Publications by authors named "Janet Kwiatkowski"

Background: Transfusion-dependent β-thalassaemia (TDT) is a severe disease, resulting in lifelong blood transfusions, iron overload, and associated complications. Betibeglogene autotemcel (beti-cel) gene therapy uses autologous haematopoietic stem and progenitor cells (HSPCs) transduced with BB305 lentiviral vector to enable transfusion independence.

Methods: HGB-212 was a non-randomised, multicentre, single-arm, open-label, phase 3 study of beti-cel in patients with TDT conducted at eight centres in France, Germany, Greece, Italy, the UK, and the USA.

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Article Synopsis
  • Exagamglogene autotemcel (exa-cel) is a novel cell therapy using CRISPR-Cas9 gene editing to boost fetal hemoglobin production in patients with transfusion-dependent β-thalassemia.
  • In a phase 3 study, 52 patients aged 12 to 35 underwent treatment with exa-cel after myeloablative conditioning, and 91% achieved transfusion independence for at least 12 months.
  • The therapy showed promising results with high mean total and fetal hemoglobin levels, a favorable safety profile, and no serious adverse events like deaths or cancers reported during the follow-up period.
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Patients with sickle cell disease (SCD) and other anemias who receive blood transfusions are at risk of organ damage due to transfusional iron overload. Deferiprone is an iron chelator with a well-established safety and efficacy profile that is indicated for the treatment of transfusional iron overload. Here, we report safety data from the large-scale, retrospective Ferriprox® Total Care Registry, which involved all patients with SCD taking deferiprone following the 2011 approval of deferiprone in the United States through August 2020.

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  • Pyruvate kinase deficiency is a common cause of chronic congenital non-spherocytic hemolytic anemia, affecting about 1 in 100,000 to 1 in 300,000 people, leading to serious health issues.
  • The International Guidelines for the Diagnosis and Management of Pyruvate Kinase Deficiency were created to provide evidence-based recommendations for treating patients, developed by a global panel of 29 experts across multiple specialties.
  • The guidelines cover five key areas, including diagnosis, management of complications, anemia treatment, advanced therapies, and special populations, with a total of 31 recommendations aimed at improving patient care.
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Previous work has reported the design of a novel thermobrachytherapy (TBT) balloon implant to deliver magnetic nanoparticle (MNP) hyperthermia and high-dose-rate (HDR) brachytherapy after brain tumor resection, thereby their synergistic effect. This paper presents an evaluation of the robustness of the balloon device, compatibility of its heat and radiation delivery components, as well as thermal and radiation dosimetry of the TBT balloon. TBT balloon devices with 1 and 3 cm diameter were evaluated when placed in an external magnetic field with a maximal strength of 8.

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Individuals with transfusion-dependent beta thalassemia require a high burden of care and experience significant morbidity from the underlying disease and its treatment, which negatively impact the quality of life. Allogeneic hematopoietic stem cell transplantation offers the chance for a cure, but donor availability and transplant-related risks, especially in older patients, limit its use. Gene addition utilizing autologous CD34 cells is an alternative, potentially curative, treatment option.

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  • Kids with sickle cell disease often need help to get rid of extra iron from blood transfusions, and there are two treatments called deferiprone and deferoxamine that help with this.
  • A study looked at 142 kids under 18 years old who were being treated with either deferiprone or deferoxamine, showing that both treatments worked similarly in reducing iron levels after 12 months.
  • Deferiprone is a pill that might be easier for kids to take, and it wasn't found to have any new safety problems compared to deferoxamine.
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Thrombocytopenia is a common laboratory abnormality encountered in critically ill neonates. The broad differential for thrombocytopenia, and its association with potentially severe neonatal pathology, often presents a diagnostic dilemma prompting extensive evaluation. Hemolysis due to red cell enzymopathies is a rare cause of neonatal thrombocytopenia that is typically brief and self-limiting.

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Conventional therapy for severe thalassemia includes regular red cell transfusions and iron chelation therapy to prevent and treat complications of iron overload. Iron chelation is very effective when appropriately used, but inadequate iron chelation therapy continues to contribute to preventable morbidity and mortality in transfusion-dependent thalassemia. Factors that contribute to suboptimal iron chelation include poor adherence, variable pharmacokinetics, chelator adverse effects, and difficulties with precise monitoring of response.

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Background: Hemorrhagic stroke in young patients with sickle cell anemia remains poorly characterized.

Methods: The Post-STOP (Stroke Prevention Trial in Sickle Cell Anemia) retrospective study collected follow-up data on STOP and STOP II clinical trial cohorts. From January 2012 to May 2014, a team of analysts abstracted data from medical records of prior participants (all with sickle cell anemia).

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Long-term safety and efficacy data on the iron chelator deferiprone in sickle cell disease (SCD) and other anemias are limited. FIRST-EXT was a 2-year extension study of FIRST (Ferriprox in Patients With Iron Overload in Sickle Cell Disease Trial), a 1-year, randomized noninferiority study of deferiprone vs deferoxamine in these populations. Patients who entered FIRST-EXT continued to receive, or were switched to, deferiprone.

