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1.
This study has shown that purified recombinant human α‐synuclein (20 μM) causes membrane depolarization and loss of phosphorylation capacity of isolated purified rat brain mitochondria by activating permeability transition pore complex. In intact SHSY5Y (human neuroblastoma cell line) cells, lactacystin (5 μM), a proteasomal inhibitor, causes an accumulation of α‐synuclein with concomitant mitochondrial dysfunction and cell death. The effects of lactacystin on intact SHSY5Y cells are, however, prevented by knocking down α‐synuclein expression by specific siRNA. Furthermore, in wild‐type (non‐transfected) SHSY5Y cells, the effects of lactacystin on mitochondrial function and cell viability are also prevented by cyclosporin A (1 μM) which blocks the activity of the mitochondrial permeability transition pore. Likewise, in wild‐type SHSY5Y cells, typical mitochondrial poison like antimycin A (50 nM) produces loss of cell viability comparable to that of lactacystin (5 μM). These data, in combination with those from isolated brain mitochondria, strongly suggest that intracellularly accumulated α‐synuclein can interact with mitochondria in intact SHSY5Y cells causing dysfunction of the organelle which drives the cell death under our experimental conditions. The results have clear implications in the pathogenesis of sporadic Parkinson's disease.

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2.
目的:探讨全麻或全麻复合硬膜外麻醉对食管癌手术患者的T细胞水平及术后认知功能的影响。方法:选择2014年1月至2015年12月于我院择期行开胸手术的食管癌患者100例为研究对象,根据手术时间顺序分为观察组(全麻复合硬膜外麻醉)和对照组(全麻),每组50例,观察记录两组患者诱导前、插管时、术中1 h、拔管后的平均动脉压(MAP)、血氧饱和度(Sp O2)和心率(HR);两组患者术前30 min、术后2 h、术后2 d和术后7 d的T细胞亚群水平,包括CD3~+、CD4~+、CD8~+、CD4~+/CD8~+;两组患者术前1 d,术后6 h,术后1 d,术后3 d的认知功能;术后认知功能障碍(POCD)发生率。结果:诱导前观察组和对照组患者的MAP、Sp O2和HR比较,差异均不显著(P0.05),插管时、术中1h和拔管后观察组患者的MAP和HR水平均明显低于对照组(P0.05),而Sp O2明显高于对照组(P0.05)。术后2 h,观察组和对照组的CD3~+、CD4~+、CD8~+、CD4~+/CD8~+值均较术前30 min明显降低(P0.05),但两组间各指标值无显著性差异(P0.05);术后2 d,观察组的CD3~+、CD4~+、CD8~+、CD4~+/CD8~+值均明显高于对照组(P0.05)。术后7 d,两组的T细胞亚群水平均较术前30 min无显著性差异(P0.05)。术后6 h和术后1 d,两组的MMSE评分均较术前1 d明显下降(P0.05),观察组术后1 d、3 d和7 d的MMSE评分均明显高于对照组(P0.05)。术后6 h,观察组的POCD发生率明显低于对照组(P0.05),术后1 d和3 d观察组的POCD发生率低于对照组,但无统计学差异(P0.05)。结论:与单凭全麻比较,全麻复合硬膜外麻醉对食管癌手术患者的T细胞水平及术后认知功能的影响较小,术后恢复快。  相似文献   
3.
Parkinson’s disease (PD), defined as a neurodegenerative disorder, is characterized by the loss of dopaminergic neurons in the substantia nigra in the midbrain. Loss-of-function mutations in the parkin gene are a major cause of autosomal recessive, early-onset PD. Parkin has been implicated in the maintenance of healthy mitochondria, although previous studies show conflicting findings regarding mitochondrial abnormalities in fibroblasts from patients harboring parkin-null mutations. The aim of the present study was to determine whether South African PD patients with parkin mutations exhibit evidence for mitochondrial dysfunction. Fibroblasts were cultured from skin biopsies obtained from three patients with homozygous parkin-null mutations, two heterozygous mutation carriers and two wild-type controls. Muscle biopsies were obtained from two of the patients. The muscle fibers showed subtle abnormalities such as slightly swollen mitochondria in focal areas of the fibers and some folding of the sarcolemma. Although no differences in the degree of mitochondrial network branching were found in the fibroblasts, ultrastructural abnormalities were observed including the presence of electron-dense vacuoles. Moreover, decreased ATP levels which are consistent with mitochondrial dysfunction were observed in the patients’ fibroblasts compared to controls. Remarkably, these defects did not manifest in one patient, which may be due to possible compensatory mechanisms. These results suggest that parkin-null patients exhibit features of mitochondrial dysfunction. Involvement of mitochondria as a key role player in PD pathogenesis will have important implications for the design of new and more effective therapies.  相似文献   
4.
