Skip to content

From Skin Fibroblasts to Neural Stem Cells to Investigate in Vitro the Impact of Diabetes on Adult Neurogenesis

From Skin to Brain: Epigenetic Conversion of Skin Fibroblasts Into Neural Stem Cells to Investigate the Impact of Diabetes on Adult Neurogenesis and Neuronal Function

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05755321
Enrollment
40
Registered
2023-03-06
Start date
2020-01-01
Completion date
2023-05-14
Last updated
2023-03-10

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

Conditions

Cognitive Dysfunction, Diabetes Mellitus, Type 2, Diabetes Mellitus Type 2 in Nonobese, Diabetes Mellitus Type 2 in Obese, Metabolism Disorder, Obesity

Brief summary

Obesity and glucose intolerance or overt diabetes are increasing at an alarming rate in the population, and are bound to become a public health issue and a major cause of disability, loss of independence and high social costs in the near future. A large body of evidence has in recent years highlighted, among the negative effects of overnutrition and glucose dysmetabolism, also an acceleration of cognitive decline and of brain senescence, through cellular (vascular, neuronal, or both) and molecular mechanisms still incompletely clarified. Understanding how overweight and impaired glucose homeostasis negatively affect brain function represents both a major scientific challenge and an avenue to early detection and possibly prevention of this invalidating complication. The aim of this project is to obtain neuronal progenitor-like cells from skin fibroblasts in order to correlate patient-specific metabolism to adult neural stem cell (NSC) and neuronal function in vitro.

Detailed description

* Analysis of skin fibroblasts from normal, obese, lean/diabetic and obese/diabetic individuals and in vitro epigenetic conversion, as revealed by morphological changes, loss of mesenchymal markers and expression of pluripotency genes. * To re-differentiate patient-derived pluripotent cells into neural progenitor (NP) and to test their proliferative, self-renewal and multilineage differentiation capacity. * To evaluate neuronal cells derived from patient and control pluripotent cells for a number functional and biochemical parameters (apoptosis/autophagy, mitochondrial potential, reactive oxygen species etc.) relevant to neurodegenerative disorders.

Interventions

OTHERSkin biopsy

Skin biopsy performed during surgery.

Sponsors

Fondazione Policlinico Universitario Agostino Gemelli IRCCS
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Healthy volunteers
Yes

Inclusion criteria

* Patients of both sexes with BMI \< 25 (normal weight) and BMI \> 30 (obese) with or without T2DM with an indication for surgery

Exclusion criteria

* Malignant neoplastic diseases

Design outcomes

Primary

MeasureTime frameDescription
Fibroblasts culture characterizationAbout one month to obtain cell cultures from each biopsy. Approximately one month (not necessarily continuous) for in vitro experiments and analyses. Total: 60 days per sampleTo determine whether cells from dysmetabolic individuals are defective (in term of proliferation, senescence, cell death) when compared with control-derived cells
Efficiency of fibroblast epigenetic conversion (gene expression analysis)The epigenetic conversion protocol requires 25 days, the analysis of gene expression (qRTPCR) approximately 5 days.To determine whether cells from dysmetabolic individuals are different in term of epigenetic conversion efficiency when compared with control-derived cells.
Characterization of neural progenitors cellsAt the end of the epigenetic conversion, the cell cultures are blocked and analysed with biochemistry and molecular biology techniques whose protocols and data analysis require 30 days not necessarily continuousTo determine whether neural progenitor cell (NPCs) obtained from dysmetabolic individuals are defective (analysis of degenerative features) when compared with control-derived cells.

Countries

Italy

Outcome results

None listed

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