首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   55篇
  免费   5篇
  国内免费   8篇
  2023年   2篇
  2022年   1篇
  2021年   3篇
  2020年   2篇
  2019年   2篇
  2018年   2篇
  2017年   1篇
  2016年   2篇
  2015年   2篇
  2014年   6篇
  2013年   6篇
  2012年   3篇
  2011年   3篇
  2010年   1篇
  2009年   4篇
  2008年   1篇
  2007年   2篇
  2006年   3篇
  2005年   2篇
  2004年   3篇
  2003年   3篇
  2002年   1篇
  2001年   2篇
  2000年   1篇
  1999年   2篇
  1998年   1篇
  1997年   3篇
  1995年   1篇
  1993年   1篇
  1992年   1篇
  1988年   1篇
排序方式: 共有68条查询结果,搜索用时 15 毫秒
1.
为了解增强UV-B辐射诱导芒果叶片抗氧化响应的机制,以?台农1号?芒果(Mangifera indica?Tainong No. 1?)成年树为材料,以自然光为对照(CK),设置24和96 kJ/(m~2·d)两个增强UV-B辐射处理水平,观测叶片生理生化指标的动态变化。结果表明,24k J/(m~2·d)处理的芒果叶片MDA含量、相对电导率、净光合速率、抗氧化酶活性、多酚、Vc和芒果苷含量均与对照没有显著差异,而类黄酮和还原型GSH含量显著高于对照;而96 kJ/(m~2·d)处理的芒果叶片MDA含量、相对电导率、抗氧化酶活性及多酚、类黄酮、还原型GSH、芒果苷等还原型保护成分的含量均显著高于对照,而净光合速率和Vc含量均显著低于对照。因此,24 kJ/(m~2·d) UV-B辐射未引起?台农1号?芒果成年树损伤,可能是通过提高类黄酮和还原型GSH的含量来清除活性氧自由基;96 kJ/(m~2·d)处理则引起叶片活性氧损伤,但仍可能以两种机制减轻损伤,一是通过增强抗氧化酶活性和提高还原性成分含量来清除活性氧自由基,二是利用芒果苷、类黄酮和还原型GSH等成分吸收UV-B辐射。  相似文献   
2.
抗氧化乳酸菌在体外结肠环境清除羟自由基的研究   总被引:1,自引:0,他引:1  
目的利用鼠肝匀浆经Fe^2+ -VitC诱导产生丙二醛(MDA)为模型研究29株乳酸菌的抗氧化活性。方法建立体外模拟结肠发酵体系,分析3株具有不同抗氧化能力的乳酸菌(Lactobacillus paracasei Fn032,Laaobacillus rhamnosus GG,Lactobacillus sp.Fn001)在正常结肠和铁过载结肠模型中清除羟自由基效果及对肠球菌增殖的的影响,并检测3株菌螯合亚铁离子能力及其无细胞提取物超氧化物歧化酶(SOD)活性。结果体外结肠体系中羟自由基含量与肠球菌数量有显著相关性。在正常结肠环境中,3株乳酸菌清除羟自由基能力与其SOD活性一致,但与其抑制肠球菌增殖能力和螯合亚铁离子能力不一致。在高铁结肠环境中,3株乳酸菌清除羟自由基能力与它们抑制肠球菌增殖能力和螯合亚铁离子能力一致,但与SOD活性不一致。结论正常条件下乳酸菌可通过产生抗氧化酶来清除结肠自由基,铁过载条件则可增强具有铁螯和能力乳酸菌的抗氧化活性。  相似文献   
3.
