ABSTRACTObjectivesThe study evaluated the impact of lifestyle and environmental exposure on the etiology of multiple myeloma (MM).MethodsA multicenter case–control study was conducted in 20 hematology centers and in 5 outpatient clinics in Poland. The questionnaire on exposure to potential risk factors including sociodemographic data, lifestyle, and environmental factors was completed.ResultsA total of 274 patients with newly diagnosed MM and 208 patients from primary healthcare centers in the control group were enrolled in the study. Regarding lifestyle, sports practiced systematically for at least half a year play a protective role in the development of myeloma (OR = 0.40, 95% CI, 0.28–0.58, p < 0.001). Among environmental factors harmful exposures that increase the likelihood of the development of MM include pesticides (OR = 3.29, p < 0.001), asphalt (OR = 2.42, p = 0.026), coal dust (OR = 2.27, p = 0.004), organic vapors (OR = 2.11, p = 0.001), metal dust (OR = 2.07, p = 0.023), exhaust fumes (OR = 2.03, p < 0.01), and chemicals (OR = 1.80, p < 0.01).ConclusionsThe pathogenesis of MM is complex with the impact of modifiable factors. Lifestyle, with physical activity, seems to play a key role.
Autologous hematopoietic stem cell transplantation (auto-SCT) is the recommended treatment for responding patients with multiple myeloma (MM). However, we do not know the risk factors influencing long-term survival without progression after auto-SCT. Therefore, this prospective study aimed to investigate the influence of transplanted cells with cluster of differentiation (CD)184+ expression, CD26+ lymphocytes and monocytes, and reconstitution of CD3+ lymphocytes on overall survival (OS) and progression-free survival (PFS) after auto-SCT in MM. Forty-eight patients with MM underwent auto-SCT at our center from 2011 to 2013. The numbers of CD184+ cells, CD26+ lymphocytes, and CD26+ monocytes were measured in the harvested material. In addition, the number of lymphocyte subpopulations (CD3+ lymphocytes, helpers, suppressors, natural killer (NK), cytotoxic NK, and B lymphocytes) was measured in peripheral blood during regeneration after auto-SCT. Flow cytometry was performed in both cases. The median OS was 92 months. Our analysis revealed a statistically significant effect of the number of transplanted CD184+ cells on OS and a statistically significant correlation between PFS and the number of transplanted CD184+ cells and reconstitution of CD3+ lymphocytes. In conclusion, our study showed that the increasing numbers of transplanted CD184+ cells, CD26+ lymphocytes, and CD26+ monocytes augmented the risk of death.
We present a case of a young patient with life-threatening pulmonary complications after allogeneic hematopoietic stem cell transplantation (HSCT). The 25-year-old woman, after HSCT for multiple myeloma, developed severe chronic graft-vs-host disease (GvHD), including bronchiolitis obliterans syndrome. During the treatment of chronic GvHD, 18 months after HSCT, she experienced sudden massive pulmonary hemorrhage with cardiac arrest. The computed tomography imaging revealed lesions suggestive of fungal etiology, with cavity adjacent to the pulmonary vessels. Disqualified from invasive treatment due to poor pulmonary performance, she was treated conservatively with broad-spectrum antibiotics and antifungals. The microbiological workup consistently revealed only Pseudomonas aeruginosa colonization. Her condition steadily improved on treatment. Over 18 months after the incident, she did not experience recurrent bleeding nor serious infection, her primary disease remains in remission, and GvHD symptoms are controlled. Allogeneic HSCT offers possibility of sustained immune-mediated disease control and sometimes even cure, but despite reduced transplant related mortality, GvHD and infections may be detrimental for transplant recipients. Our report illustrates atypical manifestation of pulmonary lesions and highlights the importance of infection control during GvHD treatment.
We evaluated the association between germline genetic variants located within the 3 '-untranlsated region (polymorphic 3 ' UTR, ie, p3UTR) of candidate genes involved in multiple myeloma (MM). We performed a case-control study within the International Multiple Myeloma rESEarch (IMMEnSE) consortium, consisting of 3056 MM patients and 1960 controls recruited from eight countries. We selected p3UTR of six genes known to act in different pathways relevant in MM pathogenesis, namely KRAS (rs12587 and rs7973623), VEGFA (rs10434), SPP1 (rs1126772), IRF4 (rs12211228) and IL10 (rs3024496). We found that IL10-rs3024496 was associated with increased risk of developing MM and with a worse overall survival of MM patients. The variant allele was assayed in a vector expressing eGFP chimerized with the IL10 3 '-UTR and it was found functionally active following transfection in human myeloma cells. In this experiment, the A-allele caused a lower expression of the reporter gene and this was also in agreement with the in vivo expression of mRNA measured in whole blood as reported in the GTEx portal. Overall, these data are suggestive of an effect of the IL10-rs3024496 SNP on the regulation of IL10 mRNA expression and it could have clinical implications for better characterization of MM patients in terms of prognosis.
