Department of Pharmacological and Physiological Science, St. Louis University School of Medicine, 1402 S. Grand Blvd., St. Louis, MO 63104-1028, USA.
Exp Eye Res. 2010 Mar;90(3):388-96. doi: 10.1016/j.exer.2009.11.018. Epub 2009 Dec 11.
The laminar sheet of epithelium (e.g., skin and mucous membrane) enclosing our bodies is represented in the dorsal horns of the medulla and spinal cord. The eyeball however indents this laminar sheet and is shrouded by different layers: the cornea/sclera, the conjunctiva, and hairy skin. This involution of the orb confounds defining the central representation of the cornea and its surrounding mucosa and skin. We used herein the transganglionic transport of a cocktail of HRP conjugated to cholera toxin and wheat germ agglutinin to determine the central representation of these epithelia in the dorsal horns of the rat. The HRP cocktail was injected either into the stroma of the cornea, the mucosa of the conjunctiva, or the supraorbital and infraorbital nerves. Injections of the cornea produced dense label in the interstitial islands in the ventral medullary dorsal horn (MDH), probably lamina I, and in neuropil in the ventromedial tip of the MDH, probably lamina II. There sometimes was variable, diffuse label in the C1 dorsal horn after corneal injections but more rostral parts of the trigeminal sensory complex were never labeled. Injections of the conjunctiva densely labeled laminae I-III in the C1 dorsal horn, while laminae IV-V were diffusely labeled. Sparser reaction product also was seen in lamina I in positions similar to the cornea projection. Label was seen ventrally in subnuclei interpolaris and oralis, as well as the principal trigeminal nucleus. Projections of the infraorbital nerve included all laminae in the trigeminocervical complex as well as large portions of the rostral subnuclei in the spinal trigeminal nucleus. The projections of the supraorbital nerve were similar, but were restricted to ventral parts of the trigeminal sensory complex. In other cases the cornea was injected either after cutting the supraorbital and infraorbital nerves or the conjunctiva was injected after enucleating the eyeball. Any reaction product from corneal injections was reduced dramatically in the C1 dorsal horn after transection of the infraorbital and supraorbital nerves. Injecting the conjunctiva after enucleating the eyeball densely labeled the C1 projection to the dorsal horn, a small patch in lamina I in the MDH, as well as the rostral trigeminal complex. We propose that the cornea has but a single representation in the trigeminocervical complex in its ventral part near the caudal end of the medulla. We also propose the palpebral conjunctiva mucosa is represented in the C1 dorsal horn, and speculate that the bulbar conjunctiva overlaps with that of the cornea in lamina I. We discuss these projections in relation to the circuitry for the supraorbital-evoked and corneal-evoked blink reflexes. The relationship of the cornea and conjunctiva is intimate, and investigators must be very careful when attempting to stimulate them in isolation.
将 HRP 偶联霍乱毒素和麦胚凝集素的混合物经跨神经节运输用于确定角膜及其周围黏膜和皮肤在大鼠脊髓背角的中枢代表。HRP 混合物被注入角膜基质、结膜黏膜或眶上和眶下神经。角膜注射后,在脊髓背角腹侧间质岛(可能是 I 层)和背角腹侧端的神经胶质中产生了密集的标记物,可能是 II 层。有时在角膜注射后 C1 背角有不同程度的弥散标记,但三叉神经感觉复合体的更前端部分从未被标记。结膜注射在 C1 背角密集标记 I-III 层,而 IV-V 层弥散标记。在类似于角膜投射的位置也可见稀疏的反应产物 I 层。标记物在间位和口位亚核以及主三叉神经核中可见于腹侧。眶下神经的投射包括三叉颈复合体的所有层以及脊髓三叉神经核的大部分前端亚核。眶上神经的投射相似,但仅限于三叉神经感觉复合体的腹侧部分。在其他情况下,在切断眶上和眶下神经后,角膜被注射,或者在眼球摘除后,结膜被注射。在切断眶上和眶下神经后,角膜注射引起的任何反应产物在 C1 背角中显著减少。眼球摘除后,结膜注射在脊髓背角密集标记 C1 投射,在 MDH 的 I 层中有一小片,以及前端三叉神经复合体。我们提出,角膜在其靠近延髓尾端的腹侧部分仅有一个代表,位于三叉颈复合体中。我们还提出,睑结膜黏膜代表在 C1 背角,并且推测球结膜与 I 层中的角膜重叠。我们讨论了这些投射与眶上神经诱发和角膜诱发眨眼反射的电路之间的关系。角膜和结膜之间的关系是密切的,研究人员在试图单独刺激它们时必须非常小心。