Phase I-II Trial of Oral Cyclophosphamide, Prednisone and Lenalidomide (Revlimid®) (CPR) for the Treatment of Patients with Relapsed and Refractory Multiple Myeloma.

Blood ◽  
2009 ◽  
Vol 114 (22) ◽  
pp. 1874-1874 ◽  
Author(s):  
Donna E. Reece ◽  
Esther Masih-Khan ◽  
Arooj Khan ◽  
Saima Dean ◽  
Peter Anglin ◽  
...  

Abstract Abstract 1874 Poster Board I-899 Lenalidomide (Revlimid®) and dexamethasone is an effective regimen in relapsed/refractory multiple myeloma (MM) patients (pts), with an overall response rate of 60.6% and median time to progression (TTP) of 13.4 months (Dimopoulos MA, et al, Leukemia 2009 Jul 23 [Epub ahead of print]). Oral cyclophosphamide and prednisone is an older regimen with excellent patient tolerance, and we sought to enhance the efficacy of lenalidomide by adding oral cyclophosphamide and prednisone in this phase I-II trial. The CPR regimen consisted of cyclophosphamide on days 1, 8 and 15; lenalidomide on days 1–21; and prednisone 100 mg every other day in a 28 day cycle. ASA 81 mg/day was given to all pts as DVT prophylaxis. Three dose levels were evaluated using a 3 by 3 dose escalation design. Between 11/2007–07/2009, 31 pts with relapsed/refractory MM who had not previously received lenalidomide were entered onto study. Median age was 61 (40–78) years and 61% were male. Immunoglobulin subtype was IgG in 19 pts (61%), IgA in 8 pts (26%) and light chain only in 4 pts (13%). Median number of prior regimens was 2 (1–5) and 28 pts had undergone previous ASCT, including double transplants in 6 pts. Prior therapy included thalidomide in 9 (29%) and bortezomib in 15 (48%). FISH cytogenetics were available in 13 pts; one had 13q deletion but none had t(4;14) or p53 deletion. At the time of protocol entry, median β 2-microglobulin level was 246 (92–767) nm/L, albumin 39 (34–48) g/L, creatinine 83 (50–126) μmol/L, platelet count 230 (75–337) × 109/L and ANC 2.5 (1.1–6.1) x 109/L. Protocol treatment is summarized in Table 1. Dose limiting toxicity was not observed during cycle 1 at any dose level. Grade 3–4 toxicities included thrombocytopenia in 5 pts (16%) and neutropenia in 9 pts (29%). These were managed with dose reduction and/or growth factor support. Four episodes of febrile neutropenia occurred. Other grade 3–4 non-hematologic toxicities included abdominal pain/bacteremia in 1 pt in cohort 1; hypokalemia in 1 pt in cohort 2; and DVT in 2 pts, dizziness in 2 pts and fatigue in 1 pt in cohort 3. Using the International uniform response criteria (Durie BG, et al, Leukemia 2006; 20:1467–1473), the best response was documented at a median of 6 (1–5) cycles and included the following: dose level 1 (1 CR, 2 PR); dose level 2 (1 VGPR, 2 PR); dose level 3 (5 CR, 9 VGPR, 9 PR, 1 MR and 1 stable disease). At a median follow-up (F/U) of 12 (8–21) months, 20 pts remain on study, 2 have withdrawn and 9 pts have progressed at a median of 9 (4–13) months; only 1 one has died (due to MM). We conclude: 1) the combination of full doses of the agents in CPR can be given in a 28 day cycle with minimal toxicity; 2) the overall response rate (CR + VGPR + PR) in 31 pts to date is 93%; 3) at a median F/U of 1 year, only 9 pts (29%) have progressed; 4) longer follow-up is required to assess the TTP and survival of the CPR regimen. Disclosures: Reece: Celgene: Honoraria, Membership on an entity's Board of Directors or advisory committees, Research Funding, Speakers Bureau. Off Label Use: Lenalidomide in combination with drugs other than dexamethasone. Anglin:Celgene: Honoraria. Chen:Celgene: Honoraria, Research Funding. Kukreti:Celgene: Honoraria. Mikhael:Celgene: Honoraria. Trudel:Celgene: Honoraria.

2008 ◽  
Vol 26 (29) ◽  
pp. 4777-4783 ◽  
Author(s):  
Donna E. Reece ◽  
Giovanni Piza Rodriguez ◽  
Christine Chen ◽  
Suzanne Trudel ◽  
Vishal Kukreti ◽  
...  

