Hao Sai-Nan, Xia Liang-Jun, Xi Jin, Liu Jing-Yu, Zhu Qian, Cheng Jie, Shen Jie, Xia You-Bing
College of Acupuncture-moxibustion and Health-rehabilitation, Nanjing University of Chinese Medicine, Nanjing 210046, China.
Xuzhou Medical University, Xuzhou 221004, Jiangsu Province.
Zhen Ci Yan Jiu. 2023 Sep 25;48(9):870-80. doi: 10.13702/j.1000-0607.20220942.
It is to explore, based on stromal cell derived factor 1 (SDF-1)/CXC chemokine receptor 4 (CXCR4) signal axis, whether the electroacupuncture (EA) combined with bone marrow mesenchymal stem cells (BMSCs) transplantation can promote thin endometrium regeneration and improve endometrial receptivity, so as to further study its mechanisms underlying improvement of promoting BMSCs homing to repair thin endometrium.
Thirty matured female SD rats were randomly divided into normal control , model , BMSCs transplantation (BMSCs), BMSCs+AMD3100 (a specific antagonist of CXCR4, BMSCs+AMD3100), BMSCs+EA, and BMSCs+EA+AMD3100 groups, with 5 rats in each group. The thin endometrial model was established by intrauterine injection of 95% ethanol during the period of estrus. Rats of the model group received intravenous injection of PBS solution (tail vein) on day 1, 3 and 7 of modeling and intraperitoneal injection of normal saline once daily for 3 estrous cycles. Rats of the BMSCs group received intravenous injection of BMSCs suspension on day 1,3 and 7 of modeling, and those of the BMSCs+EA group received BMSCs transplantation and EA stimulation. EA (2 Hz/15 Hz, 1 mA) was applied to "Guanyuan" (CV4) and bilateral "Sanyinjiao"(SP9), "Zigong" (EX-CA1) for 15 min, once daily for 3 estrous cycles. Rats of the BMSCs+AMD3100 group received intravenous injection of BMSCs suspension (1×10/mL) and intraperitoneal injection of AMD3100 (5 mg/kg), and those of the BMSCs+EA+AMD3100 group received administration of BMSCs, AMD3100 and EA, with both groups being once daily for 3 estrous cycles. H.E. staining was used to observe histopathological changes of endometrium tissues, and immunohistochemistry was used to detect the expressions of cytokeratin (CK19) and vimentin in endometrium (for evaluating the damage and repair of endometrium). The expression levels of homeobox A10 (HOXA10), leukemia inhibitory factor (LIF), SDF-1 and CXCR4 proteins were detected by Western blot, and those of SDF-1 and CXCR4 mRNAs in the endometrium detected by real-time PCR.
In comparison with the normal control group, the number of endometrial glands, the immunoactivity of CK19 and vimentin, the expression leve-ls of HOXA10, LIF and CXCR4 proteins and CXCR4 mRNA were significantly down-regulated (<0.01), and the expression levels of SDF-1 protein and mRNA significantly up-regulated (<0.05) in the model group. Compared with the model group, the number of endometrial glands, the immunoactivity of CK19 and vimentin, and the expression levels of HOXA10, LIF, CXCR4 proteins and CXCR4 mRNA in the BMSCs group, and the number of endometrial glands, the immunoactivity of CK19 and vimentin, the expression levels of HOXA10, LIF, CXCR4 proteins and CXCR4 mRNA, and SDF-1 protein and mRNA in the BMSCs+EA group were significantly up-regulated (<0.05, <0.01). Compared to the BMSCs group, the number of endometrial glands, and the expression levels of LIF, CXCR4 proteins and CXCR4 mRNA in the BMSCs+EA group were up-regulated (0.01, <0.05); the number of endometrial glands, the immunoactivity of CK19 and vimentin, the expression levels of HOXA10, LIF, CXCR4 proteins and CXCR4 mRNA in the BMSCs+AMD3100 group were down-regulated (<0.01). Compared to the BMSCs+EA group, the number of endometrial glands, the immunoactivity of CK19 and vimentin, the expression levels of HOXA10, LIF, CXCR4 proteins and CXCR4 mRNA in the BMSCs+EA+AMD3100 group were down-regulated (<0.01). Results of H.E. staining showed thin endometrium with absence of epithelial cells, and sparse glands and blood vessels, with smaller glandular cavity in the model group, which was relative milder in BMSCs and BMSCs+EA groups.
