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Clinical Examination Protocol to Detect Atypical and Classical Scrapie in Sheep
Published on: January 19, 2014
Characterization of mesenchymal stem cells in sheep naturally infected with scrapie
Diego R Mediano1, David Sanz-Rubio1, Rosa Bolea2
1Laboratorio de Genética Bioquímica, Instituto de Investigación Agroalimentaria (IA2), IIS Aragón, Universidad de Zaragoza, Zaragoza, Spain.
Abstract:
Mesenchymal stem cells (MSCs) can be infected with prions and have been proposed as in vitro cell-based models for prion replication. In addition, autologous MSCs are of interest for cell therapy in neurodegenerative diseases. To the best of our knowledge, the effect of prion diseases on the characteristics of these cells has never been investigated. Here, we analysed the properties of MSCs obtained from bone marrow (BM-MSCs) and peripheral blood (PB-MSCs) of sheep naturally infected with scrapie — a large mammal model for the study of prion diseases. After three passages of expansion, MSCs derived from scrapie animals displayed similar adipogenic, chondrogenic and osteogenic differentiation ability as cells from healthy controls, although a subtle decrease in the proliferation potential was observed. Exceptionally, mesenchymal markers such as CD29 were significantly upregulated at the transcript level compared with controls. Scrapie MSCs were able to transdifferentiate into neuron-like cells, but displayed lower levels of neurogenic markers at basal conditions, which could limit this potential .The expression levels of cellular prion protein (PrPC) were highly variable between cultures, and no significant differences were observed between control and scrapie-derived MSCs. However, during neurogenic differentiation the expression of PrPC was upregulated in MSCs. This characteristic could be useful for developing in vitro models for prion replication. Despite the infectivity reported for MSCs obtained from scrapie-infected mice and Creutzfeldt–Jakob disease patients, protein misfolding cyclic amplification did not detect PrPSc in BM- or PB-MSCs from scrapie-infected sheep, which limits their use for in vivo diagnosis for scrapie.
Insights
Mesenchymal stem cells (MSCs) from scrapie-infected sheep maintain differentiation potential but show altered neurogenic markers. Prion protein (PrPC) upregulation during neurogenesis offers potential for in vitro prion replication models.
Area of Science:
- Veterinary Neurology
- Cell Biology
- Neuroscience
Background:
- Mesenchymal stem cells (MSCs) are explored for prion disease research and neurodegenerative disease cell therapy.
- The impact of prion diseases on MSC characteristics remains largely uninvestigated.
Purpose of the Study:
- To analyze the properties of bone marrow (BM-MSCs) and peripheral blood (PB-MSCs) derived from scrapie-infected sheep.
- To assess the potential of these MSCs for in vitro prion replication models and cell therapy.
Main Methods:
- Isolation and expansion of MSCs from scrapie-infected and healthy sheep.
- Assessment of differentiation potential (adipogenic, chondrogenic, osteogenic) and proliferation.
- Analysis of mesenchymal and neurogenic marker expression, including cellular prion protein (PrPC).
- Detection of PrPSc using protein misfolding cyclic amplification (PMCA).
Main Results:
- Scrapie-derived MSCs exhibited similar differentiation capabilities but a reduced proliferation potential compared to controls.
- Mesenchymal marker CD29 was upregulated in scrapie MSCs at the transcript level.
- Scrapie MSCs showed potential for neuron-like cell differentiation, with upregulated PrPC during neurogenesis, but lower basal neurogenic markers.
- No detectable PrPSc was found in scrapie-derived MSCs via PMCA.
Conclusions:
- MSCs from scrapie-infected sheep retain key characteristics but have potential limitations for neurogenic differentiation.
- Upregulation of PrPC during neurogenesis in scrapie MSCs suggests utility for in vitro prion replication models.
- The absence of detectable PrPSc in these MSCs limits their application in in vivo scrapie diagnosis.

