劉堅(jiān) 龍婷婷 李晨彥
[摘要] 目的 探討人臍帶血間充質(zhì)干細(xì)胞(hUC-MSC)對(duì)脂多糖(LPS)誘導(dǎo)的肺泡Ⅱ型上皮細(xì)胞(AECⅡ)凋亡的影響,及MEK/ERK信號(hào)通路在其中的作用。 方法 采用LPS與A549細(xì)胞共培養(yǎng)建立AECⅡ凋亡模型;將凋亡模型按隨機(jī)數(shù)字表法分成6組,分別與MSC條件培養(yǎng)基(MSC-CM)、MEK/ERK通路抑制劑(PD98059)及PBS體外共培養(yǎng),分別為A549+LPS+MSC、A549+LPS+PBS、A549+LPS+PD98059,陰性對(duì)照組為A549+PBS、A549+MSC、A549+PD98059,48 h后采用流式細(xì)胞術(shù)檢測(cè)A549細(xì)胞凋亡情況;對(duì)MEK/ERK通路及凋亡相關(guān)信號(hào)(BAX/BCL-2、FAS、caspase 3及caspase 8)進(jìn)行qPCR檢測(cè),對(duì)A549+LPS+MSC、A549+LPS+PBS、A549+PBS、A549+MSC四組組進(jìn)行Western blot檢測(cè)。 結(jié)果 建立A549+LPS凋亡模型。A549+LPS+MSC、A549+LPS+PD98059組與A549+LPS+PBS比較,凋亡率顯著下降。A549+LPS+MSC及A549+LPS+PD98059的MEK、ERK、BAX/BCL-2、caspase 3及caspase 8 mRNA擴(kuò)增倍數(shù)均顯著低于A549+LPS+PBS(P < 0.05),而蛋白水平上FAS、BAX、cleaved Caspase 3、p-MEK、p-ERK、A549+LPS+MSC較A549+LPS+PBS明顯降低(P < 0.05),而TNF-R1差異無(wú)統(tǒng)計(jì)學(xué)意義(P > 0.05)。 結(jié)論 hUC-MSCs可能通過(guò)旁分泌作用抑制MEK/ERK信號(hào)通路磷酸化,影響內(nèi)源性線粒體及外源性FAS/FASL途徑進(jìn)而減輕LPS誘導(dǎo)的AECⅡ凋亡。
[關(guān)鍵詞] 間充質(zhì)干細(xì)胞;細(xì)胞外信號(hào)調(diào)節(jié)激酶;凋亡;肺泡Ⅱ型上皮細(xì)胞;脂多糖
[中圖分類號(hào)] R563? ? ? ? ? [文獻(xiàn)標(biāo)識(shí)碼] A? ? ? ? ? [文章編號(hào)] 1673-7210(2020)02(c)-0013-06
[Abstract] Objective To discuss the effect of human umbilical cord blood mesenchymal stem cells (hUC-MSC) on alveolar type Ⅱ epithelial cells (AEC Ⅱ) apoptosis induce by lipopolysaccharide (LPS), and the role of MEK/ERK signaling pathway. Methods The AECⅡ apoptosis model was established by LPS co-cultured with A549 cells. The apoptosis model was randomly divided into 6 groups according to random number method, they were co-cultured with MSC conditioned medium (MSC-CM), MEK/ERK pathway inhibitor (PD98059) and PBS, which were named A549+LPS+MSC, A549+LPS+PBS, A549+LPS+PD98059, and the negative control groups were A549+PBS, A549+MSC, A549+PD98059. Apoptosis of A549 cells was detected by Annexin V/PI staining flow cytometry 48 h later. MEK/ERK pathway and apoptosis-related signals (BAX/BCL-2, FAS, caspase 3 and caspase 8) were examined by qPCR. The groups of A549+LPS+MSC, A549+LPS+PBS, A549+PBS, and A549+MSC were selected for Western blot detecting. Results The apoptosis model was established by A549+LPS. Compared with A549+LPS+PBS, the apoptosis rate of A549+LPS+MSC and A549+LPS+PD98059 were decreased significantly (P < 0.05). The mRNA expression levels of MEK, ERK, BAX/BCL-2, caspase 3 and caspase 8 in A549+LPS+MSC and A549+LPS+PD98059 were significantly lower than those in A549+LPS+PBS (P < 0.05). The expression of FAS, BAX, cleaved Caspase 3, p-MEK, and p-ERK protein in the A549+LPS+MSC and A549+LPS+PD98059 were significantly lower than A549+LPS+PBS(P < 0.05). There was no significant different in TNF-R1 among each group (P > 0.05). Conclusion hUC-MSCs may inhibit the phosphorylation of MEK/ERK signaling pathway affecting mitochondria pathway and FAS/FASL pathway by paracrine action, thereby attenuating apoptosis of AECⅡ induced by LPS.
