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211.
目的: 探讨黄芪汤抑制12C6+离子辐射脑模型鼠肾组织细胞凋亡的分子保护机制。方法: 50只SPF级Wistar大鼠随机分为正常对照组,单纯辐射模型组,黄芪汤(高、中、低剂量)组。正常对照组和单纯辐射模型组给予等体积生理盐水灌胃10 ml/(kg·d),黄芪汤治疗组分别灌胃给予黄芪汤18、9、4.5 g/(kg·d),连续给药2周。7 d后除正常对照组外,其余各组大鼠脑组织给予4Gy 12C6+离子束单次照射,辐射后第7日处死各组大鼠。HE染色法观察大鼠肾脏的病理形态变化,ELISA法检测大鼠血清IL-6的含量,实时荧光定量PCR法测定大鼠肾脏Bcl-2、Bax和Caspase-3的基因表达,免疫组化法检测大鼠肾脏Bcl-2、Bax、Caspase-3和NF-κB的蛋白表达。结果: 与正常对照组比较,单纯辐射模型组体重和肾脏指数均显著降低,血清IL-6的含量显著升高,肾脏Bcl-2的基因表达和蛋白表达均显著降低,Bax和Caspase-3的基因表达和蛋白表达均显著升高,NF-κB的蛋白表达也显著升高(P< 0.01),单纯辐射组肾小球系膜细胞明显增生,肾小管间质血管明显扩张充血,肾小管管腔狭窄、不规则。与单纯辐射模型组相比,黄芪汤高剂量组体重和肾脏指数均明显升高,黄芪汤各干预组肾脏Bcl-2的基因表达和蛋白表达均显著升高(P<0.05或P<0.01);而黄芪汤中、高剂量组Bax和Caspase-3的蛋白表达均显著降低,各干预组血清IL-6的含量显著降低,肾脏Bax和Caspase-3的基因表达均显著降低,肾脏NF-κB的蛋白表达显著下降(P<0.05或P<0.01),黄芪汤高剂量组可见肾小球系膜细胞增生情况明显改善,肾小管轮廓清晰。结论: 黄芪汤对12C6+离子辐射脑模型鼠的肾损伤具有一定的防护作用,其作用机制可能与调控Bcl-2/NF-κB信号通路有关。  相似文献   
212.
目的: 探讨间歇速度训练和耐力训练对大鼠骨骼肌纤维类型转化及钙调蛋白激酶/肌细胞增强因子2(CaMK II/MEF2)信号传导通路的影响。方法: 成年雄性SD大鼠(8周龄)18只,随机分成间歇速度训练组(IST),耐力训练组(ET),设空白组(C),每组6只,IST组采用75 m/min×1 min、20 m/min×1 min的交替训练6次,跑台坡度15,持续时间12 min/d;ET组采用速度30 m/ min、跑台坡度7、持续时间90 min/d的耐力训练。干预8周后,分别取小鼠右侧胫骨前肌、比目鱼肌,酶联免疫吸附法检测骨骼肌琥珀酸脱氢酶(SDH)、乳酸脱氢酶(LDH)活性,ATP酶染色法观察I、Ⅱ型肌纤维面密度、数密度变化情况,SDS-PAGE凝胶电泳技术观察骨骼肌MHC亚型百分比含量、骨骼肌mRNA表达谱测序分析及qRT-PCR技术检测CaN、CaMKII、MEF2水平。结果: 相比C组,ET组SDH活性显著上升,LDH活性降低(P<0.05);IST组胫骨前肌中LDH活性值升高(P<0.01)。ET组胫骨前肌MHCIIa%升高,MHCIIb%降低(P<0.05),比目鱼肌MHCI% 和MHCIIa%升高,MHCIIb%均降低(P<0.05)。相比IST组,ET组胫骨前肌MHCIIx%升高(P<0.05)。相比C组,ET组胫骨前肌 I、II 型纤维纤维密度上升,IST组II型纤维纤维密度提高,IST组、ET组比目鱼肌I型纤维纤维密度上升(P<0.05)。相比C组,ET组骨骼肌CaN、CaMKII、MEF2 mRNA表达水平增高,IST组CaN、CaMKII、MEF2 mRNA表达水平下降(P<0.01)。Illumina高通量测序筛选骨骼肌纤维转化相关因子及关联分析,运动干预促使骨骼肌纤维转化相关因子表达变化富集于TGF-β/Smad3、CaN/MEF2、AdipoQ等信号通路,而耐力训练显著提高骨骼肌纤维转化、干细胞功能相关信号通路的富集。结论: 耐力训练促进向氧化型肌纤维转化(慢肌),而间歇速度训练向酵解型肌纤维转化(快肌),并伴随着CaMK II/MEF2传导途径中CaN、CaMKII、MEF2基因的高表达。  相似文献   
213.
