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1.
为筛选对十字花科蔬菜害虫菜青虫Pieris rapae(L.)酚氧化酶具有高抑制活性的化合物,为寻找新型害虫控制剂提供线索,采用酶标仪微量法以室内合成、筛选的高活性化合物2-羟基-4-甲氧基苯甲醛缩苯胺为抑制剂,研究了其对菜青虫酚氧化酶的抑制活性及抑制类型。结果表明,供试化合物对菜青虫酚氧化酶的抑制中浓度(IC50)为0.116 mmol/L;该化合物为典型的可逆非竞争型抑制剂,抑制常数(Ki)为1.96 mmol/L。该化合物直接对靶标酚氧化酶产生作用,而不是通过影响酶结构内的铜离子来产生作用的。  相似文献   

2.
对SARS冠状病毒主蛋白酶(SARS-CoV Mpro)进行异源重组表达与提纯,并以其为靶点,利用基于荧光共振能量转移(FRET)技术的体外药物筛选模型,对蛋白酶抑制剂聚焦库96种化合物进行了体外抑制活性的评价,并从动力学的角度探讨筛选出的阳性化合物对SARS-CoV Mpro的抑制能力与机制。结果表明:通过筛选获得抑制率>80%、淬灭率<20%的化合物5种,为P-1-08、P-1-19、P-2-24、P-2-28、P-2-54,其半数有效抑制浓度(IC50)分别为:0.69±0.05μmol/L、1.19±0.41μmol/L、0.14±0.01μmol/L、1.36±0.07μmol/L、0.36±0.03μmol/L。其中化合物P-1-08、P-1-19、P-2-24、P-2-54对SARS冠状病毒主蛋白酶的抑制作用为不可逆抑制,化合物P-2-28的抑制作用为可逆抑制。根据Lineweaver-Burk图和Dixon图的研究,发现化合物P-2-28对SARS冠状病毒主蛋白酶呈竞争性抑制,抑制常数Ki为0.81μmol/L。通过对底物浓度,IC50值及Ki值关系的研究,进一步验证了P-2-28的抑制作用为竞争性抑制。该抑制剂的发现为SARS冠状病毒主蛋白酶抑制剂的研究打下基础,为抗SARS病毒药物开发提供了先导化合物。  相似文献   

3.
栎皮酮对甜菜夜蛾酚氧化酶的抑制作用   总被引:12,自引:3,他引:9  
研究了栎皮酮对甜菜夜蛾Spodopteraexigua 酚氧化酶活力的影响。结果表明: 栎皮酮对该虫的单酚酶和二酚酶活性均表现很强的抑制作用,其I50分别为0.079 mmol/L和0.087 mmol/L。其中,栎皮酮对单酚酶活力表达的迟滞时间有明显的延长效应,浓度 为0.079 mmol/L时可使单酚酶活力表达迟滞时间从134s 延长到330s;而当浓度为0.158 mmol/L时,其迟滞时间则延长至440s。以L 多巴为底物时,栎皮酮对二酚酶的抑制作用表现 为典型的竞争型抑制类型,抑制常数KI为33.16 mmol/L。在研究金属离子对栎皮酮吸收 峰影响实验中发现,Cu2+对吸收峰影响最大,可使栎皮酮最大吸收波长从367 nm改变为 435 nm;而加入Mg2+与Ca2+后,其最大吸收峰却无明显的偏移。  相似文献   

4.
为探讨西藏白柄肉齿菌Sarcodon leucopus子实体多酚生物碱提取物(PAE)的抗氧化和降糖活性,本研究考察了PAE对DPPH自由基清除能力、细胞内抗氧化能力(CAA)和糖尿病关键酶(大鼠小肠来源麦芽糖酶、蔗糖酶和α-淀粉酶)活性的抑制能力。结果表明,PAE具有一定的抗氧化活性,对DPPH自由基的半数抑制浓度(IC50)为(18.12±1.09)μg/mL,对细胞内抗氧化能力表现为CAA50=(13.60±0.13)μg/mL;PAE对糖尿病关键酶的抑制活性有一定选择性,对麦芽糖酶和蔗糖酶具有抑制作用,并呈剂量效应关系,其IC50分别(60.86±4.50)μg/mL和(64.60±4.53)μg/mL,而对α-淀粉酶抑制作用极低。研究结果表明PAE有潜在的抗氧化及降血糖活性,具有开发为安全高效的天然降血糖功能食品和药物的潜力。  相似文献   

