Scientific Basis for a Newborn Screening for Cystinosis and Primary Hyperoxaluria
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 入组人数
- 200,000
- 试验地点
- 2
- 主要终点
- Patients with PH1 and PH3
研究概览
简要总结
In Germany parents of newborns are offered newborn screening (NBS) for 17 congenital diseases as a standard benefit of statutory health insurance. NBS in Germany is voluntary. Cystinosis and hyperoxaluria are very rare diseases. They are inherited autosomal-recessively. Neither disease can be detected by the methods established in routine NBS. However, common genetic mutations are known for both diseases.
The aim of the study is to provide a scientific basis for molecular genetic NBS for cystinosis and primary hyperoxaluria (PH). Specifically, the study will investigate whether the inclusion of these diseases into general NBS should be recommended. By observing the identified infants in comparison to patients symptomatically diagnosed outside of the pilot project, it will be determined whether and to what extent early diagnosis and therapy lead to a more favorable prognosis.
The screening laboratory Hannover, Germany is involved in the project. Hospitals that send their dry blood spot cards for routine NBS to Hannover are offered participation in the project.
Parents who want to participate receive an additional information sheet. A parent and the attending physician sign the information sheet as documentation of informed consent, which allows data transfer and patient referral to a specialist in case of a positive result. Molecular genetic screening in the pilot project is performed from the same dry blood spot card used for routine NBS.
In both diseases, testing is performed for 2 known mutations: In cystinosis for the 2 mutations most common in Germany, and in PH for the most common mutation in infantile hyperoxaluria (PH1) and in Europe (PH3).
Normal findings are not communicated to the parents, which may contact the laboratory to ask for them. Parents of newborns with two mutations in the cystinosis gene are immediately informed about the disease by a physician. Further diagnostics to confirm the disease are organized close to home.
In contrast, parents of newborns with only one mutation in one of the two hyperoxaluria genes are informed. They are asked to send spot urines of the newborn to the hyperoxaluria center. Only if these are abnormal, further evaluation will be performed.
The study started on 15.03.2022. The aim is to screen 200,000 newborns until 2025. If the benefit of early diagnosis and therapy can be shown, an application for inclusion of a NBS for these two diseases in the routine NBS program will be submitted to the German government.
详细描述
Background and aims. Population-based newborn screening (NBS) is an important public health program that has vastly improved the course of several diseases through early detection. The selection of screened disorders generally follows the 10 principles outlined by Wilson and Jungner. In Germany, NBS has been a voluntary National Health Service program since 1969 which currently covers 17 disorders. Current NBS methods, which employ tandem mass-spectrometric analysis of newborn dried blood spots, cannot detect many potentially treatable genetic conditions. At the same time, molecular-based NBS is increasingly feasible because DNA can be extracted from a dried blood spot, next generation sequencing has become economical, and molecular diagnostics have greater reliability and increased validity as genetic databases become more refined and comprehensive. Nephropathic cystinosis and hyperoxaluria (PH) are eligible for molecular-based NBS because effective therapies are available.
In a first pilot project, the scientific basis for NBS for cystinosis could already be established. The aim of this study is to demonstrate the transferability of genetic NBS for Cystinosis to other laboratories and to lay the scientific basis for screening for PH.
Specifically, the study will investigate whether the inclusion of these diseases into general NBS should be recommended. By observing the identified infants in comparison to patients symptomatically diagnosed outside of the pilot project, it will be determined whether and to what extent early diagnosis and therapy lead to a more favorable prognosis.
Cystinosis Nephropathic cystinosis, due to impaired transport of cystine out of lysosomes, occurs with an incidence of 1 in 100-200,000 live births. It is characterized by renal Fanconi syndrome in the first year of life and glomerular dysfunction progression to end-stage kidney disease by approximately 10 years of age. Treatment with oral cysteamine therapy helps preserve glomerular function, but affected individuals eventually require kidney replacement therapy Cysteamine treatment generally begins at the time of diagnosis in the second year of life, but some glomerular and tubular damage has already occurred by then. This situation could be ameliorated by diagnosing patients shortly after birth, employing molecular genetics-based newborn screening. Standard mass spectrometry-based methods for newborn screening cannot detect the increased cystine content of cystinosis leukocytes.
For cystinosis screening, the first tier involved multiplex PCR to detect two of the three most common CTNS mutations in Germany. Heterozygous samples will be submitted to amplicon-based next-generation sequencing for 175 pathogenic CTNS mutations (Labor Limbach, Mainz). A detection rate of 96.5% is predicted using this approach.
研究设计
- 研究类型
- Interventional
- 分配方式
- Na
- 干预模型
- Single Group
- 主要目的
- Screening
- 盲法
- None
入排标准
- 年龄范围
- 32 Hours 至 72 Hours(Child)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Newborns participating at the NGS with parent's consent to participate in this screening project
排除标准
- •Newborns without parent's consent to participate in this screening project.
结局指标
主要结局
Patients with PH1 and PH3
时间窗: 12 months
Newborns identified with heterozygous PH1 c.508G\>A and PH3, C700+5G\>T and further positive evaluation of urine and genetic analysis.
Newborns with confirmed diagnosis of Cystinosis
时间窗: 12 months
Newborns identified with 57-kb CTNS mutation homozygous, compound heterozygous, with c.18\_21delGACT p.T7Ffs\*7 homozygous or compound heterozygous and elevated white blood cell cystine level.
Number of newborns with heterozygous mutations
时间窗: 12 months
Newborns identified with heterozygous CTNS mutations of 57-kb CTNS and heterozygous c.18\_21delGACT p.T7Ffs\*7 mutations
次要结局
- Newborns identified with heterozygous PH1 c.508G>A and PH3, C700+5G>T(12 months)
研究者
Katharina Hohenfellner,MD
Head of Pediatric Nephrology
Cystinose Stiftung
