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慢性电针 ST-36 高频刺激通过调节肌间巨噬细胞骨形态发生蛋白 2 分泌促进胃肠动力。

Chronic Electroacupuncture With High-Frequency at ST-36 Promotes Gastrointestinal Motility by Regulating Bone Morphogenetic Protein 2 Secretion of Muscularis Macrophages.

机构信息

Division of Gastroenterology, Wuhan Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei Province, China.

Division of Gastroenterology, Wuhan Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei Province, China.

出版信息

Neuromodulation. 2024 Feb;27(2):321-332. doi: 10.1016/j.neurom.2023.03.013. Epub 2023 May 26.

Abstract

BACKGROUND

Electroacupuncture (EA) at Zusanli (ST36) is an alternative treatment for several gastrointestinal motility disorders; however, the exact mechanism is unconfirmed. We aimed to show the potential effects of EA on muscularis macrophages (MMφ), the bone morphogenetic protein (BMP)/BMP receptor (BMPR)-Smad signal pathway, and enteric neurons in diabetic mice. This may provide fresh insight into ways EA affects gastrointestinal motility.

MATERIALS AND METHODS

C57BL/6J healthy adult male mice were randomly divided into five groups: regular control group, diabetes group, diabetes with sham EA group (acupuncture only), diabetes with low-frequency EA group (10 Hz), diabetes with high-frequency EA group (HEA) (100 Hz). The stimulation lasted eight weeks. Gastrointestinal motility was assessed. We identified M2-like MMφ in the layer of colonic muscle by flow cytometry. Western Blot, real-time polymerase chain reaction, and immunofluorescent staining were also used to determine the MMφ, molecules in the BMP2/BMPR-Smad pathway, and PGP9.5, neuronal nitric oxide synthase (nNOS) expression of enteric neurons in the colon of each group.

RESULTS

  1. HEA improved the gastrointestinal motility (gastrointestinal transit time, defecation frequency) of diabetic mice. 2) HEA reversed the decreased proportion of M2-like MMφ and expression of the CD206 in the colon of diabetic mice. 3) HEA restored the downregulations of BMP2, BMPR1b, and Smad1 in the BMP2/BMPR-Smad pathway and increased downstream enteric neurons marked by PGP9.5, nNOS in the colon of diabetes mice.

CONCLUSIONS

HEA might promote gut dynamics by upregulating M2-like MMφ in the colon of diabetic mice, which in turn leads to the accumulation of molecules in the BMP2/BMPR-Smad signaling pathway and downstream enteric neurons.

摘要

背景

电针对足三里(ST36)的刺激是治疗多种胃肠道动力障碍的一种替代疗法;然而,确切的机制尚未得到证实。我们旨在展示电针对糖尿病小鼠的肌间巨噬细胞(MMφ)、骨形态发生蛋白(BMP)/BMP 受体(BMPR)-Smad 信号通路和肠神经元的潜在影响。这可能为电针对胃肠道动力的影响提供新的见解。

材料和方法

将 C57BL/6J 健康成年雄性小鼠随机分为五组:正常对照组、糖尿病组、糖尿病假电针组(仅针刺)、糖尿病低频电针组(10 Hz)和糖尿病高频电针组(HEA)(100 Hz)。刺激持续八周。评估胃肠道动力。我们通过流式细胞术鉴定结肠肌层中的 M2 样 MMφ。还使用 Western Blot、实时聚合酶链反应和免疫荧光染色来确定 BMP2/BMPR-Smad 通路中的 MMφ、分子和 PGP9.5、神经元型一氧化氮合酶(nNOS)在各组结肠中的表达。

结果

1)HEA 改善了糖尿病小鼠的胃肠道动力(胃肠转运时间、排便频率)。2)HEA 逆转了糖尿病小鼠结肠中 M2 样 MMφ比例和 CD206 表达的降低。3)HEA 恢复了 BMP2、BMPR1b 和 Smad1 在 BMP2/BMPR-Smad 通路中的下调,并增加了糖尿病小鼠结肠中由 PGP9.5、nNOS 标记的下游肠神经元。

结论

HEA 可能通过上调糖尿病小鼠结肠中的 M2 样 MMφ来促进肠道动力,进而导致 BMP2/BMPR-Smad 信号通路和下游肠神经元中的分子积累。

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