5.
目的:研究枸杞抗坏血酸过氧化物酶基因(ascorbate peroxidase,LmAPX)在原核中的表达和酶学特性以及在酵母菌中的抗氧化能力,为进一步研究逆境诱导的抗氧化胁迫的作用机理奠定理论基础。方法:将LmAPX转入大肠杆菌BL21中进行异源表达,采用 Ni2+亲和层析,纯化重组蛋白,并对不同温度和pH值下的酶活进行研究,Lineweaver-Burk双倒数作图法测定该酶的Km和Vmax值。将LmAPX转入酵母菌株W303中进行H2O2和NaCl氧化胁迫处理。结果:该酶的最适温度和最适pH值分别为40℃和6.5。当抗坏血酸(Ascorbic acid,AsA)浓度过量时,对H2O2的Km和Vmax分别是0.17±0.02 mmol/L和11.78±1.88 mmol/min·mg;当H2O2浓度过量时,对AsA的Km和Vmax分别是2.19±0.40 mmol/L和58.82±3.51 mmol/min·mg。含有LmAPX基因的酵母菌株,在半乳糖的诱导下在8 mmol/L H2O2和100 mmol/L NaCl的培养基上的生长都明显优于对照组。结论:LmAPX蛋白具有很好的抗氧化性和耐盐性。  相似文献   

6.
本文研究了Cu2+、Pb2+、Zn2+和Ag+等重金属离子对中华绒螯蟹(Eriocheir sinensis)N-乙酰-β-D-氨基葡萄糖苷酶(NAGase)活力的影响。其结果表明:Cu2+、Pb2+和Zn2+对酶活力有不同程度的抑制作用, Cu2+和Zn2+对酶的抑制作用均表现为非竞争性抑制类型,Cu2+和Zn2+对酶的抑制常数(KI)分别为1.25 mmol/L和8.10 mmo/L;Pb2+对酶的抑制作用表现为混合型抑制类型,其对酶的抑制常数KI与KIS分别为10.44 mmol/L 和2.18 mmol/L。Ag+对酶的效应为先激活后抑制作用,其抑制作用表现为反竞争性抑制类型,Ag+对结合酶(ES)的抑制常数KI为204.51 mmol/L。  相似文献   

7.
本文研究了Cu2+、Pb2+、Zn2+和Ag+等重金属离子对中华绒螯蟹(Eriocheir sinensis)N-乙酰-β-D-氨基葡萄糖苷酶(NAGase)活力的影响。其结果表明:Cu2+、Pb2+和Zn2+对酶活力有不同程度的抑制作用,Cu2+和Zn2+对酶的抑制作用均表现为非竞争性抑制类型,Cu2+和Zn2+对酶的抑制常数(KI)分别为1.25mmol/L和8.10mmo/L;Pb2+对酶的抑制作用表现为混合型抑制类型,其对酶的抑制常数KI与KIS分别为10.44mmol/L和2.18mmol/L。Ag+对酶的效应为先激活后抑制,其抑制作用表现为反竞争性抑制,Ag+对结合酶(ES)的抑制常数KIS为204.51mmol/L。  相似文献   

8.
结合形态学与ITS序列分析对7株野生虫草真菌进行分类鉴定。MTT法分析它们的菌丝体醇提取物对肝癌HepG2细胞增殖的抑制活性。鉴定结果表明菌株MF7、MF9、MF14为细脚棒束孢Isaria tenuipes,菌株MF11、MF12、MF13为蝉棒束孢Isaria cicadae,菌株MF10为球孢白僵菌Beauveria bassiana;MTT结果显示分离到的3株细脚棒束孢和3株蝉棒束孢的菌丝体醇提取物对HepG2的抑制活性较差,IC50均大于500μg/mL;球孢白僵菌MF10对HepG2细胞有一定抑制作用,IC50值为221.6μg/mL,略强于蝙蝠蛾拟青霉发酵菌丝粉产品金水宝胶囊(IC50=364μg/mL)和中华被毛孢发酵菌丝粉产品百令胶囊(IC50=268.7μg/mL)。另外,发现供对比试验的3株蛹虫草菌株(MF1、MF5、MF15)对HepG2细胞均有较好的抑制作用,其中MF15的发酵菌丝体醇提取物活性最强,IC50为55.56μg/mL,暗示蛹虫草发酵菌丝体具有重要的研究价值。  相似文献   

