Peripheral Gene Therapeutic Rescue of an Olfactory Ciliopathy Restores Sensory Input, Axonal Pathfinding, and

Warren W Green1,2, Cedric R Uytingco1,2, Kirill Ukhanov1,2

  • 1Department of Pharmacology and Therapeutics, University of Florida, College of Medicine, Gainesville, Florida 32610.

Insights

Gene therapy can restore the sense of smell in mice with ciliopathy-induced anosmia by repairing olfactory sensory neuron cilia. This approach rescues odor detection, olfactory bulb circuitry, and odor-guided behaviors, offering hope for treating olfactory dysfunction.

Area of Science:

  • Neuroscience
  • Genetics
  • Molecular Biology

Background:

  • Cilia on olfactory sensory neurons (OSNs) are crucial for odor detection; their loss causes anosmia, a symptom of ciliopathies lacking effective treatments.
  • Ciliopathies disrupt cilia function across various tissues, leading to sensory deficits, including olfactory dysfunction.

Purpose of the Study:

  • To investigate the mechanisms of olfactory dysfunction in a mouse model of ciliopathy (Ift88 osnKO mice).
  • To evaluate the potential of gene replacement therapy to restore olfactory function and behavior.

Main Methods:

  • Utilized OSN-specific Ift88 knock-out mice (Ift88 osnKO) of both sexes.
  • Administered intranasal gene delivery of wild-type IFT88 to rescue OSN ciliation.
  • Assessed odor detection, olfactory bulb synaptic activity, OSN axon targeting, and odor-guided behaviors.

Main Results:

  • Loss of OSN cilia in Ift88 osnKO mice led to reduced odor detection, impaired olfactory bulb activity, and aberrant odor-guided behavior.
  • Intranasal gene delivery of IFT88 successfully restored OSN ciliation and peripheral olfactory function.
  • Restored sensory input in OSNs was sufficient to normalize axonal targeting in the olfactory bulb (juvenile and adult mice) and re-establish odor-guided behaviors.

Conclusions:

  • The olfactory epithelium exhibits spare capacity, and the central olfactory system demonstrates plasticity, allowing for functional recovery.
  • Gene therapy via intranasal delivery shows promise for treating ciliopathy-related anosmia by restoring both peripheral and central olfactory functions.
  • Findings support the potential translation of gene therapy for olfactory dysfunction in ciliopathy patients.

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