only 1 showed a further improvement in response. Thus, we conclude that the combination of PCD provides an encouraging novel approach to treating MDS. The mechanism of action is probably related to the suppression of a veriety of cytokines which in turn attenuate the excessive intramedullary apoptotic death of hematopoetic cells in MDS, an observation which has been speculated to be the basis of the paradox of variable cytopenias despite cellular marrows in MDS. Larger numbers of patients need to be treated and followed for longer periods to determine the true efficacy of this therapy, especially the nature and duration of the cytogenetic responses.
Extensive apoptosis or programmed cell death (PCD) of both hematopoietic (erythroid, myeloid, megakaryocytic) and stromal cells in myelodysplastic syndromes (MDS) cancels the high birth-rate resulting in ineffective hematopoiesis and has been demonstrated as the probable basis for peripheral cytopenias in MDS by our group. It is proposed that factors present in the microenvironment are inducing apoptosis in all the cells whether stromal or parenchymal. To investigate this hypothesis further, bone marrow biopsies from 46 MDS patients and eight normal individuals were examined for the presence of three cytokines, tumor necrosis factor-alpha (TNF-alpha), transforming growth factor-beta (TGF-beta) and granulocyte macrophage-colony stimulating factor (GM-CSF) and one cellular component, macrophages, by the use of monoclonal antibodies immunohistochemically. Results showed the presence of TNF-alpha and TGF-beta in 41/46 and 40/46 cases of MDS respectively, while only 15 cases showed the presence of GM-CSF. Further a significant direct relationship was found between the degree of TNF-alpha and the incidence of PCD (p= 0.0015). Patients who showed high PCD also had an elevated TNF-alpha level. Thus, the expression of high amounts of TNF-alpha and TGF-beta and low amounts of the viability factor GM-CSF may be responsible for the high incidence of PCD leading to ineffective hematopoiesis in MDS. Future studies will be directed at attempting to reverse the lesion in MDS by using anti-TNF-alpha drugs such as pentoxifylline.
The paradox of myelodysplastic syndromes (MDS) which present with pancytopenias despite cellular bone marrows (BM) was investigated by conducting detailed studies of proliferation and apoptosis in 89 MDS patients. Our results demonstrated a rapid rate of both proliferation as well as apoptosis. Levels of three cytokines, tumor necrosis factor-alpha (TNF-alpha), transforming growth factor-beta (TGF-beta) and interleukin-1 beta (IL-1 beta) were measured in the same patients. High levels of TNF-alpha were found to correlate with high levels of apoptosis in 83 MDS patients (P = 0.0045). We propose a dual role for TNF-alpha (or other cytokines) in the pathogenesis of MDS. On the one hand, TNF-alpha induces apoptosis in the maturing cells causing pancytopenia while on the other, it stimulates the proliferation of the primitive progenitors accounting for the hypercellular BM frequently seen in MDS. A new model for MDS is presented, The initial abnormality probably affects a primitive hemopoietic progenitor which acquires a growth advantage leading to monoclonal hemopoiesis, which in turn makes these cells susceptible towards acquiring additional mutations and appearance of cytogenetically marked (or unmarked) clones. Cytokines such as TNF-alpha whose source is presently unknown, then contribute towards the clinical syndrome of pancytopenia and hypercellularity.
A poorly defined transforming event(s) affects the pluripotential bone marrow (BM) stem cell in myelodysplastic syndromes (MDS), conferring a growth advantage upon it which leads eventually to monoclonal hematopoiesis. The progeny of this transformed ancestor undergo recognizable albeit dysplastic maturation. We propose that this picture is further complicated by a variety of cytokines, tumor necrosis factor alpha (TNF-alpha), transforming growth factor beta (TGF-beta) and interleukin 1beta (IL-1beta) which exert a dual effect on the diseased cells. The immature CD34+ cells are stimulated to proliferate, while their later differentiated daughters are induced to undergo apoptosis accounting for the clinical syndrome of pancytopenia despite hypercellular BMs. Studies directed at measuring the rates of proliferation and apoptosis as well as the levels of TNF-alpha, TGF-beta and IL-1beta confirm this hypothesis and are presented in greater detail. A novel approach towards MDS therapy emerges as a result of this paradigm shift based upon the premise that anti-cytokine therapy would prevent excessive intramedullary apoptosis and result in improved cytopenias as well as cause a slowing down of the diseased precursor cell proliferation resulting in resumption of polyclonal hematopoiesis. Because a number of cytokines function through common lipid second messengers, interruption of this pathway should theoretically cause disruption in the signalling of a cascade of cytokines.
Cell-cycle kinetics were measured in situ after infusions of iododeoxyuridine and/or bormodeoxyuridine in 50 patients with myelodysplastic syndromes (MDS) and the median labeling index in bone marrow (BM) biopsy samples was 28.6%. Unfortunately, 26 of 50 patients showed that > or = 75% of hematopoietic cells of all three lineages were undergoing programmed cell death (PCD) in their biopsy samples as shown by the in situ end labeling (ISEL) technique. Ten patients had 1/3 and eight had 2/3 ISEL+ cells. Stromal cells were frequently ISEL+ and often S-phase cells were also found to be simultaneously ISEL+. Nucleosomal DNA fragments as a ladder in agarose gel were present in BM aspirates of four patients who showed high ISEL and were absent in two who had no ISEL staining in biopsy samples, but only when DNA was extracted after a 4-hour in vitro incubation in complete medium. Therefore, laddering data confirmed the ISEL findings that the majority of hematopoietic cells in MDS are in early stages of PCD. We conclude that extensive intramedullary cell death may explain the paradox of pancytopenia despite hypercellular marrows in MDS patients. Investigating approaches that protect against PCD in some MDS subsets would be of interest.