[Key words] Mesenchymal stem cells; Extracellular signal-regulated kinases; Apoptosis; Alveolar type Ⅱ epithelial cells; Lipopolysaccharide
急性呼吸窘迫綜合征(acute respiratory distress syndrome,ARDS)常繼發(fā)于膿毒癥,死亡率高(30%~40%),發(fā)病機(jī)制復(fù)雜,尚缺乏有效的治療措施[1-2]。膿毒癥釋放大量炎癥因子,肺泡上皮細(xì)胞損傷甚至凋亡是ARDS的病理、生理基礎(chǔ)[3-4]。ARDS中肺泡Ⅱ型上皮細(xì)胞(alveolar epithelial type Ⅱ cell,AECⅡ)的凋亡是AEC死亡的主要機(jī)制之一[5]。細(xì)胞外信號(hào)調(diào)節(jié)激酶(extracellular regulated protein kinases,ERK)在細(xì)胞的分化、增殖及凋亡中起關(guān)鍵作用[6-7],本課題組前期已在膿毒癥所致ARDS動(dòng)物模型中發(fā)現(xiàn)MEK/ERK途徑的磷酸化影響著AECⅡ凋亡[8]。
因人臍帶血來(lái)源間充質(zhì)干細(xì)胞(human umbilical cord mesenchymal stem cells,hUC-MSC)有著較高的分化潛能及多種生物學(xué)作用,可改善膿毒癥引起的ARDS[9-12]。本課題組前期研究發(fā)現(xiàn)MSC能夠改善膿毒癥所致ARDS小鼠中AECⅡ凋亡。本研究選用人類肺泡細(xì)胞癌來(lái)源并且具有類似AECⅡ代謝特征和形態(tài)學(xué)特征的A549細(xì)胞[13]進(jìn)行研究,有望從體外試驗(yàn)明確MSC對(duì)AECⅡ凋亡在信號(hào)通路上的機(jī)制。
1 材料與方法
1.1 材料
細(xì)胞株:A549細(xì)胞株由中國(guó)科學(xué)院細(xì)胞庫(kù)提供。儀器:流式細(xì)胞儀(FACSCalibur,BD);熒光定量PCR儀(7300,ABI)。試劑:LPS(L8880,Solarbio)細(xì)胞培養(yǎng)基(RPMI 1640 Hyclone);總RNA提取試劑Trizol Reagent(15596-026,Invitrogen Life Technologies);第一鏈cDNA合成試劑盒RevertAid First Strand cDNA Synthesis Kit(#K1622,Thermo);山羊抗兔cleaved Caspase3單克隆抗體(bs-1518,Abcam),凱基Annexin V-FITC細(xì)胞凋亡檢測(cè)試劑盒(KGA08,凱基生物);PCR引物(Invitrogen Biotechnology Co.,LTD);cleaved-caspase8(10380-1-AP,PTG);bcl-2(2870S,CST);bax(1163,EPI);TNF-R1(ab2143,Abcam);p-MEK(ab96379,Abcam);ERK(4371,bioworld);p-ERK(4371,cst);MEK(bs-1041R,BIOSS);β-actin(sc-1616R,Santa);Pro-caspase3(bs-1518,Bioworld);FAS(sc-1023,Santa)。
1.2 方法
1.2.1 細(xì)胞培養(yǎng)
hUC-MSCs為湘潭市中心醫(yī)院生殖中心從人臍帶血中分離取得,細(xì)胞標(biāo)記及分化潛能在本課題組前期研究中已證實(shí)[14]。
