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  • 1
    In: Blood, American Society of Hematology, Vol. 120, No. 21 ( 2012-11-16), p. 200-200
    Abstract: Abstract 200 Background: In a multicenter phase 3 randomized trial, VMPT-VT was superior to VMP for response rates, progression-free survival and time to next treatment (Palumbo A, et al. J Clin Oncol 2010). Here we report an updated analysis on survival after 4 years of follow-up. Methods: Patients (N=511) were randomly assigned to receive nine 6-week cycles of VMPT-VT (induction: bortezomib 1.3 mg/m2, d 1, 4, 8, 11, 22, 25, 29, 32, cycles 1–4, d 1, 8, 22, 29, cycles 5–9; melphalan 9 mg/m2 d 1–4, prednisone 60 mg/m2, d 1–4, thalidomide 50 mg d 1–42; maintenance: bortezomib 1.3 mg/m2 every 14 days and thalidomide 50 mg/day up to 2 years) or VMP alone. After the inclusion of 139 patients, the protocol was amended: both VMPT-VT and VMP induction schedules were changed to nine 5-week cycles and bortezomib schedule was modified to weekly administration (1.3 mg/m2 d 1,8,15,22, all cycles). Results: After a median follow-up of 47.2 months, median OS was not reached in the VMPT-VT arm and was 58.2 months in the VMP arm; 5-year OS rates were 59.3% and 45.9%, respectively (HR 0.74, p=0.04), with 26% reduced risk of death for patients receiving VMPT-VT (Figure-panel A). This benefit was more evident in patients younger than 75 years (5-year rates 67.8% for VMPT-VT vs 49.9% for VMP, HR 0.63, p=0.01, Figure-panel B) and in patients in complete response (CR) after induction (5-year rates 81.4% for VMPT-VT vs 48.2% for VMP, HR 0.38, p=0.006, Figure-panel C) while no significant differences were evident in patients with standard- or high-risk features detected by FISH (HR 0.99, p=0.99). A 1-year landmark analysis for patients completing induction was performed: the 4-year OS was 64.6% in the VMPT-VT group and 49.7% in the VMP group, with 33% reduced the risk of death for patients receiving VT maintenance (HR 0.67, p=0.02). Forty-nine percent of VMPT-VT and 70% of VMP patients relapsed and received subsequent salvage therapies; there was no difference in survival from relapse in the two groups (2-year OS rates 40.7% vs 50.2%,HR 1.11, p=0.54). The median duration of VT maintenance was 23.8 months. During VT maintenance 7% of patients experienced grade 3–4 peripheral neuropathy, 5% grade 3–4 hematological toxicity, 3% grade 3–4 infection and 12% discontinued due to adverse events. Second primary malignancies were reported in 7/254 patients in the VMPT-VT group and 7/257 patients in the VMP group. These corresponded to incidence rates of 0.9 and 1.05 per 100 patient-years, respectively, and were consistent with background incidence rates in the general population (aged 65–74 years 1.9, aged ≥ 75 years 2.3, SEER database). Conclusions: VMPT-VT significantly prolonged OS compared with VMP, especially in patients younger than 75 years and in patients achieving CR after induction. In patients 67–75 years of age, VMPT-VT reduced the risk of death by 37% and it should be considered a new standard of care. Disclosures: Palumbo: Celgene: Advisory Board, Advisory Board Other, Consultancy, Honoraria; Janssen: Advisory Board Other, Consultancy, Honoraria. Bringhen:Janssen: Honoraria; Celgene: Honoraria. Gentilini:Janssen: Honoraria; Celgene: Honoraria. Patriarca:Janssen: Honoraria. Guglielmelli:Janssen: Honoraria; Celgene: Honoraria. Musto:Janssen: Honoraria, Research Funding; Celgene: Honoraria, Research Funding. Petrucci:Janssen: Honoraria; Celgene: Honoraria. Boccadoro:Janssen: Consultancy, Research Funding, Scientific Advisory Board Other; Celgene: Consultancy, Research Funding, Scientific Advisory Board, Scientific Advisory Board Other.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2012
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  • 2
    In: Blood, American Society of Hematology, Vol. 114, No. 22 ( 2009-11-20), p. 128-128
