Cytochrome oxidase staining reveals functionally important activity bands in the olfactory epithelium of newborn rat.

Journal of Neurocytology Pub Date : 2005-09-01 Epub Date: 2006-07-13 DOI:10.1007/s11068-005-8357-x
P Pahn Pataramekin, Esmail Meisami
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引用次数: 5

Abstract

We used cytochrome oxidase (CytOx) staining intensity, which is correlated with neuronal functional activity, to evaluate maturity and functionality of newborn rat olfactory epithelium (OE) and olfactory receptor neurons (ORNs). Nasal olfactory tissue of neonatal rats was stained with CytOx and analyzed qualitatively and quantitatively. Results revealed that newborn OE shows six differentially stained horizontal bands. Bands run parallel to the OE surface and were categorized as very light, medium or darkly stained. A narrow and pale Band 1 overlapped with horizontal basal cells. Next, a wide and lightly stained Band 2 was observed that coincides with the globose basal cell layer and immature ORNs, deep in OE. Next apically, a medium-staining Band 3 overlapped with ORN perikarya. Closer to the surface, a medium to light Band 4 was discerned where dendrites of mature ORNs normally occur. This band was interrupted with lighter areas due to the presence of supporting cells nuclei. Next, a superficial but dark Band 5 occurred, populated by the apical portions of ORN dendrites and their ciliated knobs and by supporting cell apices; mitochondria in apices of supporting cells contribute predominantly to dense staining of this Band 5. Apical to Band 5, a thin and fairly light Band 6 was observed which overlaps with the mucus layer that contains part of the ORN knobs, their cilia and supporting cell microvilli. Along the length of ORN dendrites, apical segments just below the ORN knobs, and wide basal segments showed a darker staining than the middle segments implying "microzones" of higher neural activity within the most apical and basal regions of dendrites. Our findings agree with ultrastructural studies showing a presence of mitochondria in knobs, basal portions of ORN dendrites and in OE supporting cell apices, suggesting that apical regions of both olfactory and supporting cells near the surfaces are metabolically most active, in odorant detection, signal processing, and detoxification, the latter for supporting cells.

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细胞色素氧化酶染色显示新生大鼠嗅上皮具有重要功能的活性带。
利用细胞色素氧化酶(cytochrome oxidase, CytOx)染色强度评价新生大鼠嗅觉上皮(OE)和嗅觉受体神经元(orn)的成熟度和功能。用CytOx染色法对新生大鼠鼻嗅组织进行定性和定量分析。结果显示新生儿OE有6条水平差异染色带。条纹平行于OE表面,分为非常浅、中等或深色染色。窄而苍白的1带与水平基底细胞重叠。接下来,观察到宽而浅染的带状2,与球形基底细胞层和未成熟的orn相吻合,位于OE深处。其次,中染的3号带与核周ORN重叠。在接近表面的地方,发现了一个中等到较亮的波段4,这是成熟的橡胶树枝通常出现的地方。由于支持细胞核的存在,这个波段被较轻的区域打断。接着,出现了一个浅而暗的第5带,由ORN树突的顶端部分及其纤毛突起和支持细胞尖端组成;支持细胞顶端的线粒体主要是该波段5的密集染色。在第5带的顶端,观察到薄而相当轻的第6带,其与包含部分ORN旋钮、其纤毛和支持细胞微绒毛的黏液层重叠。沿着ORN树突的长度,ORN节柄下方的根尖部分和宽的基段的染色比中间部分深,这意味着在树突的最根尖和基底区域有较高的神经活动的“微区”。我们的研究结果与超微结构研究一致,表明线粒体存在于结节、ORN树突的基部和OE支持细胞的尖端,这表明靠近表面的嗅觉细胞和支持细胞的顶端区域在气味检测、信号处理和解毒方面代谢最活跃,后者用于支持细胞。
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