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Published on: June 13, 2019
Eye Movements But Not Vision Drive the Development of Palisade Endings
Genova Carrero-Rojas1, Paula M Calvo2, Thomas Lischka3
1Center of Anatomy and Cell Biology, Medical University Vienna, Vienna, Austria.
Insights
Eye immobilization, not visual deprivation, impacts palisade ending development in cats. This suggests early eye movements are crucial for these muscle sensory receptors during a critical postnatal window.
Area of Science:
- Neuroscience
- Developmental Biology
- Ophthalmology
Background:
- Palisade endings are specialized sensory receptors in extraocular muscles.
- Their development is crucial for proprioception and eye movement control.
- The role of visual experience versus eye movements in their development is not fully understood.
Purpose of the Study:
- To investigate whether visual experience or eye movements drive the postnatal development of palisade endings in extraocular muscles.
- To differentiate the effects of visual deprivation from those of eye immobilization.
Main Methods:
- Kittens underwent unilateral or bilateral dark rearing from postnatal day 7.
- Eye movements were blocked using retrobulbar injections of botulinum neurotoxin A (BoNT-A) from birth.
- Muscle tissues were analyzed using triple-fluorescence labeling and confocal microscopy.
Main Results:
- Dark rearing did not affect palisade ending development.
- Eye immobilization with BoNT-A resulted in absent or rudimentary palisade endings in specific rectus muscles.
- Reduced expression of the neuronal developmental protein GAP43 was observed in immobilized muscles.
Conclusions:
- Eye immobilization, not visual deprivation, significantly affects palisade ending development.
- Palisade endings are sensitive to oculomotor perturbations during the first postnatal month.
- This highlights the critical role of eye movements in the maturation of these sensory structures.
Purpose:
To test whether visual experience and/or eye movements drive the postnatal development of palisade endings in extraocular muscles.
Methods:
In three newborn cats, the right eye was covered until 30 days from postnatal (P) day 7 (before opening their eyes), and in three cats both eyes were covered until 45 days, also from P7. To block eye movements, another seven cats received a retrobulbar injection of botulinum neurotoxin A (BoNT-A) into the left orbit at birth and survived for 45 days (three cats) and 95 days (four cats). The distal third of the rectus muscles containing the palisade endings was used for whole-mount preparation and triple-fluorescence labeling with anti-neurofilament along with (1) anti-synaptophysin and phalloidin or (2) anti-growth associated protein 43 (GAP43) and phalloidin. Immunolabeled specimens were analyzed in the confocal laser scanning microscope.
Results:
After unilateral and bilateral dark rearing, palisade endings were qualitatively and quantitatively equal to those from age-matched controls. After BoNT-A induced eye immobilization for 45 or 95 days, palisade endings were absent in the superior rectus and lateral rectus muscles and only present in the inferior rectus and medial rectus muscle. These BoNT-A-treated palisade endings were rudimentary and reduced in number, and the expression of the neuronal developmental protein GAP43 was significantly reduced.
Conclusions:
This study demonstrates that eye immobilization, but not visual deprivation, affects palisade ending development. Palisade endings develop in the first month of life, and the present findings indicate that, during this time window, palisade endings are prone to oculomotor perturbations.
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