The lymphatic vasculature plays important role in regulating fluid homeostasis, intestinal lipid absorption, and immune surveillance in humans. Malfunction of lymphatic vasculature leads to several human diseases. Understanding the fundamental mechanism in lymphatic vascular development not only expand our knowledge, but also provide a new therapeutic insight. Recently, Hippo-YAP/TAZ signaling pathway, a key mechanism of organ size and tissue homeostasis, has emerged as a critical player that regulate lymphatic specification, sprouting, and maturation. In this review, we discuss the mechanistic regulation and pathophysiological significant of Hippo pathway in lymphatic vascular development.  相似文献   
214.
摘要 目的:本研究通过对JNK信号通路的调控来探讨齐墩果酸( oleanolic acid,OA) 对食管癌细胞凋亡的影响。方法:对食管癌细胞EC109进行培养,以MTT法分析不同浓度齐墩果酸对食管癌细胞EC109的生长抑制作用,采用流式细胞术考察齐墩果酸对EC109细胞凋亡的影响,以Western blot实验检测JNK通路蛋白的表达情况。结果:不同浓度齐墩果酸作用Eca109细胞48 h后,均有显著的抑制作用(P<0.05),且随着齐墩果酸浓度的增加,对Eca109的抑制作用逐渐增强。与对照组相比,各浓度OA组的Eca109细胞的凋亡率分别为8.03±0.34 %,12.82±0.28 %,19.34±0.79 %和32.21±0.81 %,均显著增加(P<0.05),且随着OA浓度的增加,细胞凋亡率显著升高。与对照组相比,不同浓度OA组的P-JNK、Bak、Bax表达量均显著升高(P<0.05),Bcl-2表达量显著降低(P<0.05),JNK表达量无显著差异(P>0.05),对OA组(1.2 mmol/L)相比,OA组(2.4 mmol/L) Bak、Bax表达量均显著升高(P<0.05),Bcl-2表达量显著降低(P<0.05),P-JNK、JNK表达量无显著差异(P>0.05)。结论:齐墩果酸能通过对JNK信号通路的调控促进食管癌细胞的凋亡,且随着浓度的增强,细胞凋亡率显著升高。  相似文献   
215.
目的:微生物体内异戊二烯类化合物的前体物异戊烯焦磷酸酯的天然合成路径受到严格的代谢调控,因此限制了异戊二烯类化合物的高效生物合成,而新型异戊二烯醇利用途径独立于生物体内源性代谢路径,通过在微生物中引入IUP能够进行异戊烯焦磷酸酯的大量合成,从而促进异戊二烯类化合物的大量合成。方法:在油脂酵母解脂耶氏酵母中引入IUP,强化异戊烯焦磷酸酯生物合成,促进β-胡萝卜素的高效积累。结果:通过生物信息学的方法预测IUP中两个关键蛋白酿酒酵母来源的胆碱激酶ScCK和拟南芥来源的异戊烯磷酸激酶AtIPK,均为酸性亲水性蛋白,无跨膜区和信号肽,二者都具有疏松不稳定的结构特征,显著富集于磷酸类物质的合成通路中。在解脂耶氏酵母中利用同源重组技术引入外源β-胡萝卜素合成关键基因carRPcarB,强化甲羟戊酸途径的关键基因thmgRggs1,使工程菌株中积累2.68 mg/L β-胡萝卜素。通过Cre-loxP系统回收基因组上的ura标签,再将IUP进一步整合到工程菌株染色体上。当培养基中含有20 mM异戊二烯醇作为底物、碳氮比为4/3且发酵96 h后,重组解脂耶氏酵母中β-胡萝卜素的产量提高到410.2 mg/L,较原始工程菌的产量提高了近200倍。结论:IUP能够促进解脂耶氏酵母中β-胡萝卜素的高效积累,为利用IUP开展β-胡萝卜素和其他异戊二烯类化合物的高效生物合成提供新思路。  相似文献   
216.