    Abstract: Abstract 128 Background. In newly diagnosed myeloma patients the combination of bortezomib with melphalan-prednisone (VMP) was superior to MP. In relapsed-refractory patients the 4 drug combination bortezomib-melphalan-prednisone-thalidomide (VMPT) induced a high proportion of complete responses (CR). Aims. This prospective, randomized, phase III trial, compared VMPT with a maintenance regimen including bortezomib and thalidomide with VMP without a maintenance regiment. The primary end point was PFS. Methods. Patients (N=511) older than 65 years were randomly assigned to receive VMPT followed by maintenance with bortezomib and thalidomide (N=254) or VMP (N=257). Initially, patients were treated with nine 6-week cycles of VMPT (induction: bortezomib 1.3 mg/m2 days 1,4,8,11,22,25,29,32 in cycles 1–4 and days 1,8,22,29 in cycles 5–9; melphalan 9 mg/m2 days 1–4; prednisone 60 mg/m2 days 1–4 and thalidomide 50 mg days 1–42; maintenance: bortezomib 1.3 mg/m2 every 15 days and thalidomide 50 mg/day) or VMP (bortezomib, melphalan and prednisone at the same doses and schedules previously described without maintenance). In March 2007, the protocol was amended: both VMPT and VMP induction schedules were changed to nine 5-week cycles and bortezomib schedule was modified to weekly administration (1.3 mg/m2 days 1,8,15,22 in cycles 1–9). Results. All patients have been evaluated in intention-to-treat. Patient characteristics were similar in both groups, median age was 71 years. The response rates were always superior in the VMPT group: at least PR rate (86% vs 79%, p=0.02), at least VGPR rate (55% vs 47%, p=0.07) and CR rate (34% vs 21% p=0.0008), respectively. Maintenance treatment did not increase the best response achieved during VMPT induction. After a median follow-up of 17.8 months, the 2-year PFS was 70.0% in the VMPT group and 58.2% in the VMP group (HR=0.62, 95% CI 0.44–0.88, p=0.008). The achievement of CR significantly prolonged PFS in both VMPT (p 〈 0.0001) and VMP (p=0.003) patients. Chromosomal abnormalities, such as del13, t(4;14), t(14;16) or del17, did not affect 2-year PFS in both VMPT (p=0.51) and VMP (p=0.41) patients. The 2-year overall survival (OS) was 89.6% in the VMPT group and 89.0% in the VMP group (HR=0.94, 95% CI 0.51–1.72, p=0.84). The incidence of grade 3–4 neutropenia (37% vs 28%, p=0.02) and cardiac complications (10% vs 5%, p=0.04) was higher in the VMPT group. The incidence of other grade 3–4 adverse events was similar in the VMPT group and in the VMP group: thrombocytopenia (21% vs 19%), peripheral neuropathy (5% vs 8%), infections (12% vs 9%), and gastrointestinal complications (6% vs 8%), respectively. From twice-weekly, the weekly infusion of bortezomib significantly decreased the incidence of grade 3–4 peripheral neuropathy in the VMPT group (from 18% to 4%, p=0.0002) and in the VMP (from 13% to 2%, p=0.0003), without any significant change in CR rates and 2-year PFS. Conclusion. VMPT followed by maintenance with bortezomib and thalidomide was superior to VMP for response rates and PFS. The weekly infusion of bortezomib significantly reduced the incidence of peripheral neuropathy without affecting outcome. This is the first report showing the superiority of a 4-drug combination followed by maintenance in comparison with the most recent standard therapy, VMP. These data will be updated at the meeting. Disclosures: Palumbo: Janssen-Cilag: Honoraria; Celgene: Honoraria. Off Label Use: thalidomide, lenalidomide, bortezomib . Bringhen:Celgene: Honoraria; Janssen Cilag: Honoraria. Patriarca:Janssen Cilag: Honoraria; Celgene: Honoraria. Petrucci:Celgene: Honoraria; Janssen-Cilag: Honoraria. Musto:Janssen Cilag: Honoraria; Celgene: Honoraria. Boccadoro:Celgene: Consultant, advisory committee, Research Funding; Janssen Cilag: Consultant, advisory committee, Research Funding; Pharmion: Consultant, advisory committee, Research Funding.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2009
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  • 3
    In: Blood, American Society of Hematology, Vol. 118, No. 21 ( 2011-11-18), p. 2925-2925
    Abstract: Abstract 2925 Primary plasma cell leukemia (PPCL) is an aggressive variant of multiple myeloma, accounting for 0.5–4% of all newly diagnosed myeloma cases and characterized by a short survival (generally less than 1 year), which is only moderately improved by transplant procedures. Novel agents seem to be able to ameliorate the poor clinical outcome of both primary and secondary leukemic phases of myeloma; however, no data are currently available on the use of lenalidomide as first line therapy in PPCL. On March, 2009, we started a multicenter, phase II trial aiming to evaluate safety and antitumor activity of lenalidomide in combination with dexamethasone (LD) in previously untreated PPCL. Here we report the final results of this study. Newly diagnosed PPCL patients received lenalidomide at a dose of 25 mg/d for 21 days and oral dexamethasone at a dose of 40 mg on days 1, 8, 15, and 22 for each 28-day cycle. After 4 cycles, responding patients not eligible for stem cell transplantation (SCT) continued until 8 cycles of full-dose LD, if tolerated, followed by a maintenance dose of single agent lenalidomide equal to 10 mg/d on days 1–21 of each 28-day cycle. Patients responding after 4 cycles and eligible for SCT proceeded according to single Centre transplant policy. Patients not responding after 4 cycles or progressing during this treatment were considered off-study. The primary endpoint was early response rate according to International Uniform Criteria. The secondary endpoints were PFS, OS, safety and percentage of eligible patients able to undergo autologous or allogeneic SCT. Appropriate dose reductions, contraception methods and anti-thrombotic prophylaxis were applied. Twenty-three patients, as requested by the Simon Optimal Two-Stage Adaptive Design adopted, were enrolled. The trial was therefore closed on May, 31, 2011. M/F ratio was 0.7, mean age was 62 years (range 44–80). Circulating plasma cells ranged from 2.1 to 115 × 10e9/l. Moderate renal failure, increased LDH and extramedullary disease occurred in 39.1%, 43.5% and 13 % of patients, respectively. Hb was 〈 10 g/dl in 19 patients (82.6%), while platelet count was 〈 50 × 10e9/l in 5 patients (21.7%). Karyotype abnormalities were detected by FISH in 21 out of 22 tested patients; in particular, 1p loss was found in 9 patients, 1q gain in 10 patients, del(13q) in 16 patients, del(17p13) in 7 patients, t(11;14) in 7 patients, t(4;14) in 3 patients and MAF translocations, including t(14;20) and t(14;16), in 8 patients. Seventeen patients had a combination of two (n. 5) or more (n. 12) cytogenetic lesions. On intention-to-treat analysis, 14 patients completed the initial four planned cycles and all of them responded. In particular, 6 PR (26.1%), 4 VGPR (17.4%), 1 near-CR (4.3%) and 3 CR (13%) were achieved (ORR 60.8%, VGPR or better 34.7%). Causes of early treatment discontinuation were: a) progressive disease (4 patients, after an initial, brief response in 2 cases); b) severe adverse events (4 patients: one acute renal failure, one Stevens-Johnson's syndrome, one pneumonia suspected for Pneumocystis carinii etiology, one multi-organ failure); c) death in PR due to causes unrelated to treatment or disease (one patient). Other relevant non-hematological toxicities included four episodes of pneumonia and one case of DVT. Grade 3–4 hematological toxicities occurred in about half of cases, requiring Lenalidomide dose adjustments. So far, among subjects achieving a response after 4 LD cycles, 8 eligible patients have successfully collected peripheral blood stem cells: 5 of them have completed single or double autologous SCT, one patient received tandem autologous-allogeneic non myeloablative SCT from a MUD donor. All patients transplanted after LD are currently alive and in remission phase. The maintenance phase has been reached in 3 responding patients not eligible for SCT, 2 of whom have relapsed after 2 and 8 months, respectively. With a mean follow-up of 15 months, OS and PFS are 65.2% and 52.1%, respectively. LD is a possible initial therapeutic option for PPCL, particularly in patients who receive SCT after a short course of induction treatment. Caution is required to prevent and to manage renal and hematological toxicities, as well as infectious complications. Considering some previous results obtained with other novel agents, the combination of lenalidomide and bortezomib might be an appealing approach to investigate prospectively in PPCL patients. Disclosures: Musto: Celgene: Consultancy, Honoraria, Membership on an entity's Board of Directors or advisory committees, Research Funding. Petrucci:Celgene: Honoraria. Cascavilla:Celgene: Honoraria. Di Raimondo:Celgene: Honoraria. Caravita:Celgene: Honoraria. Morabito:Celgene: Honoraria. Offidani:Celgene: Honoraria. Bringhen:Celgene: Honoraria. Boccadoro:Celgene: Consultancy, Honoraria, Membership on an entity's Board of Directors or advisory committees, Speakers Bureau. Palumbo:Celgene: Consultancy, Honoraria, Membership on an entity's Board of Directors or advisory committees, Speakers Bureau.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2011
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  • 4
    In: Blood, American Society of Hematology, Vol. 114, No. 22 ( 2009-11-20), p. 1868-1868
