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Optimizing Hydroxyurea Therapy in Children With Sickle Cell Anemia In Malaria Endemic Areas: The NOHARM Maximum Tolerated Dose (MTD) Study (NOHARM MTD)

2026년 7월 13일 업데이트: Children's Hospital Medical Center, Cincinnati
NOHARM MTD is an extension of a previous study for children with Sickle Cell Anemia (SCA) who were enrolled in the NOHARM study. All children enrolled in NOHARM received hydroxyurea treatment at a fixed daily dose of 20 mg/kg/day. This dose was selected as a likely safe dose, but does not escalate hydroxyurea to maximum tolerated dose "MTD" as is commonly done in the US. Without this information, we cannot know whether hydroxyurea treatment at the MTD would be feasible (since it requires closer monitoring to avoid hematological toxicities), safe (since adverse events may be greater with MTD, risk of malaria may be altered by MTD, and risk of infections as a result of neutropenia could also be greater with MTD) or beneficial (MTD is associated with higher hemoglobin and fetal hemoglobin concentration).

연구 개요

상세 설명

The purpose of this study is to determine the long-term effects of hydroxyurea treatment on internal organs, the best dosing strategies for children with SCA in Africa, and to identify any genetic factors that affect how a child responds to the study medication. All children in this study will receive the research treatment, hydroxyurea. Hydroxyurea is used to prevent SCA pain episodes and is approved by the European Medicines Agency for adults, adolescents, and children over two-years-old with SCA. During quarterly visits, we will collect information about your child with the study medication, hydroxyurea. This study is being conducted by Dr. Russell Ware at Cincinnati Children's Hospital Medical Center (CCHMC) and his Co-Investigators including Professor Grace Ndeezi and Dr. Phillip Kasirye at the Mulago Hospital Sickle Cell Clinic, and the hydroxyurea medicine is supplied by the manufacturer.

The goal of this clinical trial is to assess the long-term risks and benefits of open-label dose-escalated oral hydroxyurea in a large cohort of Ugandan adolescents with sickle cell anemia (SCA). Additional objectives include investigation of hydroxyurea pharmacokinetics (PK) and pharmacodynamics (PD) in this population, and investigation of the drug's mechanisms of action through advanced genomics and multiomics analysis.

The main questions it aims to answer are:

Aim 1. To determine the safety and efficacy of maximum tolerated dose (MTD) vs. fixed dose (20 mg/kg/day) hydroxyurea treatment in children with SCA in a low-resource, malaria endemic setting. For safety, we will compare adverse events and severe adverse events, including hematologic toxicities. For efficacy, we will assess hemoglobin level, fetal hemoglobin percentage (% HbF), and incidence of vaso-occlusive events such as pain crisis and acute chest syndrome.

Aim 2. To compare the clinical outcomes of MTD vs. fixed dose hydroxyurea treatment in children with SCA in a low-resource, malaria endemic setting. Clinical outcomes assessed will include growth and malaria incidence over a 24-month follow-up period, and differences in renal, splenic, and cerebrovascular function between study entry and 24-month follow-up.

Aim 3. To obtain long-term follow up data to assess laboratory and clinical effects as well as annual visits for organ function (liver, kidneys, spleen, brain) and growth/development.

Aim 4. Quantify the long-term benefits and risks of extended hydroxyurea treatment at MTD. We hypothesize that early and sustained hydroxyurea at MTD can (1) decrease the prevalence of organ damage; (2) improve growth and development; (3) preserve fertility; and (4) maintain a low risk for mutagenic genotoxicity. Protection against organ injury will be assessed in brain (Transcranial Doppler, MRI/MRA, and cerebral oxygenation); heart (echocardiogram); lungs (pulse oximetry, spirometry); kidney (length, glomerular filtration rate, albuminuria, and urine biomarkers); spleen (volume, erythrocyte micronuclei for filtrative function); bones (MRI for avascular necrosis, dual-energy X-ray absorptiometry for bone density); immunological competency (antibody titers to vaccines and malaria exposures); growth and development (standard auxologic measures, Tanner staging, growth hormones); fertility (sex hormones AMH/FSH/LH); and genotoxicity (clonal hematopoiesis, reticulocyte micronuclei).

