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Peter Hillmen

Publications and source records attributed to Peter Hillmen.

At least 19 recordsLinked to original sources

Minimal residual disease in chronic lymphocytic leukaemia: is it ready for primetime?

New therapeutic modalities have substantially improved response rates and outcomes in chronic lymphocytic leukaemia (CLL), yet the mindset remains that palliation is the only goal of therapy because the disease is considered incurable. Ultimately, all patients relapse despite achieving an initial response, as minimal residual disease (MRD) persisting after therapy eventually evolves into morphological and clinical recurrence. The emergence of immune-based combination therapies capable of inducing molecular remissions, the availability of highly sensitive assays that detect MRD, and emerging data showing a longer duration of response or longer survival in patients with no detectable disease, suggest that eradicating MRD may be a reasonable option for some patients. Moreover, novel biological prognostic markers have divided CLL into favourable and unfavourable subtypes, arguing in favour of defining different goals of therapy for different patients. Clinicians are increasingly challenged with the task of how best to incorporate MRD assessment into clinical practice, especially in an era when these novel prognostic factors exist. This review summarises the current understanding of MRD from a clinical standpoint, suggests that MRD eradication maybe a reasonable option for some patients, and argues in favour of designing large randomised studies to determine whether MRD-negative remission improves outcome.

Antineoplastic Combined Chemotherapy Protocols↗

CD52 expression patterns in myeloma and the applicability of alemtuzumab therapy.

Alemtuzumab has been proposed as a therapeutic agent in myeloma. CD52 was detected on plasma cells in 46/106 patients but levels were 30-fold lower than on alemtuzumab-responsive cells (n=138) and 8-fold lower than on alemtuzumab-resistant cells (n=57). The data suggest that myeloma plasma cells are unlikely to be depleted by alemtuzumab in most patients.

Alemtuzumab↗

The complement inhibitor eculizumab in paroxysmal nocturnal hemoglobinuria.

BACKGROUND: We tested the safety and efficacy of eculizumab, a humanized monoclonal antibody against terminal complement protein C5 that inhibits terminal complement activation, in patients with paroxysmal nocturnal hemoglobinuria (PNH). METHODS: We conducted a double-blind, randomized, placebo-controlled, multicenter, phase 3 trial. Patients received either placebo or eculizumab intravenously; eculizumab was given at a dose of 600 mg weekly for 4 weeks, followed 1 week later by a 900-mg dose and then 900 mg every other week through week 26. The two primary end points were the stabilization of hemoglobin levels and the number of units of packed red cells transfused. Biochemical indicators of intravascular hemolysis and the patients' quality of life were also assessed. RESULTS: Eighty-seven patients underwent randomization. Stabilization of hemoglobin levels in the absence of transfusions was achieved in 49% (21 of 43) of the patients assigned to eculizumab and none (0 of 44) of those assigned to placebo (P<0.001). During the study, a median of 0 units of packed red cells was administered in the eculizumab group, as compared with 10 units in the placebo group (P<0.001). Eculizumab reduced intravascular hemolysis, as shown by the 85.8% lower median area under the curve for lactate dehydrogenase plotted against time (in days) in the eculizumab group, as compared with the placebo group (58,587 vs. 411,822 U per liter; P<0.001). Clinically significant improvements were also found in the quality of life, as measured by scores on the Functional Assessment of Chronic Illness Therapy-Fatigue instrument (P<0.001) and the European Organization for Research and Treatment of Cancer Quality of Life Questionnaire. Of the 87 patients, 4 in the eculizumab group and 9 in the placebo group had serious adverse events, none of which were considered to be treatment-related; all these patients recovered without sequelae. CONCLUSIONS: Eculizumab is an effective therapy for PNH.

Adolescent↗

Hypomorphic promoter mutation in PIGM causes inherited glycosylphosphatidylinositol deficiency.

Attachment to the plasma membrane by linkage to a glycosylphosphatidylinositol (GPI) anchor is a mode of protein expression highly conserved from protozoa to mammals. As a clinical entity, deficiency of GPI has been recognized as paroxysmal nocturnal hemoglobinuria, an acquired clonal disorder associated with somatic mutations of the X-linked PIGA gene in hematopoietic cells. We have identified a novel disease characterized by a propensity to venous thrombosis and seizures in which deficiency of GPI is inherited in an autosomal recessive manner. In two unrelated kindreds, a point mutation (c --> g) at position -270 from the start codon of PIGM, a mannosyltransferase-encoding gene, disrupts binding of the transcription factor Sp1 to its cognate promoter motif. This mutation substantially reduces transcription of PIGM and blocks mannosylation of GPI, leading to partial but severe deficiency of GPI. These findings indicate that biosynthesis of GPI is essential to maintain homeostasis of blood coagulation and neurological function.