为探讨人工配合饲料和鲢鱼肉对大鲵生长、消化和抗氧化能力的影响, 试验选取初始体重为(20.99±0.15) g的大鲵幼体48尾, 随机分成2组, 每组3个重复, 每个重复8尾, 分别投喂人工配合饲料(粗蛋白55.67%, 粗脂肪6.83%)和鲢鱼肉(粗蛋白18.03%, 粗脂肪4.11%)共92d。结果显示: (1)饲料组大鲵的增重率(WGR)、特定生长率(SGR)、蛋白质沉积率(PRR)和肌肉蛋白质合成能力均显著高于鱼肉组, 饲料系数(FCR)和存活率(SR)在两个试验组之间无显著差异(P>0.05)。(2)在大鲵摄食人工配合饲料后, 全鲵粗蛋白、皮肤胶原蛋白及粗灰分含量均显著高于鱼肉组(P<0.05), 而全鲵水分、粗脂肪与肌肉的粗脂肪和粗灰分含量显著低于鱼肉组(P<0.05)。(3)饲喂鲢鱼肉的大鲵胃蛋白酶活性显著高于饲料组(P<0.05), 而两个试验组的胃H+-K+-ATP酶和肠道消化酶活性均无显著差异(P>0.05)。(4)饲喂人工配合饲料的大鲵肝脏总抗氧化能力(T-AOC)和超氧化物歧化酶(SOD)活性显著高于鱼肉组(P<0.05), 而肝脏丙二醛(MDA)含量低于鱼肉组(P<0.05), 两个试验组的肠道抗氧化指标差异不显著(P>0.05)。研究表明, 在实验条件下, 大鲵可主动摄食人工配合饲料, 而且相比于投喂新鲜鲢鱼肉, 人工配合饲料饲喂大鲵, 在提高生长性能、促进大鲵合成皮肤胶原蛋白和肝脏抗氧化能力等方面更具优势, 说明人工配合饲料可以替代新鲜饵料成为大鲵的主要饵料。  相似文献   
4.
夏枯草多糖的分离纯化与抗氧化活性研究   总被引:9,自引:0,他引:9  
对夏枯草多糖(PP2)的分离纯化方法作了探讨,通过正交试验,筛选出多糖提取条件的最佳组合。采用纸层析、琼脂糖凝胶电泳和紫外分光光度法对多糖纯度进行鉴定。通过气相色谱仪对多糖的单糖组成进行分析。通过体外化学模拟,研究夏枯草多糖的抗氧化性。实验表明,夏枯草多糖对O2-.、.OH二种自由基及亚硝酸根离子具有一定的清除能力,对R.自由基的清除较弱,具有防止膜脂质过氧化,减少红细胞溶血和降低脂质过氧化产物丙二醛的生成量的作用。  相似文献   
5.
α1-Microglobulin is a 26 kDa plasma and tissue glycoprotein that belongs to the lipocalin protein superfamily. Recent reports show that it is a reductase and radical scavenger and that it binds heme and has heme-degrading properties. This study has investigated the protective effects of α1-microglobulin against oxidation by heme and reactive oxygen species in the human erythroid cell line, K562. The results show that α1-microglobulin prevents intracellular oxidation and up-regulation of heme oxygenase-1 induced by heme, hydrogen peroxide and Fenton reaction-generated hydroxyl radicals in the culture medium. It also reduces the cytosol of non-oxidized cells. Endogeneous expression of α1-microglobulin was up-regulated by these oxidants and silencing of the α1-microglobulin expression increased the cytosol oxidation. α1-microglobulin also inhibited cell death caused by heme and cleared cells from bound heme. Binding of heme to α1-microglobulin increased the radical reductase activity of the protein as compared to the apo-protein. Finally, α1-microglobulin was localized mainly at the cell surface both when administered exogeneously and in non-treated cells. The results suggest that α1-microglobulin is involved in the defence against oxidative cellular injury caused by haemoglobin and heme and that the protein may employ both heme-scavenging and one-electron reduction of radicals to achieve this.  相似文献   
6.
Increasing contamination and higher enrichment ratio of non-essential heavy metal cadmium (Cd) induce various toxic responses in plants when accumulated above the threshold level. These effects and growth responses are genotype and Cd level dependent. An experiment was conducted to analyze the effect of Cd toxicity in Brassica juncea [L] Czern and Coss by selecting its two varieties Varuna and RH-30. Cadmium (0, 25, 50 or 100 mg CdCl2 kg−1 of soil) fed to soil decreased the values of growth characteristics, activity of nitrate reductase and leaf water potential, whereas activities of antioxidant enzymes and proline content increased with the increasing concentration of Cd, observed at 30 and 60 day stages of growth, in both the varieties. Moreover, Cd uptake by the roots was higher in RH-30 than Varuna. Also the activity of antioxidant enzymes and proline accumulation were higher in Varuna with increasing soil level of Cd. Out of the two varieties, Varuna was more tolerant than RH-30 to Cd stress.  相似文献   
7.
