Reduced CXCR4 expression in associated with extramedullary and predicts poor survival in newly diagnosed multiple myeloma

Author(s):  
Dangui Chen ◽  
Ying Chen ◽  
Yang Zhan ◽  
Hong Yan ◽  
Hong Liang ◽  
...  

Abstract Multiple myeloma (MM), a bone marrow-resident hematological malignancy of plasma cells, has remained largely incurable despite the advancement of novel therapies in recent years. Because of the heterogeneity of myeloma cells, risk stratification of MM is important for making therapeutic regimens. Nevertheless, no immunohistochemical (IHC) predictive and prognostic marker of MM has been constructed yet. Herein, the prognostic value of C-X-C motif chemokine receptor 4 (CXCR4) expression in 48 newly diagnosed MM patients was explored using IHC. Correlations between CXCR4 expression and clinical features of MM were analyzed. CXCR4-positive patients significantly outperformed CXCR4- negative patients in both 3-year estimated overall survival (93.8% vs 45.8%) and progression-free survival (57.1% vs 40.9%). The incidence of extramedullary lesions in CXCR4-negative patients increased significantly compared with CXCR4-positive patients. Plasma cells that reduce CXCR4 expression have poor prognosis and increase the incidence of extramedullary lesions.

Blood ◽  
2012 ◽  
Vol 120 (21) ◽  
pp. 5000-5000
Author(s):  
Chen Lijuan ◽  
Xiao Gao ◽  
Zhang Run ◽  
Qu Xiaoyan ◽  
Zhang Sensen

Abstract Abstract 5000 Multiple myeloma (MM) is characterized by a profound genomic instability of potential prognostic relevance. Loss of chromosome 13, observed in almost half of patients, negatively affects prognosis. MiR-15a, miR16-1 and miR-17-92 cluster, located on 13q, play important roles in the regulation of cell proliferation, differentiation and apoptosis. Therefore, we investigated a possible correlation of miRNA expression with chromosome 13 deletions (del(13)) and prognosis. We measured the expression of miR-15a, miR16-1 in 70 newly diagnosed MM patients and miR-17-92 cluster in 85 newly diagnosed MM patients by quantitative real-time PCR analyses. MiR-15a, miR-16-1 and miR-17 -92 cluster expression levels are independent of the del(13). High levels of miR-15a, miR-16-1, miR-17, miR-20a and miR-92-1 are associated with shorter progression-free survival (PFS), suggesting poor prognosis. Our data suggest that the expression of specific miRNAs may be contributed to MM prognosis. Disclosures: No relevant conflicts of interest to declare.


2019 ◽  
Vol 27 (2) ◽  
Author(s):  
A. Figueiredo ◽  
H. Atkins ◽  
R. Mallick ◽  
N. Kekre ◽  
A. Kew ◽  
...  

Introduction Cyclophosphamide–bortezomib–dexamethasone (CyBorD) is considered a standard induction regimen for transplant-eligible patients with newly diagnosed multiple myeloma (mm). It has not been prospectively compared with bortezomib–dexamethasone (Bor-Dex). We aimed to compare the efficacy of CyBorD and Bor-Dex induction in transplant-eligible patients. Methods In a retrospective observational study at a single tertiary centre, all patients with transplant-eligible mm who received induction with CyBorD or Bor-Dex between March 2008 and April 2016 were enrolled. Progression-free survival (pfs), response, and stem-cell collection for a first autologous stem-cell transplantation (ahsct) were compared. Results Of 155 patients enrolled, 78 (50.3%) had received CyBorD, and 77 (49.7%), Bor-Dex. The patients in the Bor-Dex cohort were younger than those in the CyBorD cohort (median: 57 years vs. 62 years; p = 0.0002) and more likely to have had treatment held, reduced, or discontinued (26% vs. 14.5%, p = 0.11). The stem-cell mobilization regimen for both cohorts was predominantly cyclophosphamide and granulocyte colony–stimulating factor (gcsf). Plerixafor was used more often for the CyBorD cohort (p = 0.009), and more collection failures occurred in the CyBorD cohort (p = 0.08). In patients receiving Bor-Dex, more cells were collected (9.9×106 cells/kg vs. 7.7×106cells/kg, p = 0.007). At day +100, a very good partial response or better was achieved in 75% of the CyBorD cohort and in 73% of the Bor-Dex cohort (p = 0.77). Median pfs was 3.2 years in the Bor-Dex cohort and 3.7 years in the CyBorD cohort (p = 0.56). Conclusions Overall efficacy was similar in our patients receiving CyBorD and Bor-Dex. After ahsct, no difference in depth of response or pfs was observed. Cyclophosphamide–gcsf seems to increase collection failures and hospitalizations in patients receiving CyBorD. Prospective studies are required to examine that relationship.