    Abstract: Abstract 1868 Poster Board I-893 Introduction Bortezomib was initially reported to overcome the poor prognosis related to the presence of del(13q) in patients with advanced refractory/relapsed multiple myeloma (MM). However, more recent evaluations of genomic aberrations in MM provided demonstration that only t(4;14) and del(17p) retained prognostic value for both EFS and OS, thus identifying a subgroup of patients at high risk of progression or death. The combination of bortezomib with melphalan and prednisone, actually licensed as first-line therapy for MM patients who are not eligible for autologous stem-cell transplantation (ASCT), showed comparable activities in terms of time to progression and OS among patients with or without high-risk cytogenetic profiles. However, the number of high-risk patients analyzed was very limited, due to the low frequency of these genomic abnormalities. To more carefully assess the role of bortezomib in patients with high-risk cytogenetics [(e.g. carrying t(4;14) and/or del(17p)], we performed a post-hoc analysis of two phase 3 studies of first-line bortezomib-based regimens for the treatment of a large series of MM patients. Both studies are actually conducted by the Italian Myeloma Network GIMEMA. Patients and methods The activity of three different bortezomib-based regimens in terms of achievement of best high-quality response (immunofixation negative CR) and PFS was analyzed. Regimens evaluated were bortezomib-thalidomide-dexamethasone (VTD), bortezomib-melphalan-prednisone (VMP) and bortezomib-melphalan-prednisone-thalidomide (VMPT). VTD was followed by ASCT. Treatment details are as follows: VTD (Bortezomib, 1.3 mg/m2 twice-weekly, every 21/d cycle; Thalidomide, 200 mg/d; Dexamethasone, 320 mg/cycle); VMP (Bortezomib 1.3 mg/m2 on d 1, 8, 15 and 22, every 35/d cycle; Melphalan, 9 mg/m2 on d 1 through 4, every cycle; Prednisone, 60 mg/m2 on d 1–4 of each cycle); VMPT (VMP, as previously described; Thalidomide, 50 mg/d). A total of 566 patients for whom results of interphase FISH analysis at diagnosis were available for the presence or absence of del(13q) and/or t(4;14) and/or del(17p), were included in the present study. Three cytogenetic subgroups of patients were identified, including those without genomic abnormalities (group 1; n=257), those with del(13q) alone (group 2; n=162) and those who carried t(4;14) and/or del(17p) with or without del(13q) (group 3; n=147). For the purpose of the present analysis, clinical outcomes (e.g. CR rate and PFS) of patients treated with the 3 bortezomib-based regimens were compared according to the presence or absence of different genomic aberrations (e.g. group 1 vs 3 and group 2 vs 3). Results Overall, the frequency of patients belonging to group 1 (no abnormalities), group 2 [del(13q) alone] and group 3 [t(4;14)±del(17p)] was 45%, 29% and 26%, respectively. Comparable rates of genomic aberrations were detected in patients treated with the 3 bortezomib-based regimens [no genetic abnormalities: 46% in VTD vs 48% in VMP vs 42% in VMPT; del(13q) alone: 30% in VTD vs 28% in VMP vs 28% in VMPT; t(4;14)±del(17p): 24% in VTD vs 24% in VMP vs 30% in VMPT]. No statistically significant difference in terms of CR rate was detected by comparing patients in group 3 with those in group 1 (38% vs 31.5%, respectively; P=0.1) and in group 2 (48%, P=0.07). The 2-year projected PFS was 63% for patients with high-risk cytogenetics vs 71% for those with del(13q) alone (P=0.1) vs 75% for patients without cytogenetic abnormalities (P=0.01). The finding that in the high-risk cytogenetic subgroup the VMP regimen comprising once-weekly standard-dose bortezomib effected the lowest rate of CR and PFS may explain, at least in part, the longer PFS for the subgroup without cytogenetic abnormalities. Indeed, after exclusion from the analysis of the VMP regimen, no statistically significant difference in terms of PFS was seen among VTD- and VMPT-treated patients according to the presence of high-risk cytogenetics or the absence of genomic abnormalities (P=0.09). Conclusions These results, based on a post-hoc analysis of patients with different age and treatment exposure, should be cautiously interpreted, although consistencies exist between them and previous reports on the activity of bortezomib in MM with high-risk cytogenetic abnormalities. Further analyses of large series of homogeneously treated patients are needed before firm conclusions can be drawn about the ability of bortezomib-based regimens to overcome the adverse prognosis related to t(4;14) and/or del(17p). Disclosures: Cavo: Ortho Biotech, Janssen-Cilag: Honoraria, Research Funding, Speakers Bureau; Millennium Pharmaceuticals: Honoraria; Novartis: Honoraria; Celgene: Honoraria. Boccadoro:Ortho Biotech, Janssen-Cilag: Honoraria, Speakers Bureau. Palumbo:Ortho Biotech, Janssen-Cilag: Honoraria; Celgene: Honoraria, Speakers Bureau.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2009
