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成都中医药大学针灸推拿学院,四川成都 611137
昆明市中医医院
陈道鸿,成都中医药大学硕士研究生。E-mail:1464091704@qq.com
✉赵凌,研究员。E-mail:zhaoling@cdutcm.edu.cn
收稿:2024-03-05,
网络首发:2025-05-22,
纸质出版:2025-07-12
移动端阅览
陈道鸿, 陈颖, 齐文川, 等. 基于“肠–肺”轴理论探讨电针对COPD模型大鼠肠道菌群的影响[J]. 中国针灸, 2025,45(7):967-981.
CHEN Daohong, CHEN Ying, QI Wenchuan, et al. Effect of electroacupuncture on intestinal flora in COPD rats based on gut-lung axis theory[J]. Chinese Acupuncture & Moxibustion, 2025, 45(7): 967-981.
陈道鸿, 陈颖, 齐文川, 等. 基于“肠–肺”轴理论探讨电针对COPD模型大鼠肠道菌群的影响[J]. 中国针灸, 2025,45(7):967-981. DOI: 10.13703/j.0255-2930.20240305-0002.
CHEN Daohong, CHEN Ying, QI Wenchuan, et al. Effect of electroacupuncture on intestinal flora in COPD rats based on gut-lung axis theory[J]. Chinese Acupuncture & Moxibustion, 2025, 45(7): 967-981. DOI: 10.13703/j.0255-2930.20240305-0002.
目的:
2
基于“肠-肺”轴理论探讨电针(EA)对慢性阻塞性肺疾病(COPD)模型大鼠肠道菌群的影响及可能的作用机制。
方法:
2
将30只SPF级雄性SD大鼠随机分为空白对照(NC)组、COPD组和EA组,每组10只。COPD组和EA组大鼠采用气管滴注脂多糖联合香烟烟熏法制备COPD模型。EA组大鼠予电针双侧“肺俞”“足三里”干预,疏密波,频率4 Hz/20 Hz,电流1~3 mA,每次20 min,每天1次,连续14 d。观察各组大鼠造模前后及干预后体质量;干预后,观察各组大鼠肺功能指标[第0.1秒用力呼气容积(FEV
0.1
)、FEV
0.1
/用力肺活量(FVC)%、第0.3秒用力呼气容积(FEV
0.3
)、FEV
0.3
/FVC%
]
,ELISA法检测大鼠血清炎性因子[肿瘤坏死因子-α (TNF-α)、白细胞介素-6(IL-6)、白细胞介素-1β(IL-1β)、白细胞介素-10(IL-10)
]
含量,HE染色观察大鼠肺组织和结肠组织形态,16S rRNA技术检测大鼠肠道菌群并分析肺功能与肠道菌群之间的相关性。
结果:
2
与NC组比较,COPD组大鼠体质量和肺功能指标降低(
P
<
0.01);肺组织和结肠组织损伤,肺泡平均线性截距(MLI)和每100 μm
2
炎性细胞数量增多(
P
<
0.01);血清TNF-α、IL-6、IL-1β含量升高(
P
<
0.01,
P
<
0.05),血清IL-10含量降低(
P
<
0.01);肠道菌群α多样性指数升高(
P
<
0.01);拟杆菌门(
Bacteroidetes
)、变形菌门(
Proteobacteria
)和颤螺菌属(
Oscillospira
)、拟杆菌属(
Bacteroides
)、粪球菌属(
Coprococcus
)相对丰度升高(
P
<
0.01),厚壁菌门(
Firmicutes
)、放线菌门(
Actinobacteria
)、软壁菌门(
Tenericutes
)、单糖菌门(TM7)和乳杆菌属(
Lactobacillus
)、异杆菌属(
Allobaculum
)、双歧杆菌属(
Bifidobacterium
)、YRC22菌属相对丰度降低(
P
<
0.01,
P
<
0.05);存在31条差异代谢通路。与COPD组比较,EA组大鼠体质量增加、肺功能指标升高(
P
<
0.01);肺组织和结肠组 织损伤改善,肺泡MLI降低(
P
<
0.05);血清TNF-α、IL-6、IL-1β含量降低(
P
<
0.05),血清IL-10含量升高(
P
<
0.05);肠道菌群α多样性指数降低(
P
<
0.01);拟杆菌门、变形菌门和颤螺菌属、拟杆菌属、粪球菌属相对丰度降低(
P
<
0.01,
P
<
0.05),厚壁菌门、放线菌门、软壁菌门、单糖菌门和乳杆菌属、异杆菌属、双歧杆菌属、YRC22菌属相对丰度升高(
P
<
0.01);存在35条差异代谢通路。肺功能与放线菌门、软壁菌门、单糖菌门和YRC22菌属呈正相关,与拟杆菌门、变形菌门、颤螺菌属、拟杆菌属和粪球菌属呈负相关。
结论:
2
电针可能通过调节肠道菌群失衡和炎性反应,改善COPD大鼠肺功能和组织损伤,其机制涉及“肠-肺”轴介导的抗炎作用。
Objective
2
To observe the effect of electroacupuncture (EA) on the intestinal flora in rats with chronic obstructive pulmonary disease (COPD) and explore its possible mechanism based on the gut-lung axis theory.