2015 ◽  
Vol 2015 ◽  
pp. 1-6 ◽  
Author(s):  
Shenghao Wu ◽  
Cuiping Zheng ◽  
Songyan Chen ◽  
Xiaoping Cai ◽  
Yuejian Shi ◽  
...  

Objective. To investigate the efficacy and safety of the treatment of the newly diagnosed multiple myeloma (MM) patients with the therapy of subcutaneous (subQ) administration of bortezomib and dexamethasone plus thalidomide (VTD) regimen.Methods. A total of 60 newly diagnosed MM patients were analyzed. 30 patients received improved VTD regimen (improved VTD group) with the subQ injection of bortezomib and the other 30 patients received conventional VTD regimen (VTD group).The efficacy and safety of two groups were analyzed retrospectively.Results. The overall remission (OR) after eight cycles of treatment was 73.3% in the VTD group and 76.7% in the improved VTD group (P>0.05). No significant differences in time to 1-year estimate of overall survival (72% versus 75%,P=0.848) and progression-free survival (median 22 months versus 25 months;P=0.725) between two groups. The main toxicities related to therapy were leukopenia, neutropenia, thrombocytopenia, asthenia, fatigue, and renal and urinary disorders. Grade 3 and higher adverse events were significantly less common in the improved VTD group (50%) than VTD group (80%,P=0.015).Conclusions. The improved VTD regimen by changing bortezomib from intravenous administration to subcutaneous injection has noninferior efficacy to standard VTD regimen, with an improved safety profile and reduced adverse events.


Blood ◽  
2004 ◽  
Vol 104 (11) ◽  
pp. 2402-2402 ◽  
Author(s):  
Shaji Kumar ◽  
Emily Blood ◽  
Martin M. Oken ◽  
Philip R. Greipp

Abstract Background: Syndecan-1 (CD138) is a heparan sulfate bearing proteoglycan found on various epithelial cells as well as on B lineage cells depending on its stage of development. Syndecan-1 (CD138) is abundantly expressed by plasma cells, especially myeloma cells. The extra cellular domain along with the heparan sulfate side chains can be cleaved off the cell surface and can be detected in the serum as soluble syndecan. Syndecan possibly plays a multifunctional role in the biology of myeloma. It has been shown to be an independent prognostic factor in patients with multiple myeloma. It has also been shown to promote myeloma cell growth through different mechanisms. Its expression has also been suggested to correlate with bone disease in MM. Methods: In this study we studied serum levels of soluble syndecan in newly diagnosed MM patients enrolled in the Eastern Cooperative Oncology Group (ECOG) E9486 and its associated correlative laboratory clinical trial E9487. We evaluated the prognostic value of syndecan in MM and its relationship to other known prognostic factors for this disease. In addition, syndecan levels were correlated with clinical and laboratory markers of bone disease. Results: A total of 501 patients were studied and the median serum syndecan-1 was 158 ng/mL. Syndecan levels correlated positively with other prognostic factors and markers of tumor burden such as β2-microglobulin (correlation coefficient 0.3; P <0.00001), labeling index (0.25; <0.0001), creatinine (0.23; <0.0001), soluble IL6 receptor (0.3; <0.0001), BM plasma cell percentage (0.16; <0.0006), and disease stage (P=0.0007). Significant differences in the overall and progression free survival was found between two groups of patient separated using the median value as cut-off. The High syndecan group had a median overall survival of 36.3 months compared to 49.3 months for the low syndecan group (P < 0.0001). Similarly, the high syndecan group had progression free survival of 25.4 months compared to 33.5 months for the low syndecan group (P < 0.0001). In a proportional hazards model including syndecan-1 as well as labeling index, β2M, Platelet count, IL-6R, syndecan-1 retained its prognostic value for overall survival (HR 1.3, P = 0.021). Syndecan levels were correlated with various bone markers including C-terminal telopeptide of type I collagen (ICTP), osteocalcin (OC), C-terminal type I procollagen (PICP), bone-specific alkaline phosphatase (BAP), and tartrate resistant alkaline phosphatase (TRAP) and were found to correlate only with ICTP (0.25, P < 0.0001). No correlation was found between clinical markers of bone disease including presence of lytic lesions, osteoporosis and pathologic fractures on X-rays or bone pain. Conclusion: In this large study, we once again confirm the prognostic value of serum syndecan-1 levels in large group of patients with newly diagnosed myeloma. Syndecan-1 level correlates with other disease markers. Syndecan levels also correlated with ICTP, a marker of bone turnover, though no strong correlation was found between syndecan levels and clinical markers of myeloma bone disease. The biological basis of these finding needs further evaluation.