EA can promote the transfer of transplanted BMSCs to the damaged site through SDF-1/CXCR4 signaling related stem cell homing, thereby promoting thin endometrial regeneration, repairing endometrial injury, and improving endometrial tolerance in rats with thin endometrium.
基于基质细胞衍生因子1(SDF-1)/CXC趋化因子受体4(CXCR4)信号轴,探讨电针(EA)联合骨髓间充质干细胞(BMSCs)移植能否促进薄型子宫内膜再生并提高子宫内膜容受性,进而研究其促进BMSCs归巢修复薄型子宫内膜的机制。
将30只成年雌性SD大鼠随机分为正常对照组、模型组、BMSCs移植组(BMSCs)、BMSCs+AMD3100组(CXCR4特异性拮抗剂,BMSCs+AMD3100)、BMSCs+EA组和BMSCs+EA+AMD3100组,每组5只。在发情期通过宫腔注射95%乙醇建立薄型子宫内膜模型。模型组大鼠在造模第1、3、7天尾静脉注射PBS溶液,连续3个发情周期每天腹腔注射生理盐水。BMSCs组大鼠在造模第1、3、7天尾静脉注射BMSCs悬液,BMSCs+EA组大鼠接受BMSCs移植并进行EA刺激。采用2 Hz/15 Hz、1 mA的电针刺激“关元”(CV4)、双侧“三阴交”(SP9)、“子宫”(EX-CA1)15分钟,每天1次,连续3个发情周期。BMSCs+AMD3100组大鼠尾静脉注射BMSCs悬液(1×10/mL)并腹腔注射AMD3100(5 mg/kg),BMSCs+EA+AMD3100组大鼠接受BMSCs、AMD3100及EA处理,两组均每天1次,连续3个发情周期。采用苏木精-伊红(H.E.)染色观察子宫内膜组织的组织病理学变化,采用免疫组织化学法检测子宫内膜中细胞角蛋白(CK19)和波形蛋白的表达(用于评估子宫内膜的损伤和修复情况)。采用蛋白质免疫印迹法检测同源框A10(HOXA10)、白血病抑制因子(LIF)、SDF-1和CXCR4蛋白的表达水平,采用实时荧光定量PCR法检测子宫内膜中SDF-1和CXCR4 mRNA的表达水平。
与正常对照组相比,模型组子宫内膜腺体数量、CK19和波形蛋白的免疫活性、HOXA10、LIF和CXCR4蛋白及CXCR4 mRNA的表达水平显著下调(<0.01),SDF-1蛋白和mRNA的表达水平显著上调(<0.05)。与模型组相比,BMSCs组子宫内膜腺体数量、CK19和波形蛋白的免疫活性、HOXA10、LIF、CXCR4蛋白及CXCR4 mRNA的表达水平,以及BMSCs+EA组子宫内膜腺体数量、CK19和波形蛋白的免疫活性、HOXA10、LIF、CXCR4蛋白及CXCR4 mRNA、SDF-1蛋白和mRNA的表达水平均显著上调(<0.05,<0.01)。与BMSCs组相比,BMSCs+EA组子宫内膜腺体数量及LIF、CXCR4蛋白和CXCR4 mRNA的表达水平上调(<0.01,<0.05);BMSCs+AMD3100组子宫内膜腺体数量、CK19和波形蛋白的免疫活性、HOXA10、LIF、CXCR4蛋白及CXCR4 mRNA的表达水平下调(<0.01)。与BMSCs+EA组相比,BMSCs+EA+AMD3100组子宫内膜腺体数量、CK19和波形蛋白的免疫活性、HOXA10、LIF、CXCR4蛋白及CXCR4 mRNA的表达水平下调(<0.01)。H.E.染色结果显示,模型组子宫内膜薄,无上皮细胞,腺体和血管稀疏,腺腔较小,BMSCs组和BMSCs+EA组相对较轻。
电针可通过SDF-1/CXCR4信号相关的干细胞归巢促进移植的BMSCs向损伤部位转移,从而促进薄型子宫内膜再生,修复子宫内膜损伤,提高薄型子宫内膜大鼠的子宫内膜容受性。