5.
During anoxia, overall protein synthesis is almost undetectable in the brain of the western painted turtle. The aim of this investigation was to address the question of whether there are alterations to specific proteins by comparing the normoxic and anoxic brain proteomes. Reductions in creatine kinase, hexokinase, glyceraldehyde‐3‐phosphate dehydrogenase, and pyruvate kinase reflected the reduced production of adenosine triphosphate (ATP) during anoxia while the reduction in transitional endoplasmic reticulum ATPase reflected the conservation of ATP or possibly a decrease in intracellular Ca2+. In terms of neural protection programed cell death 6 interacting protein (PDCD6IP; a protein associated with apoptosis), dihydropyrimidinase‐like protein, t‐complex protein, and guanine nucleotide protein G(o) subunit alpha (Go alpha; proteins associated with neural degradation and impaired cognitive function) also declined. A decline in actin, gelsolin, and PDCD6IP, together with an increase in tubulin, also provided evidence for the induction of a neurological repair response. Although these proteomic alterations show some similarities with the crucian carp (another anoxia‐tolerant species), there are species‐specific responses, which supports the theory of no single strategy for anoxia tolerance. These findings also suggest the anoxic turtle brain could be an etiological model for investigating mammalian hypoxic damage and clinical neurological disorders.  相似文献   
6.
目的:基于诱导性多潜能干细胞(induced pluripotent stem cells,i PSC)多潜能性的特点将亨廷顿舞蹈病(Huntington disease,HD)患者和正常人特异性i PSC定向诱导分化成运动神经元,并在运动神经元的基础上探讨HD的发病机制。方法:将HD患者和正常人的i PS细胞在特定的生长因子和神经因子的作用下定向诱导分化成运动神经元。然后用免疫荧光染色检测运动神经元特异性标记物HB9和ISL1的表达。以DCFH-DA和JC-1为荧光探针,利用流式分析法分别对正常人和HD患者运动神经元细胞活性氧和线粒体膜电位进行检测。结果:经过25天诱导分化成功得到HD患者和正常人的运动神经元,并且免疫荧光染色显示,βIII-微管蛋白阳性的神经细胞同时表达运动神经元特异性的标志物HB9和ISL1。此外,经实验统计发现HD患者运动神经元细胞内代表活性氧水平的荧光强度(4704.33±390.50)较正常组(2840.33±166.20)有明显增强(P=0.002),而且代表线粒体膜电位红绿荧光强度比(2.74±0.13)较正常组(3.97±0.29)相比有明显降低(P=0.03)。结论:HD患者特异性i PSC能够诱导分化成运动神经元,为实验提供研究模型。HD的发病与运动神经元细胞线粒体功能障碍有关。  相似文献   
7.
Mitochondrial dynamics play a critical role in deciding the fate of a cell under normal and diseased condition. Recent surge of studies indicate their regulatory role in meeting energy demands in renal cells making them critical entities in the progression of diabetic nephropathy. Diabetes is remarkably associated with abnormal fuel metabolism, a basis for free radical generation, which if left unchecked may devastate the mitochondria structurally and functionally. Impaired mitochondrial function and their aberrant accumulation have been known to be involved in the manifestation of diabetic nephropathy, indicating perturbed balance of mitochondrial dynamics, and mitochondrial turnover. Mitochondrial dynamics emphasize the critical role of mitochondrial fission proteins such as mitochondrial fission 1, dynamin-related protein 1 and mitochondrial fission factor and fusion proteins including mitofusin-1, mitofusin-2 and optic atrophy 1. Clearance of dysfunctional mitochondria is aided by translocation of autophagy machinery to the impaired mitochondria and subsequent activation of mitophagy regulating proteins PTEN-induced putative kinase 1 and Parkin, for which mitochondrial fission is a prior event. In this review, we discuss recent progression in our understanding of the molecular mechanisms targeting reactive oxygen species mediated alterations in mitochondrial energetics, mitophagy related disorders, impaired glucose transport, tubular atrophy, and renal cell death. The molecular cross talks linking autophagy and renoprotection through an intervention of 5′-AMP-activated protein kinase, mammalian target of rapamycin, and SIRT1 factors are also highlighted here, as in-depth exploration of these pathways may help in deriving therapeutic strategies for managing diabetes provoked end-stage renal disease.  相似文献   
8.
