PurposeTo report a case of unilateral leukemic retinopathy secondary to chronic myeloid leukemia (CML).ObservationsPatient presented to clinic with a visual acuity (VA) of 20/200 in the right eye (OD) after several months of progressive monocular vision loss and was found to have dense pre-retinal hemorrhage. Patient underwent 23-gauge pars plana vitrectomy to clear the preretinal hemorrhage along with a complex macula-off retinal detachment repair to address retinal tear and multilayer retinal hemorrhage. The patient was subsequently diagnosed with CML as she was found to be positive for the fusion protein of break point cluster gene (BCR) with Abelson tyrosine kinase (ABL1), BCR-ABL1, upon systemic work-up. Imatinib therapy resulted in complete hematologic and cytogenetic resolution after one month, however, the patient's vision remained unchanged six months after surgery.Conclusion and importanceTo the authors' knowledge, this is the first reported case of unilateral leukemic retinopathy secondary to low risk CML, as determined by the Sokal and Hasford prognostic scoring systems. CML should be included in the differential diagnosis of patients with progressive monocular vision loss with suspicious multi-layer retinal compromise.
Hematopoietic progenitor cell (HPC) mobilization with granulocyte-colony stimulating factor (G-CSF) and plerixafor results in superior CD34+ cell yield, when compared to mobilization with G-CSF alone in patients with myeloma and lymphoma. However, plerixafor-based approaches are associated with high costs. To circumvent this, several institutions use a so-called “just-in-time” plerixafor (JIT-P) approach, where plerixafor is only administered to patients likely to fail mobilization with G-CSF alone. Whether such a JIT-P approach is cost effective has not been confirmed to date. We present here, results of 136 patients with myeloma or lymphoma who underwent mobilization with two different approaches of plerixafor utilization. Between Jan 2010-Oct 2012 (n=76) patients uniformly received mobilization with G-CSF and plerixafor (routine G+P cohort). To reduce mobilization costs, between Nov 2012-Jun 2014 (n=60) patients were mobilized with JIT-P where plerixafor was only administered to patients likely to fail mobilization with G-CSF alone. Patients in routine G+P group had a higher median peak peripheral blood CD34+ cell count (62 vs. 29 cells/μL, p<0.001) and a higher median day 1 CD34+ cell yield (2.9 × 106 CD34+ cells/kg vs. 2.1 × 106 CD34+ cells/kg, p=0.001). The median total CD34+ cell collection was also higher in routine G+P group (5.8 × 106 CD34+ cells/kg vs. 4.5 × 106 CD34+ cells/kg, p=0.007). In the JIT-P group 40% (n=24) completed adequate HPC collection without plerixafor. There was no difference in mobilization failure rates. The mean number of plerixafor doses utilized in JIT-P was lower (1.3 vs. 2.1, p=0.0002). The mean estimated cost in the routine G+P group was higher than that in the JIT-P group (USD 27,513 vs. USD 23,597, p=0.01). Our analysis demonstrates that mobilization with a JIT-P approach is a safe, effective and cost efficient strategy for HPC collection.
Varicella-zoster virus (VZV) reactivation is a relatively common cause of morbidity following autologous hematopoietic cell transplant (auto-HCT). The Centers for Disease Control in 2009 recommended extending VZV prophylaxis for 1 year post-transplantation. We retrospectively analyzed rates of VZV reactivation following auto-HCT at our transplant center prior to and after the implementation of extended antiviral prophylaxis in June 2008. The study population was divided into three different cohorts according to the length of VZV prophylaxis as following: (1) prophylaxis until neutrophil recovery to ≥500/μL (n = 77), (2) prophylaxis for 6 months (n = 12), or (3) 12 months (n = 40) post-auto-HCT. All patients received acyclovir 400 mg oral or intravenously twice daily or valacyclovir 500 mg oral daily. For patients in whom VZV reactivation occurred, data was collected on severity of infection, time of onset, treatment, and any associated complications. One hundred twenty-nine patients undergoing auto-HCT between January 1, 2004 and January 31, 2010 were included in the study. There was a significant difference in the rates of VZV reactivation between the neutrophil recovery and 12 months prophylaxis cohorts at 14 % (n = 11) and 2 % (n = 1) (P = 0.04), respectively. VZV reactivation rate in the 6-month prophylaxis group was 17 % (n = 2), but did not reach statistical significance due to small numbers. In the subset of auto-HCT patients treated with bortezomib, 13 % (n = 2) developed VZV reactivation in the neutrophil recovery group, while no events occurred in the other two cohorts. Complications of VZV reactivation include post-herpetic neuralgia (n = 5), severe pain (n = 3), scarring (n = 1), and motor weakness (n = 1); two patients required hospitalization and three patients developed disseminated zoster. Our limited retrospective analysis suggests a significant reduction in rates of post-auto-HCT rates of VZV reactivation with extended 12 months antiviral prophylaxis. VZV reactivation is a significant complication post-auto-HCT, and extended prophylaxis appears to be safe and effective in this setting.
The outcome of persons > 65 years with acute myeloid leukemia (AML) is poor. A transplant from an HLA-identical sibling or an HLA-matched unrelated donor can cure some of these patients but is associated with a substantial transplant-related mortality and a high relapse risk. We analyzed 185 subjects > 65 years with high-risk AML receiving conventional (n = 42) or reduced-intensity (n = 143) pretransplant conditioning and a transplant from an HLA-identical sibling (n = 66) or a 10/10 loci HLA-matched unrelated donor (n = 119). Two-year survival was 37%. Subjects with serious adverse events during before chemotherapy for their leukemia had a poor outcome after stem cell transplantation. Patients who had active leukemia or measurable residual disease (MRD) before transplantation had a worse outcome. Delayed hematologic recovery after induction or consolidation chemotherapy, high-risk AML genetics, donorÀrecipient HLA-DRb3/4/5-DP mismatches, and history of cardiovascular disease were also correlated with survival in multivariate analyses. The 57 MRD-negative patients with few other adverse prognostic factors had an excellent outcome (2-year overall survival, 76%), whereas the 58 patients with detectable leukemia and more than 1 other additional factor fared poorly (2-year overall survival, 8%). These data indicate it is possible to identify persons > 65 years with high-risk AML likely to benefit from an allotransplant. Validation of this prediction is needed.
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