Related Experiment Video
Updated: Jun 30, 2026

Establishment of an Oronasal Fistula Mice Model
Published on: September 8, 2023
Altered olfactory epithelial structure and function in feline models of mucopolysaccharidoses I and VI
Fritz W Lischka1, George Gomez, Karen K Yee
1Monell Chemical Senses Center, Philadelphia, Pennsylvania 19104-3308, USA. lischka@monell.org
Abstract:
The mucopolysaccharidoses (MPS) are a family of lysosomal storage diseases resulting in developmental defects and, in some types, mental retardation and other neurological symptoms. To gain insight into the neurological dysfunction in MPS, we examined the morphology of olfactory epithelia (OE) and physiology of olfactory receptor neurons (ORNs) in cat models of MPS I, a type in which neuronal lesions are prominent, and MPS VI, in which they are essentially absent. Histopathology showed that both groups of MPS-affected cats had significantly thinner OE than controls. Although immature and mature ORNs were present in both MPS I and VI affected OE, the OE of MPS I-affected cats was structurally disorganized. ORN function was assessed with calcium imaging and patch-clamp recording. Few viable ORNs were recovered from MPS VI cats, but these exhibited normal responses to odors and pharmacological stimuli. In contrast, viable ORNs were as prevalent in MPS I as in controls but were significantly less likely to respond to odor stimuli, although other responses were normal. Disrupted OE organization and impaired ORN function in MPS I, but not MPS VI, corresponds to the central nervous system lesions found in MPS I but not MPS VI. These data represent the first neurophysiological correlate of this correspondence and have implications both for understanding the role of glycosaminoglycans in maintenance of the OE and for targeting further research into the basis for and treatment of the neurological consequences of MPS disorders.
Insights
Mucopolysaccharidoses (MPS) cause neurological issues. In MPS I cats, olfactory neuron function is impaired due to disorganized olfactory epithelia, unlike MPS VI cats.
Area of Science:
- Neuroscience
- Genetics
- Cell Biology
Background:
- Mucopolysaccharidoses (MPS) are lysosomal storage diseases impacting development and neurological function.
- Neurological symptoms vary among MPS types, with some exhibiting prominent neuronal lesions.
Purpose of the Study:
- To investigate the neurological dysfunction in MPS by examining olfactory epithelia (OE) and olfactory receptor neurons (ORNs).
- To compare MPS I (prominent neuronal lesions) and MPS VI (absent neuronal lesions) cat models.
Main Methods:
- Histopathological analysis of OE morphology in MPS I, MPS VI, and control cats.
- Functional assessment of ORNs using calcium imaging and patch-clamp recordings.
Main Results:
- MPS-affected cats showed significantly thinner OE compared to controls.
- MPS I cats exhibited structurally disorganized OE with impaired ORN odor response.
- MPS VI cats had less affected OE, with surviving ORNs showing normal responses.
Conclusions:
- Disrupted OE organization and impaired ORN function in MPS I correlate with central nervous system lesions.
- Findings provide the first neurophysiological link between OE changes and CNS pathology in MPS I.
- Results highlight the role of glycosaminoglycans in OE maintenance and inform MPS neurological disorder research.