PurposeThe combination of oral weekly cyclophosphamide and alternate day prednisone is a convenient regimen for relapsed/refractory multiple myeloma (MM), and we sought to improve its efficacy by adding bortezomib, a proteasome inhibitor with proven antimyeloma activity.Patients and MethodsWe conducted a phase I-II trial evaluating six dose levels to define the maximum tolerated dose (MTD) of this combination in relapsed/refractory MM. An additional 10 patients were evaluated at the highest dose level reached.ResultsThirty-seven patients were treated on this study. The MTD was not defined. Both of the highest dose levels of bortezomib tested (1.3 mg/m2on days 1, 4, 8, and 11 and 1.5 mg/m2on days 1, 8, and 15, each on a 28-day cycle) could be safely given with cyclophosphamide 300 mg/m2per week and prednisone. At these dose levels, the overall response rate was 95% (complete responses [CR] plus partial response plus minimal response), with CR observed in more than 50% of patients. The weekly bortezomib regimen resulted in fewer instances of grade 3 thrombocytopenia and grade 1 to 2 peripheral neuropathy; the 1-year progression-free and overall survival probabilities with this dose level were 83% (95% CI, 73% to 96%) and 100%, respectively.ConclusionWeekly bortezomib 1.5 mg/m2plus oral cyclophosphamide and prednisone produces an unprecedented response rate and encouraging 1-year survival in relapsed/refractory patients with MM. Further evaluation of this promising regimen is warranted both in relapsed and newly diagnosed disease.


Blood ◽  
2008 ◽  
Vol 112 (11) ◽  
pp. 1723-1723
Author(s):  
Donna E. Reece ◽  
Esther Masih-Khan ◽  
Arooj Khan ◽  
Peter Anglin ◽  
Christine Chen ◽  
...  

Abstract Oral cyclophosphamide and prednisone is a convenient regimen in relapsed and refractory multiple myeloma (MM), with a partial response (PR) rate of 40% and median progression-free survival of 19 months in our retrospective analysis of patients in first or second relapse after autologous stem cell transplantation (ASCT) (Trieu Y, et al, Mayo Clin Proc2005; 80: 1582). We sought to enhance the efficacy of this regimen by adding oral lenalidomide (Revlimid®), a potent anti-myeloma agent, in a phase I-II trial. The CPR regimen consisted of cyclophosphamide on days 1, 8 and 15, lenalidomide on days 1–21, and prednisone 100 mg every other day in a 28-day cycle. ASA 81 mg/day was given to all patients (pts) as prophylaxis for DVT. Three dose levels were evaluated using a 3 by 3 dose escalation design. Between 11/2007–07/2008, 15 pts with relapsed/refractory MM were entered onto study. Median age was 60 (45–78) years and 60% were male. Immunoglobulin subtype was IgGκ:λ in 10:1; IgA κ:λ in 2:1 and κ light chain in 1. Median number of prior regimens was 2 (1–3) and 14 had undergone previous ASCT, including double transplants in 2 pts. Prior therapy also included thalidomide in 3 (20%) and bortezomib in 6 (40%). FISH cytogenetics were available in 9, but none had 13q deletion, t(4;14) or p53 deletion. At the time of protocol entry, median β2-microglobulin level was 222 (92–325) nm/L, albumin 38 (35–46) g/L, creatinine 78 (50–100) μmol/L, platelet count 230 (93–318) x 109/L and ANC 2.5 (1.9–9.0) x 109/L. Protocol treatment is summarized in Table 1. Dose level N Cyclophosphamide dose (mg/m2) Lenalidomide dose (mg) Prednisone dose (mg) Median # cycles given 1 3 150 15 100 9 2 3 150 25 100 6 3 6 300 25 100 4 3 (expanded) 3 300 25 100 1 Dose limiting toxicity was not observed during cycle 1 at any of the dose levels and the maximum tolerated dose of this regimen has not yet been reached at the highest dose level planned; all pts remain on active therapy. Grade 3/4 thrombocytopenia was seen in 1 pt (cohort 2) and neutropenia in 4 pts (1 in cohort 1, 1 in cohort 2 and 2 in cohort 3) and were managed with dose reduction and/or growth factor support. No episodes of febrile neutropenia occurred in any pt. Only 1 pt experienced varicella zoster; routine antiviral prophylaxis was not used. Other grade 3/4 non-hematologic toxicities were uncommon and included abdominal pain/bacteremia in 1 pt in cohort 1, hypokalemia in 1 pt in cohort 2, and DVT in 1 pt in cohort 3. Mild grade 1/2 constipation (47%), muscle cramps (33%) and fatigue (33%) were also noted. To date, best response includes the following: dose level 1 (1 near complete remission [nCR], 2 PR); dose level 2 (3 PR); dose level 3 (4 PR, 2 minimal response [MR]); expanded cohort 3 (1 MR, 2 too early). We conclude: 1) the combination of full doses of the agents in CPR can be given in a 28-day cycle with minimal toxicity; 2) the overall response rate (nCR + PR + MR) in 13 evaluable pts to date is 87%; 3) no pts have progressed in this preliminary analysis; 4) longer follow-up is required to assess the long-term efficacy of this regimen.


Blood ◽  
2016 ◽  
Vol 128 (22) ◽  
pp. 1145-1145 ◽  
Author(s):  
Sara Bringhen ◽  
Valeria Magarotto ◽  
Anna Marina Liberati ◽  
Angelo Belotti ◽  
Alessandra Larocca ◽  
...  

