Sickle Cell Disease
Conditions
Keywords
Chronic transfusion therapy
Brief summary
This is a single-arm, mechanistic clinical trial to measure predictors of senescence and the in vivo survival of transfused red blood cells (RBCs) in individuals with sickle cell disease (SCD) receiving chronic transfusion therapy (CTT). Chronic transfusion in patients with SCD is a common treatment. The efficacy of RBC transfusion therapy to treat or prevent complications of SCD may be hampered by variable survival of the transfused donor RBC. The overall aim is to see how long RBC survive in SCD patients who are chronically transfused. When a study participant has a regular blood transfusion the researchers will label a small portion of the RBCs that are transfused with biotin. The participant will return at Day 1, weekly for 3 months and monthly for 3 months to measure how long those RBCs survive. An optional sub-study using INTERCEPT RBCs will mirror the main study but will use INTERCEPT RBCs that have biotinylated for 1 RBC unit.
Detailed description
Sickle cell disease (SCD) carries significant morbidity as a result of red blood cell (RBC) sickling and hemolysis. Stroke is one of the most devastating sequelae of SCD. Chronic transfusion therapy (CTT) reduces stroke risk by supplying normal, non-sickle RBC to circulation, thereby reducing the percentage of endogenous sickle RBC in circulation, and maintaining a higher hemoglobin (Hb), thereby suppressing erythropoiesis of new sickle RBC. While the efficacy of CTT in stroke prophylaxis is well-established, nearly 45% of children continue to have silent or overt strokes despite CTT. The failure of CTT to prevent stroke events may be related to inadequate reduction of circulating sickle RBC and erythropoiesis. The amount of circulating sickle-RBC is related to the survival kinetics of both transfused RBC and endogenous sickle RBC. In a large, longitudinal analysis of CTT in SCD, the researchers found wide variation in the survival of donor RBC following transfusion, with faster clearance associated with patient immune features (historical RBC alloimmunization and spleen presence) and with donor RBC glucose-6-phosphate-dehydrogenase (G6PD) deficiency. To better understand the roles of patient and donor factors in the survival and clearance of transfused RBC, the researchers propose a mechanistic, clinical trial during chronic transfusion episodes in patients with SCD, in which a small aliquot of each transfused unit is labeled with biotin conjugated to RBC surface proteins, to safely identify and measure the in vivo survival of donor RBC. Aim 1 will examine the relationships of the recipient's immune system (past alloimmunization, splenic volume, and markers of reticuloendothelial system function) on the post-transfusion survival of biotin-labeled donor RBC. Aim 2 will examine the relationships of donor RBC G6PD levels and donor RBC metabolomics with the in vivo survival and changes in donor RBC senescence markers. Aim 3 will compare the in vivo survival and clearance rate of phenotype-matched RBCs prepared with an investigational pathogen-reduction system (INTERCEPT Blood System) vs. the in vivo survival and clearance rate of conventional, phenotype-matched RBCs (not treated with INTERCEPT). Biotin labeling of donor RBC will be used to measure RBC survival. This is an optional study activity for study participants. Completion of these aims will increase the understanding of mechanisms for the variability in RBC survival during CTT, identifying donor and recipient risk factors for decreased RBC survival. Ultimately this knowledge will inform the management of CTT to improve the prevention of strokes in SCD.
Interventions
On the day of transfusion, a 20 mL aliquot is sterilely withdrawn from each RBC unit, washed and labeled with sulfo-NHS-biotin for 30 minutes, washed to stop the labeling reaction, then resuspended in plasma to a hematocrit of \~60%. The biotin-labeled RBC (BioRBC) is transfused along with the remainder of the RBC unit (unlabeled volume). Standard blood bank and CTT protocols and minor antigen matching for SCD patients are followed. Exact transfusion volume is determined based on pre-transfusion hemoglobin (Hb), sickle cell hemoglobin (HbS), and body weight, per clinical protocol.
