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R M Pettis

Publications and source records attributed to R M Pettis.

3 recordsLinked to original sources

Safety of adeno-associated virus as cochlear gene transfer vector: analysis of distant spread beyond injected cochleae.

The adeno-associated virus (AAV), inoculated into the perilymph, has been shown to be an effective vector for mediating intracochlear transgene expression. The unexpected finding of transgene expression in the contralateral cochlea in previous work raised concern about dissemination of the virus from the target tissue. The current study was undertaken to assess the extent of AAV dissemination following its introduction into the inner ear. Adult male guinea pigs were injected with recombinant AAV into their left ears and sacrificed at 2 or 4 weeks. Various organs including the cochleae were harvested to characterize the presence and expression of the viral DNA. Virus DNA was detected via polymerase chain reaction in the infused and contralateral cochlea and in the cerebellum but not in any other organs, including cortex, heart, lung, liver, spleen, and kidney. Although the viral presence was established in the cerebellum, transgene expression in this organ was undetectable with either Western blot or immunohistochemistry. Transgene expression was demonstrated via immunohistochemistry in multinucleated giant cells in the bone marrow spaces adjacent to the infused and contralateral cochleae. Collectively, these results suggest potential routes for AAV dissemination from the infused cochlea via the cochlear aqueduct or by extension through the temporal bone marrow spaces. This study reinforces the need to investigate factors that mitigate viral leakage.

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Cochlear microinjection and its effects upon auditory function in the guinea pig.

Microinjection through the round window membrane has been found to represent a method for vector delivery in intracochlear gene transfer in animal models but breaches the round window membrane, making it necessary to evaluate animals for possible postinjection hearing loss. In the present study healthy guinea pigs were evaluated for their baseline click auditory brainstem response (ABR) thresholds. Each animal was then injected with saline via the round window membrane. After 1 week auditory function was evaluated by click ABR. Animals with increased ABR thresholds were retested at 4 weeks. Animals with 1-week postoperative ABRs similar to baseline were not retested. Results showed that postoperative ABR thresholds in five animals (71%) remained unchanged from baseline, while two animals had increases of 20-25 dB in ABRs after 1 week but recovered baseline ABRs after 4 weeks. The mean baseline ABR threshold was 25.7 dB and was 27.9 dB after 1 week after injection. The difference between preoperative and 1-week postoperative averages was not significant (P = 0.707). In this preliminary study saline microinjection through the round window membrane did not cause permanent hearing loss in the guinea pigs tested, and any damage caused by microinjection appeared to be reversible.

Animals↗

Muscarinic acetylcholine receptor subtype mRNAs in the human and rat vestibular periphery.

The expression of the five muscarinic acetylcholine receptor (mAChR) subtypes (m1-m5) in the vestibular end-organs and in the primary afferent vestibular ganglia of the human and rat was studied using RT-PCR from the two tissue populations from both species. In the human, although all five mAChR subtypes were expressed in brain, only the m1, m2, and m5 mAChR subtypes were amplified from both the vestibular ganglia and the vestibular end-organs, while in the rat, all five mAChR subtypes were expressed. These data suggest that the efferent cholinergic axo-dendritic and axo-somatic synapses have a muscarinic component and that there are pharmacologic implications for patients with vestibular dysfunction.

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