Abstract Background: Survival rates of multiple myeloma (MM) patients (pts) has improved over the past few years, but patients inevitably relapse and become more resistant to subsequent treatments. Carfilzomib and Pomalidomide were both approved for the treatment of relapsed/refractory MM (RRMM). Combinations including a proteasome inhibitor (PI) plus an immunomodulator (IMiD), such as Bortezomib-Lenalidomide-Dexamethasone (VRD) or Carfilzomib-Lenalidomide-Dexamethasone (CRD), showed a very high response rate with an acceptable toxicity. Moreover, in the CHAMPION1 study (Berenson et al Blood 2016), the weekly infusion of Carfilzomib showed to be as effective as the twice schedule. In this phase I/II study we assessed for the first time weekly Carfilzomib plus Pomalidomide and low dose Dexamethasone (wKPd) for the treatment of RRMM. Here we report preliminary results. Methods: the primary objective of the phase I part of the trial was to determine the maximum tolerated dose (MTD) of wKPd combination. The primary objective of the phase II was to determine the rate of partial response (PR). Patients with RRMM, who received 1-3 prior lines of treatments and were refractory to Lenalidomide were eligible. Treatment consisted of 28-day cycles of oral Pomalidomide at fixed dose of 4 mg on days 1-21 (1 week off), oral or intravenous (iv) Dexamethasone 40 mg on days 1,8,15,22 and iv Carfilzomib at escalating doses on days 1,8,15. Escalation started at the dose of 36 mg/m2 (0 level) and used a standard 3+3 schema based on dose-limiting toxicities (DLTs) occurring in cycle 1. Treatment was continued until relapse or intolerance. Results: A total of 57 patients were enrolled in 6 Italian centers. Fifty-two patients could be evaluated for this analysis (5 patients did not complete the first cycle yet). The median age was 62 years with a median time from diagnosis of 4 years. 17/39 (44%) of patients were considered high risk according to cytogenetic abnormalities [at least one among t (4;14) t (14;16) and deletion chromosome 17 (del17) detected by FISH]. In the phase I of the trial 15 patients were enrolled. The first 3 patients at the dose level 0 of Carfilzomib did not experience any DLT. In the next cohort with Carfilzomib 20/45 mg/m2 a G3 hypertension and a sudden death occurred. According to the protocol, 3 more patients were enrolled at dose level 0: 1 patient experienced G3 atrial fibrillation, 2 patients ≥ G3 hypertension. Considering the serious adverse events (SAEs) occurred, the trial was temporary stopped to evaluate the benefit of continuing the study. All the DLTs were cardiologic and occurred in patients with a prior history of cardiac disease. As per protocol, they were evaluated with ECG and echocardiogram before the enrolment and were considered eligible for the study. The safety committee established new procedures for the evaluation of cardiac function of potentially eligible patients, including 24 h continuing pressure monitoring before the enrolment and serial measurement of blood pressure during and after Carfilzomib infusions. Six more patients were enrolled at dose level -1 (Carfilzomib 20/27 mg/m2) and none experienced a DLT. The MTD was established at dose level -1 with Carfilzomib 20/27 mg/m2, Pomalidomide 4 mg and Dexamethasone 40 mg. In the phase II portion of the trial, 42 patients were enrolled. Considering both phase I and II portions of the study, the most frequent drug related, grade ≥ 3 AEs were hematologic (65% of neutropenia and 13% of thrombocytopenia) and cardiologic (17%, mainly hypertension). We recorded only 4% of infection and ≥ G3 peripheral neuropathy. The overall response rate (ORR) of phase I/II portions was 58% (30/52) including 25% (13/52) of ≥ very good partial remission (VGPR). The ORR of high risk patients was 44% (7/16) including 19% (3/16) of ≥ VGPR. With a median follow-up of 10 months, median progression free survival (PFS) was 9.5 months and the median overall survival was not reached. Conclusions: This is the first phase I/II trial that combined weekly Carfilzomib with Pomalidomide and Dexamethasone. This combination was highly effective in RRMM. After a median follow-up of 10 months, wKRd showed a double median PFS in comparison with Pomalidomide-low dose dexamethasone (Sanmiguel et al Lancet Oncology 2013): 9.5 vs 4 months respectively, confirming the efficacy of combining a PI with an IMiD. An updated analysis will be presented at the meeting. Disclosures Bringhen: BMS: Honoraria; Celgene: Honoraria; Janssen-Cilag: Honoraria; Amgen: Other: ADVISORY BOARD; Mundipharma: Other: ADVISORY BOARD; Karyopharm: Other: ADVISORY BOARD. Larocca:Celgene: Honoraria; Janssen-Cilag: Honoraria; Bristol-Myers Squibb: Honoraria; Amgen: Honoraria. Gaidano:Karyopharm: Consultancy, Honoraria; Novartis: Consultancy, Honoraria, Speakers Bureau; Gilead: Consultancy, Honoraria, Speakers Bureau; Morphosys: Consultancy, Honoraria; Janssen: Consultancy, Honoraria, Speakers Bureau; Roche: Consultancy, Honoraria, Speakers Bureau. Oliva:Amgen: Honoraria; Celgene: Honoraria; Takeda: Honoraria. Sonneveld:Amgen: Consultancy, Honoraria, Research Funding; Takeda: Consultancy, Honoraria; Janssen: Consultancy, Honoraria, Research Funding; Celgene: Honoraria, Research Funding; Karyopharm: Consultancy, Honoraria, Research Funding. Palumbo:Janssen Cilag: Honoraria; Takeda: Employment, Honoraria. Boccadoro:Janssen: Honoraria, Research Funding; BMS: Honoraria, Research Funding; Novartis: Honoraria, Research Funding; Amgen: Honoraria, Research Funding; Abbivie: Honoraria; Mundipharma: Research Funding; SANOFI: Honoraria, Research Funding; CELGENE: Honoraria, Research Funding.


