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  • American Society of Hematology  (16)
  • Kim, Hawk  (16)
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  • 1
    In: Blood, American Society of Hematology, Vol. 114, No. 22 ( 2009-11-20), p. 4881-4881
    Abstract: Abstract 4881 Introduction The Korean Multiple Myeloma Working Party (KMMWP) initiated a nationwide registration of myeloma patients via a web page designated the “Korean Myeloma Registry.” This registry includes demographic features, characteristics of disease, treatment outcomes, and survival status. Herein, we retrospectively reviewed data representing 3,209 Korean myeloma patients. Methods Members of the registry committee of the KMMWP designed the web-based registration site for the “Korean Myeloma Registry (www.myeloma.or.kr).” A total of 3,209 patients were registered from 39 hospitals. Each one of participated hospitals registered their patients who were diagnosed as MM between the years 1999 and 2009. The approximate duration of registration was from May 2005 until March 2009; following collection, the data was downloaded for analysis. Results The median age at diagnosis was 64 years (range, 20 – 93 years) with 84 patients ' 40 years of age; this included three patients 〈 30 years of age (ages 20, 28, and 29 years old). Poor performance status (ECOG grade 2-3), anemia (Hgb 〈 10 g/dL), hypoalbuminemia ( 〈 3.5 g/dL), and elevated serum β2 microglobulin ( 〉 5.5 mg/dL) were more frequently observed in the 〉 65 years of age group than in the groups '65 years of age. Thus, an advanced ISS stage was more common in patients older than 65 years. The most common idiotype of myeloma was IgG (46.0%, 1475/3209), followed by IgA type (18.6%). Non-secretory myeloma accounted for 4.4% of cases, with IgD, IgM, and IgE subtypes being very rare. However, patients ' 40 years of age demonstrated a tendency toward a higher incidence of the IgD type (7.1%, 6/84) and light chain disease (22.6%, 19/84) compared to the other age groups. Other characteristics, including the presence of extramedullary plasmacytoma, demonstrated a similar pattern among the groups. Chromosomal studies of bone marrow aspirates were performed in 1,943 patients with 499 patients (25.7%) demonstrating abnormalities. In 60.9% of patients (1,954/3,209), an objective response to induction treatment included complete response (CR), partial response (PR), and minimal response (MR) (Table 4); 463 patients demonstrated progressive disease (PD) during induction treatment. Response could not be evaluated in 300 patients (9.3%) due to early drop out, including follow-up loss and early death. Eight hundred four patients (25.1%) received SCT. The majority of patients (23.1%, 741 patients) received autologous SCT within one year of diagnosis; designated as “early transplantation.” Autologous SCT was performed in those patients who achieved an objective response following induction treatment. Sixty three patients (2.0%) underwent autologous SCT after relapse; designated as “delayed transplantation.” Five hundred eighty patients received single autologous SCT. Tandem autologous SCT was performed in 134 patients. Allogeneic SCT was performed for 63 patients following autologous SCT. The median OS was 50.13 months (95% confidence interval (CI) of 46.20 – 54.06 months). When OS was compared according to age strata, patients '40 years of age demonstrated a prolonged OS (median OS of 71.13 months) compared with patients 〉 65 years of age (median OS of 36.73 months, P 〈 0.001). When we compared the survival of patients who received novel agents such as bortezomib or thalidomide at any time during the course of their treatments with patients who did not receive novel agents, there was a significant difference of OS between two groups (median OS 42.23 versus 55.50 months, P 〈 0.001). Tandem autologous SCT produced a superior OS when compared with single autologous SCT. Furthermore, patients who underwent delayed SCT demonstrated a longer OS compared with early SCT (P = 0.017). Multivariate analysis found that age 〉 65 years, poor performance status, platelet count 〈 100,000/μL, serum albumin 〈 3.5 g/dL, serum creatinine ≥ 2.0 mg/dL, serum β2 microglobulin ≥ 3.5 mg/dL, the presence of extramedullary plasmacytoma, and the presence of chromosomal abnormalities were all found to be independent prognostic factors for OS. Conclusion In this study, we demonstrate improved survival of patients with multiple myeloma after the introduction of novel agents and autologous stem cell transplantation. 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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  • 2
    In: Blood, American Society of Hematology, Vol. 116, No. 21 ( 2010-11-19), p. 2272-2272