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  • 5
    In: Blood, American Society of Hematology, Vol. 115, No. 10 ( 2010-03-11), p. 1873-1879
    Abstract: High-dose (200 mg/m2, MEL200) and intermediate-dose melphalan (100 mg/m2, MEL100) showed significant activity in myeloma. In a phase 3 study, 298 patients were randomly assigned to receive 2 autologous transplantations after conditioning with MEL200 or MEL100. Ninety-six of 149 (64%) completed MEL200 and 103 of 149 (69%) MEL100. Best response to MEL200 was: complete remission 22 of 149 (15%); partial remission 95 of 149 (64%), for an overall response rate of 79%. Best response to MEL100 was: complete remission 12 of 149 (8%); partial remission 95 of 149 (64%), for an overall response rate of 72%. Overall survival did not differ (P = .13); median progression-free survival (31.4 vs 26.2 months, P = .01), median time to progression (34.4 vs 27.0 months, P = .014) were longer in the MEL200. Treatment-related mortality was 3.1% in the MEL200 and 2.9% in the MEL100 group. Severe neutropenia and infections were marginally superior, whereas severe thrombocytopenia, mucositis, gastrointestinal adverse events, and the overall occurrence of at least 1 nonhematologic grade 3 or 4 adverse event were significantly higher in the MEL200 cohort. We conclude that MEL200 leads to longer remission duration and should be considered the standard conditioning regimen for autologous transplantation. This study was registered at www.clinicaltrials.gov as #NCT00950768.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Publisher: American Society of Hematology
    Publication Date: 2010
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  • 6
    In: Blood, American Society of Hematology, Vol. 91, No. 11 ( 1998-06-01), p. 4180-4187
    Abstract: Hereditary hyperferritinemia-cataract syndrome (HHCS) is an autosomal and dominant disease caused by heterogeneous mutations in the iron responsive element (IRE) of the 5′ untranslated flanking region of ferritin L-chain mRNA, which reduce the binding to the trans iron regulatory proteins and make L-chain synthesis constitutively upregulated. In the several families identified so far, the serum and tissue L-ferritin levels are fivefold to 20-fold higher than in nonaffected control subjects, iron metabolism is apparently normal, and the only relevant clinical symptom is early onset, bilateral cataract. Some pathogenetic aspects of HHCS remain obscure, with particular reference to the isoferritins produced by HHCS cells, as well as the mechanism of cataract formation. We analyzed lymphoblastoid cell lines obtained from two nonaffected control subjects and from HHCS patients carrying the substitution A40G (Paris-1), G41C (Verona-1), and the deletion of the residues 10-38 (Verona-2) in the IRE structure. Enzyme-linked immunosorbent assays specific for the H- and L-type ferritins showed that L-ferritin levels were up to 20-fold higher in HHCS than in control cells and were not affected by iron supplementation or chelation. Sequential immunoprecipitation experiments of metabolically-labeled cells with specific antibodies indicated that in HHCS cells about half of the L-chain was assembled in L-chain homopolymers, which did not incorporate iron, and the other half was assembled in isoferritins with a high proportion of L-chain. In control cells, all ferritin was assembled in functional heteropolymers with equivalent proportion of H- and L-chains. Cellular and ferritin iron uptake was slightly higher in HHCS than control cells. In addition, we analyzed the lens recovered from cataract surgery of a HHCS patient. We found it to contain about 10-fold more L-ferritin than control lens. The ferritin was fully soluble with a low iron content. It was purified and partially characterized. Our data indicate that: (1) in HHCS cells a large proportion of L-ferritin accumulates as nonfunctional L-chain 24 homopolymers; (2) the concomitant fivefold to 10-fold expansion of ferritin heteropolymers, with a shift to L-chain–rich isoferritins, does not have major effects on cellular iron metabolism; (3) L-chain accumulation occurs also in the lens, where it may induce cataract formation by altering the delicate equilibrium between other water-soluble proteins (ie, crystallins) and/or the antioxidant properties.