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Thalassaemia is a diverse group of genetic disorders with a worldwide distribution affecting globin chain synthesis. The pathogenesis of thalassaemia lies in the unbalanced globin chain production, leading to ineffective erythropoiesis, increased haemolysis, and deranged iron homoeostasis. The clinical phenotype shows heterogeneity, ranging from close to normal without complications to severe requiring lifelong transfusion support.

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  • Sickle cell disease causes painful vaso-occlusive events, and researchers are exploring gene therapy using LentiGlobin, which involves modifying patients' hematopoietic stem cells to produce a beneficial form of hemoglobin, HbA.
  • A phase 1-2 study was conducted on patients with severe sickle cell disease, focusing on 35 individuals in Group C who experienced frequent vaso-occlusive events, evaluating the treatment's safety and effectiveness after infusion.
  • Results showed that all patients in Group C successfully engaged with LentiGlobin, leading to significant improvements in hemoglobin levels and a complete resolution of severe vaso-occlusive events for those evaluated, showcasing the potential of this gene therapy.
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Background: Betibeglogene autotemcel (beti-cel) gene therapy for transfusion-dependent β-thalassemia contains autologous CD34+ hematopoietic stem cells and progenitor cells transduced with the BB305 lentiviral vector encoding the β-globin (β) gene.

Methods: In this open-label, phase 3 study, we evaluated the efficacy and safety of beti-cel in adult and pediatric patients with transfusion-dependent β-thalassemia and a non-β/β genotype. Patients underwent myeloablation with busulfan (with doses adjusted on the basis of pharmacokinetic analysis) and received beti-cel intravenously.

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Many people with sickle cell disease (SCD) or other anemias require chronic blood transfusions, which often causes iron overload that requires chelation therapy. The iron chelator deferiprone is frequently used in individuals with thalassemia syndromes, but data in patients with SCD are limited. This open-label study assessed the efficacy and safety of deferiprone in patients with SCD or other anemias receiving chronic transfusion therapy.

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Ongoing clinical trials for treatment of beta-globinopathies by gene therapy involve the transfer of the beta-globin gene, which requires integration of three to four copies per genome in most target cells. This high proviral load may increase genome toxicity, potentially limiting the safety of this therapy and relegating its use to total body myeloablation. We hypothesized that introducing an additional hypersensitive site from the locus control region, the complete sequence of the second intron of the beta-globin gene, and the ankyrin insulator may enhance beta-globin expression.

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Diagnosis of pyruvate kinase deficiency (PKD), the most common cause of hereditary non-spherocytic haemolytic anaemia, remains challenging in routine practice and no biomarkers for clinical severity have been characterised. This prospective study enrolled 41 patients with molecularly confirmed PKD from nine North American centres to evaluate the diagnostic sensitivity of pyruvate kinase (PK) enzyme activity and PK:hexokinase (HK) enzyme activity ratio, and evaluate the erythrocyte PK (PK-R) protein level and erythrocyte metabolites as biomarkers for clinical severity. In this population not transfused for ≥90 days before sampling, the diagnostic sensitivity of the PK enzyme assay was 90% [95% confidence interval (CI) 77-97%], whereas the PK:HK ratio sensitivity was 98% (95% CI 87-100%).

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Article Synopsis
  • Pyruvate kinase (PK) deficiency is a rare genetic blood disorder caused by mutations in the PKLR gene; this study analyzed the genetic features of 257 patients.
  • A total of 127 pathogenic variants were identified, with significant findings including the most common mutations being p.R510Q and p.R486W, and 21% of patients having previously unreported variants.
  • Patients with certain mutations exhibited more severe symptoms and complications, including lower hemoglobin levels and higher rates of serious health issues, while pregnancy outcomes were consistent across different genetic backgrounds.
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Background: Red cell transfusions remain a mainstay of therapy for patients with sickle cell disease (SCD), but pose significant clinical challenges. Guidance for specific indications and administration of transfusion, as well as screening, prevention, and management of alloimmunization, delayed hemolytic transfusion reactions (DHTRs), and iron overload may improve outcomes.

Objective: Our objective was to develop evidence-based guidelines to support patients, clinicians, and other healthcare professionals in their decisions about transfusion support for SCD and the management of transfusion-related complications.

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The Stroke Prevention Trial in Sickle Cell Anemia (STOP) and Optimizing Primary Stroke Prevention in Sickle Cell Anemia (STOP 2) trials established routine transcranial Doppler ultrasound (TCD) screening, with indefinite chronic red cell transfusions (CRCT) for children with abnormal TCD as standard of care. Implementation failures and limitations to the STOP protocol may contribute to continued ischemic stroke occurrence. In the "Post-STOP" study, we sought to assess the impact of the STOP protocol on the incidence of ischemic stroke in a multicenter cohort of former STOP and/or STOP 2 trial participants.

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Background: Pyruvate kinase deficiency is caused by mutations in and leads to congenital hemolytic anemia. Mitapivat is an oral, small-molecule allosteric activator of pyruvate kinase in red cells.

Methods: In this uncontrolled, phase 2 study, we evaluated the safety and efficacy of mitapivat in 52 adults with pyruvate kinase deficiency who were not receiving red-cell transfusions.

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