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  • 1
    In: The Korean Journal of Internal Medicine, Korean Association of Internal Medicine, Vol. 37, No. 4 ( 2022-07-01), p. 841-850
    Abstract: Background/Aims: We evaluated the feasibility and long-term efficacy of the combination of cytarabine, idarubicin, and all-trans retinoic acid (ATRA) for treating patients with newly diagnosed acute promyelocytic leukemia (APL).Methods: We included 87 patients with newly diagnosed acute myeloid leukemia and a t(15;17) or promyelocytic leukemia/retinoic acid receptor alpha ( 〈 i 〉 PML-RAR 〈 /i 〉 α) mutation. Patients received 12 mg/m 〈 sup 〉 2 〈 /sup 〉 /day idarubicin intravenously for 3 days and 100 mg/m 〈 sup 〉 2 〈 /sup 〉 /day cytarabine for 7 days, plus 45 mg/m 〈 sup 〉 2 〈 /sup 〉 /day ATRA. Clinical outcomes included complete remission (CR), relapse-free survival (RFS), overall survival (OS), and the secondary malignancy incidence during a 20-year follow-up.Results: The CR, 10-year RFS, and 10-year OS rates were 89.7%, 94.1%, and 73.8%, respectively, for all patients. The 10-year OS rate was 100% for patients that achieved CR. Subjects were classified according to the white blood cell (WBC) count in peripheral blood at diagnosis (low-risk, WBC 〈 10,000/mm 〈 sup 〉 3 〈 /sup 〉 ; high-risk, WBC ≥ 10,000/mm 〈 sup 〉 3 〈 /sup 〉 ). The low-risk group had significantly higher RFS and OS rates than the high-risk group, but the outcomes were not superior to the current standard treatment (arsenic trioxide plus ATRA). Toxicities were similar to those observed with anthracycline plus ATRA, and higher than those observed with arsenic trioxide plus ATRA. The secondary malignancy incidence after APL treatment was 2.7%, among the 75 patients that achieved CR, and 5.0% among the 40 patients that survived more than 5 years after the APL diagnosis.Conclusions: Adding cytarabine to anthracycline plus ATRA was not inferior to anthracycline plus ATRA alone, but it was not comparable to arsenic trioxide plus ATRA. The probability of secondary malignancy was low.
    Type of Medium: Online Resource
    ISSN: 1226-3303 , 2005-6648
    Language: English
    Publisher: Korean Association of Internal Medicine
    Publication Date: 2022
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  • 2
    In: Yeungnam University Journal of Medicine, Yeungnam University College of Medicine, Vol. 27, No. 2 ( 2010), p. 113-
    Type of Medium: Online Resource
    ISSN: 1225-7737 , 2234-8042
    Language: Korean
    Publisher: Yeungnam University College of Medicine
    Publication Date: 2010
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  • 3
    In: Blood, American Society of Hematology, Vol. 114, No. 22 ( 2009-11-20), p. 2072-2072
    Abstract: Abstract 2072 Poster Board II-49 Backgrounds Currently, there are many efforts to design risk-adapted strategies in newly diagnosed acute promyelocytic leukemia (APL) by modulating treatment intensity and those seem to be an efficient approach to minimize treatment-related morbidity and mortality (TRM) while maintain the potential in cure for each relapse-risk group. We had postulated that maintaining of Ara-C during induction therapy might have acceptable toxicities yet obtaining good CR in newly diagnosed APL, and idarubicin alone during consolidation periods might have excellent LFS and OS with low relapse rate. Patients and Methods Eighty six patients with newly diagnosed APL were enrolled in the “multicenter AML-2000 trial” after informed consents were obtained during the period of January 2000 to July 2007. For remission induction therapy, patients received oral ATRA (45mg/m2/d, maintained until CR) combined with idarubicin (12mg/m2/d, D1-D3) plus Ara-C (100mg/m2/d, D1-D7). After CR achievement, patients received 3 monthly consolidation courses consisting of idarubicin (12mg/m2/d, D1-D3) alone and maintenance therapy with ATRA (45mg/m2/d, D1-D15, every 2 month) alone had continued for 2 years. Total patients were divided into low-risk, intermediate-risk and high-risk groups according to a predictive model for relapse risk (Sanz score) based on pretreatment WBC and platelet count and the treatment outcomes were compared in the different risk groups. Results The median age of our cohort was 40 years old (range; 6-80) and median follow-up was 27 months (range; 1-90). The