目的:本研究旨在探讨中药熊果苷对缺血再灌注损伤后脑细胞的影响,为中药熊果苷的临床应用提供理论依据。方法:昆明种小鼠40只,随机分成4组,即空白组、模型组、药物预防组和药物治疗组。根据缺血时脑损伤原理制成脑缺血再灌注损伤模型,以TTC染色、HE染色观察细胞形态学变化,并检测脑组织中超氧化物歧化酶(SOD)活性、丙二醛(MDA)含量及谷胱甘肽过氧化物酶(GSH-Px)活性的变化。结果:与模型组相比,药物预防组和药物治疗组分别TTC染色缺血区域都不如模型组坏死明显,HE染色显示细胞损伤程度减轻,SOD、GSH—Px活性提高有显著性差异,MDA含量减少(均P〈0.05)。结论:药物熊果苷具有抗氧化作用,能有效地预防和保护脑细胞损伤。  相似文献   
8.
The ability of coenzyme Q to inhibit lipid peroxidation in intact animals as well as in mitochondrial, submitochondrial, and microsomal systems has been tested. Rats fed coenzyme Q prior to being treated with carbon tetrachloride or while being treated with ethanol excrete less thiobarbituric acid-reacting material in the urine than such rats not fed coenzyme Q. Liver homogenates, mitochondria, and microsomes isolated from rats treated with carbon tetrachloride and ethanol catalyze lipid peroxidation at rates which exceed those from animals also fed coenzyme Q. The rate of lipid peroxidation catalyzed by submitochondrial particles isolated from hearts of young, old, and endurance trained elderly rats was inversely proportional to the coenzyme Q content of the submitochondrial preparation in assays in which succinate was employed to reduce the endogenous coenzyme Q. Reduced, but not oxidized, coenzyme Q inhibited lipid peroxidation catalyzed by rat liver microsomal preparations. These results provide additional evidence in support of an antioxidant role for coenzyme Q.  相似文献   
9.
Lim YS  So HS  Kim MS  Moon G  Won JH  Baek SW  Moon SR  Yang SH  Kim BJ  Ko CB  Park R 《Life sciences》2002,70(20):2391-2401
The hypoglycemic drug, troglitazone (TGZ) has antioxidant activity. Superoxide dismutase (SOD) removes superoxide produced by cells. We measured the response of SOD-like activity (deltaSOD) to ascorbic acid (AA) or TGZ using electron spin resonance at various glucose concentrations in polymorphonuclear leukocytes from 18 type 2 diabetic patients and 18 healthy controls. In control and diabetic subjects, ASOD in response to AA was dose-dependent (maximal effect at 100 ng/ml). Maximal response occurred 2 min after AA addition (50 ng/ml). In cells from diabetic patients, ASOD with 25 ng/ml AA was significantly less than for healthy controls. The deltaSOD with AA changed little at glucose concentration from 0 to 200 mg/dl. In patient and control cells, higher glucose concentrations (400 to 800 mg/dl) reduced ASOD with AA. Response patterns with TGZ resembled those with AA. deltaSOD with AA correlated positively with glycosylated hemoglobin A1c. Conclusions: The present data suggest that an amerioration of blood glucose on high levels in diabetic patients plays an important role in an antioxidant efficacy of TGZ and AA on leukocytes in patients.  相似文献   
10.
实验研究了三疣梭子蟹(Portunus trituberculatus)卵巢发育过程中(Ⅰ—V期)组织色泽、类胡萝卜素组成与含量、抗氧化和非特异性免疫指标的变化规律,进一步探讨了肝胰腺中类胡萝卜素含量变化与抗氧化指标的关系。结果表明:(1)卵巢发育期间,卵巢指数(GSI)显著增加(P<0.05),肝胰腺指数(HSI)整体呈先升后降的趋势;卵巢的红度(a*)值和黄度(b*)值、肝胰腺的亮度(L*)值和b*值均呈显著上升趋势,但卵巢中L*值呈下降趋势。(2)在卵巢发育过程中,卵巢中的总类胡萝卜素、虾青素、叶黄素和β-胡萝卜素含量均为先升后降的趋势,虾青素含量在Ⅳ期最高;肝胰腺中的虾青素含量呈上升趋势,而β-胡萝卜素含量为显著下降趋势;内表皮中的总类胡萝卜素、虾青素、叶黄素、海胆烯酮和β-胡萝卜素含量均呈现下降趋势;就不同组织中类胡萝卜素含量而言,内表皮中虾青素含量最高。卵巢和肝胰腺的L*值与总类胡萝卜素含量呈显著负相关,卵巢的a*值和b*值均与总类胡萝卜素、虾青素、叶黄素、海胆烯酮和β-胡萝卜素含量呈显著正相关。肝胰腺的a*值与各类胡萝卜素含量无显著相关性, b*值仅与虾青素含量呈显...  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号