    Abstract: Abstract 2272 To test the correlation of trough plasma Imatinib Mesylate (IM) levels and pharmacogenomic variation with cytogenetic or molecular responses, we measured trough plasma IM levels and analyzed various genetic polymorphisms in newly diagnosed CML patients at 6 months of IM treatment and compared them with the likelihood of achieving cytogenetic complete response (CyCR) or major molecular response to standard dose of IM. Newly diagnosed 94 CML patients were prospectively enrolled in the current study. CyCR was achieved in 71 patients (75.5%). Eighty-four patients (89.4%) showed optimal response (CyCR + cytogenetic partial response CyPR) at 6 months. Trough plasma IM levels were highly variable ranging from 203 to 4980 ng/ml: mean (±SD) was 1392±78.8 ng/ml. Among 47 patients with trough plasma IM level of 〈 1320 ng/ml, 39 patients (83.0%) showed optimal response and 8 (17.0%) suboptimal response. Among 47 patients with trough plasma IM level of ≥1320 ng/ml, 45 patients (95.7%) showed optimal response and 2 (4.3%) suboptimal response (P=0.045). Trough plasma IM level was 1346.0±78.3 ng/ml for the group with non-hematologic toxicity of grade 0 or 1 and 1969.6±365.3 for the group with grade 2–4, which was statistically significant (p=0.038). The impact of single nucleotide polymorphisms (SNPs) in cytochrome P450 (CYP) genes (CYP2D6, CYP3A4, CYP3A5, CYP2C9, CYP2C19, CYP2B6, CYP2C8, CYP1A2) and transporter genes (hOCT1, hOCT2, hOCT3, ABCG2, ABCC2, SLCO1B1, ABCB1) potentially associated with IM trough level was also investigated. The AA genotype in CYP2C19*2 (681G 〉 A) was significantly associated with higher IM trough level than dominant genotype (p=0.021), whereas transporter genes did not show any significant results. The CC genotype of ABCG2 (421C 〉 A) gene was related with CCyR (OR 3.47, 95% CI 1.09–11.05; p=0.030). In conclusion, the incidence of optimal responses in newly diagnosed CML patients who had been treated with standard dose of IM for 6 months was significantly higher in the patient group with trough plasma IM level of ≥1320 ng/ml than the group with 〈 1320 ng/ml, and the trough level of IM was influenced by CYP2C19 genotype. Checking trough plasma IM level together with cytogenetic and molecular data at milestone timing may guide the clinicians to adopt dose escalation or 2nd tyrosine kinase inhibitors in CML patients showing suboptimal response or resistance to standard dose of IM. 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: 2010
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  • 3
    In: Blood, American Society of Hematology, Vol. 118, No. 21 ( 2011-11-18), p. 2044-2044
    Abstract: Abstract 2044 Background: Induction treatment followed by autologous stem cell transplantation (ASCT) is the standard therapy for the newly diagnosed younger patients with multiple myeloma (MM). Although new drugs such as lenalidomide or bortezomib have been shown the promising results as induction treatment, many different type of induction treatment regimens still have been used. We evaluate the efficacy and safety of the short course of high dose dexamethasone (HD dexa) and the response adapted PAD (Bortezomib, Adriamycin, Dexamethasone) or VAD (Vincristine, Adriamycin, Dexamethasone) induction chemotherapy in the newly diagnosed younger patients with MM. Methods: 107 newly diagnosed patients with MM from 21 institutions received 2nd cycles of HD dexa followed by PAD or VAD chemotherapy according to the response to the initial high dose dexamethasone. The primary endpoint was complete response (CR) + near CR rate after ASCT. Among 107 patents enrolled this study from November 2009, 25 patients (23%) have been dropped out. This trial will be continued until total 210 patients will be enrolled. The trial is registered on National Cancer Institute website, number NCT01255514. Results: One hundred seven patients (58 male, 49 female) were enrolled (median age; 56). 26 (24%) light chain disease were included. 31 (29%) patients were D-S stage II and 67 (63%) were stage III. According to the ISS, 23 (22%) patients had stage I, 51 (48%) had stage II and 33 (31%) had stage III. 26 (24%) patients had abnormal cytogenetics. There were 31% del13, 7% del17, 19% t(4;14), 15% t(14;16) and 28% t(11;14) in FISH analysis. Among the 82 evaluable patients, CR + PR rate was 48% (39/82) after 2nd cycles of HD dexa therapy. 39 patients (48%) received subsequent VAD chemotherapy and 43 patients (52%) received PAD chemotherapy. Among the 64 patients finished VAD or PAD chemotherapy, CR + PR rate was 83% (79%, 26/33 in VAD group vs. 87%, 27/31 in PAD group). 56 patients were finished ASCT until now. CR + near CR rate after ASCT were 61% (58% in VAD group vs 63% in PAD group). Mortality rate of this trial was 13% (11/82). The cause of death was disease progression (n=3), bleeding (n=1) and infections (n=7). Among 82 patients in whom VAD or PAD chemotherapy was actually performed, 1 year overall survival (OS) rate was 84.7%. 