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991.
目的:了解膝关节骨性关节炎患者机体的氧化应激状态,探讨氧化应激反应与膝关节骨性关节炎发生、发展的关系。方法:收集膝关节骨性关节炎患者及健康人群的血清,采用分光光度法测定和比较其SOD、GSH-Px、MDA水平。结果:与健康对照人群相比,膝关节骨性关节炎患者体内SOD、GSH-Px酶类抗氧化剂活力显著增强(P0.05);MDA脂质过氧化损伤产物明显降低(P0.05)。结论:膝关节骨性关节炎患者体内氧化还原状态发生了改变,可能处于抗氧化应激的慢性代偿状态;氧化应激反应参与了骨性关节炎的发生、发展过程。 相似文献
992.
目的:研究分析两种不同电针方法对慢性应激抑郁模型大鼠(CUMS)下丘脑中促甲状腺激素释放激素(TRH)表达的影响。方法:选取60只健康雄性SPF级SD大鼠编号后采用随机数字表法分为对照组(正常喂养)、模型组(仅建立CUMS模型,不予治疗)、观察组A(建立CUMS模型后,脉冲电针治疗)、观察组B(建立CUMS模型后,音乐电针治疗)、氟西汀组(建立CUMS模型后,氟西汀治疗)各12只,对除对照组之外的其他各组大鼠进行1只/笼的孤养结合方式建造CUMS模型,利用开野实验观察各组大鼠行为学改变,采用实时荧光定量(PCR)法测定各组大鼠下丘脑组织中TRH m RNA的表达,采用免疫组化法测定TRH蛋白的表达。结果:在刺激21 d后,模型组大鼠的水平运动次数、垂直运动次数显著的低于对照组、实验组A、实验组B、氟西汀组,且差异均具有统计学意义(P0.05),实验组A、实验组B、氟西汀组大鼠的水平运动次数、垂直运动次数显著低于对照组,且差异均具有统计学意义(P0.05),实验组A、实验组B、氟西汀组大鼠的水平运动次数、垂直运动次数差异无统计学意义(P0.05);模型组大鼠的下丘脑TRH m RNA、TRH蛋白水平低于对照组、实验组A、实验组B、氟西汀组,且差异均具有统计学意义(P0.05),实验组A、实验组B、氟西汀组大鼠的大鼠的下丘脑TRH m RNA、TRH蛋白水平显著低于对照组,且差异均具有统计学意义(P0.05);实验组A、实验组B、氟西汀组大鼠的大鼠的下丘脑TRH m RNA、TRH蛋白水平差异无统计学意义(P0.05)。结论:CUMS大鼠下丘脑中促甲状腺激素释放激素表达水平降低,脉冲电针与音乐电针能有效逆转这一现象,效果相当。 相似文献
993.
目的:探讨二甲双胍联合西格列汀对2型糖尿病患者氧化应激、胰岛素抵抗的影响。方法:收集我院就诊或住院治疗的80例2型糖尿病患者,随机分为实验组和对照组,每组40例。两组患者入院后均给予相应的治疗措施,对照组患者给予二甲双胍250 mg/次,2次/d;实验组患者在对照组的基础上给予西格列汀100 mg/次,1次/d,治疗均连续8周。治疗结束后对患者血清丙二醛(MDA)、8异前列腺素F2α(8-iso-PGF2α)、空腹血糖(FBG)、空腹胰岛素(FINS)、胰岛素抵抗指数(HOMA-IR)以及患者临床治疗效果进行检测并比较。结果:与治疗前相比,治疗后两组患者MDA、8-iso-PGF2α、FBG、FINS以及HOMA-IR水平均下降(P0.05);与对照组相比,实验组患者MDA、8-iso-PGF2α、FBG、FINS以及HOMA-IR水平较低(P0.05),临床治疗总有效率较高(P0.05)。结论:二甲双胍联合西格列汀能够降低2型糖尿病患者血糖水平,降低MDA、8-iso-PGF2α水平,减轻氧化应激反应,降低胰岛素抵抗,临床疗效较好。 相似文献
994.
酒精对全身器官均有损害,随着研究的深入,酒精性肺疾病逐渐被人们重视。基于酒精的挥发性和肺脏的丰富血供,酒精可以通过支气管循环从纤毛上皮进入到气道,汽化的酒精还可以沉积回气道随呼气再次被释放,这种重复循环使局部气道上皮细胞持续暴露于高浓度酒精下。酒精在肺脏的代谢分为氧化和非氧化代谢两种途径,氧化代谢产物乙醛可引起氧化应激,并产生大量的ROS和自由离子。酒精可影响肾素-血管紧张素系统,提高血管紧张素II水平,并引起内皮细胞应激。酒精还可降低肺脏内还原型谷胱甘肽含量,损害机体先天性和获得性免疫功能。本文将阑述酒精在肺脏的代谢途径及代谢产物对肺脏的损害,其引起重要的应激反应对肺脏均造成损害,是发生肺炎、慢性阻塞性肺疾病、急性呼吸窘迫征等肺疾病的重要因素之一。作者通过酒精对肺脏的作用机制,总结最新的治疗措施。 相似文献
995.
