Response to hypomethylating agents improves long-term outcomes for lower-risk patients with myelodysplastic syndrome in case-matched cohorts

2018 ◽  
Vol 97 (12) ◽  
pp. 2309-2317 ◽  
Author(s):  
Dong Won Baek ◽  
Yoo Jin Lee ◽  
Hyunjeong Kim ◽  
Seo Yeon Ahn ◽  
Jae Sook Ahn ◽  
...  
Blood ◽  
2013 ◽  
Vol 122 (21) ◽  
pp. 2782-2782
Author(s):  
Joon Ho Moon ◽  
Sang Kyun Sohn ◽  
Jae Sook Ahn ◽  
Yeo-Kyeoung Kim ◽  
Hyeoung Joon Kim ◽  
...  

Abstract Background International Prognostic Scoring System (IPSS) is commonly used to distinguish various subgroups of myelodysplastic syndrome (MDS) patients with different prognosis and to make a therapeutic decision. However, the classic IPSS, defining lower-risk as low and intermediate-1 IPSS, seems to be insufficient to discriminate the prognostic groups of lower-risk MDS. Recently, IPSS was updated into the revised score (IPSS-R) to refine the IPSS by reassessing the major predictive features of MDS. The hypomethylating agents (HMA) are usually recommended for patients with lower-risk MDS who is not responsive to other therapies. However the role of HMA for the patients with lower-risk IPSS are still on debate. This study was conducted to find the rationale to treat HMA for the patients with lower-risk IPSS and to know whether IPSS-R further discriminate the prognosis of patients treated with HMA. Methods The data of 334 patients diagnosed with MDS lower-risk defined by IPSS after Jan 2006 were retrospectively reviewed. Lower-risk IPSS was revised into IPSS-R to know whether it could further discriminate the prognosis of this group of patients. The prognosis of lower-risk by IPSS and IPSS-R were analyzed in terms of overall survival (OS) and prognostic power was calculated with time-dependent Cox-hazard models. To define the role of HMA for patients with lower-risk IPSS, we categorized the lower risk patients into No-HMA group, early HMA group (HMA within 2 mo.), and late HMA group (HMA after 2 mo). Results Out of 334 lower-risk patients (39 low and 295 intermediate-1), 195 patients (58.4%) were treated with HMA (azacitidine 163, decitabine 32). Median time to HMA treatment was 43 days (range 0-1778 days). 3yr-OS rate was not significantly different between HMA group (43.1¡¾4.2%) and non-HMA group (62.3¡¾5.9%) (p=0.099). Early HMA treatment (3yr-OS 36.4¡¾5.4%) didn't show survival benefits compared to late HMA group (54.6¡¾6.3%) or no-HMA group (62.3¡¾5.9%) (p=0.003). Plus, HMA response (CR/PR/HI) didn't guarantee OS benefits: 3yr-OS of 45.2¡¾7.4% in responders (CR/PR/HI, n=74) and 43.4¡¾5.0 in non-responders (SD/PD, n=121) (p=0.239). Among 39 patients with IPSS low, 11 patients (28.2%) were revised into IPSS-R very low, 24 (61.5%) into low, 3 (7.7%) into intermediate, and 1 (2.6%) into high. Among 295 patients with IPSS intermediate-1, 4 patients (1.4%) were revised into IPSS-R very low, 84 (28.5%) into low, 133 (45.1%) into intermediate, 71 (24.1%) into high and 3 (1.0%) into very high. IPSS-R could further discriminate the IPSS lower-risk patients with regard to OS: 3yr-OS rates of 100% in very low, 64.5¡¾5.9% in low, 46.1¡¾5.5% in intermediate, 26.1¡¾6.6% in high, and 0% in very high (p<0.001). The survival benefits of HMA for lower risk groups (very low and low) defined by IPSS-R (n=123) was not defined in the current study, where 3yr-OS was 83.8¡¾6.4% in no-HMA group (n=60) vs. 60.5¡¾7.1% in HMA group (n=63) (p=0.198). Conclusion The prognosis of the patients with lower-risk IPSS (low and intermediate-1) were successfully refined by IPSS-R. The IPSS intermediate-1 risk was heterogeneous group, which subdivided into very low to very high by IPSS-R. However, the beneficial effect of HMA for patients with lower-risk MDS, defined by IPSS (low and intermedite-1) and IPSS-R (very low and low), should be elucidated in the future studies. Disclosures: No relevant conflicts of interest to declare.


2019 ◽  
Vol 29 (11) ◽  
pp. 3629-3637 ◽  
Author(s):  
Aurora Gil–Rendo ◽  
José Ramón Muñoz-Rodríguez ◽  
Francisco Domper Bardají ◽  
Bruno Menchén Trujillo ◽  
Fernando Martínez-de Paz ◽  
...  