Blood ◽  
2019 ◽  
Vol 134 (Supplement_1) ◽  
pp. 3117-3117 ◽  
Author(s):  
Caitlin L. Costello ◽  
Michelle Padilla ◽  
Edward D. Ball ◽  
Carolyn Mulroney

Background: Triplet combination strategies have widely been accepted as the standard of care for the management of multiple myeloma due to improved outcomes as compared to doublets. The combination of daratumumab, pomalidomide and dexamethasone (DPd) has previously demonstrated deep and durable responses, including high rates of MRD negativity, in a heavily pretreated patient population. Quadruplet regimens offer an opportunity to further improve upon these results. We report preliminary findings from an ongoing phase 2 multicenter trial of the addition of ixazomib to the combination of DPd in patients with relapsed/refractory multiple myeloma. The primary objective is to determine overall response rate and the safety and tolerability of this novel regimen. Key secondary endpoints include PFS, OS and MRD negativity rates. Methods: Eligible patients may have received ≥1 and ≤3 prior lines of therapy, have had no prior exposure to daratumumab or ixazomib, and may have not progressed on prior pomalidomide. Patients receive daratumumab 16mg/kg IV weekly x 8 doses, biweekly x 8 doses, then monthly, pomalidomide 4mg PO days 1-21/28, ixazomib 4mg PO days 1,8,15 every 28 days, and dexamethasone 40mg PO weekly. Patients continue on therapy until disease progression, intolerability or preference. Dose-limiting toxicities (DLT) were defined as grade 3-4 hematologic adverse events (AE) or any AE that required a dose modification of pomalidomide or ixazomib at the lowest dose levels on a dose de-escalation plan. An interim safety review was performed after the first 6 patients were enrolled and completed the DLT observation period, which is the first cycle (28 days) since the start of a new dose level of pomalidomide and/or ixazomib. Results: At the time of this analysis, six patients have been enrolled and treated, and completed the DLT observation period. Patients had a median age of 62 (range 52-65) and median number of 2 prior lines of therapy (range 1-2). All patients were refractory to lenalidomide and pomalidomide-naïve. Common adverse events (AEs) included neutropenia, thrombocytopenia, GI upset, and upper respiratory infection. Grade 3-4 AEs were predominantly hematologic including neutropenia and thrombocytopenia, but also included grade 3 hypertension in 1 patient, and grade 3 hypophosphatemia, grade 4 hypokalemia, and grade 3 small bowel infection in 1 patient. No IRR > grade 2 occurred with daratumumab administration. No DLTs occurred in the first six patients in the safety run-in. The overall response rate of the cohort is 100% with 3 patients achieving a stringent complete response (CR), and 3 patients achieving a very good partial response (VGPR) after a median of 7 cycles of treatment. One patient discontinued therapy due to influenza A, the other five remain on therapy. Minimal residual disease assessments are being performed by EuroFlow for patients in VGPR or better due to concern for daratumumab interference. Pharmacodynamic changes in patients' tumor microenvironments were established by custom panel mass cytometry to include T-cell memory and activated subpopulations, B-cell content, NK-cell subpopulations as well as MDSCs, Tregs and T-exhaustive markers, monocytes and dendritic cells. Conclusion: The quadruplet regimen DIPd in patients with relapsed/refractory myeloma is a well-tolerated combination and has shown early safety in an initial safety run-in analysis. Enrollment continues in an expansion cohort to assess efficacy at multiple sites with the University of California Hematologic Malignancies Consortium. Figure Disclosures Costello: Takeda: Honoraria, Research Funding; Janssen: Research Funding; Celgene: Consultancy, Honoraria, Research Funding.


Blood ◽  
2015 ◽  
Vol 126 (23) ◽  
pp. 1857-1857 ◽  
Author(s):  
Cristina Gasparetto ◽  
Michael Green ◽  
Anandgopal Srinivasan ◽  
Yubin Kang ◽  
David A. Rizzieri ◽  
...  