Comprehensive Study of Mediterranean (Croatian) Propolis Peculiarity: Headspace,Volatiles, Anti‐Varroa‐Treatment Residue,Phenolics, and Antioxidant Properties
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Eight propolis samples from Croatia were analyzed in detail, to study the headspace, volatiles, anti‐Varroa‐treatment residue, phenolics, and antioxidant properties. The samples exhibited high qualitative/quantitative variability of the chemical profiles, total phenolic content (1,589.3–14,398.3 mg GAE (gallic acid equivalent)/l EtOH extract), and antioxidant activity (11.1–133.5 mmol Fe2+/l extract and 6.2–65.3 mmol TEAC (Trolox® equivalent antioxidant capacity)/l extract). The main phenolics quantified by HPLC‐DAD at 280 and 360 nm were vanillin, p‐coumaric acid, ferulic acid, chrysin, galangin, and caffeic acid phenethyl ester. The major compounds identified by headspace solid‐phase microextraction (HS‐SPME), simultaneous distillation extraction (SDE), and subsequent GC‐FID and GC/MS analyses were α‐eudesmol (up to 19.9%), β‐eudesmol (up to 12.6%), γ‐eudesmol (up to 10.5%), benzyl benzoate (up to 28.5%), and 4‐vinyl‐2‐methoxyphenol (up to 18.1%). Vanillin was determined as minor constituent by SDE/GC‐FID/MS and HPLC‐DAD. The identified acaricide residue thymol was ca. three times more abundant by HS‐SPME/GC‐FID/MS than by SDE/GC‐FID/MS and was not detected by HPLC‐DAD. 相似文献
996.
Chemical Profile and Antioxidant Properties of Extracts and Essential Oils from Citrus × limon (L.) Burm. cv. Femminello Comune
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Monica Rosa Loizzo Rosa Tundis Marco Bonesi Giuseppe Di Sanzo Alessandra Verardi Catia Giovanna Lopresto Alessandro Pugliese Francesco Menichini Roberto Balducchi Vincenza Calabrò 《化学与生物多样性》2016,13(5):571-581
Citrus × limon cv. Femminello Comune (Rutaceae) from Rocca Imperiale (Italy), one of the six Protected Geographical Indication (PGI) Italian lemon crops, has been recently received renewed interest. In this work, fresh and dried peels and leaves were extracted by hydrodistillation, supercritical fluid extraction (SFE), and Soxhlet apparatus. Chemical profile was assessed by gas chromatography (GC) and gas chromatography/mass spectrometry (GC/MS). Except for leaves extracts obtained by Soxhlet apparatus, the monoterpene hydrocarbons fraction dominated. Limonene, γ‐terpinene, and β‐pinene were the main identified compounds. The antioxidant activity was investigated using different in vitro assays namely 2,2‐diphenyl‐1‐picrylhydrazyl (DPPH), ABTS, ferric reducing ability power (FRAP), and β‐carotene bleaching test. In DPPH test, the essential oil obtained by hydrodistillation of fresh peel exhibited the highest activity (IC50 of 1.17 mg/ml). Leaves extracted by SFE showed a good activity in both DPPH and β‐carotene bleaching test with IC50 values of 2.20 and 6.66 mg/ml, respectively. Monoterpene hydrocarbons fraction exhibited a positive Pearson's correlation coefficient with all antioxidant assays. Leaves, often considered waste material, should be considered from a different point because they represent a matrix of indisputable interest. 相似文献
997.
Phenolic Compounds and Antioxidant Activity of Different Organs of Potentilla fruticosa L. from Two Main Production Areas of China
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This report compared the phenolic compounds and antioxidant activity of the leaves, flowers, and stems of Potentilla fruticosa L. collected from two main production areas of P. R. China (Taibai Mountains and the Qinghai Huzhu Northern Mountains). The results indicated that there were significant differences in the phenol contents and antioxidant activities among the different organs and between the two productions. High‐performance liquid‐chromatography analysis indicated that hyperoside, (+)‐catechin, ellagic acid, and rutin were the primary compounds in leaves and flowers; for stems, the content of six phenolic compounds, from two productions, were the lowest. The 1,1‐diphenyl‐2‐picryl hydrazyl (DPPH), 2,2‐azino‐bis(3‐ethylbenzothiazoline‐6‐sulfonic acid) di‐ammonium salt (ABTS), ferric reducing power (FRAP), lipid peroxidation assays, and microbial test system (MTS) were used to evaluate the antioxidant activity. The results demonstrated that the leaves from two productions exhibited powerful antioxidant activity than other organs, which did not significantly differ from that of the positive control (rutin), followed by the flowers and stems. The correlation between the content of phytochemicals and the antioxidant activities of different organs showed that the total phenol, tannin, hyperoside, and (+)‐catechin contents may influence the antioxidant activity, and these compounds can be used as markers for the quality control of P. fruticosa. 相似文献
998.