1 year survival rate was 93.8% versus 77.2% (P=0.049) with VAD versus PAD (median follow-up; 9.1 months). Conclusion: Risk adapted approach using initial steroid response showed good response results after ASCT compared with previous trial (CR + near CR rate of IFM 2005-01trial-Bortezomib+dexa induction & ASCT was 35%, J Clin Oncol. 2010;28:4621–9) The MM patients who had poor response to HD dexa also showed similar good response rate after ASCT compared with the patients who had good response to HD dexa treatment in this trial. PAD re-induction therapy after failure of initial steroid induction treatment might overcome the inferior results in the high risk MM patients. Therefore, initial steroid response adapted strategy might be the more cost-effective approach in the newly diagnosed ASCT eligible MM patients. Disclosures: No relevant conflicts of interest to declare.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2011
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
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  • 4
    In: Blood, American Society of Hematology, Vol. 120, No. 21 ( 2012-11-16), p. 3106-3106
    Abstract: Abstract 3106 Background: Induction therapy followed by ASCT is the standard therapy for the newly diagnosed younger patients with MM. Recently, new drugs such as lenalidomide or bortezomib have shown the promising results as an induction treatment. However, these drugs are not available in many countries as a front line treatment and many different type of induction treatment regimens including old regimens are used. We evaluate the efficacy and safety of the brief course of high dose dexamethasone (HD) and the response adapted PAD (Bortezomib, Adriamycin, Dexamethasone) or VAD (Vincristine, Adriamycin, Dexamethasone) induction chemotherapy in the newly diagnosed younger patients with MM. Methods: One hundred fifty five newly diagnosed patients with MM from 23 institutions received 2 cycles of HD followed by PAD or VAD chemotherapy according to the response to the HD. PAD 4 cycles were given to nonresponsders and VAD 2 cycles were given to who achieved more than PR to HD. The primary endpoint was CR + nCR rate after ASCT. Among 155 patents enrolled this study from November 2009, 29 patients (19%) have been dropped out. This trial will be continued until total 210 patients will be enrolled. The trial is registered on National Cancer Institute website, number NCT01255514. Results: One hundred fifty five patients (88 male, 69 female) were enrolled (median age; 57). 34 (22%) patients had ISS stage I, 64 (41%) stage II and 55 (35%) stage III. Thirty six (26%) patients had abnormal cytogenetics. In FISH analysis, there were 25% del13, 9% del17, 21% t (4; 14), 13% t (14; 16) and 26% t (11; 14). Among the 115 evaluable patients, CR + PR rate was 53% (61/115) after 2 cycles of HD. 61 patients (53%) received subsequent VAD chemotherapy and 54 patients (47%) received PAD chemotherapy. Among the evaluable patients, CR + PR rate after induction therapy was 83% (79%, 48/61 in VAD group vs. 89%, 48/54 in PAD group). 95 patients finished ASCT. CR + nCR rate after ASCT were 74% (74% in VAD group vs 73% in PAD group). Mortality rate of this trial was 15% (17/115). The cause of death was disease progression (n=5), bleeding (n=1) and infections (n=11). Among 115 patients in whom VAD or PAD chemotherapy was actually performed, 1 year OS was 88.1%. (VAD arm 90.7% versus PAD arm 86.1% (P=0.105): median follow-up; 16.6 months). Conclusion: Risk adapted approach using initial HD response showed good response results after ASCT compared with previous trial (CR + nCR rate of IFM 2005-01 trial-Bortezomib+dexa induction & ASCT was 35%, J Clin Oncol. 2010;28:4621–9) The MM patients who showed poor response to HD also showed similar good response rate after ASCT compared with the patients who had good response to HD in this trial. PAD re-induction therapy after failure of initial steroid induction treatment might overcome the inferior results in the high risk MM patients. Our data shows that almost half of the patients who responded to HD can be saved of novel agents during induction treatment, and PAD can successfully rescue the other half who are not sensitive to HD. Therefore, initial steroid response adapted strategy might be the more cost-effective approach in the newly diagnosed ASCT eligible MM patients. 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: 2012
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  • 5
    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
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
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  • 6
    In: Blood, American Society of Hematology, Vol. 126, No. 6 ( 2015-08-06), p. 746-756