Participants taking part in this optional intervention have one transfusion episode with blood using the INTERCEPT Blood System. For this transfusion, a portion of each blood unit is biotin-labeled and one of those units has the INTERCEPT treatment. In addition to the blood drawn for the main study, individuals participating in this optional intervention have additional tubes of peripheral venous blood drawn for evaluating treatment-emergent antibodies specific to INTERCEPT RBCs and acridine surface label monitoring. Tests for treatment-emergent antibodies specific to INTERCEPT RBCs are performed according to procedures developed by Cerus Corporation. This optional study activity examines the survival of transfused RBCs with and without the INTERCEPT treatment.
Sponsors
Study design
Eligibility
Inclusion criteria
* Hemoglobinopathy: * Any sickle cell disease genotype, or * Transfusion-dependent thalassemia (TDT) * Receiving CTT for ≥3 months prior to enrollment * For participants with past BioRBC transfusion exposure, BioRBC antibody screens must have been conducted through at least 6 months post exposure, with negative results
Exclusion criteria
* Anticipated cessation of CTT in the next ≤2 months * Ongoing consumption of biotin or raw egg dietary supplements * Antibody specific of INTERCEPT RBCs at baseline (for subjects consenting to the optional arm) * BioRBC-specific antibodies ever detected in the past, or detected on post-enrollment screening prior to first infusion of Bio-RBC
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Percentage of Biotin Labeled RBCs | Posttransfusion 24-hour recovery (PTR-24), 28-day recovery, and 90-day recovery | Survival of the transfused biotin-labeled RBCs (B-RBCs) at each time point was expressed as a ratio (percentage) compared to the initial 15-minute-post-transfusion B-RBC concentration. From measurements obtained from 24-hours through week 12 post-transfusion, survival was plotted over time, and recovery measurements were extrapolated. |
| Half-life of Biotinylated RBCs | Day 1 (24 hours post-transfusion) up to Week 12 | Survival of transfused biotin labeled RBCs is assessed as the half-life of biotinylated RBCs. Half-life is defined only for BioRBC that remain in circulation for at least one day post transfusion. |
| Mean Potential Lifespan (MPL) of Biotinylated RBCs | Up to Day 70 | The long-term lifespan of transfused biotin labeled RBCs is assessed as the linearly extrapolated as mean potential lifespan (MPL) of biotinylated RBCs. |
Countries
United States
Contacts
Emory University
Participant flow
Recruitment details
Participants were recruited from Children's Healthcare of Atlanta, Grady Health System, and Hughes Spaulding Children's Hospital in Atlanta, Georgia, USA. Participant enrollment began October 29, 2021, and all follow-up assessments were completed by April 30, 2025.
Baseline characteristics
| Characteristic | — |
|---|---|
| Age, Categorical <=18 years | 13 Participants |
| Age, Categorical >=65 years | 0 Participants |
| Age, Categorical Between 18 and 65 years | 9 Participants |
| Ethnicity (NIH/OMB) Hispanic or Latino | 0 Participants |
| Ethnicity (NIH/OMB) Not Hispanic or Latino | 22 Participants |
| Ethnicity (NIH/OMB) Unknown or Not Reported | 0 Participants |
| Race (NIH/OMB) American Indian or Alaska Native | 0 Participants |
| Race (NIH/OMB) Asian | 0 Participants |
| Race (NIH/OMB) Black or African American | 22 Participants |
| Race (NIH/OMB) More than one race | 0 Participants |
| Race (NIH/OMB) Native Hawaiian or Other Pacific Islander | 0 Participants |
| Race (NIH/OMB) Unknown or Not Reported | 0 Participants |
| Race (NIH/OMB) White | 0 Participants |
| Red Blood Cell Alloimmunization | 6 Participants |
| Region of Enrollment United States | 22 Participants |
| Sex: Female, Male Female | 13 Participants |
| Sex: Female, Male Male | 9 Participants |
| Sickle Cell Genotype Hemoglobin S-Beta-Zero-Thalassemia | 1 Participants |
| Sickle Cell Genotype Hemoglobin SS | 21 Participants |
Adverse events
| Event type | EG000 affected / at risk |
|---|---|
| deaths Total, all-cause mortality | 0 / 22 |
| other Total, other adverse events | 5 / 22 |
| serious Total, serious adverse events | 12 / 22 |