Amino Acid Sequence↗

Beyond detectable minimal residual disease in chronic lymphocytic leukemia.

Lymphoproliferative disorders are characterized by the abnormal accumulation of aberrant lymphocytes, which frequently interfere with the processes associated with immunologic response and hematopoiesis. Chronic lymphocytic leukemia (CLL) has traditionally been considered indolent, with a prolonged clinical course. However, a large proportion of patients with CLL have severe symptoms, a poor prognosis, and often require more immediate treatment of their leukemia. Over the last 5 years, technology has transformed the approach to treating patients with CLL. Molecular markers are now available that characterize patients with poor-risk disease who may benefit from earlier or more aggressive therapeutic intervention. Biological markers have also been identified that assist in predicting responses to specific agents and may help select an effective therapeutic approach. The advent of more targeted monoclonal antibody therapies, used in combination with chemotherapy regimens or as monotherapy, has the potential to eradicate disease to a point of undetectability by the most sensitive tests available, thereby possibly extending the goal of therapy to include a cure. Because recent data have shown that achieving minimal residual disease (MRD) in the bone marrow is one of the most important factors in predicting duration of remission, MRD may be an appropriate therapeutic end point for patients with poor-risk CLL. The use of rituximab with the cytotoxic agents cyclophosphamide and fludarabine has achieved complete remission with no detectable CLL, as assessed by MRD techniques in a significant proportion of previously untreated and previously treated CLL patients. Monotherapy with alemtuzumab has also been shown to achieve a complete response with undetectable MRD in patients with relapsed/refractory disease. This article reviews recent advances in identifying patients who have poor-risk disease and explores the potential importance of MRD status as an outcome measure of CLL therapy.

Alemtuzumab↗

MRD in CLL.

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Flow Cytometry↗

Protection of erythrocytes from human complement-mediated lysis by membrane-targeted recombinant soluble CD59: a new approach to PNH therapy.

Paroxysmal nocturnal hemoglobinuria (PNH) results from the expansion of a hematopoietic clone that is deficient in glycosylphosphatidylinositol-anchored molecules. PNH is characterized by chronic hemolysis with acute exacerbations due to the uncontrolled activity of complement on PNH cells, which lack the inhibitor of homologous complement, CD59. Symptoms include severe fatigue, hemoglobinuria, esophageal spasm, erectile dysfunction, and thrombosis. We report the use of a novel synthetically modified recombinant human CD59, rhCD59-P, a soluble protein that attaches to cell membranes. In vitro treatment of PNH erythrocytes with rhCD59-P resulted in levels of CD59 equivalent to normal erythrocytes and effectively protected erythrocytes from complement-mediated hemolysis. The administration of rhCD59-P to CD1 mice resulted in levels of CD59 on erythrocytes, which protected them from complement-mediated lysis. Thus, rhCD59-P corrects the CD59 deficiency in vitro and can bind to erythrocytes in an in vivo murine model, protecting the cells from the activity of human complement, and represents a potential therapeutic strategy in PNH.

Animals↗

Perspectives on the use of new diagnostic tools in the treatment of chronic lymphocytic leukemia.

Recently, considerable progress has been made in the identification of molecular and cellular markers that may predict the tendency for disease progression in patients with chronic lymphocytic leukemia (CLL) or detect minimal residual disease after therapy. These developments have created uncertainty for clinicians who hope to incorporate the use of these markers and new disease-assessment tools into standard clinical practice. However, clinical trials are required to determine whether poor-prognosis leukemia-cell markers, such as expression of unmutated immunoglobulin genes or the zeta-associated protein of 70 kDa (ZAP-70), can be used as the basis for determining the time or type of therapy. Pending the outcome of such trials, treatment decisions outside the context of a clinical trial still should be based on guidelines established by the most recent National Cancer Institute-sponsored Working Group.

Biomarkers, Tumor↗

Sustained response and long-term safety of eculizumab in paroxysmal nocturnal hemoglobinuria.