    Type of Medium: Online Resource
    ISSN: 1528-0020 , 0006-4971
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 1998
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  • 7
    In: Blood, American Society of Hematology, Vol. 91, No. 11 ( 1998-06-01), p. 4180-4187
    Abstract: Hereditary hyperferritinemia-cataract syndrome (HHCS) is an autosomal and dominant disease caused by heterogeneous mutations in the iron responsive element (IRE) of the 5′ untranslated flanking region of ferritin L-chain mRNA, which reduce the binding to the trans iron regulatory proteins and make L-chain synthesis constitutively upregulated. In the several families identified so far, the serum and tissue L-ferritin levels are fivefold to 20-fold higher than in nonaffected control subjects, iron metabolism is apparently normal, and the only relevant clinical symptom is early onset, bilateral cataract. Some pathogenetic aspects of HHCS remain obscure, with particular reference to the isoferritins produced by HHCS cells, as well as the mechanism of cataract formation. We analyzed lymphoblastoid cell lines obtained from two nonaffected control subjects and from HHCS patients carrying the substitution A40G (Paris-1), G41C (Verona-1), and the deletion of the residues 10-38 (Verona-2) in the IRE structure. Enzyme-linked immunosorbent assays specific for the H- and L-type ferritins showed that L-ferritin levels were up to 20-fold higher in HHCS than in control cells and were not affected by iron supplementation or chelation. Sequential immunoprecipitation experiments of metabolically-labeled cells with specific antibodies indicated that in HHCS cells about half of the L-chain was assembled in L-chain homopolymers, which did not incorporate iron, and the other half was assembled in isoferritins with a high proportion of L-chain. In control cells, all ferritin was assembled in functional heteropolymers with equivalent proportion of H- and L-chains. Cellular and ferritin iron uptake was slightly higher in HHCS than control cells. In addition, we analyzed the lens recovered from cataract surgery of a HHCS patient. We found it to contain about 10-fold more L-ferritin than control lens. The ferritin was fully soluble with a low iron content. It was purified and partially characterized. Our data indicate that: (1) in HHCS cells a large proportion of L-ferritin accumulates as nonfunctional L-chain 24 homopolymers; (2) the concomitant fivefold to 10-fold expansion of ferritin heteropolymers, with a shift to L-chain–rich isoferritins, does not have major effects on cellular iron metabolism; (3) L-chain accumulation occurs also in the lens, where it may induce cataract formation by altering the delicate equilibrium between other water-soluble proteins (ie, crystallins) and/or the antioxidant properties.
