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Completed

NCT Number: NCT03545568

Sialic Acid Supplementation in N-Acetylneuraminic Acid Synthase (NANS) Deficiency

This study is aimed at assessing the impact of short-term (3 days) exogenous sialic acid supplementation on endogenous biomarkers of sialic acid metabolism in NANS deficient patients.

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Key information

Age range

1 year–60 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Struttura Semplice Dipartimentale di Genetica Clinica, Reggio Emilia, Italy

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About this study

NANS deficiency is a genetic disorder presenting clinically with intellectual development disorder, skeletal dysplasia and dysmorphic features. It has recently been described in 9 patients (4 children and 5 adults). Biallelic mutations in the NANS (N-Acetylneuraminic acid synthase) gene cause a block in the endogenous synthesis of sialic acid and accumulation of the precursor, N-acetyl mannosamine (ManNAc). In a cell culture model, this block results in hyposialylation of glycoproteins and glycolipids. It seems likely that in human, this enzyme deficiency impairs the sialylation of glycolipids and glycoproteins, known to be essential for brain development. Exogenously added sialic acid partially rescued the phenotype of NANS-deficient zebra fish. Currently there is no approved treatment for patients with NANS deficiency. The investigators concluded that exogenous sialic acid supplementation might be useful for NANS patients. Given that sialic acid is found as both, a free sugar and in a bound form in standard nutrition as well as in high quantities in breast milk, it can be considered as a safe nutritional ingredient; this notion is fully supported by animal toxicity studies.

The use of sialic acid in NANS deficiency is in line with oral supplementation of specific sugars for treatment of other glycosylation and sialylation defects such as congenital disorders of glycosylation (CDG) and myopathy with mutation in the gene GNE. This novel monosaccharide therapy represents an opportunity to address fundamental biochemical questions about the relative contribution of endogenous and dietary sources on sialic acid metabolism and its potential role as a future therapy for NANS patients.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

for controls:

  • 4 healthy adults aged 18 to 60 years (inclusion in Switzerland)

Inclusion criteria

for subjects with NANS deficiency:

  • 4 adults aged 18 to 60 years with genetically proven NANS deficiency (inclusion in Italy)
  • 2 children aged 1 to 18 years with genetically proven NANS deficiency (inclusion in Switzerland)

Exclusion criteria

for controls:

  • Medication, Restrictive diet (e.g. lactose free diet), obesity or other co-morbidities (e.g. neurological disease, developmental delay)

No exclusion Criteria for subjects

Treatment and study plan

Neu5Ac supplementation

Other

Sialic acid as N-Acetyl-neuraminic acid dehydrate (Neu5Ac) 150 mg/kg/d (max 12g/d) in three doses orally in subjects with NANS deficiency compared to controls

Primary outcomes

  1. Metabolite concentration

    Time frame: -30 min before ingestion of Neu5Ac at day 2. 120 min, 240 min and 360 min after Neu5Ac ingestion at day 2. 120 min after neu5Ac ingestion at day 3-4. With no Neu5Ac supplementation at day 5

    The primary endpoint is the change of metabolite concentration after N-Acetyl-D neuraminic acid (Neu5Ac) supplementation from day 2 to day 4 and follow-up visit at day 5

Secondary outcomes

  1. Urine and plasma concentrations of N-acetyl mannosamine (ManNAc)

    Time frame: 30 min before ingestion of Neu5Ac at day 2. 120 min, 240 min and 360 min after Neu5Ac ingestion at day 2. 120 min after neu5Ac ingestion at day 3-4. With no Neu5Ac supplementation at day 5

    Change in ManNAc concentration from baseline and after exogenous sialic acid supplementation

  2. Urine and plasma concentrations of free sialic acid

    Time frame: 30 min before ingestion of Neu5Ac at day 2. 120 min, 240 min and 360 min after Neu5Ac ingestion at day 2. 120 min after neu5Ac ingestion at day 3-4. With no Neu5Ac supplementation at day 5

    Change in free sialic acid concentration from baseline and after exogenous sialic acid supplementation

  3. Urine and plasma concentrations of total sialic acid

    Time frame: 30 min before ingestion of Neu5Ac at day 2. 120 min, 240 min and 360 min after Neu5Ac ingestion at day 2. 120 min after neu5Ac ingestion at day 3-4. With no Neu5Ac supplementation at day 5

    Change in total sialic acid concentration from baseline and after exogenous sialic acid supplementation

  4. Urine and plasma concentrations of N-Acetyl-D neuraminic acid (Neu5Ac)

    Time frame: 30 min before ingestion of Neu5Ac at day 2. 120 min, 240 min and 360 min after Neu5Ac ingestion at day 2. 120 min after neu5Ac ingestion at day 3-4. With no Neu5Ac supplementation at day 5

    Change in Neu5Ac concentration from baseline and after exogenous sialic acid supplementation

  5. Urine and plasma metabolomic profile

    Time frame: 30 min before ingestion of Neu5Ac at day 2. 120 min, 240 min and 360 min after Neu5Ac ingestion at day 2. 120 min after neu5Ac ingestion at day 3-4. With no Neu5Ac supplementation at day 5

    Change in metabolomic profile from baseline and after exogenous sialic acid supplementation

  6. Blood pressure in mmHg

    Time frame: -30 min before Neu5Ac ingestion at day 2 to 4. With no Neu5Ac supplementation at day 5

    Measure of blood pressure (mmHg) supplementation

  7. Heart beat per minute (BPM)

    Time frame: -30 min before Neu5Ac ingestion at day 2 to 4. With no Neu5Ac supplementation at day 5

    Measure of heart BPM at baseline and after exogenous sialic acid supplementation

  8. Body weight (kg)

    Time frame: -30 min before Neu5Ac ingestion at day 2 to 4. With no Neu5Ac supplementation at day 5

    Measure of body weight at baseline and after exogenous sialic acid supplementation

  9. Dietary parameters

    Time frame: 1x/day from day 1 to day 5 (end of the study)

    A self-reporting daily dietetic diary will be recorded for each participant.

Sponsors and collaborators

Lead sponsor

University of Lausanne

Other

Collaborators

  • University of Modena and Reggio Emilia

Registry information

Official study title

Sialic Acid Supplementation in NANS Deficiency: An Open-label, Proof of Concept, Two-centers Study

Important dates

Study start
2018
Primary completion
2018
Study completion
2018
First posted
Jun 4, 2018
Registry last updated
Nov 14, 2018

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.