Caravagna Céline, Kinkead Richard, Soliz Jorge
Department of Pediatrics, Laval University, Centre de Recherche du Centre Hospitalier Universitaire (CHU) de Québec, Hôpital St-François d'Assise, 10 Rue de l'Espinay, Québec, QC G1L 3L5, Canada.
Respir Physiol Neurobiol. 2014 Aug 15;200:64-71. doi: 10.1016/j.resp.2014.06.003. Epub 2014 Jun 7.
Previous studies indicated that erythropoietin modulates central respiratory command in mice. Specifically, a one-hour incubation of the brainstems with erythropoietin attenuates hypoxia-induced central respiratory depression. Here, using transgenic mice constitutively overexpressing erythropoietin specifically in the brain (Tg21), we investigated the effect of chronic erythropoietin stimulation on central respiratory command activity during post-natal development. In vitro brainstem-spinal cord preparations from mice at 0 (P0) or 3 days of age (P3) were used to record the fictive inspiratory activity from the C4 ventral root. Our results show that erythropoietin already stimulates the hypoxic burst frequency at P0, and at P3, erythropoietin effectively stimulates the hypoxic burst frequency and amplitude. Because the maturation of the central respiratory command in mice is characterized by a decrease in the burst frequency with age, our results also suggest that erythropoietin accelerates the maturation of the newborn respiratory network and its response to hypoxia.
先前的研究表明,促红细胞生成素可调节小鼠的中枢呼吸指令。具体而言,将脑干与促红细胞生成素孵育一小时可减轻缺氧诱导的中枢呼吸抑制。在此,我们使用在大脑中组成性过表达促红细胞生成素的转基因小鼠(Tg21),研究了慢性促红细胞生成素刺激对出生后发育过程中中枢呼吸指令活动的影响。使用0日龄(P0)或3日龄(P3)小鼠的体外脑干-脊髓标本记录C4腹根的虚构吸气活动。我们的结果表明,促红细胞生成素在P0时就已刺激缺氧爆发频率,而在P3时,促红细胞生成素可有效刺激缺氧爆发频率和幅度。由于小鼠中枢呼吸指令的成熟特征是爆发频率随年龄降低,因此我们的结果还表明,促红细胞生成素可加速新生呼吸网络的成熟及其对缺氧的反应。