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Functional Implications of Rare Gene Mutations in aHUS Open the Door to Personalized Therapy

Functional Implications of Rare Gene Mutations in aHUS Open the Door to Personalized Therapy

Status
Recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05805202
Acronym
aHUS-iPSC-EC
Enrollment
112
Registered
2023-04-07
Start date
2023-05-03
Completion date
2026-12-31
Last updated
2025-09-29

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Atypical Hemolytic Uremic Syndrome

Keywords

Atypical hemolytic uremic syndrome, Induced pluripotent stem cells, Endothelial cells, Alternative complement pathway, Eculizumab, Drug screening (in vitro)

Brief summary

Hemolytic Uremic Syndrome (HUS) is a rare disease characterized by rupture of red blood cells (hemolytic anemia), low platelet count (thrombocytopenia), and thrombotic occlusion of small vessels (thrombotic microangiopathy), with prevalent involvement of the kidneys. SEU, in its typical form is caused by gastrointestinal infection with Escherichia coli. The atypical form of SEU (aSEU), which is not caused by an Escherichia coli infection, is a very rare disease that may have a genetic origin; it affects both children and adults and may occur in a sporadic or familial form. Many studies have shown that about 60% of cases of atypical HUS are associated with genetic abnormalities of the complement system (particularly the so-called alternative pathway), which is a key part of the immune system for responding to infection. Complement consists of a series of proteins that, when activated, create a so-called cascade, which leads to the elimination of the infectious agent, either directly or through other cells. Complement is finely regulated in such a way as to prevent damage to healthy cells in one's own body. Genetic defects in some of these complement regulatory proteins cause reduced protection of the endothelial surface (thus the vessel wall) against complement activation. Recently, new mutations have been described in a gene unrelated to the complement pathway, the DKGE gene, which codes for the intracellular isoform of diacylglycerol kinase . In these patients, small renal vessel occlusion appears to occur as a result of altered endothelial cell proliferation and angiogenesis through mechanisms apparently unrelated to complement activation. However, to date these mechanisms are poorly studied. Throughout the entire project statistical methods will be applied to optimize the characterization of the abnormalities in phenotype and function of iPSC-EC derived from aHUS patients with either DGKE or MCP genetic abnormalities as compared with control iPSC-EC, including identifying potential drugs that could correct the abnormalities

Interventions

OTHERBlood sampling and urine analysis

A blood sample of 10- 20 ml from pediatric patients, 30-50 ml from adult patients will be collected for each patient and healthy voluntarees

Sponsors

Mario Negri Institute for Pharmacological Research
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
SCREENING
Masking
NONE

Eligibility

Sex/Gender
ALL
Healthy volunteers
Yes

Inclusion criteria

* Adults and children with aHUS defined by history of microangiopathic hemolytic anemia and thrombocytopenia (hematocrit (Ht) \<30%, hemoglobin (Hb) \<10 g/dL, LDH \>500 IU/L, undetectable haptoglobin, fragmented erythrocytes in the peripheral blood smear with negative Coomb's test, and platelet count \<150,000/microL), associated with acute renal failure. * Written informed consent

Exclusion criteria

* TTP (ADAMTS13 activity \<10%) * STEC-HUS (presence of stx and eae genes or Shiga-toxin in the stools and/or serum antibodies against Shiga-toxin and/or STEC LPS). * Disseminated intravascular coagulation (prolonged thromboplastin time and lower than normal fibrinogen levels).

Design outcomes

Primary

MeasureTime frame
Generation and characterization of patient-specific and healthy donor iPSConce during the study
Differentiation of iPSC into endothelial cellsonce during the study
Characterizationof iPSC into endothelial cellsonce during the study
Cell culture viabilityonce during the study

Countries

Italy

Contacts

Primary ContactMarina Noris, Dr.
marina.noris@marionegri.it+3903545351

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026