Aim 5. Define and analyze hydroxyurea pharmacokinetics (PK) and pharmacodynamics (PD) profiles. We hypothesize that PK and PD hydroxyurea profiles will have substantial inter-patient variability. Both the Original Cohort and an untreated Comparator Cohort will undergo formal PK analysis using serial blood samples and a novel point-of-care assay to quantify hydroxyurea levels for calculating PK parameters and optimal dosing. With pharmacometrics analysis, these PK parameters will then be correlated with PD variables, including treatment responses (HbF) and hydroxyurea dose. These PK-PD associations will also be analyzed by age, hydroxyurea dose, and renal function.

Aim 6. Perform genomics analysis for genes influencing hydroxyurea treatment responses and modern multi-omics analysis with proteomics and metabolomics to help elucidate the drug's mechanism of action. We hypothesize that novel genetic variants affect key parameters such as optimal dose and HbF response. In addition to examining known or suspected target genes, we will use a univariate linear mixed model and genome-wide efficient mixed model association to analyze results of unbiased whole exome sequencing and genome-wide array data. We will also perform serial metabolomics and proteomics on samples collected before and during hydroxyurea treatment, to help identify useful biomarkers and signatures of treatment response, and elucidate pathways for hydroxyurea's mechanism of action.

Participants ages 11-16 years old will have information collected for up to 5 years which include:

  • Physical Exam and Medical History
  • Blood
  • Urine Sample
  • Near Infrared Spectroscopy
  • Transcranial Doppler
  • Pharmacokinetics Study
  • Echocardiogram
  • Spirometry
  • Abdominal Ultrasound
  • Brain MRI and MRA
  • Hip and hand/wrist MRI
  • Dual energy X-ray absorptiometry (DEXA)
  • Quality of Life
  • Physical Exam and Medical History
  • Blood Sample
  • Hydroxyurea medication

Children will take the maximum tolerated dose of hydroxyurea. A dose determined by pharmacokinetic-guided hydroxyurea initiation and subsequent optimization.

연구 유형

중재적

등록 (추정된)

250

단계

  • 2 단계
  • 1단계

연락처 및 위치

이 섹션에서는 연구를 수행하는 사람들의 연락처 정보와 이 연구가 수행되는 장소에 대한 정보를 제공합니다.

연구 연락처

연구 장소

      • Kampala, 우간다
        • 모병
        • Mulago Hospital Sickle Cell Clinic
        • 연락하다:
          • Grace Ndeezi, MD, MMED PhD

참여기준

연구원은 적격성 기준이라는 특정 설명에 맞는 사람을 찾습니다. 이러한 기준의 몇 가지 예는 개인의 일반적인 건강 상태 또는 이전 치료입니다.

자격 기준

공부할 수 있는 나이

  • 어린이
  • 성인

건강한 자원 봉사자를 받아들입니다

아니

설명

Adolescents with confirmed SCA who are currently enrolled in the NOHARM MTD Study of hydroxyurea at the Mulago Hospital Sickle Cell Clinic (MHSCC), will be eligible for the NOHARM MTD LT version 2.0 extension study after completing re-consent. An age-matched untreated (hydroxyurea-naïve) group of adolescents will also be enrolled as a Comparator Cohort. This will comprise 75 children from Kampala and surrounding districts, ages 11 - 18 years of age, with confirmed SCA.

공부 계획

이 섹션에서는 연구 설계 방법과 연구가 측정하는 내용을 포함하여 연구 계획에 대한 세부 정보를 제공합니다.

연구는 어떻게 설계됩니까?