Abstract Background Bendamustine, a bifunctional mechlorethamine derivative with alkylating properties and pomalidomide, an IMiD® immunomodulatory agent, have both demonstrated efficacy as single agents or in combination with dexamethasone in relapsed/refractory multiple myeloma(RRMM). Bendamustine in combination with lenalidomide, thalidomide, and bortezomib have had high response rates and good tolerability. We combined bendamustine and pomalidomide with dexamethasone (Ben-Pom-d) and hypothesized that this regimen would be highly effective in patients with RRMM. Dose-escalation started with 120mg/m2 bendamustine/3mg pomalidomide [or 4mg in the cohort 2]/40 mg dexamethasone using a standard 3+3 schema based on dose-limiting toxicities (DLTs) occurring in cycle 1. The MTD was 120mg/m2 bendamustine/3mg pomalidomide/40 mg dexamethasone. Here, we report our findings to date from the phase I/II trial of Ben-Pom-d in patients with RRMM (NCT01754402). Methods The primary objective of the phase I portion was to determine the MTD. Data for overall response, progression free survival, and overall survival, includes all patients treated on the phase I and II portions of the study. All patients had to be refractory to prior lenalidomide, and must have relapsed or were refractory to their most recent therapy. Patients had to be pomalidomide naïve. Treatment consisted of oral pomalidomide once daily on days 1-21, intravenous (IV) bendamustine given over 30 minutes on day 1 and dexamethasone 40 mg on days 1, 8, 15, and 22 of a 28-day cycle. Adverse events (AEs) were graded by NCI-CTCAE v4. Response was assessed by the modified International Uniform Response Criteria. Results A total of 9 patients were enrolled in the phase I portion. The MTD was the starting dose level (bendamustine 120 mg/m2, pomalidomide 3mg, dexamethasone 40 mg). In Phase II we enrolled an additional 16 patients resulting in a total study population of 25 patients evaluable for toxicity and 22 for efficacy, with 6 still receiving treatment. The median age was 65 years (range 43-81), 46% were male. The median number of prior regimens was 3 (range 2-6), median time from diagnosis is 3.9 years (range 1.1-9.10 years), 88% of patients had a prior stem cell transplant, 100% had prior bortezomib, 20% had prior carfilzomib and all were lenalidomide-refractory. Fifteen patients had high risk cytogenetic, including 8 patients with del17. Patients received a median of 6 cycles of therapy (range 1-18 cycles). Best response assessments in 22 evaluable patients for efficacy, showed 5 (23%) VGPR, 12 (55%) PR, 3 (14%) MR, and 2 (9%) SD, for an ORR of 77% and a ≥MR rate of 91%. The median follow-up of survivors is 10 months (range: 2-19+ months). Median PFS and OS were 4.5 months (range 1-15+ months) and 9.5 months (range 2-19+ months), respectively, for the entire cohort with 13 of 22 still alive in follow-up. The Median PFS for patient with del 17 is 5.5 months (range 2-15 months) with >MR rate of 88%. During the first cycle, 3 patients of all 25 evaluable enrolled experienced a DLT at the different doses, including 1 nausea/vomiting [cohort 1], and 2 with rash and fever in cohort 2. The therapy was tolerated well, but toxicities reported at any point while on therapy included 32% grade 4 neutropenia, 16% grade 4 thrombocytopenia, and half the patients requiring delay of subsequent cycles due to cytopenias and 17 of 22 (77%) had a dose reduction of pomalidomide per protocol guidelines at some point in the continuation cycles. The major non-hematologic Grade ≥3 drug-related AEs that occurred included febrile neutropenia in 12%, grade 3 mucositis in 8%, grade 3 pneumonia 16% and grade 4%, and grade 4 sepsis 4%. Conclusions The Ben-Pom-d regimen is a well-tolerated regimen and achieves a high response rate (ORR of 77%; ≥MR rate of 91%) in a heavily pre-treated Lenalidomide-refractory population with prior bortezomib exposure. Therapy is ongoing for many and longer follow-up is needed to better assess the true durability of this approach. Disclosures Gasparetto: Onyx: Honoraria, Other: Advisory Board; Millennium/takeda: Honoraria, Membership on an entity's Board of Directors or advisory committees, Speakers Bureau; celgene: Honoraria, Membership on an entity's Board of Directors or advisory committees, Research Funding, Speakers Bureau; teva: Other: spouse-ad board and speaker bureau. Off Label Use: Bendamustine-pomalidomide-dexa for treatment of relapsed myeloma. Rizzieri:Teva: Other: ad board, Speakers Bureau; Celgene: Other: ad board, Speakers Bureau. Rao:novartis: Other: ad board; amgen: Other: ad board; Boehringer-Ingelheim: Other: Advisory Board. Tuchman:celgene: Consultancy, Honoraria, Research Funding, Speakers Bureau; Millennium/takeda: Honoraria, Research Funding, Speakers Bureau.


Blood ◽  
2012 ◽  
Vol 120 (21) ◽  
pp. 1851-1851
Author(s):  
Stefano Sacchi ◽  
Samantha Pozzi ◽  
Stefania Badiali ◽  
Attilio Guarini ◽  
Carla Mazzone ◽  
...  

