Noronha-de-Souza Carolina R, Bícego Kênia C, Michel Gustavo, Glass Mogens L, Branco Luiz G S, Gargaglioni Luciane H
Department of Morphology, Dental School of Ribeirao Preto, University of São Paulo, Brazil.
Am J Physiol Regul Integr Comp Physiol. 2006 Oct;291(4):R997-1006. doi: 10.1152/ajpregu.00090.2006. Epub 2006 Apr 27.
The locus coeruleus (LC) has been suggested as a CO2 chemoreceptor site in mammals. This nucleus is a mesencephalic structure of the amphibian brain and is probably homologous to the LC in mammals. There are no data available for the role of LC in the central chemoreception of amphibians. Thus the present study was designed to investigate whether LC of toads (Bufo schneideri) is a CO2/H+ chemoreceptor site. Fos immunoreactivity was used to verify whether the nucleus is activated by hypercarbia (5% CO2 in air). In addition, we assessed the role of noradrenergic LC neurons on respiratory and cardiovascular responses to hypercarbia by using 6-hydroxydopamine lesion. To further explore the role of LC in central chemosensitivity, we examined the effects of microinjection of solutions with different pH values (7.2, 7.4, 7.6, 7.8, and 8.0) into the nucleus. Our main findings were that 1) a marked increase in c-fos-positive cells in the LC was induced after 3 h of breathing a hypercarbic gas mixture; 2) chemical lesions in the LC attenuated the increase of the ventilatory response to hypercarbia but did not affect ventilation under resting conditions; and 3) microinjection with acid solutions (pH = 7.2, 7.4, and 7.6) into the LC elicited an increased ventilation, indicating that the LC of toads participates in the central chemoreception.
蓝斑核(LC)被认为是哺乳动物中的二氧化碳化学感受器部位。该核是两栖动物脑的中脑结构,可能与哺乳动物的蓝斑核同源。目前尚无关于蓝斑核在两栖动物中枢化学感受中作用的数据。因此,本研究旨在探究蟾蜍(中华大蟾蜍)的蓝斑核是否为二氧化碳/氢离子化学感受器部位。采用Fos免疫反应性来验证该核是否被高碳酸血症(空气中5%二氧化碳)激活。此外,我们通过使用6-羟基多巴胺损伤来评估去甲肾上腺素能蓝斑核神经元对高碳酸血症的呼吸和心血管反应的作用。为了进一步探究蓝斑核在中枢化学敏感性中的作用,我们检测了向该核内微量注射不同pH值(7.2、7.4、7.6、7.8和8.0)溶液的效果。我们的主要发现如下:1)吸入高碳酸气体混合物3小时后,蓝斑核中c-fos阳性细胞显著增加;2)蓝斑核的化学损伤减弱了对高碳酸血症的通气反应增加,但不影响静息状态下的通气;3)向蓝斑核内微量注射酸性溶液(pH = 7.2、7.4和7.6)可引起通气增加,表明蟾蜍的蓝斑核参与中枢化学感受。