Intermittent hypoxia (IH), the key property of obstructive sleep apnea (OSA), is closely associated with endothelial dysfunction. Endothelial-cell-specific molecule-1 (ESM-1, Endocan) is a novel, reported molecule linked to endothelial dysfunction. The aim of this study is to evaluate the effect of IH on ESM-1 expression and the role of ESM-1 in endothelial dysfunction. We found that serum concentration of ESM-1, inter-cellular adhesion molecule-1 (ICAM-1), and vascular cell adhesion molecule-1 (VCAM-1) is significantly higher in patients with OSA than healthy volunteers (p < 0.01). The expression of ESM-1, hypoxia-inducible factor-1 alpha (HIF-1α), and vascular endothelial growth factor (VEGF) was significantly increased in human umbilical vein endothelial cells (HUVECs) by treated IH in a time-dependent manner. HIF-1α short hairpin RNA and vascular endothelial growth factor receptor (VEGFR) inhibitor inhibited the expression of ESM-1 in HUVECs. ICAM-1 and VCAM-1 expressions were significantly enhanced under IH status, accompanied by increased monocyte–endothelial cell adhesion rate ( p < 0.001). Accordingly, ESM-1 silencing decreased the expression of ICAM-1 and VCAM-1 in HUVECs, whereas ESM-1 treatment significantly enhanced ICAM-1 expression accompanied by increasing adhesion ability. ESM-1 is significantly upregulated by the HIF-1α/VEGF pathway under IH in endothelial cells, playing a critical role in enhancing adhesion between monocytes and endothelial cells, which might be a potential target for IH-induced endothelial dysfunction.  相似文献   
9.
目的:探讨氯胺酮麻醉下的MECT治疗难治性抑郁症的安全性和治疗前后的认知功能变化。方法:入组60例需要MECT治疗的难治性抑郁症患者,随机分为氯胺酮组(30例)使用氯胺酮诱导麻醉的MECT治疗;异丙酚组(30例)使用异丙酚诱导麻醉的MECT治疗。入组患者在基线期及MECT治疗8次后完成汉密尔顿抑郁量表(HAMD)评定及连线测验AB、威斯康星卡片分类测验、汉诺塔测试,出组时评定副反应量表。结果:两组患者治疗结束后认知功能均较治疗前明显降低,异丙酚组较氯胺酮组降低更明显。结论:氯胺酮MECT治疗难治性抑郁症安全有效,对患者的认知功能损害较异丙酚组轻,未出现严重副作用。  相似文献   
10.
目的:探讨高剂量生长抑素、奥美拉唑联合止血芳酸治疗急性上消化道出血合并凝血功能障碍患者的临床效果及安全性。方法:选择我院2014年1月~2017年12月收治的92例急性上消化出血合并凝血功能障碍的患者,并按随机数表法将其分为对照组和研究组。对照组予以常规剂量生长抑素、奥美拉唑联合止血芳酸治疗,研究组予以高剂量生长抑素治疗,其余奥美拉唑及止血芳酸用法同对照组。治疗后,比较两组的临床疗效、止血情况、住院时间,治疗前后血常规指标、凝血功能的变化及并发症的发生情况。结果:治疗后,研究组总有效率明显高于对照组[91.30%vs.74.42%](P0.05),而平均止血时间、再止血率及住院时间均明显短于对照组(P0.05);两组白细胞计数(WBC)、部分活化凝血酶原时间(APTT)及凝血酶原时间(PT)均较治疗前明显下降,血红蛋白(Hb)、红细胞计数(RBC)、红细胞压积(Hct)及血小板计数(PLT)均较治疗前明显上升,且研究组以上指标变化较对照组更明显(P0.05)。两组并发症的发生率比较差异均无统计学意义(P0.05)。结论:高剂量生长抑素、奥美拉唑联合止血芳酸治疗急性上消化道出血合并凝血功能障碍的效果明显优于常规剂量生长抑素、奥美拉唑联合止血芳酸治疗,其能够更有效缩短止血时间,避免再出血,且未增加药物不良反应,安全性高。  相似文献   
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