胃癌来源的间充质干细胞通过JAK2/STAT3信号通路调节胃癌微环境中巨噬细胞的M2极化

[Gastric cancer-derived mesenchymal stem cells regulate the M2 polarization of macrophages within gastric cancer microenvironment via JAK2/STAT3 signaling pathway].

作者信息

Li W, Zhao S L, Zheng P, Shi P Q, Zhou Y, Zhang T, Huo J, Yang J

机构信息

Center Laboratory, the First People's Hospital of Lianyungang, Lianyungang 222001, China.

Clinical Laboratory, the First People's Hospital of Lianyungang, Lianyungang 222001, China.

出版信息

Zhonghua Zhong Liu Za Zhi. 2022 Jul 23;44(7):728-736. doi: 10.3760/cma.j.cn112152-20200106-00008.

Abstract

To investigate the role and mechanism of tumor-derived mesenchymal stem cells in regulating the M2 polarization of macrophages within gastric cancer microenvironment. Gastric cancer tissues and the adjacent non-cancerous tissues were collected from patients underwent gastric cancer resection in the First People's Hospital of Lianyungang during 2018. In our study, THP-1-differentiated macrophages were co-cultured with gastric cancer-derived mesenchymal stem cells (GC-MSCs). Then, the M2 subtype-related gene, the markers expressed on cell surface and the cytokine profile were analyzed by real-time quantitative reverse transcription polymerase chain reaction (qRT-PCR), flow cytometry and Luminex liquid chip, respectively. The key cytokines mediating the inducing effect of GC-MSCs on macrophage polarization into the M2 subtype were detected and screened by Luminex liquid chip, which were further confirmed by the neutralizing antibody test. The expressions of macrophage proteins involved in M2 polarization-related signaling pathways under the different co-culture conditions of GC-MSCs were detected by western blot. In Mac+ GC-MSC-culture medium (CM) group, the expression levels of Ym-1 and Fizz-1 (1.53±0.32 and 13.22±1.05, respectively), which are markers for M2 subtype, were both significantly higher than those of Mac group (1.00±0.05 and 1.21±0.38, respectively, <0.05). The level of iNOS in Mac+ GC-MSC-CM group (0.60±0.41) was significantly lower than that of Mac group (1.06±0.38, =0.023). In Mac+ GC-MSC-Transwell (TW) group, the expression levels of Ym-1 and Fizz-1 (1.47±0.09 and 13.16±2.77, respectively) were both significantly higher than those of Mac group (1.00±0.05 and 1.21±0.38, respectively, <0.05). The level of iNOS in Mac+ GC-MSC-CM group (0.56±0.03) was significantly lower than that of Mac group (1.06±0.38, =0.026). The ratios of CD163(+) /CD204(+) cells in Mac+ GC-MSC-CM and Mac+ GC-MSC-TW groups (3.80% and 4.40%, respectively) were both remarkably higher than that of Mac group (0.60%, <0.05). The expression levels of IL-10, IL-6, MCP-1 and VEGF in Mac+ GC-MSC-CM group were (592.60±87.52), (1 346.80±64.70), (11 256.00±29.03) and (1 463.90±66.67) pg/ml, respectively, which were significantly higher than those of Mac group [(41.03±2.59), (17.35±1.79), (5 213.30±523.71) and (267.12±12.06) pg/ml, respectively, <0.05]. The levels of TNF-α, IP-10, RANTES and MIP-1α were (95.57±9.34), (410.48±40.68), (6 967.30±1.29) and (1 538.70±283.04) pg/ml, which were significantly lower than those of Mac group [(138.01±24.31, (1 298.60±310.50), (14 631.00±4.21) and (6 633.20±1.47) pg/ml, respectively, <0.05]. The levels of IL-6 and IL-8 in GC-MSCs [(11 185.02±2.82) and (12 718.03±370.17) pg/ml, respectively] were both strikingly higher than those of MSCs from adjacent non-cancerous gastric cancer tissues [(270.71±59.38) and (106.04±32.84) pg/ml, repectively, <0.05]. The ratios of CD86(+) cells in Mac+ IL-6-blocked-GC-MSC-CM and Mac+ IL-8-blocked-GC-MSC-CM groups (28.80% and 31.40%, respectively) were both higher than that of Mac+ GC-MSC-CM group (24.70%). Compared to Mac+ GC-MSC-CM group (13.70%), the ratios of CD204(+) cells in Mac+ IL-6-blocked-GC-MSC-CM and Mac+ IL-8-blocked-GC-MSC-CM groups (9.90% and 8.70%, separately) were reduced. The expression levels of p-JAK2 and p-STAT3, which are proteins of macrophage M2 polarization-related signaling pathway, in Mac+ GC-MSC-CM group (0.86±0.01 and 1.08±0.01, respectively) were significantly higher than those of Mac group (0.50±0.01 and 0.82±0.01, respectively, <0.05). The expression levels of p-JAK2 in Mac+ IL-6-blocked-GC-MSC-CM group (0.47±0.02) were significantly lower those that of Mac+ GC-MSC-CM group (0.86±0.01, <0.05). The expression levels of p-JAK2 and p-STAT3 in Mac+ IL-8-blocked-GC-MSC-CM group (0.50±0.01 and 0.85±0.01, respectively) were both significantly lower than those of Mac+ GC-MSC-CM group (0.86±0.01 and 1.08±0.01, <0.05). The expression levels of p-JAK2 and p-STAT3 in Mac+ IL-6/IL-8-blocked-GC-MSC-CM group (0.37±0.01 and 0.65±0.01, respectively) were both significantly lower than those of Mac+ GC-MSC-CM group (0.86±0.01 and 1.08±0.01, <0.05). GC-MSCs promote the activation of JAK2/STAT3 signaling pathway in macrophages via high secretions of IL-6 and IL-8, which subsequently induce the macrophage polarization into a pro-tumor M2 subtype within gastric cancer microenvironment.