    Abstract: Nilotinib plus multiagent chemotherapy was feasible and showed a comparable outcome to previous results with imatinib for Ph-pos ALL. The achievement of deep MR with nilotinib at postremission correlated well with the clinical outcomes for Ph-pos ALL.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
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    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2015
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
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  • 7
    In: Blood, American Society of Hematology, Vol. 118, No. 21 ( 2011-11-18), p. 3515-3515
    Abstract: Abstract 3515 Background: The core binding factor (CBF) AML can be achieved long-term remission with high dose cytarabine-based chemotherapy alone. However, those with C-KIT gene mutation (esp. D816 C-KIT mutation) showed worse treatment outcomes compared to those with wild type C-KIT gene. The remaining cases without D816 C-KIT mutation is around 75% of CBF AML, which implies requirement of more sophisticated dissection of the patients according to their prognosis. Single nucleotide polymorphism (SNP) array (SNP-A) could detect cryptic abnormal genomic lesions, not identified by metaphase cytogenetics(MC). In this study, we analyzed the prognostic value of SNP-A based karyotyping combined with MC and its association with C-KIT mutation to facilitate further stratification of CBF AML patients. Methods and Materials: A total of 98 CBF AML patients were included and of whom, 63 (64%) and 35 patients (36%) were t(8;21) and inv(16)/t(16;16), respectively. Genome-Wide Human SNP 6.0 Array (Affymetrix, CA, USA) was performed using DNAs from marrow samples taken at diagnosis. Results: A total of 40 abnormal genomic lesions in 25 patients (26%) were detected by SNP-A karyotyping analysis, with a mean of 1.6 lesions per affected case (median size 33.6 Mb; range 0.4–145.9 Mb), including 3 CN-LOH lesions, 17 gain lesions, and 20 loss lesions. Survival of the patients with abnormal lesion(s) detected by SNP-A or/and MC was worse than those without any lesions in terms of 2 years' overall survival (OS; 57.5% vs 76.4%, p=0.028), event-free (EFS; 45.7% vs 66.2%, p=0.072) and leukemia free survival (LFS; 49.0% vs 77.4%, p=0.015). In contrast, MC alone could not stratify patients according to their long-term prognosis. Especially, in the subgroup with inv(16)/t(16;16), survival of patients with abnormal SNP-A/MC lesion showed worse than that of those without lesion (40.9±12.7% vs 80.2±10.4% at 2 yrs, p=0.040), but not in the subgroup with t(8;21) (66.85±9.1% vs 74.4±7.8% at 2 yrs, p=0.240). As for the subgroup with D816 C-KIT mutation, there were no differences of OS (p=0.417), EFS (p=0.380) and LFS (p=0.218) according to the presence of abnormal lesions detected by either SNP-A or MC. However, in the subgroup without D816 C-KIT mutation, those with abnormal lesions detected by either SNP-A or MC showed worse survival compared to those without abnormal lesions with respect to OS (61.6±8.7% vs 82.7±5.6% at 2 yrs, p=0.038). Multivariate analysis confirmed prognostic impact of abnormal SNP/MC lesions on OS (HR 2.743, p=0.020), EFS (HR 2.434, p=0.025), and LFS (HR 3.350, p=0.012). Conclusion: This study suggests that combined use of SNP-A with MC in the initial evaluation of CBF AML can provide an important prognostic value, especially in the inv(16)/t(16;16) subgroup or in the patients without having D816 C-KIT mutation. 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
    detail.hit.zdb_id: 1468538-3
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  • 8
    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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  • 9
    In: Blood, American Society of Hematology, Vol. 110, No. 11 ( 2007-11-16), p. 4218-4218
    Abstract: Background: Three types of PML-RARα mRNA fusion transcripts in acute promyelocytic leukemia (APL) could be existed: a short (S)-form type, a long (L)-form type or a variable (V)-form type. Whether 3 types of PML-RARα mRNA fusion transcripts associated with different manifestations and outcomes in individual APL cases are unclear. Recently, some studies reported the controversial results for the relationship between the types of PML-RARα mRNA fusion transcripts and clinical outcomes. But, there was no data about the types of PML-RARα mRNA fusion transcripts especially for the APL patients who were received remission induction therapy with AIDA. Methods: We performed a retrospective analysis for the data of 94 patients with APL, whose isoform data was available. We evaluated the differences of therapeutic outcome of remission induction chemotherapy in terms of response rate, relapse-free survival (RFS), overall survival (OS) and the association of pretreatment clinical parameter characteristics according to the PML-RARα isoforms. Results: The median age of the patients was 41 years (15–85). CR rate following remission