| Literature DB >> 30915143 |
Ning-Cen Li1,2, Ming-Yue Li1, Bo Chen1,2, Yi Guo2,3.
Abstract
Acupuncture has been used to treat multiple medical conditions, but whether the diverse effects of acupuncture are intrinsically linked and how they might be connected have yet to be determined. More and more researches have shown that acupuncture is a kind of nociceptive stimulus, which can cause inflammatory reaction in the sites of acupuncture and then further activate the nerve-endocrine-immune systems to cause the cascade amplification of the acupuncture effect. This review seeks to provide a comprehensive summary of the existing literature concerning the role of "acupoint-meridian-disease network" in various effects of acupuncture and suggest a novel notion that acupuncture may restore homeostasis under different pathological conditions by regulating this network, resulting in the activation of different reaction cascades in response to pathological injury. We think that acupuncture acts on acupoints, first activating the small network of acupoints (Acupoint Network). The information of acupuncture is amplified by cascade, and the nerve endocrine immune system (NEI) is activated through the large network of meridians (Meridian Network) of the body itself. The nerve-endocrine-immune system (NEI) further outputs the effect information to the target organ through multilevel and multisystems and finally acts on the disease network (Disease Network) to produce acupuncture effect.Entities:
Year: 2019 PMID: 30915143 PMCID: PMC6409053 DOI: 10.1155/2019/2326867
Source DB: PubMed Journal: Evid Based Complement Alternat Med ISSN: 1741-427X Impact factor: 2.629
Figure 1The diagrammatic sketch of Acupoint Network. Acupuncture can cause specific responses in the local microenvironment of acupoints, such as the activation of cell function, the release of chemical substances, and the excitation of the afferent nerve. The interaction among them may trigger and successively amplify acupuncture signal to produce a whole regulating effect.
Major mediators involved in the modulation of “Acupoint Network”.
| Mediators | Cells releasing neuroactive mediators | Receptors on afferent fiber terminals | Reference |
|---|---|---|---|
| 5-Hydroxytryptamine | Platelets, mast cells | 5-HT3 receptor | [ |
| 5-HT1 receptor | |||
| adenosine | Mast cells | A1 receptor | [ |
| histamine | Mast cells | H3 receptor | [ |
| H1 receptor | |||
| substance P | Keratinocytes, platelets, | - | [ |
| mast cells, fibroblasts, | |||
| dopamine | DA2R | [ | |
| Calcitonin | Macrophages, | - | [ |
| gene-related peptide (CGRP) | T cells, epithelial cells | ||
| Glutamate | Skin epithelial cells and macrophage | - | [ |
| ATP/cGMP | Epidermal cells, Mast cells | P2X, P2Y receptor | [ |
| IL-1 | - | [ | |
| Glucocorticoids (GC) | tissues | glucocorticoid receptor (GR) | [ |
| Growth hormone (GH) | Eosinophils of | GH receptor | [ |
| Noradrenaline (NA) | sympathetic nerve varicosities |
| [ |
| Nitric Oxide (NO) | tissues | - | [ |
| Bradykinin | tissues | B1/2 receptors | [ |
| Somatostatin (SS) | Merkel cells, keratinocytes | SS receptors | [ |
|
| Macrophages and lymphocytes | GABAA receptors | [ |
|
| Keratinocytes, melanocytes, dermal fibroblasts, leukocytes |
| [ |
| CRH | hypothalamus | CRH receptor | [ |
| ERK1/2 | fibroblast and keratinocyte | - | [ |
Figure 2The diagrammatic sketch of triple-network linkage. (Acupuncture first activates the small network of acupoint microenvironment, enabling acupuncture information to be initiated and cascaded locally. Then it mobilizes the Meridian Network controlled by NEI and finally acupuncture effect information is output to the target organs and produce acupuncture efficacy.)