Blood ◽  
2013 ◽  
Vol 122 (21) ◽  
pp. 3820-3820
Author(s):  
Yi Tao ◽  
Zhimin Gu ◽  
Ye Yang ◽  
Hongwei Xu ◽  
Xiaojing Hu ◽  
...  

Abstract Background We have recently established that increased chromosomal instability (CIN) signature is linked to drug resistance and poor outcome in multiple myeloma (MM) and other cancers. Thyroid Hormone Receptor Interactor 13 (Trip13), one of the 56 drug-resistant genes, plays a key role in chromosomal recombination and structure development during meiosis and has been reported to be increased in some malignancies including lung cancer, prostate cancer and breast cancer. In this study, we investigated how important Trip13 is in myelomagenesis and progression. Materials and Methods Gene expression profiling (GEP) was analyzed on plasma cells from 22 healthy donors, 44 patients with monoclonal gammopathy of undetermined significance (MGUS), 351 patients with newly diagnosed multiple myeloma, and 9 human myeloma cell lines, as well as on 36 sequential samples at diagnosis, pre-1st, pre-2nd and post-2nd autologous stem cell transplantation (ASCT). Over-expression and knock-down experiments of Trip13 were performed on myeloma cell lines by lentivirus transfection. Cell viability was assessed by trypan exclusion assay. Western blots were used to detect the expression of Trip13, P31 comet, caspase-8, caspase-9, caspase-3 and PARP, and checkpoint related proteins MAD2 and CDC20 in Trip13 overexpressed or Trip13 shRNA-transfected myeloma cells. Results Sequential GEP samples showed that Trip13 expression increased in 8 of 9 patients after chemotherapy and ASCT compared to the samples at diagnosis strongly suggesting that increased Trip13 is associated with drug resistance. Trip13 was already significantly increased in MGUS patients, newly diagnosed MM patients and MM cell lines compared with normal plasma cells. Furthermore, Trip13 was significantly higher in high-risk MMs than in low-risk MMs and increased Trip13 was linked to an inferior event-free survival (EFS) (p<0.01) and overall survival (OS) (p<0.01) in 351 newly diagnosed MMs. In contrast, the Trip13-interacting gene P31 comet was down-regulated in high-risk MMs and high expression of P31 was associated with good outcome. Interestingly, patients with high Trip13 and low P31 comet have the worst outcome compared to patients with only one of these, suggesting the interaction of Trip 13 and p31 has a synergistic effect on MM progression. Transfection of Trip13 into ARP1 and OCI-My5 cells significantly increased cell proliferation, while knock-down Trip13 in OCI-My5, H929, RPMI8226 cells inhibited cell growth and induced MM cell apoptosis with increases of cleaved caspase-8, caspase-9, caspase-3 and PARP. Mechanistic studies showed that Trip13 over-expression decreased P31comet and MAD2 expression by western blotting, but increased CDC20. Conclusions The association of increased Trip13 and decreased p31 is a good biomarker for MM drug resistance and poor prognosis. Our results also show Trip13 and P31 comet could be potential targets to overcome drug resistance in MM. Disclosures: No relevant conflicts of interest to declare.


Blood ◽  
2014 ◽  
Vol 124 (21) ◽  
pp. 2111-2111 ◽  
Author(s):  
Heinz Ludwig ◽  
Katja Weisel ◽  
Maria Teresa Petrucci ◽  
Xavier Leleu ◽  
Anna Maria Cafro ◽  
...  