distribution of patients in the 3 risk groups was as follows ; 28 (32.6%) patients in low-risk, 40 (46.5%) in intermediate-risk and 18 (20.9%) in high-risk. Overall, CR was achieved in 78 (90.7%) of 86 patients. The CR rate according risk groups was 96.4% in low-risk, 87.5% in intermediate-risk, and 88.9% in high-risk group and there was no significant statistical difference among the different risk groups. During induction therapy, 48 (55.8%) patients experienced grade 3-4 treatment-related toxicity (TRT), mostly fever and infection (38.8% of all patients) and 6 (7.0%) patients died of treatment-related complications. During 3 consolidation courses, 25 (29.1%) of 78 patients experienced grade 3-4 TRT in 1st course, 27 (36.0%) of 75 patients in 2nd course, and 14 (28.0%) of 50 patients in 3rd course. Overall, 3 (3.5%) patients died of treatment-related complications in CR. The incidence of TRT and treatment-related mortality (TRM) during induction or consolidation therapy showed no significant statistical difference among the different risk groups. The relapse occurred in 6 (7.0%) patients; 2 cases in intermediate-risk and 4 cases in high-risk. However, none had relapsed in low risk group, 5 patients of relapsed patients relapsed during consolidation courses and only one patient, however, relapsed during maintenance therapy. The overall survival (OS) and leukemia-free survival (LFS) rate at 7 years in all of patients was 76.7% and 83.5%, respectively. The OS rate at 7 years was 92.9% in low-risk, 78.6% in intermediate-risk and 53.6% in high-risk group (P:0.04) and the LFS rate at 7 years was 96.4%, 83.4% and 62.2% respectively, showing the significant difference between 3 different risk groups (P:0.046). Conclusions This study indicates that our protocol composed of induction therapy with “3+7” chemotherapy plus ATRA followed by consolidations with three courses of idarubicin alone and maintenance therapy with ATRA alone yields a high CR rate and low relapse rate but minimal acceptable toxicities. Despite of adding Ara-C during induction therapy, we did not find much significant toxicities but having good CR rates, and despite of not adding any additional low/intermediate dose chemotherapies(ie, 6MP), we were able to observe significantly high relapse rate in low and intermediate risk group with excellent LFS and OS. Meanwhile, in high-risk group, the relapse rate was significantly higher than other risk groups and most of the relapses occurred in the middle of consolidation courses. This data suggests that our consolidation therapy composed of anthracycline alone may be not enough to minimize risk of relapse in high-risk group in contrast with the low and intermediate-risk groups. More intensive consolidation therapy combined with other effective, but get tolerable chemotherapies or hematopoietic stem cell transplantation in first CR or the combination of arsenic trioxide or others in front-line therapy should be considered in the patients with high-risk of relapse. Disclosures: No relevant conflicts of interest to declare.
    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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  • 4
    In: Blood, American Society of Hematology, Vol. 112, No. 11 ( 2008-11-16), p. 2975-2975
    Abstract: Cytogenetics is still being considered the most powerful single prognostic factor, which is useful to determine the types of post-remission therapy in AML, though various molecular markers are available for predicting the prognosis of AML patients. Most phase III studies have failed to demonstrate a clear advantage of allografting over chemotherapy in terms of overall survival because of significant risk of transplant-related mortality. Optimal post-remission therapies in terms of frequencies (number of treatment) or intensities are not decided yet. In this study, since 2000, we investigated that outcomes of post-remission therapies(high-dose cytarabine (HDAC) vs autologous stem cell transplantation (AutoSCT) vs allogeneic stem cell transplantation from sibling or unrelated donors (AlloSCT)) based on cytogenetic risk (GPG, Good prognosis group; IPG, Intermediate prognosis group; PPG, Poor prognosis group by MRC definition) on the AML patients who achieved complete remission after induction chemotherapy. The aims of this prospective intention to treat analysis