鳞翅目昆虫种类繁多,对农业生产和人类生活产生重大影响,宿主昆虫与病毒相互关系的研究对于利用病毒杀虫剂进行害虫治理和益虫病毒性疾病的预防具有重要意义.因此,鳞翅目昆虫与病毒的互作研究显得尤为重要,宿主昆虫的免疫系统在抗病毒感染过程中发挥着关键作用,对病毒产生不同程度的免疫反应.本文综述了昆虫围食膜和中肠对病毒入侵的防御作用,病毒进入体腔后昆虫所产生的细胞免疫和体液免疫反应,以及RNAi、细胞的自噬与凋亡、Toll、Imd、JAK-STAT和STING信号通路等相关的抗病毒免疫途径,并对昆虫抗病毒免疫研究的制约因素和未来鳞翅目昆虫抗病毒免疫的研究重点进行了讨论,以期为害虫的生物防治和益虫疾病的防控提供理论依据.  相似文献   
217.
Short-term or acute temperature stress affect the immune responses and alters the gut microbiota of broilers, but the influences of long-term temperature stress on stress biomarkers and the intestinal microbiota remains largely unknown. Therefore, we examined the effect of three long-term ambient temperatures (high (HC), medium (MC), and low (LC) temperature groups) on the gene expression of broilers’ heat shock proteins (Hsps) and inflammation – related genes, as well as the caecal microbial composition. The results revealed that Hsp70 and Hsp90 levels in HC group significantly increased, and levels of Hsp70, Hsp90, IL-6, TNF-α, and NFKB1 in LC group were significantly higher than in MC group (p < 0.05). In comparison with the MC group, the proportion of Firmicutes increased in HC and LC groups, while that of Bacteroidetes decreased in LC group at phylum level (p < 0.05). At genus level, the proportion of Escherichia/Shigella, Phascolarctobacterium, Parabacteroides,and Enterococcus increased in HC group; the fraction of Faecalibacterium was higher in LC group; and the percentage of Barnesiella and Alistipes decreased in both HC and LC groups (p < 0.05). Functional analysis based on communities’ phylogenetic investigation revealed that the pathways involved in environmental information processing and metabolism were enriched in the HC group. Those involved in cellular processes and signaling, metabolism, and gene regulation were enriched in LC group. Hence, we conclude that the long-term temperature stress can greatly alter the intestinal microbial communities in broilers and may further affect the host’s immunity and health.  相似文献   
218.
Social contact during suckling, in an enriched social environment, can reduce the aggressive behaviours of piglets during regrouping at weaning, and improve their production performance and welfare. The aim of this study was to determine the possible impact of suckling social contact on gut microbes. We performed 16S rRNA sequencing to measure the faecal microbial structure and function in piglets experiencing social contact. Eighteen-litter piglets were allocated to two treatments: an early continuous social contact (CSC) group where piglets from adjacent pens shared a mutual pen starting at 14 days postpartum and a control (CON) group where piglets had no contact with individuals from adjacent pens during the suckling period. The piglets were regrouped at 36 days of age. The litter weights at 35 and 63 days of age were measured. Faecal samples were randomly collected at 16, 35, 42, and 63 days of age and faecal DNA was determined. The results showed that the litter weight of piglets in the CSC group was significantly decreased at 63 days compared with the CON group. Continuous social contact also significantly decreased the microbial richness at 16 and 35 days of age (P < 0.05). Firmicutes was the most abundant bacterial phylum in both groups at all detected time-points and the abundance increased with social contact. At the genus level, Lactobacillus was the most abundant bacterium after weaning and the abundance increased in the piglets with social contact. Compared with the faecal microbiota of control piglets, a total of 22 genera at 16 days, 20 genera at 35 days, 12 genera at 42 days, and 27 genera at 63 days in the faeces of CSC piglets were observed to be significantly different in abundance (linear discriminant analysis score > 3, P < 0.05). Furthermore, functional analysis of the microbial composition showed that the changes induced by early CSC mainly altered the relative abundance of metabolic and related pathways. The social contact notably had an effect on the abundance of microbial pathways for amino acid and carbohydrate metabolism. In conclusion, CSC changed the microbial composition in the faeces of piglets, which might have a negative effect on nutrient metabolism for the suckling-growing piglets. Our study provided new insight into the influence of social contact on the suckling-growing piglets.  相似文献   
219.
