Mallios V J, Lydic R, Baghdoyan H A
Department of Anesthesia, College of Medicine, Pennsylvania State University, Hershey 17033, USA.
Am J Physiol. 1995 Jun;268(6 Pt 1):L941-9. doi: 10.1152/ajplung.1995.268.6.L941.
Cholinergic mechanisms are known to play a key role in the regulation of breathing, but the distribution of muscarinic receptor (mAChR) subtypes has not been localized within brain stem respiratory nuclei. This study examined the hypothesis that mAChR subtypes are heterogeneously distributed across brain stem nuclei that control breathing. With the use of in vitro receptor autoradiography, the results provide the first selective labeling and quantitative mapping of M1, M2, and M3 mAChR subtypes in cat brain stem regions known to regulate breathing. Among brain stem nuclei known to contain respiratory-related neurons, the greatest amount of mAChR binding was measured in the lateral and medial parabrachial nuclei and the lateral nucleus of the solitary tract. Fewer mAChRs were localized in nuclei comprising the ventral respiratory group (nucleus ambiguous, retrofacial nucleus) and ventral medulla (retrotrapezoid nucleus and ventrolateral medulla). The data provide an essential first step for future studies aiming to specify the regulatory role of mAChR subtypes within brain stem respiratory nuclei.
已知胆碱能机制在呼吸调节中起关键作用,但毒蕈碱受体(mAChR)亚型的分布尚未在脑干呼吸核团中定位。本研究检验了mAChR亚型在控制呼吸的脑干核团中呈异质性分布这一假说。通过体外受体放射自显影技术,结果首次对猫脑干中已知调节呼吸的区域内的M1、M2和M3 mAChR亚型进行了选择性标记和定量定位。在已知含有呼吸相关神经元的脑干核团中,在臂旁外侧核和内侧核以及孤束外侧核中测得的mAChR结合量最大。在构成腹侧呼吸组(疑核、面后核)和延髓腹侧(斜方体后核和延髓腹外侧)的核团中,定位到的mAChR较少。这些数据为未来旨在明确mAChR亚型在脑干呼吸核团中的调节作用的研究提供了重要的第一步。