A whole-mount immunohistochemistry protocol for detection of mouse corneal nerves

A cornea is innervated by sensory nerves, which branch into thick trunks, subbasal plexuses, and sensory endings. Appropriate assessment of nerve structure in a tissue provides a more complete understanding of the role of nerves in health and disease. Here, we present a whole-mount immunohistochemis...

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Veröffentlicht in:STAR protocols 2021-09, Vol.2 (3), p.100734-100734, Article 100734
Hauptverfasser: Yun, Hongmin, Lathrop, Kira L., St. Leger, Anthony J.
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Sprache:eng
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Zusammenfassung:A cornea is innervated by sensory nerves, which branch into thick trunks, subbasal plexuses, and sensory endings. Appropriate assessment of nerve structure in a tissue provides a more complete understanding of the role of nerves in health and disease. Here, we present a whole-mount immunohistochemistry protocol that facilitates evaluation of nerve architecture throughout the mouse cornea. The fixation step in this protocol allows for reliable detection of nerve structures within the cornea and likely other tissues. For complete details on the use and execution of this protocol, please refer to Yun et al, (2020). [Display omitted] •This protocol will assist in maintaining appropriate morphology of corneal nerves•Neurons are sensitive to fixation methods and durations•1.3% PFA is the ideal fixative for fluorescent imaging of corneal nerves•This protocol can be used to guide fluorescent imaging at other tissues A cornea is innervated by sensory nerves, which branch into thick trunks, subbasal plexuses, and sensory endings. Appropriate assessment of nerve structure in a tissue provides a more complete understanding of the role of nerves in health and disease. Here, we present a whole-mount immunohistochemistry protocol that facilitates evaluation of nerve architecture throughout the mouse cornea. The fixation step in this protocol allows for reliable detection of nerve structures within the cornea and likely other tissues.
ISSN:2666-1667
2666-1667
DOI:10.1016/j.xpro.2021.100734