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131.
目的:研究骨质疏松病理状态下破骨细胞活性的变化与其线粒体表面RyR表达之间的关系。方法:构建骨质疏松SD大鼠模型,2周后取长管骨骨髓血提取破骨细胞,筛选出发育成熟细胞核大于3的破骨细胞,高速离心法分离细胞胞质Cytosol和细胞内质网SR,Western-Blot分析骨质疏松状态下OC表达RyR通道蛋白的变化;进一步用FlaxStation 3分析OC细胞[Ca2+]i释放;最后评测骨质疏松环境下OC细胞活性和骨吸收能力变化。结果:与对照组相比,骨质疏松实验组大鼠OC细胞内质网SR上RyR蛋白表达显著减少;,同时破骨细胞[Ca2+]i释放减少导致OC细胞活性骨吸收能力显著增加。结论:破骨细胞内RyR通过调控其细胞内钙释放程度对OC活性产生影响。  相似文献   
132.
Cholesterol is essential in establishing most functional animal cell membranes; cells cannot grow or proliferate in the absence of sufficient cholesterol. Consequently, almost every cell, tissue, and animal tightly regulates cholesterol homeostasis, including complex mechanisms of synthesis, transport, uptake, and disposition of cholesterol molecules. We hypothesize that cellular recognition of cholesterol insufficiency causes cell cycle arrest in order to avoid a catastrophic failure in membrane synthesis. Here, we demonstrate using unbiased proteomics and standard biochemistry that cholesterol insufficiency causes upregulation of prohibitin, an inhibitor of cell cycle progression, through activation of a cholesterol‐responsive promoter element. We also demonstrate that prohibitin protects cells from apoptosis caused by cholesterol insufficiency. This is the first study tying cholesterol homeostasis to a specific cell cycle regulator that inhibits apoptosis. J. Cell. Biochem. 111: 1367–1374, 2010. © 2010 Wiley‐Liss, Inc.  相似文献   
133.
Three previously undescribed chlorophenyl glycosides, (2,4,6-trichloro-3-hydroxy-5-methoxyphenyl)methyl β-D-glucopyranoside ( 1 ), (2,4-dichloro-3,5-dimethoxyphenyl)methyl 6-O-β-D-glucopyranosyl-β-D-glucopyranoside ( 2 ) and 4-chloro-3-methoxy-5-methylphenyl 6-O-(6-deoxy-β-L-mannopyranosyl)-β-D-glucopyranoside ( 3 ) were obtained from Lilium regale. The absolute configurations of these new finds were elucidated by comprehensive analyses of spectroscopic data combined with acid hydrolysis derivatization. (2,4-dichloro-3,5-dimethoxyphenyl)methyl 6-O-β-D-glucopyranosyl-β-D-glucopyranoside ( 2 ) can inhibit the proliferation of lung carcinoma A549 cells with an IC50 value of 29 μΜ.  相似文献   
134.
补充益生菌对功能性腹泻患者焦虑抑郁状态的影响   总被引:1,自引:0,他引:1  
目的探讨益生菌对功能性腹泻患者临床症状和心理健康的影响。方法将2019年3月至2019年12月在广东省肇庆市高要区人民医院消化内科门诊收治的伴有焦虑抑郁状态的90例功能性腹泻住院病人随机分为试验组、对照组A、对照组B。三组受试者均口服匹维溴铵,试验组口服双歧杆菌四联活菌,对照组A服用氟西汀,对照组B未给其他药物治疗,疗程均为1个月。治疗前后,比较患者大便次数及性状、汉密尔顿焦虑量表(HAMA)和汉密尔顿抑郁量表(HAMD)评分。结果治疗前三组患者每周排便不同次数的人数比较,差异无统计学意义(P>0.05)。治疗第3周和第4周后,与对照组A相比,对照组B和试验组的排便不同次数的人数差异具有统计学意义(P<0.05)。治疗第4周后,试验组与对照组B的排便不同次数的人数比较,差异具有统计学意义(P<0.05)。治疗前3组患者Bristol粪便性状评分比较差异无统计学意义(P>0.05)。治疗第3和第4周后,与对照组A相比,对照组B和试验组的Bristol粪便性状评分比较,差异有统计学意义(P<0.05)。治疗第4周后,试验组与对照组B的Bristol粪便性状评分比较,差异有统计学意义(P<0.05)。治疗后与对照组A比较,对照组B和试验组HAMA评分和HAMD评分显著低于对照组A,且差异具有统计学意义(P<0.05)。与对照组B比较,试验组HAMA评分和HAMD评分显著低于对照组B(P<0.05)。结论通过补充益生菌可调节功能性腹泻患者腹泻次数,提高功能性腹泻患者生活质量,改善患者焦虑抑郁症状。  相似文献   
135.
Silicon (Si) uptake by Poaceae plants has beneficial effects on herbivore defense. Increased plant physical barrier and altered herbivorous feeding behaviors are documented to reduce herbivorous arthropod feeding and contribute to enhanced plant defense. Here, we show that Si amendment to rice (Oryza sativa) plants contributes to reduced feeding in a phloem feeder, the brown planthopper (Nilaparvata lugens, BPH), through modulation of callose deposition. We associated the temporal dynamics of BPH feeding with callose deposition on sieve plates and further with callose synthase and hydrolase gene expression in plants amended with Si. Biological assays revealed that BPH feeding was lower in Si‐amended than in nonamended plants in the early stages post‐BPH infestation. Histological observation showed that BPH infestation triggered fast and strong callose deposition in Si‐amended plants compared with nonamended plants. Analysis using qRT‐PCR revealed that expression of the callose synthase gene OsGSL1 was up‐regulated more and that the callose hydrolase (β‐1,3‐glucanase) gene Gns5 was up‐regulated less in Si‐amended than in nonamended plants during the initial stages of BPH infestation. These dynamic expression levels of OsGSL1 and Gns5 in response to BPH infestation correspond to callose deposition patterns in Si‐amended versus nonamended plants. It is demonstrated here that BPH infestation triggers differential gene expression associated with callose synthesis and hydrolysis in Si‐amended and nonamended rice plants, which allows callose to be deposited more on sieve tubes and sieve tube occlusions to be maintained more thus contributing to reduced BPH feeding on Si‐amended plants.  相似文献   
136.
137.