1.2.2 建立A549凋亡模型
將對(duì)數(shù)生長(zhǎng)期細(xì)胞消化后,按4000細(xì)胞/孔接種于96孔板,培養(yǎng)24 h貼壁。繼續(xù)培養(yǎng)24 h后按隨機(jī)數(shù)字法分為3組,對(duì)照組為正常培養(yǎng)的A549細(xì)胞;實(shí)驗(yàn)組細(xì)胞中分別加入不同濃度的 LPS(10、20 μg/mL)并刺激48 h,選擇凋亡水平最高的LPS濃度,建立A549凋亡模型。
1.2.3 Annexin-V-FITC/PI染色流式細(xì)胞術(shù)檢測(cè)A549細(xì)胞凋亡率
分別將A549細(xì)胞在對(duì)照組培養(yǎng)基和hUC-MSC條件培養(yǎng)基中培養(yǎng)48 h。將細(xì)胞消化,離心,去上清。加入1×結(jié)合緩沖液400 μL重懸細(xì)胞,加入5 μL Annexin-V-FITC混勻,室溫避光15 min。加入10 μL PI混勻,冰浴避光5 min。1 h內(nèi)Annexin V-FITC的綠色熒光通過(guò)FITC通道(FL1)檢測(cè),PI紅色熒光通過(guò)PI通道(FL2)檢測(cè)。
1.2.4 檢測(cè)MSC及MEK/ERK通路抑制劑(PD98059)對(duì)LPS誘導(dǎo)A549凋亡的影響
將對(duì)數(shù)生長(zhǎng)期A549細(xì)胞用胰蛋白酶消化,按4000細(xì)胞/孔接種于96孔板,按隨機(jī)數(shù)字表分成6組,每組16孔,實(shí)驗(yàn)組為A549+LPS+MSC、A549+LPS+PD98059,對(duì)照組為A549+LPS+PBS,陰性對(duì)照組為A549+MSC、A549+PD98059、A549+PBS。48 h后Annexin-V-FITC/PI染色流式細(xì)胞術(shù)檢測(cè)三組細(xì)胞凋亡的改變情況。
1.2.5 Rt-PCR及Western blot檢測(cè)MEK/ERK通路相關(guān)基因及蛋白的表達(dá)
對(duì)6組細(xì)胞進(jìn)行qPCR檢測(cè),取A549+LPS+MSC、A549+LPS+PBS、A549+MSC、A549+PBS行Western blot檢測(cè)。
1.2.5.1 Rt-PCR定量檢測(cè)? MEK及ERK、BAX、BCL-2、TNF-R1、FAS、caspase 3、caspase 8的mRNA水平? 分別收集各組A549細(xì)胞,從細(xì)胞中分離總RNA,采用Trizol Reagent(Invitrogen Life Technologies),從各細(xì)胞樣本中取總RNA 5 μg,反轉(zhuǎn)錄成cDNA。Rt-PCR篩選候選基因及采用β-actin作為內(nèi)參。使用Primer Express 2.0軟件設(shè)計(jì)各引物基因序列,β-actin上游引物為5′-GTGACGTTGACATCCGTAAAGA-3′,下游引物為5′-GTAACAGTCCGCCTAGAAGCAC-3′,BAX上游引物為5′-GCCTTTTGCTACAGGGTTCAT-3′,下游引物為5′-TATTGCTGTCAGTTCATCTCCA-3′,BCL2上游引物為5′-TGACTCTCTCGTCGCTACCGT-3′,下游引物為5′-CCTGAAGAGTTCCTCCACACC-3′,CASP3上游引物為5′-GTCTGACTGGAAAGCCGAA-AC-3′,下游引物為5′-GACTGGATGAACCACGACCC-3′,F(xiàn)AS上游引物為5′-GAAGAGACCCCTGTGG-TATTTGA-3′,下游引物為5′-ACACTTTTCCGCTCACAATCAGA-3′。采用Fast Start Universal SYBR Green Master(Rox)(Roche)在熒光定量PCR儀(7300)完成操作。
