Butenas Alec L E, Baranczuk Ashley M, Carroll Raimi J, Parr Shannon K, Ade Carl J, Hageman K Sue, Musch Timothy I, Copp Steven W
Department of Kinesiology, Kansas State University, Manhattan, KS, United States of America.
Department of Anatomy and Physiology, Kansas State University, Manhattan, KS, United States of America.
Auton Neurosci. 2025 Aug;260:103277. doi: 10.1016/j.autneu.2025.103277. Epub 2025 Apr 5.
We investigated the role played by ATP-sensitive purinergic 2 × 4 (P2X4) receptors on the sensory endings of thin fibre muscle afferents in exercise pressor reflex and mechanoreflex activation in healthy/SHAM rats and rats with heart failure with reduced ejection fraction (HF-rEF). We hypothesized that infusion of the P2X4 receptor antagonist 5-BDBD (8 μg) into the hindlimb arterial supply would reduce the mean arterial pressure (MAP) and renal sympathetic nerve activity (RSNA) responses to 30s of electrically-induced hindlimb skeletal muscle contraction (model of exercise pressor reflex activation) and 30s of hindlimb skeletal muscle stretch (model of mechanoreflex activation) in decerebrate, unanesthetized HF-rEF rats but not SHAM rats. Ejection fraction was significantly lower in HF-rEF (46 ± 3 %) compared to SHAM (83 ± 2 %; P < 0.001) rats. In SHAM rats, P2X4 receptor blockade had no effect on the pressor response to hindlimb muscle contraction (n = 8) or the pressor and RSNA response to muscle stretch (n = 4). However, in SHAM rats we found that P2X4 receptor blockade significantly reduced the RSNA response to muscle contraction. In HF-rEF rats, P2X4 receptor blockade reduced the pressor and RSNA response to hindlimb muscle contraction (n = 7) as well as the pressor, but not the RNSA, response to hindlimb muscle stretch (n = 8). Collectively, the data suggest that P2X4 receptors on thin fibre muscle afferent sensory endings play a role in the evoking the exercise pressor reflex in healthy subjects that is limited to RSNA, and that in HF-rEF this expands to a significant role in mechanoreflex and exercise pressor reflex-mediated blood pressure control.
我们研究了三磷酸腺苷敏感嘌呤能2×4(P2X4)受体在健康/假手术大鼠以及射血分数降低的心力衰竭(HF-rEF)大鼠的细纤维肌肉传入神经感觉末梢在运动升压反射和机械反射激活中的作用。我们假设,向后肢动脉供应中注入P2X4受体拮抗剂5-BDBD(8μg)会降低去大脑、未麻醉的HF-rEF大鼠对30秒电诱导后肢骨骼肌收缩(运动升压反射激活模型)和30秒后肢骨骼肌拉伸(机械反射激活模型)的平均动脉压(MAP)和肾交感神经活动(RSNA)反应,但对假手术大鼠无此作用。与假手术大鼠(83±2%;P<0.001)相比,HF-rEF大鼠的射血分数显著降低(46±3%)。在假手术大鼠中,P2X4受体阻断对后肢肌肉收缩的升压反应(n=8)或对肌肉拉伸的升压和RSNA反应(n=4)没有影响。然而,在假手术大鼠中,我们发现P2X4受体阻断显著降低了对肌肉收缩的RSNA反应。在HF-rEF大鼠中,P2X4受体阻断降低了对后肢肌肉收缩的升压和RSNA反应(n=7)以及对后肢肌肉拉伸的升压反应,但对RNSA无影响(n=8)。总体而言,数据表明细纤维肌肉传入神经感觉末梢上的P2X4受体在健康受试者诱发运动升压反射中发挥作用,该作用仅限于RSNA,而在HF-rEF中,这一作用扩展到在机械反射和运动升压反射介导的血压控制中发挥重要作用。