2014 ◽  
Vol 58 (5) ◽  
pp. 523-529 ◽  
Author(s):  
Nelson B. Watts

The objective this study was to summarize long-term risks associated with bisphosphonate therapy. Search of relevant medical publications for data from clinical trials, trial extensions, observational studies and post-marketing reports. Trial extensions and modifications did not reveal significant long-term safety issues. Observational data suggest at least as many benefits as risks. Post-marketing reports of musculoskeletal pain, osteonecrosis of the jaw and atypical femur fractures have been widely circulated in the lay press. Most focus on long-terms risks has been on osteonecrosis of the jaw and atypical femur fractures which occur in patients who have not received bisphosphonate therapy but may be more frequent (though still uncommon) in patients who have been on treatment for 5 years or longer. Lower-risk patients may be able to stop treatment after 3-5 years for a “drug holiday,” which mitigates these long-term risks; for higher risk patients, therapy through 6-10 years appears to be advisable and offers more benefits than risks.


Blood ◽  
2010 ◽  
Vol 116 (21) ◽  
pp. 2355-2355
Author(s):  
Seok Lee ◽  
Seung-Ah Yahng ◽  
Sung-Eun Lee ◽  
Byung-Sik Cho ◽  
Ki-Seong Eom ◽  
...  

Abstract Abstract 2355 Background: The graft-versus-leukemia effect in adult acute lymphoblastic leukemia (ALL) has now been definitely confirmed from the ‘matched related donor (RD) versus no donor' comparisons. However, no definite conclusions can be extracted from these data as to whether or not there is a survival advantage to RD-stem cell transplantation (SCT) over other therapeutic modalities for both high-risk and standard-risk patients with Philadelphia (Ph)-negative ALL. In addition, ‘RD versus no donor' approach is becoming outmoded, as in many studies those previously in a ‘no donor' category are now undergoing unrelated donor (URD)-SCT. Aims: We report long-term outcomes of total body irradiation-based myeloablative SCT in 292 consecutive adults with Ph-negative ALL who received transplants at our center between 1995 and 2008 (median follow-up of survivors, 85 months). This study focused on following questions: (1) How different are the outcomes of SCT according to the donor sources? (2) Which factors are important to determination of transplantation outcome? (3) Which URD should be chosen? (4) Is there a role of autologous (AUTO)-SCT plus maintenance chemotherapy? Methods: Median age was 25 years (range, 15–63 years). Overall, 237 (81.2%) of 292 patients had one or more high-risk features, including adverse cytogenetics [t(4;11), t(8;14), complex (>=5 abnormalities), Ho-Tr], older age (>=35 years), high leukocyte counts (>=30×109/L for B-ALL, >=100×109/L for T-ALL), or delayed first complete remission (CR1; >28 days). Two hundred and forty-one patients (82.5%) were transplanted in CR1; 22 (7.6%) in CR2; and 29 (9.9%) in advanced status. URD sources were classified as well-matched (WM), partially matched (PM), and mismatched (MM) based on a new proposed guideline from the NMDP-CIBMTR. Donor sources were RD (n=132), WM-URD (n=30), PM-URD (n=19), MM-URD (n=19), and AUTO (n=92). All patients and donors provided written informed consent, and the treatment protocol was approved by the institutional review board of The Catholic University of Korea. Results: Cumulative incidence of relapse at 5 years was 48.5% for AUTO versus 32.6% for RD, 19.4% for WM-URD, 32.3% for PM-URD, and 51.0% for MM-URD (RR, 2.70; 95% CI, 1.65 to 4.42; p<0.001). In multivariate analyses, other factors associated with higher relapse risk included transplantation in CR2 or later (p<0.001), T-lineage ALL (p=0.020), and adverse cytogenetics (p=0.038). Cumulative incidence of non-relapse mortality (NRM) at 5 years was 40.5% for MM-URD versus 19.6% for SD, 20.3% for WM-URD, 15.8% for PM-URD, and 9.8% for AUTO (RR, 3.09; 95% CI, 1.32 to 7.25; p=0.010). Patients older than 35 years had higher NRM (p=0.007). As a result, disease-free survival (DFS) at 5 years was inferior using AUTO (46.1%; RR, 1.69; 95% CI, 1.14 to 2.51; p=0.010) or MM-URD (26.3%; RR, 2.03; 95% CI, 1.05 to 3.95; p=0.036), compared to RD sources, while DFS from all other donor sources was approximately equivalent (53.5% for RD, 63.3% for WM-URD, and 57.0% for PM-URD). Transplantation in CR2 or later (p<0.001), older age (p=0.020), and adverse cytogenetics (p=0.041) were associated with poorer DFS. In a pairwise comparison of outcomes between RD-SCT and AUTO-SCT for patients in CR1, the inferiority of AUTO-SCT was observed, particularly in high-risk patients. Conversely, in standard-risk patients, AUTO-SCT yielded comparable outcomes to RD-SCT. Summary/Conclusions: Our long-term data suggest that outcomes are similar for transplantation using SD, WM-URD, or PM-URD sources, and these may be considered the best donor sources for adults with Ph-negative ALL, especially for those with high-risk features. Disclosures: No relevant conflicts of interest to declare.


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