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注意:多药物治疗时,Yoda1 和多巴酚丁胺联合使用在阈浓度下通过多通道/泵的协调作用可导致显著的压力感受性反射传入神经兴奋。

Caution for Multidrug Therapy: Significant Baroreflex Afferent Neuroexcitation Coordinated by Multi-Channels/Pumps Under the Threshold Concentration of Yoda1 and Dobutamine Combination.

机构信息

State Key Laboratory of Frigid Zone Cardiovascular Diseases (SKLFZCD), Department of Pharmacology (State Key Laboratory-Province Key Laboratories of Biomedicine-Pharmaceutics of China, Key Laboratory of Cardiovascular Research, Ministry of Education), College of Pharmacy, Harbin Medical University, Harbin 150081, China.

Department of Pharmacy, The Second Affiliated Hospital of Dalian Medical University, Dalian 116023, China.

出版信息

Biomolecules. 2024 Oct 16;14(10):1311. doi: 10.3390/biom14101311.

Abstract

Multi-drug therapies are common in cardiovascular disease intervention; however, io channel/pump coordination has not been tested electrophysiologically. Apparently, inward currents were not elicited by Yoda1/10 nM or Dobutamine/100 nM alone in Ah-type baroreceptor neurons, but were by their combination. To verify this, electroneurography and the whole-cell patch-clamp technique were performed. The results showed that Ah- and C-volley were dramatically increased by the combination at 0.5 V and 5 V, in contrast to A-volley, as consistent with repetitive discharge elicited by step and ramp with markedly reduced current injection/stimulus intensity. Notably, a frequency-dependent action potential (AP) duration was increased with Iberiotoxin-sensitive K component. Furthermore, an increased peak in AP measured in phase plots suggested enhanced Na influx, cytoplasmic Ca accumulation through reverse mode of Na/Ca exchanger, and, consequently, functional KCa1.1 up-regulation. Strikingly, the Yoda1- or Dbtm-mediated small/transient Na/K-pump currents were robustly increased by their combination, implying a quick ion equilibration that may also be synchronized by hyperpolarization-induced voltage-sag, enabling faster repetitive firing. These novel findings demonstrate multi-channel/pump collaboration together to integrate neurotransmission at the cellular level for baroreflex, providing an afferent explanation in sexual dimorphic blood pressure regulation, and raising the caution regarding the individual drug concentration in multi-drug therapies to optimize efficacy and minimize toxicity.

摘要

多药物疗法在心血管疾病干预中很常见;然而,io 通道/泵的协调尚未在电生理上进行测试。显然,Yoda1/10 nM 或 Dobutamine/100 nM 单独作用于 Ah 型压力感受器神经元时不会引起内向电流,但两者联合作用时会引起内向电流。为了验证这一点,进行了电神经图和全细胞膜片钳技术。结果表明,与 A 波相比,在 0.5 V 和 5 V 时,Ah 和 C 波显著增加,与通过阶跃和斜坡重复放电引起的情况一致,电流注入/刺激强度明显降低。值得注意的是,动作电位(AP)的频率依赖性持续时间随着 Iberiotoxin 敏感的 K 成分增加而增加。此外,相位图中测量的 AP 峰值增加表明 Na 内流增加,细胞质 Ca 通过 Na/Ca 交换器的反向模式积累,从而导致功能性 KCa1.1 上调。引人注目的是,Yoda1 或 Dbtm 介导的小/瞬态 Na/K 泵电流通过两者的组合而显著增加,表明快速离子平衡,也可能通过去极化诱导的电压凹陷而同步,从而实现更快的重复放电。这些新发现表明多通道/泵协同作用整合了细胞水平的神经传递,为压力反射提供了传入解释,同时也提高了对多药物疗法中个体药物浓度的警惕,以优化疗效并最小化毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b90/11506362/7ae412603ab9/biomolecules-14-01311-g001.jpg

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