    Type of Medium: Online Resource
    ISSN: 1528-0020 , 0006-4971
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 1998
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  • 8
    In: Blood, American Society of Hematology, Vol. 116, No. 23 ( 2010-12-02), p. 4745-4753
    Abstract: In a recent phase 3 trial, bortezomib-melphalan-prednisone-thalidomide followed by maintenance treatment with bortezomib-thalidomide demonstrated superior efficacy compared with bortezomib-melphalan-prednisone. To decrease neurologic toxicities, the protocol was amended and patients in both arms received once-weekly instead of the initial twice-weekly bortezomib infusions: 372 patients received once-weekly and 139 twice-weekly bortezomib. In this post-hoc analysis we assessed the impact of the schedule change on clinical outcomes and safety. Long-term outcomes appeared similar: 3-year progression-free survival rate was 50% in the once-weekly and 47% in the twice-weekly group (P 〉 .999), and 3-year overall survival rate was 88% and 89%, respectively (P = .54). The complete response rate was 30% in the once-weekly and 35% in the twice-weekly group (P = .27). Nonhematologic grade 3/4 adverse events were reported in 35% of once-weekly patients and 51% of twice-weekly patients (P = .003). The incidence of grade 3/4 peripheral neuropathy was 8% in the once-weekly and 28% in the twice-weekly group (P 〈 .001); 5% of patients in the once-weekly and 15% in the twice-weekly group discontinued therapy because of peripheral neuropathy (P 〈 .001). This improvement in safety did not appear to affect efficacy. This study is registered at http://www.clinicaltrials.gov as NCT01063179.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2010
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  • 9
    In: Blood, American Society of Hematology, Vol. 104, No. 11 ( 2004-11-16), p. 1869-1869
    Abstract: ATP co-released with norepinephrine (NE) from cardiac sympathetic nerve terminals increases NE exocytosis via a positive feedback mechanism. Since excessive NE release is an established cause of dysfunction in ischemic heart disease, we studied the role of endogenous and exogenous nucleotidases as part of the development of a novel therapeutic approach to myocardial ischemia and its consequences. Using sympathetic nerve terminals isolated from guinea pig heart (cardiac synaptosomes), we previously established that activation of ATP-gated ionotropic presynaptic P2X purinoceptors (P2XR) promotes exocytosis of NE. This effect was increased by inhibition of the endogenous ecto-nucleotidase (E-NTPDase1/CD39) and decreased by solCD39, a recombinant form of human E-NTPDasel/CD39. Furthermore, depolarization of synaptosomes with K+ also evoked NE exocytosis. This was potentiated by inhibition of E-NTPDase1 with ARL67156 (a selective E-NTPDase inhibitor), and attenuated by addition of solCD39. These findings indicated that ATP released by depolarization of sympathetic terminals enhances NE exocytosis, and that E-NTPDase1 plays an important modulatory role in adrenergic neurotransmission in the heart. In the present study, we investigated the role of E-NTPDasel in exocytosis of NE and ATP in porcine as well as human heart. Cardiac E-NTPDase1 is selectively localized in human and porcine cardiac neurons, and depolarization of cardiac tissue elicits an ω-conotoxin-inhibitable release of both NE and ATP. Inhibition of E-NTPDase1 with ARL67156 markedly potentiated release of ATP, demonstrating that E-NTPDase1 is a major control system for ATP availability at sympathetic nerve endings. Importantly, when ATP exocytosis was increased via inhibition of E-NTPDase1, NE exocytosis increased in parallel. Moreover, when ATP release was reduced by administration of solCD39, NE exocytosis was markedly diminished. Thus, ATP regulates NE exocytosis by activating presynaptic P2XR. This concept is further validated by our finding that the strong correlation between ATP and NE release was abolished by the P2XR antagonist PPADS. We conclude that released ATP governs NE exocytosis by activating presynaptic P2XR and that this is controlled by E-NTPDase1/CD39. Clinically, excessive NE release is a major cause of arrhythmic and coronary vascular dysfunction during myocardial ischemia. By curtailing NE release, solCD39 may offer a novel therapeutic approach to ischemic complications in the myocardium in addition to its role as an anti-thrombotic agent.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2004
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  • 10
    In: Blood, American Society of Hematology, Vol. 120, No. 21 ( 2012-11-16), p. 729-729