Paroxysmal nocturnal hemoglobinuria (PNH) is a hematologic disorder characterized by clonal expansion of red blood cells (RBCs) lacking the ability to inhibit complement-mediated hemolysis. Eculizumab, a humanized monoclonal antibody that binds the C5 complement protein, blocks serum hemolytic activity. This study evaluated the long-term safety and efficacy of eculizumab in 11 patients with PNH during an open-label extension trial. After completion of an initial 12-week study, all patients chose to participate in the 52-week extension study. Eculizumab, administered at 900 mg every 12 to 14 days, was sufficient to completely and consistently block complement activity in all patients. A dramatic reduction in hemolysis was maintained throughout the study, with a decrease in lactate dehydrogenase (LDH) levels from 3110.7 IU/L before treatment to 622.4 IU/L (P = .002). The proportion of PNH type III RBCs increased from 36.7% at baseline to 58.4% (P = .005). The paroxysm rate of days with gross evidence of hemoglobinuria per patient each month decreased from 3.0 during screening to 0.2 (P < .001) during treatment. The median transfusion rate decreased from 1.8 U per patient each month before eculizumab treatment to 0.3 U per patient each month (P = .001) during treatment. Statistically significant improvements in quality-of-life measures were also maintained during the extension study. Eculizumab continued to be safe and well tolerated, and all patients completed the study. The close relationship between sustained terminal complement inhibition, hemolysis, and symptoms was demonstrated.

Antibodies, Monoclonal↗

The clinical sequelae of intravascular hemolysis and extracellular plasma hemoglobin: a novel mechanism of human disease.

CONTEXT: The efficient sequestration of hemoglobin by the red blood cell membrane and the presence of multiple hemoglobin clearance mechanisms suggest a critical need to prevent the buildup of this molecule in the plasma. A growing list of clinical manifestations attributed to hemoglobin release in a variety of acquired and iatrogenic hemolytic disorders suggests that hemolysis and hemoglobinemia should be considered as a novel mechanism of human disease. EVIDENCE ACQUISITION: Pertinent scientific literature databases and references were searched through October 2004 using terms that encompassed various aspects of hemolysis, hemoglobin preparations, clinical symptoms associated with plasma hemoglobin, nitric oxide in hemolysis, anemia, pulmonary hypertension, paroxysmal nocturnal hemoglobinuria, and sickle-cell disease. EVIDENCE SYNTHESIS: Hemoglobin is released into the plasma from the erythrocyte during intravascular hemolysis in hereditary, acquired, and iatrogenic hemolytic conditions. When the capacity of protective hemoglobin-scavenging mechanisms has been saturated, levels of cell-free hemoglobin increase in the plasma, resulting in the consumption of nitric oxide and clinical sequelae. Nitric oxide plays a major role in vascular homeostasis and has been shown to be a critical regulator of basal and stress-mediated smooth muscle relaxation and vasomotor tone, endothelial adhesion molecule expression, and platelet activation and aggregation. Thus, clinical consequences of excessive cell-free plasma hemoglobin levels during intravascular hemolysis or the administration of hemoglobin preparations include dystonias involving the gastrointestinal, cardiovascular, pulmonary, and urogenital systems, as well as clotting disorders. Many of the clinical sequelae of intravascular hemolysis in a prototypic hemolytic disease, paroxysmal nocturnal hemoglobinuria, are readily explained by hemoglobin-mediated nitric oxide scavenging. CONCLUSION: A growing body of evidence supports the existence of a novel mechanism of human disease, namely, hemolysis-associated smooth muscle dystonia, vasculopathy, and endothelial dysfunction.

Disease↗

Eradication of minimal residual disease in B-cell chronic lymphocytic leukemia after alemtuzumab therapy is associated with prolonged survival.

PURPOSE: To test whether eradication of minimal residual disease (MRD) in B-cell chronic lymphocytic leukemia (CLL) by alemtuzumab is associated with a prolongation of treatment-free and overall survival. PATIENTS AND METHODS: Ninety-one previously treated patients with CLL (74 men and 17 women; median age, 58 years [range, 32 to 75 years]; 44 were refractory to purine analogs) received a median of 9 weeks of alemtuzumab treatment between 1996 and 2003. Regular bone marrow assessments by MRD flow cytometry were performed with the aim of eradicating detectable MRD (< 1 CLL cell in 10(5) normal cells). RESULTS: Responses according to National Cancer Institute-sponsored working group response criteria were complete remission (CR) in 32 patients (36%), partial remission (PR) in 17 patients (19%), and no response (NR) in 42 patients (46%). Twenty-two (50%) of 44 purine analog-refractory patients responded to alemtuzumab. Detectable CLL was eradicated from the blood and marrow in 18 patients (20%). Median survival was significantly longer in MRD-negative patients compared with those achieving an MRD-positive CR, PR, or NR. Patients achieving an MRD-negative CR had a longer treatment-free survival than patients with MRD-positive CRs, PR, or NR: MRD-negative CRs, not reached; MRD-positive CRs, 20 months; PRs, 13 months; NR, 6 months (P < .0001). Overall survival for the 18 patients with MRD-negative remissions was 84% at 60 months. Eight (47%) of the MRD-negative patients converted to MRD positivity at a median of 28 months. CONCLUSION: MRD-negative remission in CLL is achievable with alemtuzumab, leading to an improved overall and treatment-free survival.