induction treatment was 84.9% (AIDA 87.0% vs. non-AIDA 80.0%). Among 94 patients, there were 58 L-form cases (62.1%), 32 S-form cases (34.0%), 4 V-form cases (4.3%). There was no significant difference at any patient’s pretreatment characteristic according to PML-RARα isoform type. CR rate was higher in the group of initial WBC 〈 10,000/ul (93.5% vs. 65.4%, p=0.001). But there was no difference within the isoform L/S subgroup (84.2% vs. 87.2%). And OS and RFS were not different between isoform L/S subgroup (5yr 74.3% vs. 83.1%, 84.2% vs. 85.1%). AIDA induction group was better than non-AIDA induction group regarding OS and RFS (5yr 84.4% vs 55.7%, p=0.026, 90.0% vs 65.7%, p=0.007), but not significant in the multivariate analysis. And also, it was not significantly different in the OS and RFS between isoform L/S subgroup of the AIDA induction group (5yr 80.5% vs. 92.0%, 95.7% vs. 97.0%). Conclusion: This study suggests that high initial WBC count is associated with low CR rate, AIDA induction group has a trend of better OS and RFS, treatment outcomes according to PML-RARα isoform type are not different. Prospective study will be needed to confirm the meaningful significance of PML-RARα isoform type.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2007
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
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  • 10
    In: Blood, American Society of Hematology, Vol. 114, No. 22 ( 2009-11-20), p. 1151-1151
    Abstract: Abstract 1151 Poster Board I-173 Introduction The mainstay of treatment for chronic graft-versus-host disease (GVHD) is steroid. However, there is limited treatment option for steroid-refractory chronic GVHD. Although the pathogenesis of chronic GVHD is still uncertain, the possible relation of auto-antibodies with chronic GVHD (Patriarca F, et al. Exp Hematol 389-96, 2006) and the result from a previous pilot study (Cutler C, et al. Blood 756-762, 2006) suggested that a treatment strategy targeting against B cells might become another effective therapy for chronic GVHD. Thus, we performed a study to determine the efficacy of rituximab (Mabthera®, Roche), an anti-CD20 monoclonal chimeric antibody in patients with steroid-refractory chronic GVHD. Patients and methods This is a multicenter, open-labeled prospective phase II study performed by the Korean Society of Blood and Marrow Transplantation (NCT00472225). Patients should be diagnosed as chronic GVHD according to the criteria for clinical trials in chronic GVHD proposed by National Institutes of Health Consensus Development Project (Filipovich AH, et al. Biol Blood Marrow Transplant 945-56, 2005). The steroid-refractoriness was defined as the same severity during the last one month while patients received the equivalent of prednisone ≥0.5mg/kg per day or 1mg/kg every other day at least for 30 days or longer. The treatment schedule consists of induction (rituximab 375mg/m2 weekly IV for 4 consecutive weeks) and maintenance (rituximab 375mg/m2 monthly IV for 4 consecutive months). The response and the quality of life (SF36 questionnaire) were evaluated during the follow-up. Results 37 patients (20 male, 17 female) were evaluated, and their median age was 29 years (range 8-57 years, 7 patients from pediatrics and 30 from internal medicine). The time interval between transplantation and rituximab treatment was from 4.0 to 45.7 months. The most commonly involved organs were skin, oral cavity, eyes and lungs. The average number of involved organ per each patient was three and their average severity was grade 2-3. The median potential follow-up was 12.3 months (95% confidence interval: 12.06-12.54 months). The maximum response during follow-up was as follows: 8 complete response (21.6%), 22 partial response (59.5%), 6 no response (16.2%), and 1 disease progression (2.7%). Thus, the overall response rate was 81.1%. The dosage of steroid was reduced in all responders including complete withdrawal of steroid. The quality of life was improved in terms of physical health and mental/emotional health after treatment. However, 5 responders showed the progression of disease activity during follow-up, and infectious complications were life-threatening, thus, 8 patients died due to infections including pneumonia. The involvement of skin and oral cavity showed better response than the involvement of lungs and eyes. Conclusion The weekly administration of rituximab followed by monthly maintenance rituximab may be an effective treatment for steroid-refractory chronic GVHD, however, the active prophylaxis against infection should be considered. Disclosures No relevant conflicts of interest to declare.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2009
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
    Location Call Number Limitation Availability
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