Methods
2
A total of 30 male SD rats of SPF grade were randomly divided into a normal control (NC) group
a model group and an EA group
10 rats in each one. In the model group and the EA group
COPD model was established by intratracheal instillation of lipopolysaccharide combined with cigarette fumigation. In the EA group
EA was applied at bilateral "Feishu" (BL13) and "Zusanli" (ST36)
with disperse-dense waves
in frequency of 4 Hz/20 Hz
current of 1-3 mA
20 min a time
once a day for 14 days continuously. Before and after modeling
as well as after intervention
body weight was observed; after intervention
the lung function indexes (forced expiratory volume in 0.1 second [FEV
0.1
]
FEV
0.1
/forced vital capacity [FVC
]
%
forced expiratory volume in 0.3 second [FEV
0.3
]
and FEV
0.3
/FVC%) were measured
serum levels of inflammatory factors (tumor necrosis factor-α[TNF-α
]
interleukin-6
[IL-6
]
interleukin-1β[IL-1β
]
and interleukin-10
[IL-10
]
) were detected by ELISA
histopathology of lung and colon tissues was observed by HE staining
the intestinal flora were analyzed by 16S rRNA
and the correlations between lung function and intestinal flora were analyzed.
Results
2
Compared with the NC group
in the COPD group
the body weight and lung function indexes were reduced (
P
<
0.01); the lung and colon tissues were damaged
the mean linear intercept (MLI) of alveolus and inflammatory cell numbers of 100 μm
2
in lung tissue were increased (
P
<
0.01); the serum levels of TNF-α
IL-6 and IL-1β were increased (
P
<
0.01
P
<
0.05)
and the serum level of IL-10 was decreased (
P
<
0.01); α-d
iversity indexes of intestinal flora were increased (
P
<
0.01); the relative abundance of
Bacteroidetes
Proteobacteria
and
Oscillospira
Bacteroides
Coprococcus
was increased (
P
<
0.01)
the relative abundance of
Firmicutes
Actinobacteria
Tenericutes
TM7 and
Lactobacillus
Allobaculum
Bifidobacterium
YRC22 was decreased (
P
<
0.01
P
<
0.05); 31 different expressed metabolic pathways were identified between the two groups. Compared with the COPD group
in the EA group
the body weight and lung function indexes were increased (
P
<
0.01); the damage of lung and colon tissues was improved
the MLI of alveolus was decreased (
P
<
0.05); the serum levels of TNF-α
IL-6 and IL-1β were decreased (
P
<
0.05)
and the serum level of IL-10 was increased (
P
<
0.05); α-diversity indexes of intestinal flora were decreased (
P
<
0.01); the relative abundance of
Bacteroidetes
Proteobacteria
and
Oscillospira
Bacteroides
Coprococcus
was decreased (
P
<
0.01
P
<
0.05)
the relative abundance of
Firmicutes
Actinobacteria
Tenericutes
TM7 and
Lactobacillus
Allobaculum
Bifidobacterium
YRC22 was increased (
P
<
0.01); 35 different expressed metabolic pathways were identified between the two groups. The lung function was positive related with
Actinobacteria
Tenericutes
TM7 and YRC22
and was negative related with
Bacteroidetes
Proteobacteria
and
Oscillospira
Bacteroides
Coprococcus
.
Conclusion
2
EA may ameliorate lung function and tissue injury of COPD by regulating intestinal flora dysbiosis and inflammatory response
suggesting an anti-inflammatory effect mediated via "gut-lung" axis.
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