was to compare the CR, recovery kinetics, DFS and OS in the different prognostic groups. Three plus seven (idarubicin 12mg/m2, D1–D3; cytarabine 100mg/m2, D1–D7) were given to de novo AML, secondary AML and therapy-related AML. Then, HDAC or AutoSCT was given after intermediate dose (8gm/m2) of cytarabine to the patients with GPG. Three times of post-remission therapy including HDAC, or AutoSCT followed by two times of post-remission therapy were given to IPG or PPG. If HLA-identical sibling was available, then AlloSCT underwent after 1st post-remission therapy. Since January, 2000, 506 patients(18 centers) were enrolled up to December, 2007. Among them, 92.3% was de novo AML, and GPG, IPG and PPG were, 23.1%, 62.1% and 14.8% respectively. Over all complete remission rate after 1st induction was 79.0% and CR rate in GPG, IPG, PPG were 92.0%, 81.0% and 43.9% respectively(P & lt;0.001) in 476 patients who were eligible to this study. In Good Prognosis Group (GPG), survivals were not different between different treatment groups (5 year LFS: HDAC 34.2%, AutoSCT 63.5%, AlloSCT 54.8%, p=0.270; 5 year OS: HDAC 54.5%, AutoSCT 62.5%, AlloSCT 53.3%, p=0.676). However, beneficial effect of AlloSCT in post-remission therapy therapy was observed by multivariate analysis in terms of LFS compared to HDAC (HR of relapse for HDAC 3.198 compared to AlloSCT, p=0.045). Outcomes of HDAC group were inferior in GPG in terms of OS and LFS compared to other studies. This results may be due to low cumulative dose of Ara C, because patients of HDAC group in GPG treated just 1 cycle of IDAC before HDAC therapy. In addition, in our cohort, majority (80%) of GPG have t(8;21), which are known as having inferior survival results, compared to inv(16) group. In Intermediate Prognosis Group (IPG), survivals were not different among different types of treatment (5 year LFS: HDAC 31.1%, AutoSCT 42.4%, AlloSCT 55.0%, p=0.131; 5 year OS: HDAC 39.2%, AutoSCT 42.5%, AlloSCT 46.5%, p=0.491). AlloSCT group showed a trend of being superior to other therapeutic modalities in terms of LFS (p=0.07). AutoSCT group showed a trend of being superior to other therapeutic modalities in OS by multivariate analysis (HR of death for AutoSCT 0.539 compared to AlloSCT, p=0.085). In Poor Prognosis Group (PPG), though data showed slightly beneficial effect of AlloSCT in AML therapy, however, there were no significant statistical differences on OS/LFS in 3 types of consolidation therapy modalities (4 year LFS: HDAC 48.3%, AutoSCT 0%, AlloSCT 39.1%, p=0.379; 4 year OS: HDAC 21.4%, AutoSCT 33.3%, AlloSCT 56.1%, p=0.638). Based on this trial, Allo- or Auto-SCT over HDAC may have beneficial effects in some subgroup with high risk and young age, among the patients with good and intermediate cytogenetic risk. In GPG, “sufficient cumulative dose” of Ara C seems to be necessary to have a good outcome. However, GPG seems to be heterogenous group in terms of biology having poor prognosis when one has additional CG abnormalities on top of t(8;21) or inv(16), which ones need to investigate further. While finding more effective anti-AML molecules/monoclonal Ab’s are necessary, good therapeutic rationales in terms of choosing AlloSCT vs AutoSCT vs HDAC should be established. Same time, identifying for better cellular and molecular prognostic factors over cytogenetics are still relevant for designing “effective therapies, but minimal toxicities”.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2008
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  • 5
    In: Yeungnam University Journal of Medicine, Yeungnam University College of Medicine, Vol. 28, No. 1 ( 2011), p. 31-
    Type of Medium: Online Resource
    ISSN: 1225-7737 , 2234-8042
    Language: English
    Publisher: Yeungnam University College of Medicine
    Publication Date: 2011
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  • 6
    In: Annals of Hematology, Springer Science and Business Media LLC, Vol. 84, No. 1 ( 2005-1), p. 13-18
    Type of Medium: Online Resource
    ISSN: 0939-5555 , 1432-0584
    Language: English
    Publisher: Springer Science and Business Media LLC
    Publication Date: 2005
    detail.hit.zdb_id: 1458429-3
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  • 7
    In: Oncotarget, Impact Journals, LLC, Vol. 8, No. 23 ( 2017-06-06), p. 37605-37618