디자인 세부사항

  • 주 목적: 치료
  • 할당: 무작위화되지 않음
  • 중재 모델: 단일 그룹 할당
  • 마스킹: 하나의

무기와 개입

참가자 그룹 / 팔
개입 / 치료
실험적: Hydroxyurea: Original NOHARM Cohort
Original Cohort, continue hydroxyurea at optimized dose
Hydroxyurea at optimized dose
실험적: Hydroxyurea: New Comparator Cohort
New, untreated cohort, initiate and optimize hydroxyurea dose
Hydroxyurea at optimized dose

연구는 무엇을 측정합니까?

주요 결과 측정

결과 측정
측정값 설명
기간
Composite measure of organ damage
기간: From enrollment, after 24 months and again after 48 months of study treatment.
The primary study endpoint will be a composite measure of organ damage to the brain (defined as ≥2 silent cerebral infarcts on brain MRI or ≥170 cm/sec flow velocities by TCD) or the kidneys (confirmed micro- or macro-albuminuria), or bones (femoral head AVN, Mitchell Stage B or higher).
From enrollment, after 24 months and again after 48 months of study treatment.

공동 작업자 및 조사자

여기에서 이 연구와 관련된 사람과 조직을 찾을 수 있습니다.

수사관

  • 수석 연구원: Russell E. Ware, MD, PhD, Children's Hospital Medical Center, Cincinnati

간행물 및 유용한 링크

연구에 대한 정보 입력을 담당하는 사람이 자발적으로 이러한 간행물을 제공합니다. 이것은 연구와 관련된 모든 것에 관한 것일 수 있습니다.

일반 간행물

연구 기록 날짜

이 날짜는 ClinicalTrials.gov에 대한 연구 기록 및 요약 결과 제출의 진행 상황을 추적합니다. 연구 기록 및 보고된 결과는 공개 웹사이트에 게시되기 전에 특정 품질 관리 기준을 충족하는지 확인하기 위해 국립 의학 도서관(NLM)에서 검토합니다.

연구 주요 날짜

연구 시작 (실제)

2026년 5월 13일

기본 완료 (추정된)

2030년 11월 30일

연구 완료 (추정된)

2032년 11월 30일

연구 등록 날짜

최초 제출

2026년 7월 13일

QC 기준을 충족하는 최초 제출

2026년 7월 13일

처음 게시됨 (실제)

2026년 7월 16일

연구 기록 업데이트

마지막 업데이트 게시됨 (실제)

2026년 7월 16일

QC 기준을 충족하는 마지막 업데이트 제출

2026년 7월 13일

마지막으로 확인됨

2026년 7월 1일

추가 정보

이 연구와 관련된 용어

기타 연구 ID 번호

  • NOHARM MTD
  • IRB # 2016-8762 (기타 식별자: Cincinnati Children's Hospital Medical Center)

개별 참가자 데이터(IPD) 계획

개별 참가자 데이터(IPD)를 공유할 계획입니까?

예

IPD 계획 설명

NO HARM MTD is a multi-institutional collaboration. It will be necessary to share all study details to determine the results of the study.

IPD 공유 기간

Study start to study end.

IPD 공유 액세스 기준

Only study staff trained on the study will have access to the data following good clinical practices.

IPD 공유 지원 정보 유형

  • 연구_프로토콜
  • 수액
  • ICF
  • ANALYTIC_CODE
  • CSR

약물 및 장치 정보, 연구 문서

미국 FDA 규제 의약품 연구

아니

미국 FDA 규제 기기 제품 연구

아니

미국에서 제조되어 미국에서 수출되는 제품

아니

이 정보는 변경 없이 clinicaltrials.gov 웹사이트에서 직접 가져온 것입니다. 귀하의 연구 세부 정보를 변경, 제거 또는 업데이트하도록 요청하는 경우 register@clinicaltrials.gov. 문의하십시오. 변경 사항이 clinicaltrials.gov에 구현되는 즉시 저희 웹사이트에도 자동으로 업데이트됩니다. .

구독하다