Abstract Background Olaptesed, an L-stereo-isomer RNA aptamer, binds and neutralizes the chemokine CXCL12. By interaction with the chemokine receptors CXCR4 and CXCR7, CXCL12 is responsible for trafficking and homing of normal and malignant blood cells to the bone marrow. Preclinical studies have shown synergistic activity of CXCL12-targeting and anti-myeloma agents, specifically bortezomib (BTZ). Thus, targeting the myeloma niche may increase treatment efficacy. Aims This open label single arm study was conducted to assess the activity and safety of olaptesed when added to the combination of BTZ and dexamethasone (DEX) in patients with relapsed / refractory multiple myeloma (MM). Patients and Methods Twenty-eight relapsed or refractory MM patients (males:females 14:14) were enrolled and treated according to a dose titration design. Olaptesed was administered intravenously at doses increasing from 1 mg/kg to 2 mg/kg and 4 mg/kg in cycles 1, 2 and 3, respectively, at 1 hour prior to bortezomib administration. During cycles 4 to 8, olaptesed was dosed at the highest individually titrated dose. BTZ (1.3 mg/m2) was given on days 1, 4, 8 and 11 as intravenous injection. Oral DEX (20 mg) was added on the day of and on the day after BTZ administration. Response was evaluated based on the uniform IMWG response criteria (Rajkumar SV et. al. Blood 2011; 117: 4691-5). Plasma cell mobilization was studied after a pilot dose of 1 to 4 mg/kg olaptesed administered to the initial 10 patients before start of the regular treatment regimen. Results From Aug 2012 to Feb 2014 we enrolled 28 patients who had received a median of 2 (range 1-6) lines of prior therapy. Pretreatments were lenalidomide (LEN) in 20, BTZ in 14 and carfilzomib in 1 patient. Ten patients had autologous stem cell transplantations prior to entering this study. The patient population enrolled presented predominantly with advanced disease and with adverse outcome predictors. Ten patients had ISS stage III. High-risk cytogenetics were identified in 9 of the 20 patients (45%) with FISH testing available for t(4;14), t(14;16) and/or del17p. Eleven patients were refractory to their last prior treatment, which contained BTZ in 8 cases. After two early withdrawals, 26 patients were available for outcome evaluations. The median number of completed cycles was 8. Progression led to treatment termination in 8 patients. The dose of olaptesed was titrated to 4 mg/kg in all 18 patients treated for 3 or more cycles. The single dose of olaptesed administered to 10 pilot-patients effectively mobilized plasma cells, which increased by approximately 200% for up to 3 days. Based on “best response” of the 26 evaluable patients, the overall response rate was 73%: Two patients (8%) achieved a complete response (CR), 6 patients (23%) a very good partial response (VGPR) and 11 patients (42%) a partial response (PR). Minimal response was recorded in 2 patients (8%), 4 patients (15%) had stable disease and 1 patient (4%) progressive disease. In the 9 evaluable patients with high-risk cytogenetics, the clinical responses were similar. The ORR was 67% with VGPR in 3 (33%) and PR in 3 (33%) patients. Of the 14 patients pre-treated with BTZ, 1 had a CR and 8 a PR (ORR 64%). M-protein decreased rapidly from treatment cycle 1 to cycle 4 with a decrease of ≥50% being observed in 15 of the 26 evaluable patients. Figure 1 shows a waterfall plot of the maximum observed decrease in M-protein. Figure 1: Waterfall Plot of Maximum M-Protein Change Figure 1:. Waterfall Plot of Maximum M-Protein Change Median progression-free survival (PFS) of the evaluable population was 6.5 months. It was also 6.5 months in the 9 patients with high-risk cytogenetics and 6.3 months in the 14 patients pre-treated with BTZ (Figure 2). The median follow-up was 6.3 months. Figure 2: Progression-Free Survival Figure 2:. Progression-Free Survival Treatment with olaptesed in combination with BTZ-DEX was safe and well tolerated without any appreciable increase in adverse events. Conclusions A single dose of olaptesed effectively mobilized plasma cells. Olaptesed in combination with BTZ and DEX resulted in an ORR rate of 73% and PFS of 6.5 months. Response rates and PFS were similar in patients with or without high risk cytogenetic features or with or without previous exposure to BTZ. The combination regimen was well tolerated. These findings merit further exploration of this strategy in randomized trials. Disclosures Weisel: NOXXON Pharma AG: Consultancy. Petrucci:Celgene: Honoraria; Jannsen-Cilag: Honoraria; Sanofi: Honoraria; Bristol-Myers Squibb: Honoraria. Leleu:Janssen, Celgene, leopharma, Takeda, Amgen, Novartis: Honoraria, Membership on an entity's Board of Directors or advisory committees. Laurent:Bristol-Myers Squibb: Honoraria. Kruschinski:NOXXON Pharma AG: Employment. Dümmler:NOXXON Pharma AG: Employment. Riecke:NOXXON Pharma AG: Employment. Engelhardt:NOXXON Pharma AG: Consultancy.