    Abstract: Abstract 729 Introduction: The prognosis of primary plasma cell leukemia (PPCL) remains poor. The “novel agents” have recently shown promising results in PPCL patients in case reports or small retrospective series. Here we describe the first prospective, multicenter, phase II clinical trial of PPCL, where lenalidomide in combination with low dose dexamethasone (Ld) was tested as initial therapy in newly diagnosed patients fulfilling the IMWG diagnostic criteria of PPCL. Patients and methods: Ld regimen consisted of lenalidomide 25 mg/d for 21 days and oral dexamethasone 40 mg on days 1, 8, 15, and 22 for each 28-day cycle. After 4 cycles, responding patients not eligible for stem cell transplantation (SCT) continued until 8 cycles of full-dose Ld, followed by a maintenance dose of single agent lenalidomide equal to 10 mg/d on days 1–21 of each 28-day cycle. Patients responding after 4 cycles and eligible for SCT proceeded according to the treatment centre's transplant policy. Patients not responding after 4 cycles or progressing during this treatment were considered off-study. Appropriate dose reductions (in particular for patients with reduced renal function at baseline), double contraception methods and anti-thrombotic/anti-infective prophylaxis were recommended. The primary end-point was early response rate according to IMWG uniform response criteria. Secondary end-points were PFS, OS, feasibility and efficacy of SCT, safety. Results: According to the Simon optimal two-stage adaptive design, twenty-three patients were enrolled in between March 2009 and May 2011. The male/female ratio was 1.1, and median age was 60 years (range 44–80). The median absolute number and percentage of circulating plasma cells were 4.280/μl (range 1.500–114.660) and 34% (range 21–90) respectively. Fifteen patients (65.2%) had abnormal renal function at presentation. Twenty-one patients (91.3%) were tested by FISH analysis and cytogenetic abnormalities were detected in all of them, del13q being the most frequently found (16 patients). Seventeen patients showed multiple chromosomal lesions. Involvement of chromosome 14 was observed in 18 patients, three of whom showed t(4;14). Chromosome 1q gain and del17p were detected in 10 and 7 patients, respectively. In the intention-to-treat (ITT) population, overall response rate (ORR) after at least one Ld cycle was 73.9% (17/23), with 8 patients (34.7%) achieving partial remission (PR), 5 (21.7%) very good PR (VGPR), 3 (13%) complete response (CR), and 1(4.3%) near CR (nCR) (VGPR or better: 39%). In the efficacy-evaluable (EE) population, 14 out of 15 patients who received the initially planned 4 Ld cycles (65.2% of the ITT population) responded (ORR 93.3%), achieving 5 PR (33.3%), 5 VGPR (33.3%), 1 near-CR (6.6%) and 3 CR (20%) (VGPR or better: 59.9%). The maintenance phase was reached and safely performed in 4 responding patients not eligible for SCT, 3 of whom relapsed after 2, 8 and 22 months, respectively. After Ld induction therapy, 8 patients received single (n. 4) or double (n. 4) autologous SCT (ASCT); another patient underwent a sequence of ASCT followed by non-myeloablative allogeneic SCT (AlloSCT). Six eligible patients did not receive ASCT frontline, due to initial Ld failure or adverse events; three of them underwent single ASCT (n. 2) or tandem ASCT/non-myeloablative AlloSCT (n. 1) after a bortezomib-based salvage therapy, achieving 2 CR and 1 PR. After a median follow-up of 23 months, median OS and PFS in ITT population were not reached and 22 months, respectively. All transplanted patients remained alive, although three of them relapsed and started salvage treatments; OS was 12 months in the 11 patients who did not receive ASCT (p 〈 0.001). The correspondent figures for PFS were 29 and 16 months, respectively (p 〈 0.01). Considering ITT population, multivariate analyses showed that SCT was positively correlated to both OS and PFS. There were 17 episodes of grade 3/4 non hematological toxicity, which occurred in 13 patients (5 infections, 3 renal, 3 metabolic, 2 gastro-intestinal, 2 skin, 1 fatigue, 1 thromboembolic), causing early interruption of Ld treatment in 4 patients. Grade 3/4 hematological toxicity (mainly neutropenia) occurred in 11 patients (47.8%). Conclusions: Ld may be a feasible and effective initial therapeutic option for PPCL, particularly in patients who receive ASCT after a short course of induction treatment. Disclosures: Musto: Celgene: Honoraria, Research Funding. Off Label Use: Lenalidomide as first line therapy of plasma cell leukemia. Petrucci:Celgene: Honoraria. Cascavilla:Celgene: Honoraria. Di Raimondo:Celgene: Honoraria. Caravita:Celgene: Honoraria. Morabito:Celgene: Honoraria. Offidani:Celgene: Honoraria. Bringhen:Celgene: Honoraria. Boccadoro:Celgene: Honoraria, Membership on an entity's Board of Directors or advisory committees, Research Funding, Speakers Bureau. Palumbo:Celgene: Consultancy, Honoraria.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2012
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
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