Abstract Abstract 1851 Background: Bendamustine, an agent sharing properties of alkylators and purine analogous, showed a strong efficacy and safe toxicity profile in relapsed multiple myeloma (MM) patients (pts), with a maximally tolerated dose (MTD) ranging from 100 mg/m2/die day 1 and 2 as single agent to 60 mg/m2/die in association with thalidomide. In a pooled analysis of two large phase 3 trials Lenalidomide, an analogous of thalidomide with strong activities in MM, significantly improved overall response rate and progression-free survival. Since the role of Lenalidomide in the treatment of naïve and relapsed/refractory pts has been well established, the current research is focused on the combination of Lenalidomide with chemotherapy to further improve patient outcome. Methods: This multicenter phase I/II trial was designed to investigate the combination of Bendamustine, Lenalidomide, and Dexamethasone (BdL) in repeating 4-week cycles as treatment for relapsed MM. Pts over 18 years with measurable stage II or III MM who relapsed after 1 to 3 previous lines of therapy, including bone marrow transplantation were considered eligible. Prior Lenalidomide and Bortezomib were allowed. The phase I study was conducted using a 3+3 cohort design beginning at a dose level 0 of intravenous Bendamustine 40 mg/m2/die days 1 and 2, oral Lenalidomide 10 mg/die days 1–21 and oral Dexamethasone 40 mg/die days 1, 8, 15, and 22 (28-day cycle). The dose of Bendamustine and Lenalidomide (from 0 to 5) were increased from one cohort to the next, in a 3+3 dose escalation scheme to reach the MTD (Table 1). The MTD of Bendamustine and Lenalidomide were evaluated during the first treatment course (cycle 1). Enrollment at each subsequent dose level was permitted only if the first 3 patients at the previous level received 1 cycle with an acceptable dose-limiting toxicity (DLT). DLTs were defined as any adverse event (AE) possibly related to the study drug ≥grade 3 CTC. If 1 of the 3 subjects experienced DLT during the first cycle, 3 more subjects were to be recruited and treated at the same dose level of Bendamustine and Lenalidomide. Treatment was given until plateau of best response according to the International Myeloma Working Group uniform response criteria for a maximum of 6 cycles. Results: Herein, we present the results from phase I of the study which established MTD. Fifteen pts with a median age of 69 years (range 49 to 88) were enrolled between October 2011 and February 2012. The number of prior therapies was at maximum 3 as per protocol: Lenalidomide (27% of pts), thalidomide (33% of pts), Bortezomib (67% of pts) and 13% of the pts had a prior autologous stem cell transplant. Because 3 DTL were observed in Phase I, the MTD was set at 40 mg/m2/die for Bendamustine and 10 mg/die for Lenalidomide. DLTs at dose level 1 included: 1 grade 4 cutaneous rash; at dose level 2: 1 grade 4 thrombocytopenia and 1 grade 3 bronchopneumonia with renal dysfunction (Table 2). Among the 15 patients with evaluable data, the grade 3 or 4 AEs observed in ≥10% of patients included neutropenia (20%), thrombocytopenia (13%) and anemia (20%). Two patients died of treatment-related complications: 1 for hematological toxicity and CNS hemorrhage, and 1 for cardiac ischemia. Fifteen patients received at least 2 cycles and were included in the response assessment. The overall response rate was 40% with 1 case achieving complete response and 1 a very good partial response. Until now 7 pts entered the phase II part of the trial. Conclusions: In pretreated patients with relapsed MM, MTD was determined to be Bendamustine 40 mg/m2/die on days 1 and 2, and Lenalidomide 10 mg/m2/die on days 1–21, plus Dexametasone 40 mg/die on days 1, 8, 15, and 22. This BdL schedule was relatively tolerated and showed promising efficacy. Based on the mainly myelosuppressive properties, concomitant treatment with growth factors are recommended for all patients. The toxicity profile of BdL scheme resulted in an acceptable treatment-related toxicity and mortality and induced a good quality responses in a pretreated population of MM pts. Disclosures: No relevant conflicts of interest to declare.


2021 ◽  
pp. JCO.21.00443
Author(s):  
Nizar J. Bahlis ◽  
Rachid Baz ◽  
Simon J. Harrison ◽  
Hang Quach ◽  
Shir-Jing Ho ◽  
...  