摘要

探讨肿瘤源性间充质干细胞在胃癌微环境中调节巨噬细胞M2极化的作用及机制。收集2018年在连云港市第一人民医院接受胃癌切除术患者的胃癌组织及癌旁非癌组织。本研究中,将THP-1分化的巨噬细胞与胃癌来源的间充质干细胞(GC-MSCs)共培养。然后,分别通过实时定量逆转录聚合酶链反应(qRT-PCR)、流式细胞术和Luminex液相芯片分析M2亚型相关基因、细胞表面表达的标志物及细胞因子谱。通过Luminex液相芯片检测并筛选介导GC-MSCs诱导巨噬细胞极化为M2亚型作用的关键细胞因子,并用中和抗体试验进一步证实。采用蛋白质免疫印迹法检测在GC-MSCs不同共培养条件下巨噬细胞中参与M2极化相关信号通路的蛋白质表达。在巨噬细胞+GC-MSC-条件培养基(CM)组中,M2亚型标志物Ym-1和Fizz-1的表达水平(分别为1.53±0.32和13.22±1.05)均显著高于巨噬细胞组(分别为1.00±0.05和1.21±0.38,P<0.05)。巨噬细胞+GC-MSC-CM组中诱导型一氧化氮合酶(iNOS)水平(0.60±0.41)显著低于巨噬细胞组(1.06±0.38,P=0.023)。在巨噬细胞+GC-MSC-Transwell(TW)组中,Ym-1和Fizz-1的表达水平(分别为1.47±0.09和13.16±2.77)均显著高于巨噬细胞组(分别为1.00±0.05和1.21±0.38,P<0.05)。巨噬细胞+GC-MSC-CM组中iNOS水平(0.56±0.03)显著低于巨噬细胞组(1.06±0.38,P=0.026)。巨噬细胞+GC-MSC-CM组和巨噬细胞+GC-MSC-TW组中CD163(+) /CD204(+)细胞比例(分别为3.80%和4.40%)均显著高于巨噬细胞组(0.60%,P<0.05)。巨噬细胞+GC-MSC-CM组中白细胞介素-10(IL-10)、IL-6、单核细胞趋化蛋白-1(MCP-1)和血管内皮生长因子(VEGF)的表达水平分别为(592.60±87.52)、(1 346.80±64.70)、(11 256.00±29.03)和(1 463.90±66.67)pg/ml,均显著高于巨噬细胞组[分别为(41.03±2.59)、(17.35±1.79)、(5 213.30±523.71)和(267.12±12.06)pg/ml,P<0.05]。肿瘤坏死因子-α(TNF-α)、干扰素γ诱导蛋白10(IP-10)、调节激活正常T细胞表达和分泌因子(RANTES)和巨噬细胞炎性蛋白-1α(MIP-1α)水平分别为(95.57±9.34)、(410.48±40.68)、(6 967.30±1.29)和(1 538.70±283.04)pg/ml,均显著低于巨噬细胞组[分别为(138.01±24.31)、(1 298.60±310.50)、(14 631.00±4.21)和(6 633.20±1.47)pg/ml,P<0.05]。GC-MSCs中IL-6和IL-8水平[分别为(11 185.02±2.82)和(12 718.03±370.17)pg/ml]均显著高于癌旁非癌性胃癌组织来源的间充质干细胞[分别为(270.71±59.38)和(106.04±32.84)pg/ml,P<0.05]。巨噬细胞+IL-6阻断-GC-MSC-CM组和巨噬细胞+IL-8阻断-GC-MSC-CM组中CD86(+)细胞比例(分别为28.80%和31.40%)均高于巨噬细胞+GC-MSC-CM组(24.70%)。与巨噬细胞+GC-MSC-CM组(13.70%)相比,巨噬细胞+IL-6阻断-GC-MSC-CM组和巨噬细胞+IL-8阻断-GC-MSC-CM组中CD204(+)细胞比例(分别为9.90%和8.70%)降低。巨噬细胞M2极化相关信号通路蛋白p-JAK2和p-STAT3在巨噬细胞+GC-MSC-CM组中的表达水平(分别为0.86±0.01和1.08±0.01)显著高于巨噬细胞组(分别为0.50±0.01和0.82±0.01,P<0.05)。巨噬细胞+IL-6阻断-GC-MSC-CM组中p-JAK2表达水平(0.47±0.02)显著低于巨噬细胞+GC-MSC-CM组(0.86±0.01,P<0.05)。巨噬细胞+IL-8阻断-GC-MSC-CM组中p-JAK2和p-STAT3表达水平(分别为0.50±0.01和0.85±0.01)均显著低于巨噬细胞+GC-MSC-CM组(0.86±0.01和1.08±0.01,P<0.05)。巨噬细胞+IL-6/IL-8阻断-GC-MSC-CM组中p-JAK2和p-STAT3表达水平(分别为0.37±0.01和0.65±0.01)均显著低于巨噬细胞+GC-MSC-CM组(0.86±0.01和1.08±0.01,P<0.05)。GC-MSCs通过高分泌IL-6和IL-8促进巨噬细胞中JAK2/STAT3信号通路的激活,进而诱导胃癌微环境中巨噬细胞极化为促肿瘤的M2亚型。

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