Blood ◽  
2016 ◽  
Vol 128 (22) ◽  
pp. 3463-3463
Author(s):  
Hideki Nakasone ◽  
Kiriko Terasako-Saito ◽  
Teiichi Hirano ◽  
Atsushi Wake ◽  
Seiichi Shimizu ◽  
...  

Abstract [Background] Multiple myeloma (MM) is generally considered incurable. Recently, novel drugs, including bortezomib, have demonstrated a survival benefit for newly diagnosed MM patients compared with classical treatments. Complete response (CR) after treatment is known to be associated with superior progression-free survival. Thus, we prospectively evaluated the efficacy and safety of boretezomib + dexamethasone (BD) for patients with newly diagnosed MM, followed by autologous hematopoietic stem cell transplantation (ASCT). We added BD consolidation therapy to aim CR if CR was not achieved after ASCT. [Patients and methods] This clinical study prospectively recruited newly diagnosed MM patients eligible for ASCT between 2010 and 2012. Due to health insurance issues in Japan, two courses of high-dose dexamethasone (HD-DX) had been administrated prior to BD induction treatment until Nov. 2011, while BD was administrated as an initial induction treatment since Dec. 2011. BD induction treatment included 1.3 mg/m2 of bortezomib on days 1, 4, 8, and 11 with 20mg of dexamethasone on days 1, 2, 4, 5, 8, 9, 11, and 12. This BD induction cycle was repeated every 3 weeks for 4 courses. Thereafter, filgrastim-based mobilization and ASCT following high-dose melphalan administration was performed. If patients did not achieve CR after ASCT, BD consolidation therapy (bortezomib: 1.3 mg/m2 on days 1, 8, and 15; dexamethasone 20 mg/day on days 1-2, 8-9, and 15-16) every 4 weeks was added to target CR (Figure 1) (UMIN-CTR: UMIN000002442). [Results] The median observational duration among survivors was 1536 days (range: 464-2023) at this analysis. Of the 47 enrolled MM patients, 46 (male 27; female 19) were eligible for BD induction treatment, while the remaining one achieved CR before BD induction. The median age of the patients was 59 (range: 35-67) years. Of the 44 patients whose karyotype analyses were available, normal karyotype was observed in 35. Abnormal karyotype included complex type in 4, diploid in 1, and other abnormalities in 4. FISH revealed deletion of p53 in 5 of 39 patients whose information was available; deletion of 13-chromosome in 16 of 42, IgH-MAF fusion in 1 of 40; IgH-FGFR3 fusion in 5 of 41; IgH-BCL1 fusion in 9 of 39. Of the 46 MM patients, 19 received HD-DX prior to BD induction, and 34 received ASCT after BD induction treatment (Figure 1). During the BD induction phase, 3 patients experienced disease progression, and BD treatment was discontinued in 9 patients because of their consent withdrawal (n=2) and adverse events (n=7) including interstitial pneumonia in 2, persistent neuropathy in 1, CMV enterocolitis in 1, heart failure in 1, diabetes mellitus in 1, and liver dysfunction in 1. After BD induction phase (n=46), their response was >= CR in 4 (8%), very good partial response (VGPR) in 10 (22%), partial response (PR) in 18 (39%), stable disease (SD) in 2 (4%), and progression or withdrawal in 12 (26%). After ASCT, their response was >=CR in 9 (20%), VGPR in 11 (24%), PR in 12 (26%), SD in 1 (2%), and additional progression or withdrawal in 1 (2%). Of the 24 patients who received ASCT and whose response was less than CR, 21 received BD consolidation therapy for a median of 4 courses (range: 1- 8). BD consolidation was discontinued in 4 patients due to persistent neuropathy or cytopenia. Finally, maximum response after ASCT with or without BD consolidation was >= CR in 19 (41%), VGPR in 7 (15%), PR in 6 (13%), < SD in 2 (2%, Figure 2). Through BD consolidation, CR was achieved in 8 of 11 patients with post-ASCT VGPR and 2 of 12 patients with post-ASCT PR. In total, 4-year progression-free survival (PFS) and overall survival (OS) was 43% (95%CI: 28-57%) and 80 % (95%CI: 64-90%), respectively. Focusing on CR patients after ASCT and those who actually received BD consolidation, PFS adjusted for karyotype and age were not different between CR patients after ASCT and after BD consolidation, while patients with VGPR or less after consolidation had significantly lower PFS (Figure 3). [Conclusion] BD induction and ASCT provided CR rate of 27% among ASCT patients, although BD induction may expectedly cause adverse events including persistent neuropathy and viral infections. Patients who achieved CR after ASCT showed good PFS, and targeting CR through BD consolidation might improve CR rate. It is worthwhile to prospectively compare the efficacy of BD consolidation only for patients who failed to achieve CR or universal consolidation strategy. Disclosures Kanda: Otsuka Pharmaceutical: Honoraria, Research Funding.