1.2.5.2 Western blot檢測(cè)? 采用Western blot檢測(cè)其中A549+LPS+MSC、A549+LPS+PBS、A549+PBS、A549+MSC四組細(xì)胞內(nèi)FAS、BAX、BCL-2、TNF-R1、caspase 3、cleaved caspase 3、p-MEK、p-ERK表達(dá)水平。細(xì)胞總蛋白提取,使用RIPA裂解緩沖液提取蛋白質(zhì),并對(duì)蛋白質(zhì)含量進(jìn)行定量。將樣品(30 μg等蛋白)進(jìn)行SDS-PAGE,然后轉(zhuǎn)移到PVDF膜上。針對(duì)FAS、BAX、BCL-2、TNF-R1、caspase 3、cleaved caspase 3、p-MEK、p-ERK的一抗探測(cè)探針,隨后與辣根過(guò)氧化物酶(HRP)偶聯(lián)的抗兔二抗(1∶2000)。采用兔單克隆抗β-actin作為上樣對(duì)照。Quantity One軟件分析各蛋白條帶灰度值。以目標(biāo)蛋白與內(nèi)參β-actin灰度值比值代表各蛋白的相對(duì)表達(dá)水平。
1.3 統(tǒng)計(jì)學(xué)方法
采用SPSS 18.0統(tǒng)計(jì)學(xué)軟件進(jìn)行數(shù)據(jù)分析,計(jì)量資料用均數(shù)±標(biāo)準(zhǔn)差(x±s)表示,多組均數(shù)比較采用單因素方差分析,兩兩比較采用LSD檢驗(yàn);計(jì)數(shù)資料用率表示,組間比較采用χ2檢驗(yàn),以P < 0.05為差異有統(tǒng)計(jì)學(xué)意義。
2 結(jié)果
2.1 AECⅡ凋亡體外模型探索
Annexin-V-FITC/PI染色流式細(xì)胞術(shù)檢測(cè)各組細(xì)胞凋亡結(jié)果,如圖1所示,因隨著LPS濃度繼續(xù)增大,A549細(xì)胞以壞死為主[15],故采用LPS(20 μg/mL)建立誘導(dǎo)A549凋亡模型。
2.2 hUC-MSC和PD98059干預(yù)后對(duì)LPS誘導(dǎo)的A549凋亡影響
與A549+LPS+PBS比較,A549+LPS+MSC及A549+LPS+PD98059的A549凋亡率顯著下降(P < 0.05)。見(jiàn)圖2。
2.3 MSC對(duì)MEK/ERK通路相關(guān)基因及蛋白的表達(dá)水平的影響
2.3.1 Rt-PCR定量檢測(cè)MSC抑制MEK/ERK通路相關(guān)基因mRNA表達(dá)情況
A549+LPS+MSC、A549+LPS+PD98059中A549細(xì)胞內(nèi)BAX、CASPASE 3、CASPASE 8、MEK、ERK的mRNA擴(kuò)增倍數(shù)水平低于A549+LPS+PBS,而B(niǎo)CL-2高于A549+LPS+PBS(P < 0.05)。A549+LPS+PD98059與A549+LPS+PBS的FAS mRNA擴(kuò)增倍數(shù)比較差異無(wú)統(tǒng)計(jì)學(xué)意義(P > 0.05)。而A549+LPS+MSC、A549+LPS+PD98059TNF-R1 mRNA擴(kuò)增倍數(shù)與A549+LPS+PBS組比較,差異無(wú)統(tǒng)計(jì)學(xué)意義(P > 0.05)。見(jiàn)圖3。
2.4 MSC對(duì)MEK/ERK通路及凋亡相關(guān)信號(hào)表達(dá)水平的影響