Jie Zhang Satoshi Yamada Eri Ogihara Masahiro Kurita Norihiro Banno Wei Qu Feng Feng Toshihiro Akihisa 《化学与生物多样性》2016,13(11):1601-1609
Seven triterpenoids, 1 – 7 , two diarylheptanoids, 8 and 9 , four phenolic compounds, 10 – 13 , and three other compounds, 14 – 16 , were isolated from the hexane and MeOH extracts of the bark of Myrica cerifera L. (Myricaceae). Among these compounds, betulin ( 1 ), ursolic acid ( 3 ), and myricanol ( 8 ) exhibited cytotoxic activities against HL60 (leukemia), A549 (lung), and SK‐BR‐3 (breast) human cancer cell lines (IC50 3.1 – 24.2 μm ). Compound 8 induced apoptotic cell death in HL60 cells (IC50 5.3 μm ) upon evaluation of the apoptosis‐inducing activity by flow cytometric analysis and by Hoechst 33342 staining method. Western blot analysis on HL60 cells revealed that 8 activated caspases‐3, ‐8, and ‐9 suggesting that 8 induced apoptosis via both mitochondrial and death receptor pathways in HL60. Upon evaluation of the melanogenesis‐inhibitory activity in B16 melanoma cells induced with α‐melanocyte‐stimulating hormone (α‐MSH), erythrodiol ( 7 ), 4‐hydroxy‐2‐methoxyphenyl β‐d ‐glucopyranoside ( 13 ), and butyl quinate ( 15 ) exhibited inhibitory effects (65.4 – 86.0% melanin content) with no, or almost no, toxicity to the cells (85.9 – 107.4% cell viability) at 100 μm concentration. In addition, 8 , myricanone ( 9 ), myricitrin ( 10 ), protocatechuic acid ( 11 ), and gallic acid ( 12 ) revealed potent DPPH radical‐scavenging activities (IC50 6.9 – 20.5 μm ). 相似文献
999.
Physiological,biochemical, and proteome profiling reveals key pathways underlying the drought stress responses of Hippophae rhamnoides
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The effects of drought on plant growth and development are occurring as a result of climate change and the growing scarcity of water resources. Hippophae rhamnoides has been exploited for soil and water conservation for many years. However, the outstanding drought‐resistance mechanisms possessed by this species remain unclear. The protein, physiological, and biochemical responses to medium and severe drought stresses in H. rhamnoides seedlings are analyzed. Linear decreases in photosynthesis rate, transpiration rate, and the content of indole acetic acid in roots, as well as a linear increase in the contents of abscisic acid, superoxide dismutase, glutathione reductase, and zeatin riboside in leaves are observed as water potential decreased. At the same time, cell membrane permeability, malondialdehyde, stomatal conductance, water use efficiency, and contents of zeatin riboside in roots and indole acetic acid in leaves showed nonconsistent changes. DIGE and MS/MS analysis identified 51 differently expressed protein spots in leaves with functions related to epigenetic modification and PTM in addition to normal metabolism, photosynthesis, signal transduction, antioxidative systems, and responses to stimuli. This study provides new insights into the responses and adaptations in this drought‐resistant species and may benefit future agricultural production. 相似文献
1000.
Cell‐to‐cell heterogeneity emerges as consequence of metabolic cooperation in a synthetic yeast community
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Cells that grow together respond heterogeneously to stress even when they are genetically similar. Metabolism, a key determinant of cellular stress tolerance, may be one source of this phenotypic heterogeneity, however, this relationship is largely unclear. We used self‐establishing metabolically cooperating (SeMeCo) yeast communities, in which metabolic cooperation can be followed on the basis of genotype, as a model to dissect the role of metabolic cooperation in single‐cell heterogeneity. Cells within SeMeCo communities showed to be highly heterogeneous in their stress tolerance, while the survival of each cell under heat or oxidative stress, was strongly determined by its metabolic specialization. This heterogeneity emerged for all metabolite exchange interactions studied (histidine, leucine, uracil, and methionine) as well as oxidant (H2O2, diamide) and heat stress treatments. In contrast, the SeMeCo community collectively showed to be similarly tolerant to stress as wild‐type populations. Moreover, stress heterogeneity did not establish as sole consequence of metabolic genotype (auxotrophic background) of the single cell, but was observed only for cells that cooperated according to their metabolic capacity. We therefore conclude that phenotypic heterogeneity and cell to cell differences in stress tolerance are emergent properties when cells cooperate in metabolism. 相似文献