PURPOSE Venetoclax is an oral BCL-2 inhibitor with single-agent activity in patients with relapsed or refractory multiple myeloma (RRMM) with t(11;14) translocation. Venetoclax efficacy in RRMM may be potentiated through combination with agents including bortezomib, dexamethasone, and daratumumab. METHODS This phase I study ( NCT03314181 ) evaluated venetoclax with daratumumab and dexamethasone (VenDd) in patients with t(11;14) RRMM and VenDd with bortezomib (VenDVd) in cytogenetically unselected patients with RRMM. Primary objectives included expansion-phase dosing, safety, and overall response rate. Secondary objectives included further safety analysis, progression-free survival, duration of response, time to progression, and minimal residual disease negativity. RESULTS Forty-eight patients were enrolled, 24 each in parts 1 (VenDd) and 2 (VenDVd). There was one dose-limiting toxicity in part 1 (grade 3 febrile neutropenia, 800 mg VenDd). Common adverse events with VenDd and VenDVd included diarrhea (63% and 54%) and nausea (50% and 50%); grade ≥ 3 adverse events were observed in 88% in the VenDd group and 71% in the VenDVd group. One treatment-emergent death occurred in part 2 (sepsis) in the context of progressive disease, with no other infection-related deaths on study with medians of 20.9 and 20.4 months of follow-up in parts 1 and 2, respectively. The overall response rate was 96% with VenDd (all very good partial response or better [≥ VGPR]) and 92% with VenDVd (79% ≥ VGPR). The 18-month progression-free survival rate was 90.5% (95% CI, 67.0 to 97.5) with VenDd and 66.7% (95% CI, 42.5 to 82.5) with VenDVd. CONCLUSION VenDd and VenDVd produced a high rate of deep and durable responses in patients with RRMM. These results support continued evaluation of venetoclax with daratumumab regimens to treat RRMM, particularly in those with t(11;14).


2020 ◽  
pp. JCO.20.02259
Author(s):  
Paul G. Richardson ◽  
Albert Oriol ◽  
Alessandra Larocca ◽  
Joan Bladé ◽  
Michele Cavo ◽  
...  

PURPOSE Melphalan flufenamide (melflufen) is a first-in-class peptide-drug conjugate that targets aminopeptidases and rapidly and selectively releases alkylating agents into tumor cells. The phase II HORIZON trial evaluated the efficacy of melflufen plus dexamethasone in relapsed and refractory multiple myeloma (RRMM), a population with an important unmet medical need. PATIENTS AND METHODS Patients with RRMM refractory to pomalidomide and/or an anti-CD38 monoclonal antibody received melflufen 40 mg intravenously on day 1 of each 28-day cycle plus once weekly oral dexamethasone at a dose of 40 mg (20 mg in patients older than 75 years). The primary end point was overall response rate (partial response or better) assessed by the investigator and confirmed by independent review. Secondary end points included duration of response, progression-free survival, overall survival, and safety. The primary analysis is complete with long-term follow-up ongoing. RESULTS Of 157 patients (median age 65 years; median five prior lines of therapy) enrolled and treated, 119 patients (76%) had triple-class–refractory disease, 55 (35%) had extramedullary disease, and 92 (59%) were refractory to previous alkylator therapy. The overall response rate was 29% in the all-treated population, with 26% in the triple-class–refractory population. In the all-treated population, median duration of response was 5.5 months, median progression-free survival was 4.2 months, and median overall survival was 11.6 months at a median follow-up of 14 months. Grade ≥ 3 treatment-emergent adverse events occurred in 96% of patients, most commonly neutropenia (79%), thrombocytopenia (76%), and anemia (43%). Pneumonia (10%) was the most common grade 3/4 nonhematologic event. Thrombocytopenia and bleeding (both grade 3/4 but fully reversible) occurred concomitantly in four patients. GI events, reported in 97 patients (62%), were predominantly grade 1/2 (93%); none were grade 4. CONCLUSION Melflufen plus dexamethasone showed clinically meaningful efficacy and a manageable safety profile in patients with heavily pretreated RRMM, including those with triple-class–refractory and extramedullary disease.


Blood ◽  
2005 ◽  
Vol 106 (11) ◽  
pp. 2555-2555 ◽  
Author(s):  
Rakesh Popat ◽  
Heather E. Oakervee ◽  
Nicola Foot ◽  
Samir Agrawal ◽  
Patricia Smith ◽  
...  