    Type of Medium: Online Resource
    ISSN: 1949-2553
    URL: Issue
    Language: English
    Publisher: Impact Journals, LLC
    Publication Date: 2017
    detail.hit.zdb_id: 2560162-3
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  • 8
    In: Blood, American Society of Hematology, Vol. 118, No. 21 ( 2011-11-18), p. 1866-1866
    Abstract: Abstract 1866 Background: In multiple myeloma (MM), the association between the response to induction before autologous stem cell transplantation (ASCT) and long-term outcome is less clear but the situation may change with the introduction of novel agents. We therefore assessed the clinical relevance of response of bortezomib induction treatment or post-ASCT response for patients who received bortezomib-combined induction chemotherapy followed by ASCT. Methods: We retrospectively assessed 183 MM patients who received bortezomib-containing induction therapy (BTZ-IT) followed by ASCT in 24 institutions throughout Korea between 2003 and 2010. Records of these patients were reviewed using the Korean Myeloma Registry database (www.myeloma.or.kr). Each institution was requested to reconfirm the data using additional case report forms. Patients who had overt MM based on International Myeloma Working Group diagnostic criteria were selected. Results: One-hundred seventy eight patients were eligible. Their median age was 56 years (range, 28–69 years) and 96 (53.9%) were male. Forty nine (27.5%) received bortezomib as front-line therapy and 129 (72.5%) as second-line treatment. All patients underwent ASCT and 22 (12.4%) were treated with tandem ASCT. Ninety-seven (54.5%) patients were treated with maintenance therapy after ASCT. After BTZ-IT, the response rates in this selected series of patients were 37.6% CR, 12.4% VGPR, 41.0% PR, 7.3% SD and 1.7% PD (Figure 1A, 1B, 1C); the corresponding post-ASCT rates were 69.2% CR, 14.0% VGPR, 11.0% PR, 2.9% SD and 2.9% PD. At a median follow-up of 46.6 months, the 3-year overall survival (OS) and event-free survival (EFS) rates were 70.0% and 31.9%, respectively. Multivariate analysis showed that factors independently predictive of OS and EFS included achievement of BTZ-IT response °Ã PR (P=0.025 and P=0.014, respectively) and the treatment with maintenance therapy (P=0.048 and P=0.001, respectively). Post-ASCT CR vs. °Â VGPR was also an independent prognostic factor for OS and EFS (P=0.0001 and P=0.002, respectively). Conclusion: At least PR to BTZ-IT and CR after ASCT were predictive of survival. These findings suggest that patients who responded to BTZ-IT may benefit from ASCT due to an enhanced quality of response. Maintenance therapy can also affect patient outcomes. Disclosures: No relevant conflicts of interest to declare.
    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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  • 9
    In: The Oncologist, Oxford University Press (OUP), Vol. 19, No. 11 ( 2014-11-01), p. 1129-1130
    Abstract: Combination chemotherapy consisting of ifosfamide, methotrexate, etoposide, and prednisolone (IMEP) was active as first-line and second-line treatment for extranodal natural killer/T-cell lymphoma (NTCL). Methods. Forty-four patients with chemo-naïve stage I/II NTCL were enrolled in a prospective, multicenter, phase II study and received six cycles of IMEP (ifosfamide 1.5 g/m2 on days 1–3; methotrextate 30 mg/m2 on days 3 and 10; etoposide 100 mg/m2 on days 1–3; and prednisolone 60 mg/m2 per day on days 1–5) followed by involved field radiotherapy (IFRT). Results. Overall response rates were 73% (complete remission [CR] in 11 of 41 evaluable patients [27%] ) after IMEP chemotherapy and 78% (CR 18 of 27 evaluable patients [67%]) after IMEP followed by IFRT. Neutropenia and thrombocytopenia were documented in 33 patients (75%) and 7 patients (16%), respectively. Only 8 patients (18%) experienced febrile neutropenia. Three-year progression-free survival (PFS) and overall survival (OS) were 66% and 56%, respectively. High Ki-67 (≥70%) and Ann Arbor stage II independently reduced PFS (p = .004) and OS (p = .001), respectively. Conclusion. Due to the high rate of progression during IMEP chemotherapy, IFRT needs to be introduced earlier. Moreover, active chemotherapy including an l-asparaginase-based regimen should be use to reduce systemic treatment failure in stage I/II NTCL.