選擇 A549+LPS+MSC、A549+LPS+PBS、A549+PBS、A549+MSC 進(jìn)行Western blot檢測(cè),BAX及cleaved-caspase 3的蛋白水平,A549+LPS+MSC較A549+LPS+PBS下調(diào)(P < 0.05)。與A549+LPS+PBS比較,A549+LPS+MSC的p-MEK及p-ERK水平、p-MEK/t-MEK、p-ERK/t-ERK比值均降低(P < 0.05),而各組TNF-R1差異無(wú)統(tǒng)計(jì)學(xué)意義(P > 0.05)。見(jiàn)圖4。
3 討論
本研究驗(yàn)證了hUC-MSCs可以改善LPS誘導(dǎo)的AECⅡ的凋亡水平,其通過(guò)旁分泌改變細(xì)胞微環(huán)境來(lái)抑制FAS/FASL系統(tǒng)及內(nèi)源性線粒體凋亡途徑的激活,而MEK/ERK信號(hào)在其中扮演重要角色。
MEK/ERK是Ras絲裂原信號(hào)轉(zhuǎn)導(dǎo)下游的核心元件,在細(xì)胞凋亡過(guò)程中發(fā)揮著重要作用,當(dāng)細(xì)胞外刺激物(如LPS、細(xì)胞因子)與相應(yīng)受體結(jié)合后,SOS與受體或受體底物上的酪氨酸(Tyr)磷酸化位點(diǎn)結(jié)合,在Ras附近形成高濃度的SOS,其促使GTP取代Ras上的GDP而活化Ras,使MEK催化區(qū)中Thr和Ser磷酸化激活MEK,發(fā)揮調(diào)控細(xì)胞凋亡的作用[16-17]。根據(jù)之前本課題組研究發(fā)現(xiàn)的膿毒癥所致ARDS中AECⅡ凋亡的機(jī)制與MEK/ERK磷酸化相關(guān)[8],結(jié)合此次體外研究結(jié)果,即在LPS誘導(dǎo)A549凋亡模型中,p-MEK/p-ERK蛋白表達(dá)增高,本研究認(rèn)為可能是LPS激活Ras/MEK/ERK信號(hào)通路,促進(jìn)MEK和ERK磷酸化,進(jìn)而導(dǎo)致細(xì)胞色素C的大量釋放,形成凋亡體后激活caspase 3,爆發(fā)級(jí)聯(lián)反應(yīng),最終導(dǎo)致AECⅡ凋亡[18-19]。
MSC通過(guò)旁分泌各種生長(zhǎng)因子,彌補(bǔ)損傷情況下生物多樣性重要成分,發(fā)揮調(diào)節(jié)如NF-κB、PI3K/AKT等重要信號(hào)通路的活性,從而改善凋亡的作用[9,20]。本研究結(jié)果發(fā)現(xiàn),通過(guò)MSC-CM及PD98059與LPS誘導(dǎo)A549共培養(yǎng),A549凋亡情況均改善,同時(shí)MSC與PD98059一致,其Bax/Bcl-2、Fas及MEK、MRK在基因水平與對(duì)照組存在明顯差異。且經(jīng)MSC及PD98059干預(yù)后,Bax/bal-2的比例及caspase 3也較對(duì)照組明顯下調(diào)。結(jié)合MSC干預(yù)組的BAX和FAS在蛋白水平的表達(dá)上顯著低于對(duì)照組,且p-MEK和p-ERK的蛋白表達(dá)同樣弱于對(duì)照組,充分說(shuō)明MSC極有可能是通過(guò)抑制MEK/ERK信號(hào)通路的磷酸化,從而抑制AECⅡ的凋亡,但其上游相關(guān)信號(hào)(Raf/Ras)如何調(diào)控MEK/ERK的活化尚需進(jìn)一步的驗(yàn)證。
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(收稿日期:2019-10-09? 本文編輯:任? ?念)