9.
二氧化硫衍生物对蚕豆幼苗生长和细胞周期的影响   总被引:7,自引:2,他引:5  
研究SO2体内衍生物NaHSO3与Na2SO3(1:3,mmol/L)对蚕豆幼苗生长和细胞分裂的影响。结果表明:SO2衍生物(浓度在0~30mmol/L)对幼苗生长的抑制作用具有剂量效应和时间效应关系,短时间处理效应不明显,处理48h后蚕豆幼根生长抑制,168h后幼苗根上部分长度(芽长)表现生长抑制,根长和芽长与处理浓度间呈负线性相关。SO2衍生物处理12~36h,导致根尖细胞分裂指数下降,根尖中前期细胞减少,间期、后期和末期细胞增多,表明SO2衍生物能够阻止细胞进入分裂态,延长分裂过程,这可能是SO2衍生物处理组根尖细胞分裂指数降低,幼苗生长抑制的主要原因。  相似文献   

10.
药用植物内生真菌能产生与宿主相同或相似的活性物质,民族药马利筋生物活性广泛。为获得马利筋活性内生真菌资源,该研究基于“民族药-内生真菌-活性成分”的思路,考察了168株马利筋内生真菌代谢产物的生物活性,并分别采用SRB法、Griess法、PNPG法和DPPH法对内生真菌发酵液乙酸乙酯提取物进行抗肿瘤、抗炎、α-葡萄糖苷酶抑制和抗氧化等生物活性测定,对活性菌株进行ITS菌种鉴定。结果表明:(1)所筛选的168株内生真菌中有22株表现出不同程度的生物活性。其中,9株内生真菌具有显著抗肿瘤活性,其IC50值在0.1~40μg·mL-1之间;菌株MJF-53在2.5μg·mL-1时对LPS诱导的Raw264.7释放的NO和IL-1β均具有明显的抑制作用;7株内生真菌表现出不同程度的α-葡萄糖苷酶抑制活性,其IC50值在1.0~4.0 mg·mL-1之间,其中MYF-16和MYF-55对α-葡萄糖苷酶抑制活性接近阿卡波糖;19株内生真菌具有不同程度的DPPH自由基清除活性,其中菌株MYF...  相似文献   

11.
用正交试验方法研究了酶浓度、底物浓度、反应体系pH值、反应温度、反应时间5个因素对黑翅土白蚁Odontotermes formosanus (Shiraki)乙酰胆碱酯酶(AChE)活性测定的影响。通过对正交试验结果进行极差和方差分析,明确了测定黑翅土白蚁AChE活性的最适反应条件是酶浓度为12.5 g/L,底物浓度为8 mmol/L,pH值8.0,反应温度40℃,反应时间5 min。此外,研究了6种药剂对黑翅土白蚁体内AChE活性的影响。结果表明:灭多威、辛硫磷、三唑磷、丙溴磷、马拉硫磷和氧化乐果6种药剂对黑翅土白蚁AChE抑制中浓度(IC50)分别为3.52×10-4,1.86×10-3,5.13×10-3,9.55×10-4,8.81×10-3,和1.39×10-2 mol/L。在3.3×10-7~5×10-3 mol/L的浓度范围内,上述6种药剂对黑翅土白蚁体内AChE活性的抑制作用都具有明显的剂量效应关系。  相似文献   