Abstract Background: Bortezomib as a single agent has known efficacy in the treatment of relapsed multiple myeloma. The overall response rate (CR+PR+MR) was 35% in the SUMMIT study and 46% in the APEX study. In-vitro studies including our own have demonstrated potent synergy with other chemotherapeutic agents such as melphalan. It therefore follows that responses to bortezomib may be further improved by the combination of such drugs. Aims: The primary objectives of this Phase I/II study was to assess the safety, tolerability and response rates in patients with relapsed multiple myeloma; secondary objectives being time to progression (TTP) and overall surival (OS). Methods: This was a multi-centre, non-randomised trial for patients with relapsed myeloma. Patients received bortezomib 1.3mg/m2 on days 1,4,8 and 11 of each 28 day cycle with melphalan on day 2 at increasing dose levels. This was initially at 10mg/m2, but due to cytopenias subsequently at 2.5 and 5mg/m2 (levels 1a, 1 and 2) and we plan to escalate to 7.5mg/m2. Up to 8 cycles were given with dexamethasone added for stable or progressive disease after 4 or 2 cycles respectively. Responses were determined by EBMT criteria. Results: To date, 18 patients have been enrolled (12 male 6 female; median age 60 [range 44–73]; median number of prior therapies 3 [range 1–5] of which 17 have had at least one autologous stem cell procedure with high dose melphalan; 10 prior thalidomide and 2 prior bortezomib). 12 patients received melphalan at 10mg/m2 but due to unacceptable delays predominantly due to thrombocytopaenia, subsequent treatment levels commenced at 2.5mg/m2. The median number of cycles completed thus far is 4 (range 0–8) and of the 16 evaluable, the overall response rate (CR+PR+MR) across all treatment levels was 50% rising to 75% following the addition of dexamethasone as per protocol. At level 1a (melphalan 10mg/m2 ,N=12, median number of cycles completed =5) the best responses (with dexamethasone as indicated) were: 1CR, 1 VGPR, 5 PR, 2 MR; at level 1 (melphalan 2.5mg/m2, N=4) 1 PR, 2 MR (after 2 cycles only). The median time to any response was 1 cycle (range 1–3 ). Three patients have progressive disease, but the median TTP and OS have not yet been reached (median follow-up 3 months). Non-haematological toxicities have been modest with 7 SAEs reported of which only 1 was possibly drug related (myocardial infarction), and 4 episodes of Grade 3 neuropathy (2 resulting in study withdrawal). The commonest grade 3–4 haematological toxicity was thrombocytopaenia (N=10) complicated by bleeding in one patient, followed by neutropenia (N=6). Summary: The combination of bortezomib and intravenous melphalan can be given safely to patients with relapsed multiple myeloma and dose escalation is ongoing. Myelosupression was the commonest grade 3–4 adverse event. A response rate of 50% was seen, which was further improved to 75% with the addition of dexamethasone. This combination may therefore result in higher responses than single agent bortezomib in heavily pretreated patients.


Blood ◽  
2006 ◽  
Vol 108 (11) ◽  
pp. 3542-3542 ◽  
Author(s):  
Rakesh Popat ◽  
Catherine Williams ◽  
Mark Cook ◽  
Charles Craddock ◽  
Supratik Basu ◽  
...  

Abstract Background: Bortezomib is an effective treatment for patients with relapsed multiple myeloma with an overall response rate (MR+PR+CR) of 46% and time to progression of 6.2 months (APEX study). We and others have previously demonstrated potent in-vitro synergy with chemotherapeutic agents such as melphalan and it is likely that this will translate into improved responses in the clinical setting. Methods: This was a multi-centre, non-randomised Phase I/II clinical trial for patients with relapsed multiple myeloma. Bortezomib 1.3mg/m2 was given on Days 1,4,8 and 11 of a 28 day cycle, and intravenous melphalan on Day 2 for a maximum of 8 cycles. In the Phase I component melphalan was given at 2.5, 5,7.5 and 10mg/m2 in a dose escalation scheme and the maximum tolerated dose (MTD) of 7.5mg/m2 was taken forward to an expanded Phase II component. Dexamethasone 20mg on the day of and the day after each dose of bortezomib was permitted for progressive or stable disease after 2 or 4 cycles respectively. Responses were classified by EBMT criteria. Results: To date 39 patients have been enrolled (median age 61years [range 40–77]) with a median of 3 lines of prior therapy [range 1–5] of which 26 (67%) have had one previous autologous stem cell procedure and 4 (10%) have had two. 23 (59%) have had prior exposure to thalidomide and 4 (10%) to bortezomib. 36 have now completed at least 1 cycle and are therefore evaluable for response. The overall response rate (CR+PR+MR) across all treatment levels was 75% rising to 81% (CR 11%; nCR 3%; VGPR 8%; PR 39%; MR 19%) with the addition of dexamethasone in 13 cases for suboptimal response. Rapid responses were seen with the median time to response being 1 month [range 1–6]. The median time to progression is 10.1 months and the median overall survival has not yet been reached at a median follow-up of 7.4 months. Of the patients that have had disease progression 7 (35%) had responses of longer duration than their previous therapy. The MTD was defined by unacceptable delays in administering treatment due to myelosuppresion. The toxicities have been acceptable with 13 SAEs reported of which 8 were hospitalisation due to infection. The most common grade 3–4 adverse events were: thrombocytopenia (53%), infections (25%), neutropenia (17%) and neuropathy (17%). Three grade 3 cardiac events were seen (myocardial infarction, atrial fibrillation and cardiac failure) and GCSF was administered to 13 patients as treatment and prophylaxis of grade 4 neutropenia. 13 patients were withdrawn from the study due to toxicity of which 7 were for neuropathy and 3 for delayed haematological recovery. Of note, 11 patients (28%) had pre-existing grade 1 neuropathy prior to starting therapy. Summary: The combination of bortezomib, low dose intravenous melphalan and dexamethasone appears to be highly effective in patients with relapsed multiple myeloma where a response rate of 81% is seen with 14% achieving nCR/CR. The toxicity profile associated is predictable, manageable and predominantly haematological. Recruitment is ongoing to a total of 53 patients.


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