Adult↗

Superior quality and duration of responses among patients with mantle-cell lymphoma treated with fludarabine and cyclophosphamide with or without rituximab compared with prior responses to CHOP.

Sixteen patients with relapsed mantle-cell lymphoma (MCL) were treated with the combination of fludarabine and cyclophosphamide (FC) with or without rituximab. All patients had received prior CHOP (cyclophosphamide, vincristine, doxorubicin, prednisone) chemotherapy, with a response rate of 63.5% (25% complete response), and a median duration of response of 10 months (range 1-32 months). Subsequent treatment with FC +/- rituximab produced a response rate of 75% with a higher complete response rate (56% P = 0.07 vs. CHOP), and a median duration of response of 11 months (4-25+ months). This study demonstrates that FC is a highly active regimen in patients relapsing following CHOP chemotherapy.

Adult↗

Diagnostic criteria for monoclonal B-cell lymphocytosis.

Very low levels of circulating monoclonal B-cell subpopulations can now be detected in apparently healthy individuals using flow cytometry. We propose the term 'monoclonal B-cell lymphocytosis' (MBL) to describe this finding. The aim of this document is to provide a working definition of MBL for future clinical, epidemiological and laboratory studies. We propose that the detection of a monoclonal B-cell population by light chain restriction is sufficient to define this condition in individuals not meeting the diagnostic criteria for other B-lymphoproliferative disorders. The majority of individuals with MBL will have cells that are indistinguishable from chronic lymphocytic leukaemia (CLL). However, this blood cell clonal expansion of CD5+ or CD5- B-lymphocytes is age-dependent and immunophenotypic heterogeneity is common. Longitudinal studies are required to determine whether MBL is a precursor state to CLL or other B-lymphoproliferative disease in a situation analogous to a monoclonal gammopathy of undetermined significance and myeloma. Future studies of MBL should be directed towards determining its relationship to clinical disease, particularly in individuals from families with a genetic predisposition to developing CLL.

Adolescent↗

CD52 expression in Waldenstrom's macroglobulinemia: implications for alemtuzumab therapy and response assessment.

The efficacy of monoclonal antibody therapy is determined, at least in part, by the extent to which the target antigen is expressed. This is a complex issue in Waldenstrom's macroglobulinemia (WM) as it is a disorder characterized by plasma cell differentiation and therefore target antigen expression may differ between the B-cell and plasma cell compartments of the disease. In order to assess this in the context of alemtuzumab therapy, the authors used multiparameter flow cytometry to determine CD52 expression in the B-cells and plasma cells of patients with WM. CD52 expression was demonstrable in the B-cells of all cases, with a median of 99% of cells (range, 81%-100%) expressing the antigen compared with the isotype control (n = 47). Antigen density was very similar to that seen in chronic lymphocytic leukemia (median mean fluorescence intensity [MFI], 1249; range, 175-3170). Antigen expression was, however, significantly lower in the plasma cells (median MFI, 235; range, 31-1814) in all but 1 of the cases assessed (n = 21). The clinical significance of this was assessed by examining serial bone marrow samples from patients receiving alemtuzumab as part of an ongoing clinical trial. In 4 of 5 patients, alemtuzumab therapy successfully eradicated clonal B-cells from the bone marrow, but residual plasma cells remained evident in 2 of these patients. The implications of these findings for monoclonal antibody therapy in WM are discussed.

Alemtuzumab↗

Improvement in the symptoms of smooth muscle dystonia during eculizumab therapy in paroxysmal nocturnal hemoglobinuria.

Aberrant smooth muscle dystonia during hemolytic episodes in paroxysmal nocturnal hemoglobinuria (PNH) is implicated in the symptoms of abdominal pain, dysphagia and erectile dysfunction. Here we report two PNH patients treated with the complement inhibitor, eculizumab. Complement inhibition has been sustained for over 2 years and results in resolution of intravascular hemolysis and amelioration of symptoms associated with smooth muscle contractions.

Abdominal Pain↗