Sato Boku Aiji
Department of Anesthesiology, Aichi Gakuin University School of Dentistry, 2-11 Suemoridori, Chikusa-ku, Nagoya, Aichi, 464-8651, Japan.
Heliyon. 2023 Jul 17;9(8):e18394. doi: 10.1016/j.heliyon.2023.e18394. eCollection 2023 Aug.
Examination of circulatory dynamics and autonomic nerve activity in acute hemorrhage in diabetic (DM) rats revealed that despite decreased receptor sensitivity to arterial blood pressure, the DM rats experienced a decline in the heart rate and acceleration of the parasympathetic nerve activity at the sympathoinhibitory phase in response to bleeding (Bezold-Jarisch [B-J] reflex). To elucidate the involvement of the B-J reflex as a reaction to acute hemorrhage in DM rats by assessing -Fos-positive cell (-Fos) expression in the nucleus of the solitary tract (SolM), the primary relay nucleus of the baroreflex, Streptozotocin-induced DM and non-DM rats underwent controlled-graded bleeding or continuous phenylephrine infusion under conscious state. Changes in hemodynamics and autonomous nervous system caused by acute hemorrhage and continuous phenylephrine infusion were examined by analyzing blood pressure-heart rate variability. Furthermore, effects of hemorrhage and phenylephrine infusion on the expression of -Fos in SolM were examined. DM rats showed increased -Fos expression in response to acute blood loss in the SolM. Non-DM rats showed the same phenomenon in response to continuous phenylephrine infusion in the SolM. Significant interactions between DM and Non-DM rats were observed among hemodynamic and autonomic response to acute hemorrhage and continuous phenylephrine infusion. DM rats were sensitive to acute blood loss, and the circulatory system easily collapsed with accelerating parasympathetic activity in the form of the B-J reflex.
对糖尿病(DM)大鼠急性出血时循环动力学和自主神经活动的检查显示,尽管受体对动脉血压的敏感性降低,但DM大鼠在出血的交感抑制期(贝佐尔德-雅里什[B-J]反射)仍出现心率下降和副交感神经活动加速。为了通过评估孤束核(SolM)中Fos阳性细胞(Fos)的表达来阐明B-J反射在DM大鼠急性出血反应中的作用,将链脲佐菌素诱导的DM大鼠和非DM大鼠在清醒状态下进行控制性分级出血或持续输注去氧肾上腺素。通过分析血压-心率变异性来检查急性出血和持续输注去氧肾上腺素引起的血流动力学和自主神经系统变化。此外,还检查了出血和输注去氧肾上腺素对SolM中Fos表达的影响。DM大鼠在SolM中对急性失血表现出Fos表达增加。非DM大鼠在SolM中对持续输注去氧肾上腺素也表现出相同现象。在对急性出血和持续输注去氧肾上腺素的血流动力学和自主反应方面,观察到DM大鼠和非DM大鼠之间存在显著相互作用。DM大鼠对急性失血敏感,循环系统容易以B-J反射的形式加速副交感神经活动而崩溃。