12.
汤方  朱涛  高希武  严敖金 《昆虫学报》2007,50(12):1225-1231
利用分光光度酶动力学方法,确定了白蚁谷胱甘肽S-转移酶(GSTs)的最适反应条件,并进一步研究了7种抑制剂对黑翅土白蚁Odontotermes formosanus (Shiraki)和黑胸散白蚁Reticulitermes chinensis Snyder GSTs活性的体外影响。结果表明:白蚁GSTs测定的最适反应条件为pH 6.5,温度25℃,最适反应时间2 min。黑翅土白蚁GSTs的米氏常数(KmCDNB和KmGSH)分别为0.11±0.02 mmol/L和0.81±0.16 mmol/L,最大反应速度(VmaxCDNB和VmaxGSH)分别为425.92±19.67 nmol/(min·mg)和534.86±39.05 nmol/(min·mg)。黑胸散白蚁GSTs的米氏常数(KmCDNB和KmGSH)分别为0.12±0.03 mmol/L和1.03±0.31 mmol/L,最大反应速度(VmaxCDNB和VmaxGSH)分别为544.39±37.19 nmol/(min·mg)和715.45±83.68 nmol/(min·mg)。浓度为2×10-5 mol/L时,槲皮素和辛硫磷对黑胸散白蚁GSTs活性的抑制作用要强于黑翅土白蚁,对黑胸散白蚁GSTs活性的抑制作用分别为62.28%和44.89%,对黑翅土白蚁GSTs活性的抑制作用分别为54.96%和28.36%。高效氯氰菊酯、甲氰菊酯、啶虫脒和单宁酸对黑翅土白蚁GSTs活性的抑制作用要强于黑胸散白蚁,对黑翅土白蚁GSTs活性的抑制作用分别为39.43%,72.07%,52.24%和82.19%;对黑胸散白蚁GSTs活性的抑制作用分别为14.96%,40.23%,39.96%和57.80%。阿维菌素对黑翅土白蚁和黑胸散白蚁GSTs活性的抑制作用没有显著差异,对黑翅土白蚁和黑胸散白蚁GSTs活性的抑制作用分别为76.21%和76.88%。这表明两种白蚁对药剂的敏感性完全不同。实验结果还表明,在3.2×10-8~2×10-5 mol/L内,上述植物次生物质和杀虫剂对两种白蚁GSTs活性的抑制率存在明显的剂量-效应关系。  相似文献   

13.
槲皮素对黄粉虫血淋巴酚氧化酶的生理效应   总被引:2,自引:0,他引:2  
刘守柱  肖婷  薛超彬  罗万春 《昆虫学报》2007,50(12):1201-1206
用酶标仪法测定了槲皮素对黄粉虫Tenebrio molitor酚氧化酶(phenoloxidase, PO)的生物活性。结果表明:在离体条件下,对黄粉虫血淋巴PO的IC50为0.625 mmol/L。在活体情况下,当槲皮素-DMSO溶液或槲皮素水悬浮液(5 μL)注入虫体后,在浓度低于1.0 mmol/L时对黄粉虫血淋巴PO具有激活作用,当浓度高于2.0 mmol/L时则对PO具有明显的抑制作用;单独注射5 μL DMSO溶液对PO活性亦有一定的激活作用。试虫被注射槲皮素后,PO活性在2~4 h内迅速下降,然后缓慢上升,处理8 h左右达到最高点,其后低浓度处理PO活性保持不变,而高浓度处理则逐渐下降,提示低浓度槲皮素可以引起试虫的免疫反应。在PO测活体系中加入0.5%的BSA后对PO活性无影响,并能使槲皮素在测活体系中保持稳定。  相似文献   

14.
槐尺蠖多酚氧化酶的纯化及酶学特征   总被引:8,自引:2,他引:6  
经40%饱和度硫酸铵分级沉淀,Sephadex G-100凝胶过滤等步骤,将槐尺蠖Semiothisa cinerearia Bremer et Grey 多酚氧化酶纯化,纯化倍数为6.96倍。该酶对焦性没食子酸,邻苯二酚和L多巴的Km值分别为0.23 mmol/L, 0.48 mmol/L和0.49 mmol/L。多酚氧化酶在pH 7.0,37℃时活性最高,并在40℃以上条件下,随着保温时间的延长酶活力下降。用槲皮苷和硫脲作抑制剂对该酶活性的抑制结果表明,这两种抑制剂分别属于竞争性和非竞争性抑制剂。  相似文献   