Lung cancer is the most aggressive tumour afflicting patients on a global scale. Extracellular vesicle (EV)-delivered microRNAs (miRs) have been reported to play critical roles in cancer development. The current study aimed to investigate the role of hypoxic bone marrow mesenchymal cell (BMSC)-derived EVs containing miR-328-3p in lung cancer. miR-328-3p expression was determined in a set of lung cancer tissues by RT-qPCR. BMSCs were infected with lentivirus-mediated miR-328-3p knock-down and then cultured in normoxic or hypoxic conditions, followed by isolation of EVs. Following ectopic expression and depletion experiments in lung cancer cells, the biological functions of miR-328-3p were analysed using CCK-8 assay, flow cytometry and Transwell assay. Xenograft in nude mice was performed to test the in vivo effects of miR-328-3p delivered by hypoxic BMSC-derived EVs on tumour growth of lung cancer. Finally, the expression of circulating miR-328-3p was detected in the serum of lung cancer patients. miR-328-3p was highly expressed in EVs derived from hypoxic BMSCs. miR-328-3p was delivered to lung cancer cells by hypoxic BMSC-derived EVs, thereby promoting lung cancer cell proliferation, invasion, migration and epithelial-mesenchymal transition. miR-328-3p targeted NF2 to inactivate the Hippo pathway. Moreover, EV-delivered miR-328-3p increased tumour growth in vivo. Additionally, circulating miR-328-3p was bioactive in the serum of lung cancer patients. Taken together, our results demonstrated that hypoxic BMSC-derived EVs could deliver miR-328-3p to lung cancer cells and that miR-328-3p targets the NF2 gene, thereby inhibiting the Hippo pathway to ultimately promote the occurrence and progression of lung cancer.  相似文献   
220.
Osteoporosis is characterized by increased bone fragility, and the drugs used at present to treat osteoporosis can cause adverse reactions. Gentiopicroside (GEN), a class of natural compounds with numerous biological activities such as anti-resorptive properties and protective effects against bone loss. Therefore, the aim of this work was to explore the effect of GEN on bone mesenchymal stem cells (BMSCs) osteogenesis for a potential osteoporosis therapy. In vitro, BMSCs were exposed to GEN at different doses for 2 weeks, whereas in vivo, ovariectomized osteoporosis was established in mice and the therapeutic effect of GEN was evaluated for 3 months. Our results in vitro showed that GEN promoted the activity of alkaline phosphatase, increased the calcified nodules in BMSCs and up-regulated the osteogenic factors (Runx2, OSX, OCN, OPN and BMP2). In vivo, GEN promoted the expression of Runx2, OCN and BMP2, increased the level of osteogenic parameters, and accelerated the osteogenesis of BMSCs by activating the BMP pathway and Wnt/β-catenin pathway, effect that was inhibited using the BMP inhibitor Noggin and Wnt/β-catenin inhibitor DKK1. Silencing the β-catenin gene and BMP2 gene blocked the osteogenic differentiation induced by GEN in BMSCs. This block was also observed when only β-catenin was silenced, although the knockout of BMP2 did not affect β-catenin expression induced by GEN. Therefore, GEN promotes BMSC osteogenesis by regulating β-catenin-BMP signalling, providing a novel strategy in the treatment of osteoporosis.  相似文献   
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