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首页> 外文期刊>Brain research >Cell death, caspase activation, and HMGB1 release of porcine choroid plexus epithelial cells during Streptococcus suis infection in vitro.
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Cell death, caspase activation, and HMGB1 release of porcine choroid plexus epithelial cells during Streptococcus suis infection in vitro.

机译:猪链球菌体外感染过程中猪脉络丛上皮细胞的细胞死亡,胱天蛋白酶激活和HMGB1释放。

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The choroid plexus epithelium constitutes the structural basis of the blood-cerebrospinal fluid barrier. We previously demonstrated that Streptococcus suis (S. suis), a relevant cause of bacterial meningitis in pigs and humans, affects porcine choroid plexus epithelial cell (PCPEC) barrier function and integrity. We now characterized PCPEC cell death and investigated whether apoptosis or necrosis is responsible for the cytotoxicity after infection with different S. suis isolates. We found S. suis strain-dependent histone associated DNA-fragments quantified by ELISA. This response could partially be inhibited by cylcoheximide, cytochalasin D, dexamethasone, herbimycin A, but most effectively by the pan-caspase inhibitor zVAD-fmk. We further detected caspase-3 and -9 activation after infection with all tested S. suis isolates that could also be blocked by zVAD-fmk. However, we found a significantly stronger caspase activity with the protein kinase inhibitor staurosporine. All tested S. suis isolates induced loss of cell viability in PCPEC as shown with the Live/Dead assay, but strain dependent lactate dehydrogenase-release. Both parameters could not be influenced by zVAD-fmk. Immunostaining showed release of high-mobility group box 1 (HMGB1) protein from the nucleus, indicative of necrosis. Transmission electron microscopy showed cell swelling, cytoplasmic vacuolization, loss of membrane integrity, nuclear fermentation but no nuclear condensation, indices for a primarily necrotic cell morphology. Taken together, our findings indicate that S. suis causes cell death in PCPEC by different mechanisms. Although apoptosis may be involved in the process of PCPEC cell death, necrosis seems to be the predominant mechanism. Through inflammation in the choroid plexus during bacterial meningitis, the blood-cerebrospinal fluid barrier function will be compromised.
机译:脉络丛上皮构成了血脑脊液屏障的结构基础。我们以前证明猪链球菌(猪链球菌)是猪和人细菌性脑膜炎的相关病因,会影响猪脉络丛上皮细胞(PCPEC)的屏障功能和完整性。现在,我们表征了PCPEC细胞死亡,并研究了感染猪链球菌分离株后细胞凋亡还是坏死是造成细胞毒性的原因。我们发现通过ELISA定量的猪链球菌菌株依赖性组蛋白相关的DNA片段。该反应可以被环己己酰亚胺,细胞松弛素D,地塞米松,除草霉素A部分抑制,但最有效的是被全胱天蛋白酶抑制剂zVAD-fmk抑制。在用所有测试的猪链球菌分离株感染后,我们进一步检测到caspase-3和-9激活,这些分离株也可能被zVAD-fmk阻断。但是,我们发现蛋白激酶抑制剂星形孢菌素的胱天蛋白酶活性明显增强。如活/死试验所示,所有测试的猪链球菌均在PCPEC中诱导细胞活力丧失,但菌株依赖型乳酸脱氢酶释放。这两个参数均不受zVAD-fmk的影响。免疫染色显示高迁移性族框1(HMGB1)蛋白从细胞核中释放,表明坏死。透射电子显微镜显示细胞肿胀,细胞质空泡化,膜完整性丧失,核发酵但无核凝聚,主要是坏死细胞形态的指标。综上,我们的发现表明,猪链球菌通过不同的机制导致PCPEC中的细胞死亡。尽管凋亡可能与PCPEC细胞死亡过程有关,但坏死似乎是其主要机制。通过细菌性脑膜炎期间脉络丛的炎症,血脑脊液屏障功能将受到损害。

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