CClinicalTrials.gg
WithdrawnNCT03284658BioTyrosinUpdated Feb 13, 2023

Biomarker for the Early Diagnosis and Monitoring in Tyrosinemia Type 1 (BioTyrosin)

An observational study in Tyrosinosis, Hepatorenal Tyrosinemia and Fumarylacetoacetase Deficiency, sponsored by CENTOGENE GmbH Rostock. Withdrawn at 3 sites in 3 countries. Open to participants aged 2 Months and older. Per ClinicalTrials.gov, last updated 2023-02-13.

Sponsored by CENTOGENE GmbH Rostock · Observational

Why this study was withdrawn
Transition to BioMetabol
Study type
Observational
Model
Cohort
Time perspective
Prospective
Enrollment
0
Ages
2 Months and older
Sex
All
01

Study summary

Development of a new MS-based biomarker for the early and sensitive diagnosis of Tyrosinemia type 1 from blood (plasma)

Read the detailed description

Hereditary Tyrosinemia type 1 (HT-1) is a rare genetic disorder in which the newborn child lacks the ability to break down the amino acid tyrosine. As a result of this deficiency, toxic sub-stances build up in the blood and can cause liver failure, kidney dysfunction and neurological problems. There are two different forms of the disease - acute and chronic. The acute form is most common.

Worldwide, Tyrosinemia type 1 affects about one newborn child in 100,000, although geo-graphical variation is seen.

Tyrosinemia type 1 is hereditary. The disorder is caused by a defect in the gene coding for the enzyme responsible for breaking down tyrosine. For a child to be affected by the disease, both parents have to carry a defective gene. The risk of being born with Tyrosinemia type 1, i.e. receiving both genes from the parents, is thus 25%.

Children with Tyrosinemia type 1 can display symptoms such as failure to gain weight and grow at the expected rate, diarrhea, vomiting, enlarged liver, liver failure, accumulation of fluid in the peritoneal cavity, kidney failure, softening of the bones (rickets) and liver tumors.

The acute form usually appears in the first few months of life. The child has a slow weight gain plus fever, diarrhea, blood in the feces and vomiting. The liver is enlarged and yellowing of the skin and the whites of the eyes (jaundice) with an increased tendency to bleed (particularly nosebleeds) may be evident. The spleen and abdomen can also be enlarged and the legs swollen. Without treatment, liver failure and clotting problems can arise.

Children with the chronic form of Tyrosinemia type 1 develop symptoms gradually. The child can suffer from enlarged liver, distended abdomen (due to enlarged liver and spleen, acites and excessive fluids), changes in skeleton, and liver and kidney failure. Symptoms such as abdominal pain, damage to the peripheral nerves and high blood pressure appear. In addition, symptoms common in acute intermittent porphyria can also occur. If the child is not treated, it will develop liver failure and liver tumors.

The condition is also referred to as hepatorenal Tyrosinemia, and is the most critical variant of Tyrosinemia. The main function of the FAH gene is to regulate the production of the enzyme fumarylacetoacetase that is required to break down or metabolize amino acid tyrosine. The mutations of FAH gene leads to a deficiency of the enzyme fumarylacetoacetase, which then leads to a failure in breaking down tyrosine.

Tyrosinemia type 1 is suspected on the basis of clinical presentation. Diagnostic investigations include analyses of amino acids, succinylacetone and alpha-fetoprotein.

Today, the condition can be treated by diet, medication and liver transplantation. Liver trans-plantation was once the only treatment, but since a new drug was introduced in 1991, survival has increased significantly. Nevertheless, diet and special protein replacements remain an important part of life-long treatment.

New methods, like mass-spectrometry give a good chance to characterize specific metabolic alterations in the blood (plasma) of affected patients that allow diagnosing in the future the dis-ease earlier, with a higher sensitivity and specificity.

Therefore it is the goal of the study to identify and validate a new biochemical marker from the plasma of the affected patients helping to benefit other patients by an early diagnose and thereby with an earlier treatment.

02

Conditions studied

  • Tyrosinosis
  • Hepatorenal Tyrosinemia
  • Fumarylacetoacetase Deficiency
  • Fah Deficiency
  • Metabolic Disorders

Keywords

  • Tyrosinemia Type 1
  • Biomarker
03

Who can participate

Ages eligible
2 Months and older
Sexes eligible
All
Accepts healthy volunteers
No
Sampling method
Probability sample

Study population

Patients with a Tyrosinemia type 1 or high-grade suspi-cion for Tyrosinemia type 1

Inclusion criteria

  • Informed consent will be obtained from the patient or the parents before any study related procedures.
  • Patients of both genders older than 2 months
  • The patient has a diagnosis of Tyrosinemia type 1 or a high-grade suspicion for Tyrosinemia type 1

High-grade suspicion present, if one or more inclusion criteria are valid:

  • Positive family anamnesis for Tyrosinemia type 1
  • Hepatomegaly
  • Splenomegaly
  • Ascites
  • Coagulopathy

Exclusion criteria

Exclusion Criteria:

  • No Informed consent from the patient or the parents before any study related procedures.
  • Patients of both gender younger than 2 months
  • No diagnosis of Tyrosinemia type 1 or no valid criteria for profound suspicion of Tyrosinemia type 1
04

Study design

Observational model
Cohort
Time perspective
Prospective
Enrollment
0 participants (actual)
Patient registry
No
Biospecimen retention
Samples with dna

Groups and cohorts

  • Observation

    Patients with a Tyrosinemia type 1 or high-grade suspi-cion for Tyrosinemia type 1

05

What researchers measure

Primary outcomes

  1. Sequencing of the Tyrosinemia Type 1 disease related gene

    Next-Generation Sequencing (NGS) of the FAH gene will be performed. The mutation will be confirmed by Sanger sequencing.

    Time frame: 4 weeks

Secondary outcomes

  1. The Tyrosinemia type 1 specific biomarker candidates finding

    The quantitative determination of small molecules (molecular weight 150-700 kD, given as ng/μl) within a dried blood spot sample will be validated via liquid chromatography multiple reaction-monitoring mass spectrometry (LC/MRM-MS) and compared with a merged control cohort. The statistically best validated molecule will be considered as a disease specific biomarker.

    Time frame: 24 months

06

Study locations

3 sites
  • Centogene AG
    Rostock, 18055, Germany
  • NIRMAN Navi Mumbai Institute of Research In Mental And Neurological Handicap/Pediatric Geneticist
    Mumbai, 400705, India
  • Lady Ridgeway Hospital for Children
    Colombo 8, 00800c, Sri Lanka
07

References and documents

08

Registry details

Key details

Study ID
NCT03284658
Lead sponsor
CENTOGENE GmbH Rostock
Responsible party
Sponsor
First posted
Sep 15, 2017
Start date
Aug 20, 2018
Primary completion
Feb 28, 2021
Completion
Feb 28, 2021
Last update
Feb 13, 2023

Study contacts

Peter Bauer, Prof.
study chair · Centogene GmbH

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

Not currently enrolling

This study is withdrawn, as verified in Feb 2023. You cannot join it, but the record below documents what was studied.

Follow this study

Get an email when the registry record changes — status, dates, results — or when someone posts here.

Sign in to follow

Discussion

Questions and observations about this study, from anyone following it. Not medical advice, and not a channel to the study team — their contact details are on the registry record.

Sign in to join the discussion. Reading takes no account; posting does. You choose a display name, and a pseudonym is the default.

Nothing here yet. If you are running this trial, taking part in it, or weighing whether to, this is the place to say so.

Start the discussion