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首页> 外文期刊>Journal of Acupuncture and Meridian Studies >Possible Role of Epidermal Keratinocytes in the Construction of Acupuncture Meridians
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Possible Role of Epidermal Keratinocytes in the Construction of Acupuncture Meridians

机译:表皮角质形成细胞在针刺经络构建中的可能作用

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Acupuncture meridians consist of a network of acupuncture points on the skin, stimulation of which is well established to have a variety of physiological effects. We have previously demonstrated that epidermal keratinocytes contain multiple sensory systems for temperature, mechanical stimuli, electric potentials and other stimuli. These sensory systems generate changes in the calcium-ion concentration in the epidermis, so epidermal keratinocytes can generate spatially-localized electro-physiological patterns in the skin. We have previously demonstrated signaling between epidermal keratinocytes and peripheral nerve systems. Therefore, stimuli sensed by epidermal keratinocytes might be transferred to the unmyelinated nerve fibers that are known to exist in the epidermis and, thence, to the spinal cord and brain. We propose that epidermal keratinocytes form an information-gathering network in the skin and that this network plays a key role in whole-body homeostasis in response to the changing environment. We also hypothesize that this network corresponds to the acupuncture meridians. As supporting examples, we present some striking calcium propagation patterns observed in cultured human keratinocytes after adenosine-triphosphate (ATP) stimulation. These results support the ideas that keratinocytes can generate spatially-restricted signaling patterns after environmental stimulation and that the cultures might bein-vitromodels of meridians as an information-gathering network in skin.
机译:针灸经络由皮肤上的多个穴位网络组成,其经充分确立的刺激作用具有多种生理作用。我们以前已经证明,表皮角质形成细胞包含温度,机械刺激,电势和其他刺激的多种感觉系统。这些感觉系统在表皮中产生钙离子浓度的变化,因此表皮角质形成细胞可以在皮肤中产生空间定位的电生理模式。我们先前已经证明了表皮角质形成细胞和周围神经系统之间的信号传导。因此,由表皮角质形成细胞感觉到的刺激可能会转移到已知存在于表皮的无髓神经纤维,然后转移到脊髓和大脑。我们建议表皮角质形成细胞在皮肤中形成一个信息收集网络,并且该网络在响应环境变化的整个体内稳态中起着关键作用。我们还假设该网络对应于针灸经络。作为支持的例子,我们介绍了三磷酸腺苷(ATP)刺激后在培养的人角质形成细胞中观察到的一些惊人的钙传播模式。这些结果支持以下观点:角质形成细胞可以在环境刺激后产生空间受限的信号传导模式,并且该文化可能是经络的体外模型,作为皮肤中的信息收集网络。

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