跳至主要内容
临床试验/NCT07177300
NCT07177300招募中4 期

Effectiveness of Nontraditional Hydroxyurea Algorithms: Novel and Clinical Evaluations (ENHANCE)

Children's Hospital Medical Center, Cincinnati1 个研究点 分布在 1 个国家目标入组 50 人开始时间: 2024年12月19日最近更新:
干预措施

试验速览

阶段
4 期
状态
招募中
入组人数
50
试验地点
1
主要终点
Composite Organ Injury

研究概览

简要总结

The main reason for this research study is to learn more about hydroxyurea and the treatment of sickle cell anemia (SCA). Hydroxyurea is a medication that has been studied for many years and has been shown to provide benefits for people with SCA.

In this research study, the investigators hope to learn more about how to improve the dosing and monitoring of hydroxyurea and learn more about the long-term effects of hydroxyurea over time. Hydroxyurea is usually dosed based only on your weight. Our study will use a new way to select a starting dose that is based on how each patient absorbs hydroxyurea.

详细描述

The EHANCE study will address key knowledge gaps about hydroxyurea for young children with SCA in nine innovative ways:

  • Novel functional assessments of brain, heart, kidneys, spleen, and eyes to assess organ protection in young children who receive hydroxyurea at MTD;
  • State-of-the-art assays to assess the benefits of hydroxyurea on growth, development, and reproductive health into puberty including serial measurements of pubertal development and sex hormones;
  • A simplified PK-guided strategy to optimize hydroxyurea initiation and dosing, with a long-term goal of validating pharmacogenomic approaches to expand treatment and achieve sustained HbF induction;
  • A novel single-cell quantitative HbF/F-cell assay, developed utilizing imaging flow cytometry, will determine the distribution of HbF/F-cell across all F-cells, rather than simply estimating the mean value of HbF/F-cell;
  • Collection of genomic DNA samples to allow serial quantitation of clonal hematopoiesis in treated children, to evaluate the possibility for potential emergence of clones with an increased risk of leukemic transformation;
  • Studies on primary erythroblasts freshly isolated from patients and control subjects with single cell multiome analysis to evaluate in vivo cis and trans-acting elements that regulate HbF and how they are affected by hydroxyurea;
  • Evaluation of cellular mechanisms by which hydroxyurea at MTD can regularly achieve >30% HbF with near-pancellular distribution, similar to levels currently touted with 'curative' gene therapy regimens;
  • Exploration of the benefits of early hydroxyurea treatment initiation, in terms of γ-globin de-repression to optimize HbF induction, through unknown cellular mechanisms that may be developmentally regulated.

3. SPECIFIC AIMS Aim 1: Document the long-term benefits and risks of long-term hydroxyurea treatment at MTD.

Aim 2: Perform pharmacokinetic (PK) and pharmacodynamic (PD) assessment of hydroxyurea at MTD.

Aim 3: Investigate the cellular mechanisms by which hydroxyurea leads to induction of protective HbF and how timing of treatment initiation and dose optimization affect the efficacy of this process.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Treatment
盲法
None

入排标准

年龄范围
6 Months 至 —(Child, Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Diagnosis of sickle cell anemia (HbSS) or sickle-β0-thalassemia (HbSβ0)
  • Age 6 months at the time of enrollment
  • Clinical decision by patient, family, and healthcare provider to initiate hydroxyurea therapy

排除标准

  • Current treatment with regularly scheduled blood transfusions
  • Sickle-hemoglobin C disease (HbSC), sickle-β+-thalassemia (HbSβ+)

研究组 & 干预措施

Observational Treatment Group (Single Arm)

Experimental

All children with sickle cell anemia who are started on hydroxyurea for clinical indicators between 6 months and 5 years of age can do so on this observational study with PK-optimized hydroxyurea dosing.

干预措施: PK-optimized oral hydroxyurea at MTD until 15 years of age. (Drug)

结局指标

主要结局

Composite Organ Injury

时间窗: Through study completion, an average of 10 years

Evidence of injury in any of four critical organ systems: brain, kidney, heart, or spleen. Participants will be classified as having met the composite endpoint if they fulfill at least one of the organ-specific criteria listed: cerebral infarction (silent or overt) or steno-occlusive vasculopathy by MRI of brain; urine albumin-to-creatinine ratio (UACR) \> 300 mg/g; extracellular volume fraction (ECV) \> 0.35 on cardiac MRI; or erythrocyte pit count \< 5%

次要结局

  • longitudinal change in fetal hemoglobin percentage (HbF%)(Through study completion, an average of 10 years)
  • Longitudinal change in hemoglobin concentration (g/dL)(Through study completion, an average of 10 years.)
  • Longitudinal change in reticulocyte count (10^9/L)(Through study completion, an average of 10 years.)
  • Longitudinal change in absolute neutrophil count (10^9/L)(Through study completion, an average of 10 years.)
  • Longitudinal change in mean cell volume (fL)(Through study completion, an average of 10 years.)
  • F-cell fraction (%)(Through study completion, an average of 10 years.)
  • Adverse events(Through study completion, an average of 10 years.)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

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