2021 ◽  
Vol 12 ◽  
pp. 204062072110303
Author(s):  
Cheong Ngai ◽  
Shaji Kumar ◽  
Garrett Chi-lai Ho ◽  
Sirong Chen ◽  
Chor-sang Chim

Complete response (CR) is an important favorable factor for survival in multiple myeloma (MM). However, CR patients continue to relapse, especially in the presence of minimal residual disease (MRD). Bone marrow (BM) MRD is predictive of progression-free survival (PFS) in MM. However, myeloma outside the BM aspiration site may result in subsequent relapse despite MRD-negativity. Therefore, positron emission tomography-computed tomography (PET-CT) based on F-fluorodeoxyglucose (FDG) is a complementary tool to monitor residual disease in MM. However, FDG may miss myeloma lesions that are not FDG-avid. On the other hand, 11C-Acetate (ACT) has been found to be a more sensitive and specific tracer than FDG in MM. Recently, the addition of daratumumab to bortezomib, thalidomide, dexamethasone (VTd) or bortezomib, lenalidomide, dexamethasone (VRd) backbone has been proven to improve outcomes. Herein, we report three newly-diagnosed MM patients achieving deep responses with imaging CR using ACT PET in addition to conventional immunofixation CR and MRD-negative CR after a 3-weekly daratumumab-based quadruplet induction regimen.


Blood ◽  
2021 ◽  
Author(s):  
Thierry Facon ◽  
Christopher P Venner ◽  
Nizar J Bahlis ◽  
Fritz Offner ◽  
Darrell White ◽  
...  

Continuous lenalidomide-dexamethasone (Rd)-based regimens are among the standards of care in transplant-ineligible newly diagnosed multiple myeloma (NDMM) patients. The oral proteasome inhibitor ixazomib is suitable for continuous dosing, with predictable, manageable toxicities. In the double-blind, placebo-controlled TOURMALINE-MM2 trial transplant-ineligible NDMM patients were randomized to ixazomib 4 mg (n = 351) or placebo (n = 354) plus Rd. After 18 cycles, dexamethasone was discontinued; treatment continued using reduced-dose ixazomib (3 mg) and lenalidomide (10 mg) until progression/toxicity. The primary endpoint was progression-free survival (PFS). Median PFS (mPFS) was 35.3 vs 21.8 months with ixazomib-Rd vs placebo-Rd, respectively (hazard ratio [HR], 0.830; 95% confidence interval, 0.676-1.018; P = .073; median follow-up, 53.3 and 55.8 months). Complete (26% vs 14%; odds ratio [OR], 2.10; P &lt; .001) and ≥ very good partial response (63% vs 48%; OR, 1.87; P &lt; .001) rates were higher with ixazomib-Rd vs placebo-Rd. In a prespecified high-risk cytogenetics subgroup, mPFS was 23.8 vs 18.0 months (HR, 0.690; P = .019). Overall, treatment-emergent adverse events (TEAEs) were mostly grade 1/2. With ixazomib-Rd vs placebo-Rd, 88% vs 81% of patients experienced grade ≥3 TEAEs, 66% vs 62% serious TEAEs, and 35% vs 27% TEAEs resulting in regimen discontinuation; 8% vs 6% died on study. Ixazomib-Rd is a feasible option for certain patients who can benefit from an all-oral triplet combination. This trial was registered at www.clinicaltrials.gov (#NCT01850524).


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