    Type of Medium: Online Resource
    ISSN: 1083-7159 , 1549-490X
    Language: English
    Publisher: Oxford University Press (OUP)
    Publication Date: 2014
    detail.hit.zdb_id: 2023829-0
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  • 10
    In: Blood, American Society of Hematology, Vol. 124, No. 21 ( 2014-12-06), p. 3654-3654
    Abstract: Introduction: The effect of imatinib plus combination chemotherapy were assessed in 87 patients, aged 16-71 years, with newly diagnosed Philadelphia Chromosome-Positive (Ph+) acute lymphoblastic leukemia (ALL). Methods: Imatinib (600 mg/day orally) was administered continuously with combination chemotherapy, starting from eighth day of remission induction treatment, then through 5 courses of consolidation or until allogeneic hematopoietic cell transplantation (HCT). Patients who were not transplanted were maintained on imatinib for 2 years. Molecular response monitoring was performed at the central lab (Asan Medical Center) with quantitative RT-PCR assays for peripheral blood or bone marrow BCR-ABL RNA in serial; at the time of diagnosis, at hematologic complete remission (HCR), and every 3 months thereafter. The molecular response was defined as complete (MCR) if the BCR-ABL/G6PDH ratio was less than 1x10-5. Results: Between October 2005 and February 2009, total 89 patients with newly diagnosed Ph+ALL were enrolled. With median follow-up of 5 years among survivors (range: 2.6-8.9 years) and data were frozen up in July, 2014. Two patients were not assessed, one due to a final diagnosis of CML blastic phase and one for refusal of the protocol treatment 4 months after enrollment. Eighty-two patients (94%) achieved HCR at a median 25 days (range, 14-69 days). Among these 82 HCR patients, 40 experienced recurrence of leukemia and 5-year relapse free survival (RFS) rate was 36.8%. Median time of RFS was 33 months (95% CI 20-46 months). In all, 24 patients died without leukemia progression or recurrence. Causes of treatment related morality were infection (n=5), bleeding (n=2), and HCT related complication (n=17). The 5-year overall survival (OS) rate was 33.4% and the median time of OS was 22.9 months (95% CI, 7.95-37.97 months). In total, 56 patients (68%) underwent allogeneic HCT in first HCR and had received a median 2 courses (range, 0-5 courses) of consolidation prior to HCT. At a median follow-up of 5-years (range, 2.1-8.4 years) after HCT, 23 patients experienced leukemia recurrence (cumulative incidence, 59.1%; 95% CI, 49.7%-68.5%). Of these 23 patients, 17 showed new molecular evidence of disease recurrence before hematologic relapse. Six patients, however, experienced hematologic recurrence without preceding molecular evidence of leukemia recurrence. The 5-year OS rate of patient underwent allogeneic HCT at first HCR was 52.6% and the median time of OS was 72.0 months (95% CI, 17.49-126.50 months). In the patients who completed the five cycles of consolidation, 7 patients were maintained on imatinib. Among these 7 patients, four patients finished 2-year imatinib maintenance. At median follow-up of 4 years (range, 1.9-7.4 years) after maintenance, 6 patients relapsed. The median time of RFS of patient who received maintain therapy was 40.7 months (95% CI, 24.38-57.19 months). One patient with relapse received HCT at second HCR after salvage therapy and two patients died with leukemia recurrence. Cumulative MCR rate was 88.5%, and median time to MCR was 54 days (range, 13-384 days). Median time of MCR duration was 13 months (range, 0.9-60.3 months). MCR achievement within 3months after remission induction was significant predictor of RFS (P=0.004) and OS (P=0.003). Thirty two patients who lost of MCR had significantly inferior RFS (P 〈 0.0001) and OS (P=0.001) then 41 who maintained MCR. Total mean imatinib dose intensity over the entire treatment period was 80% (range, 22-110%) and mean imatinib dose intensity during remission induction was 85% (range, 22-131%). Imatinib dose intensity during remission induction; 〉 90% vs. ¡Â90%; was significantly associated with median HCR duration (44 vs. 13 months, P=0.001, Fig. 1), median overall survival (39 vs. 10 months, P 〈 0.0001, Fig. 2), and 3-year MCR rate (61% vs. 19%, P=0.001, Fig. 3). The probability for maintaining MCR at 3 years according to total imatinib dose intensity; 〉 80% vs. ¡Â80%; was 57% (95% CI, 43.0-75.5%) and 33% (95% CI, 12.3-55.4%), respectively (P=0.05). Conclusions: The higher imatinib dose intensity is correlated with the better molecular response and the superior overall outcome. The quantitative monitoring of BCR-ABL transcript levels is useful in identifying subgroups of Ph+ALL patients at a high risk of relapse. Figure 1 Figure 1. Figure 2 Figure 2. Figure 3 Figure 3. Disclosures No relevant conflicts of interest to declare.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2014
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
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