whole-cell patch-clamp recordings

  • 文章类型: Journal Article
    重复经颅磁刺激(rTMS)是神经病学和精神病学中广泛使用的治疗工具,但其细胞和分子机制尚未完全了解。标准化刺激参数,特别是电场强度,在实验和临床环境中至关重要。它可以在研究中进行有意义的比较,并有助于将研究结果转化为临床实践。然而,受刺激的神经元和网络固有的生物物理特性对rTMS协议结果的影响仍未得到很好的理解。因此,实现跨不同大脑区域和受试者的生物效应标准化提出了重大挑战。
    这项研究比较了10Hz重复磁刺激(rMS)对小鼠和大鼠海马组织培养物的影响,提供在标准化条件下相同刺激协议对类似神经元网络的影响的见解。
    我们观察到先前描述的小鼠和大鼠组织培养中CA1锥体神经元的兴奋性和抑制性突触强度的可塑性变化,但是在大鼠组织培养物中诱导rMS诱导的突触可塑性需要更高的刺激强度。通过神经元结构和功能特性的系统比较和计算模型,我们发现仅CA1锥体细胞的形态参数不足以解释观察到的组间差异.尽管小鼠和大鼠CA1神经元的形态没有显着差异,模拟证实轴突形态显著影响单个细胞活化阈值。值得注意的是,固有细胞特性的差异足以解释在大鼠组织培养物中诱导突触可塑性所需的10%的高强度。
    这些发现证明了轴突形态和内在细胞特性在预测rTMS的可塑性效应中的关键重要性,对旨在预测和标准化rTMS生物学效应的计算机模型的开发具有重要意义。
    UNASSIGNED: Repetitive transcranial magnetic stimulation (rTMS) is a widely used therapeutic tool in neurology and psychiatry, but its cellular and molecular mechanisms are not fully understood. Standardizing stimulus parameters, specifically electric field strength, is crucial in experimental and clinical settings. It enables meaningful comparisons across studies and facilitates the translation of findings into clinical practice. However, the impact of biophysical properties inherent to the stimulated neurons and networks on the outcome of rTMS protocols remains not well understood. Consequently, achieving standardization of biological effects across different brain regions and subjects poses a significant challenge.
    UNASSIGNED: This study compared the effects of 10 Hz repetitive magnetic stimulation (rMS) in entorhino-hippocampal tissue cultures from mice and rats, providing insights into the impact of the same stimulation protocol on similar neuronal networks under standardized conditions.
    UNASSIGNED: We observed the previously described plastic changes in excitatory and inhibitory synaptic strength of CA1 pyramidal neurons in both mouse and rat tissue cultures, but a higher stimulation intensity was required for the induction of rMS-induced synaptic plasticity in rat tissue cultures. Through systematic comparison of neuronal structural and functional properties and computational modeling, we found that morphological parameters of CA1 pyramidal neurons alone are insufficient to explain the observed differences between the groups. Although morphologies of mouse and rat CA1 neurons showed no significant differences, simulations confirmed that axon morphologies significantly influence individual cell activation thresholds. Notably, differences in intrinsic cellular properties were sufficient to account for the 10% higher intensity required for the induction of synaptic plasticity in the rat tissue cultures.
    UNASSIGNED: These findings demonstrate the critical importance of axon morphology and intrinsic cellular properties in predicting the plasticity effects of rTMS, carrying valuable implications for the development of computer models aimed at predicting and standardizing the biological effects of rTMS.
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  • 文章类型: Journal Article
    慢性疼痛患者,尤其是口面部疼痛,经常患有情感障碍,包括焦虑。以前的研究主要集中在尾前扣带皮质(cACC)在疼痛的情感反应中的作用,cACC的长时程增强(LTP)被认为介导焦虑和慢性疼痛之间的相互作用。但最近的证据表明,头端ACC(rACC),也是,与处理情感疼痛有关。然而,这种处理是否与神经元和/或突触可塑性相关尚不清楚。我们在大鼠的慢性面部炎性疼痛模型(完全弗氏佐剂模型)中解决了这个问题,通过结合行为,从这些动物制备的rACC切片中的Fos蛋白免疫化学和离体细胞内记录。注射CFA后立即出现面部机械性异常性疼痛,在注射后第3天达到峰值,并逐渐恢复到注射后第10-11天,而焦虑延迟,在注射后第10天出现,当感觉过敏缓解时,但是,特别是,不是在注射后第3天。Fos表达表明,双侧rACC的神经元活动遵循双相时间过程:在注射后第3天首先增强,在注射后第10天强烈抑制。来自椎板V锥体神经元的离体记录,rACC投射神经元,显示它们的内在兴奋性和兴奋性突触输入在注射后第10天都经历了长期抑郁(LTD)。因此,慢性疼痛处理与rACC活动的动态变化有关:首先增强,然后降低,在焦虑样行为的时候。因此,慢性疼痛引起的焦虑可能是由rACC失活-cACC超激活相互作用引起的。
    Patients with chronic pain, especially orofacial pain, often suffer from affective disorders, including anxiety. Previous studies largely focused on the role of the caudal anterior cingulate cortex (cACC) in affective responses to pain, long-term potentiation (LTP) in cACC being thought to mediate the interaction between anxiety and chronic pain. But recent evidence indicates that the rostral ACC (rACC), too, is implicated in processing affective pain. However, whether such processing is associated with neuronal and/or synaptic plasticity is still unknown. We addressed this issue in a chronic facial inflammatory pain model (complete Freund\'s adjuvant model) in rats, by combining behavior, Fos protein immunochemistry and ex vivo intracellular recordings in rACC slices prepared from these animals. Facial mechanical allodynia occurs immediately after CFA injection, peaks at post-injection day 3 and progressively recovers until post-injection days 10-11, whereas anxiety is delayed, being present at post-injection day 10, when sensory hypersensitivity is relieved, but, notably, not at post-injection day 3. Fos expression reveals that neuronal activity follows a bi-phasic time course in bilateral rACC: first enhanced at post-injection day 3, it gets strongly depressed at post-injection day 10. Ex vivo recordings from lamina V pyramidal neurons, the rACC projecting neurons, show that both their intrinsic excitability and excitatory synaptic inputs have undergone long-term depression (LTD) at post-injection day 10. Thus chronic pain processing is associated with dynamic changes in rACC activity: first enhanced and subsequently decreased, at the time of anxiety-like behavior. Chronic pain-induced anxiety might thus result from a rACC deactivation-cACC hyperactivation interplay.
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  • 文章类型: Journal Article
    Crambescin B carboxylic acid, a synthetic analog of crambescin B, was recently found to inhibit the voltage-sensitive sodium channels (VSSC) in a cell-based assay using neuroblastoma Neuro 2A cells. In the present study, whole-cell patch-clamp recordings were conducted with three heterologously expressed VSSC subtypes, Nav1.2, Nav1.6 and Nav1.7, in a human embryonic kidney cell line HEK293T to further characterize the inhibition of VSSC by crambescin B carboxylic acid. Contrary to the previous observation, crambescin B carboxylic acid did not inhibit peak current evoked by depolarization from the holding potential of -100mV to the test potential of -10mV in the absence or presence of veratridine (VTD). In the presence of VTD, however, crambescin B carboxylic acid diminished VTD-induced sustained and tail currents through the three VSSC subtypes in a dose-dependent manner, whereas TTX inhibited both the peak current and the VTD-induced sustained and tail currents through all subtypes of VSSC tested. We thus concluded that crambescin B carboxylic acid does not block VSSC in a similar manner to TTX but modulate the action of VTD, thereby causing an apparent block of VSSC in the cell-based assay.
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