Objective

Burn-induced gut dysfunction plays an important role in the development of sepsis and multiple organ dysfunction. Emerging evidence suggests that hypoxia-inducible factor-1α (HIF-1α) is critical in paracelluar barrier functions via regulating vascular endothelial growth factor (VEGF) and myosin light chain kinase (MLCK) expression. Previous studies have also demonstrated that histone deacetylase inhibitors (HDACIs) can repress HIF-1α. This study aims to examine whether valproic acid (VPA), a HDACI, protects against burn-induced gut barrier dysfunction via repressing HIF-1α-dependent upregulation of VEGF and MLCK expression.

Methods

Rats were subjected to third degree 55% TBSA burns and treated with/ without VPA (300mg/kg). Intestinal barrier dysfunction was evaluated by permeability of intestinal mucosa to fluorescein isothiocyanate (FITC)-dextran and histologic evaluation. Histone acetylation, tight junction protein zonula occludens 1 (ZO-1), VEGF, MLCK and HIF-1α were measured. In addition, CaCO2 cells were transfected with siRNA directed against HIF-1α and were stimulated with CoCl2 (1mM) for 24 hours with/without VPA (2mM) followed by analysis of HIF-1α, MLCK, VEGF and ZO-1.

Results

Burn insults resulted in a significant increase in intestinal permeability and mucosal damage, accompanied by a significant reduction in histone acetylation, ZO-1, upregulation of VEGF, MLCK expression, and an increase in HIF-1α accumulation. VPA significantly attenuated the increase in intestinal permeability, mucosa damage, histone deacetylation and changes in ZO-1 expression. VPA also attenuated the increased VEGF, MLCK and HIF-1α protein levels. VPA reduced HIF-1α, MLCK and VEGF production and prevented ZO-1 loss in CoCl2-stimulated Caco-2 cells. Moreover, transfection of siRNA directed against HIF-1α led to inhibition of MLCK and VEGF production, accompanied by upregulation of ZO-1.

Conclusions

These results indicate that VPA can protect against burn-induced gut barrier dysfunction. These protective effects may be due to its inhibitory action on HIF-1α, leading to a reduction in intestinal VEGF and MLCK expression and minimizing ZO-1 degradation.  相似文献   
138.
Stomatal sensitivity to abscisic acid following water deficit stress   总被引:4,自引:3,他引:4  
Short-and medium-term stresses (1 and 24 h, respectively) wereapplied to detached leaves of Commelina communis L., resultingin both cases in a final leaf cell water potential (  相似文献   
139.

Various algal diets of different lipid content and composition were used to rear batches of naupliar larvae of Balanus amphitrite. The cyprids in these larval batches differed in lipid content and were used to investigate the combined effect of cyprid lipid content and cyprid age on attachment and metamorphosis. For this purpose, cyprids were aged for 0,3 and 6 d at 8°C prior to utilization in laboratory attachment assays. The percentage attachment of cyprids with similar lipid content differed significantly among the three age categories. A strong and a weak positive relationship between cyprid lipid content and attachment were monitored in young and old cyprids, respectively. A significant interaction (two‐way ANOVA) between cyprid age and lipid content was observed, indicating that these factors jointly affect larval attachment and metamorphosis in B. amphitrite from the beginning of the cyprid stage.  相似文献   
140.
The phosphorylation and dephosphorylation of proteins on tyrosyl residues are key regulatory mechanisms in T-cell signal transduction and are controlled by the opposing activities of protein tyrosine kinases and phosphotyrosyl phosphatases (PTPs). In T cells, several nontransmembrane protein tyrosine kinases are associated with receptors; for example, Lck is bound to the coreceptors CD4 and CD8 and becomes activated upon their stimulation. In comparison, little is known about the role of nontransmembrane PTPs in early T-cell signaling. SH-PTP1 (PTP1C, HCP, SHP) is a nontransmembrane PTP expressed primarily in hematopoietic cells, including T cells. We have found that SH-PTP1 is basally phosphorylated on serine in resting T cells. Upon stimulation of CD4 or CD8 either in a T-cell hybridoma cell line or in primary thymocytes, SH-PTP1 becomes tyrosyl phosphorylated. Moreover, SH-PTP1 is constitutively phosphorylated on tyrosine in the Lck-overexpressing lymphoma cell line LSTRA. SH-PTP1 is also a good substrate for recombinant Lck in vitro. Comparisons of the tryptic phosphopeptide maps of wild-type SH-PTP1 and deletion and point mutations establish that the two sites (Y-536 and Y-564) which are directly phosphorylated by Lck in vitro are also phosphorylated in vivo in LSTRA cells. One of these sites (Y-564) is phosphorylated in T cells in response to Lck activation. We conclude that SH-PTP1 undergoes Lck-dependent tyrosyl phosphorylation in T cells and likely plays a role in early T-cell signaling.  相似文献   
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