French National Cancer Institute (INCA) and the Fondation Francaise pour la Recherche contre le Myelome et les Gammapathies (FFMRG), the Intergroupe Francophone du Myelome (IFM), NCI R01 NCI CA167824 and a generous donation from Matthew Bell. This work was supported in part through the computational resources and staff expertise provided by Scientific Computing at the Icahn School of Medicine at Mount Sinai. Research reported in this paper was supported by the Office of Research Infrastructure of the National Institutes of Health under award number S10OD018522. The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health. The authors thank the Association des Malades du Myelome Multiple (AF3M) for their continued support and participation. Where authors are identified as personnel of the International Agency for Research on Cancer / World Health Organization, the authors alone are responsible for the views expressed in this article and they do not necessarily represent the decisions, policy or views of the International Agency for Research on Cancer / World Health Organization
Cereblon (CRBN) is crucial for antiproliferative and immunomodulatory properties of immunomodulatory drugs. The objective of this study was to verify whether germline single nucleotide polymorphisms (SNPs) in the CRBN gene may influence response to lenalidomide in multiple myeloma (MM). Fourteen tagging SNPs covering the genetic variability in the CRBN gene region were genotyped in 167 Polish patients with refractory/relapsed MM treated with lenalidomide-based regimens. We found that carriers of minor alleles of two studied CRBN SNPs rs1714327G>C (OR = 0.26; 95% CI = 0.1-0.67; p=.0055, Bonferroni corrected p=.033) and rs1705814T>C (OR = 0.22; 95% CI = 0.07-0.65; p=.0063, Bonferroni corrected p=.037) were significantly associated with lower probability of achievement at least partial remission while treated with lenalidomide-based regimens, using the dominant inheritance model. Moreover, one of these SNPs, namely rs1705814T>C, was correlated with shorter progression-free survival (HR = 2.49; 95%CI = 1.31-4.74, p=.0054, Bonferroni corrected p=.033). It is suggested that selected germline CRBN allelic variants (rs1714327G>C and rs1705814T>C) affect lenalidomide efficacy in patients with relapsed/refractory MM.
Introduction. In high-risk acute myeloid leukaemia/myelodysplastic syndrome patients, relapse remains the major cause of treatment failure after allogeneic stem cell transplantation (alloSCT). The investigation of lineage-specific chimerism has become an important tool in the management of patients during the post-transplant period. Aim. Early assessment of lineage specific chimerism in patients who underwent allogeneic hematopoietic stem cell transplantation. Material and methods. 55 patients with acute myeloid leukemia and myelodysplastic syndrome who underwent alloSCT were included in the study. Flow cytometric analysis and cell sorting was performed in bone marrow collected at day 30 after alloSCT. For the purpose of this study we analyzed sorted immature progenitor cells (CD34+CD19-) using STR method. Results. All patients who relapsed presented with lower donor chimerism in CD34+ positive cells in comparison to the group of patients in remission of the underlying disease. Median value of chimerism in CD34+ positive cells in the group of patients who relapsed was 14.5% (range 0-51%), whereas in patients who remained in remission of the underlying disease, chimerism in CD34+ never fell below 97% (median 100%, range 97-100%). All relapses occurred during the first year after alloSCT. Median time to relapse was 107 days (range 28-323). Conclusions. Early assessment of chimerism in CD34+ cells sorted out of bone marrow is a sensitive technique to detect residual or reoccurring disease after allogeneic SCT. The assessment of donor chimerism in CD34+ cells in day +30 after alloSCT seems to be relevant in post-transplant care of high risk patients.
Multiple sclerosis (MS) is an autoimmune disease of the central nervous system that leads to an inflammatory process resulting in demyelination and axonal degeneration. The most common form of MS is the relapsing-remitting MS (RRMS) characterized by the presence of numerous relapses. After few years of disease course, 90% of those patients eventually develop a secondary progressive form. About 10% of patients may suffer from a slowly progressive MS form - the primary progressive. The current treatment of RRMS includes immunomodulatory and immunosuppressive agents, which are effective, but usually in earlier and more benign forms. The immunomodulatory treatment has limited efficacy in aggressive forms of RRMS, and relapses occur despite treatment continuation. AHSCT should be considered as a therapeutic approach for patients with aggressive relapsing-remitting and aggressive progressive MS who failed conventional therapy. The mechanism of action of AHSCT for MS results from resetting the aberrant patient's immune system and eliminating the autoreactive T-lymphocytes. AHSCT can serve as an effective and safe procedure only when strict neurological eligibility criteria are adhered. The procedure should be performed in highly specialized hematological centers. The aim of our paper is to summarize the current eligibility criteria for AHSCT in MS patients as well as to present data on efficacy and safety of this approach.
Multiple myeloma (MM) is a malignancy of plasma cells usually infiltrating the bone marrow, associated with the production of a monoclonal immunoglobulin (M protein) which can be detected in the blood and/or urine. Multiple lines of evidence suggest that genetic factors are involved in MM pathogenesis, and several studies have identified single nucleotide polymorphisms (SNPs) associated with the susceptibility to the disease. SNPs within miRNA‐binding sites in target genes (miRSNPs) may alter the strength of miRNA–mRNA interactions, thus deregulating protein expression. MiRSNPs are known to be associated with risk of various types of cancer, but they have never been investigated in MM. We performed an in silico genome‐wide search for miRSNPs predicted to alter binding of miRNAs to their target sequences. We selected 12 miRSNPs and tested their association with MM risk. Our study population consisted of 1,832 controls and 2,894 MM cases recruited from seven European countries and Israel in the context of the IMMEnSE (International Multiple Myeloma rESEarch) consortium. In this population two SNPs showed an association with p < 0.05: rs286595 (located in gene MRLP22) and rs14191881 (located in gene TCF19). Results from IMMEnSE were meta‐analyzed with data from a previously published genome‐wide association study (GWAS). The SNPs rs13409 (located in the 3′UTR of the POU5F1 gene), rs1419881 (TCF19), rs1049633, rs1049623 (both in DDR1) showed significant associations with MM risk. In conclusion, we sought to identify genetic polymorphisms associated with MM risk starting from genome‐wide prediction of miRSNPs. For some mirSNPs, we have shown promising associations with MM risk.