15.
以多糖、总黄酮、醇溶物和水溶物的得率及体外抗氧化活性为考察指标,研究了酒蒸和蜜蒸两种炮制方法对玉竹品质的影响。结果表明:酒蒸炮制玉竹的多糖、醇溶物得率最高,蜜蒸炮制玉竹总黄酮、水溶物的得率最高,比未炮制的玉竹(生品玉竹)中相应成分的得率分别提高了43.86%、29.53%、49.46%和34.66%。将多糖、水溶性浸出物、醇溶性浸出物及总黄酮四者得率相加的和进行比较,蜜蒸最好,蜜蒸为111.069%,酒蒸为107.309%,生品玉竹为80.926%。酒蒸炮制玉竹的多糖、水溶物对DPPH自由基的清除率均高于蜜蒸玉竹和生品玉竹,其DPPHIC50分别为0.345±0.019和0.441±0.022 mg·mL-1;蜜蒸炮制玉竹的总黄酮、醇溶物对DPPH自由基的清除率均高于酒蒸玉竹和生品玉竹,其DPPHIC50分别为0.047±0.011和0.199±0.036 mg·mL-1;在浓度为1 mg·mL-1时,蜜蒸玉竹总黄酮对DPPH自由基的清除率最大,为90.29%,超过了浓度为0.05 mg·mL-1的芦丁和槲皮素标品对DPPH自由基的清除率。两种炮制方法均提高了多糖、水溶物、总黄酮3种提取物的还原能力,但是降低了醇溶物的还原能力。  相似文献   

16.
A new series of quinazolinone derivatives containing triazole, thiadiazole, thiosemicarbazide functionalities was synthesized and then screened for their in vitro urease inhibition properties. Most of the compounds showed excellent activity with IC50 values ranging between 1.88 ± 0.17 and 6.42 ± 0.23 µg/mL, compared to that of thiourea (IC50 = 15.06 ± 0.68) and acetohydroxamic acid (IC50 = 21.03 ± 0.94), as reference inhibitors. Among the synthesized molecules, compounds 5c, 5e and 5a showed the best inhibitory effect against urease enzyme with IC50 values of 1.88 ± 0.17 µg/mL, 1.90 ± 0.10 and 1.96 ± 0.07 µg/mL, respectively. Moreover in order to give better understanding of the inhibitory activity of synthesized compounds, molecular docking studies were applied at the target sites of jack bean urease enzyme (JBU). Their binding poses and energy calculations were analyzed using induced fit docking (IFD) and prime-MMGBSA tool. Binding poses of studied compounds were determined using induced fit docking (IFD) algorithms.  相似文献   

17.
The present study was aimed at determining total phenolic and flavonoid contents and studying the antioxidant activity of ginger (Zingiber officinale Rosc.) rhizome and callus, 6-gingerol and 6-shogaol and callus treated with elicitors. Petroleum ether (PE) and chloroform: methanol (1:1, v/v) (CM) extracts were prepared by maceration. Highest total phenolic content was obtained from the CM extract (60.34?±?0.43?mg gallic acid/g) of rhizome while callus showed lower content detected in the CM extract (33.6?±?0.07?mg gallic acid/g). Flavonoids were only detected in rhizome (CM extract 40.25?±?0.21?mg quercetin/g). Both rhizome extracts exhibited good antioxidant activity with higher activity recorded in PE extract (IC50 value 8.29?±?1.73?μg/mL). Callus extracts revealed lower antioxidant activity (IC50 value 1265.49?±?59.9?μg/mL obtained from CM extract). 6-gingerol and 6-shogaol displayed high antioxidant activity in both assays with IC50 4.85?+?0.58DPPH and 5.35?±?0.33ABTS μg/mL for the former and IC50 7.61?±?0.81DPPH and IC50 7.05?±?0.23ABTS μg/mL for the latter. Treatment of callus with elicitors showed significant (p?<?0.05) effects in enhancing phenolic content and related antioxidant activity. The highest significant increase in phenolic content (37% and 34%) and antioxidant activity in DPPH assay (34% and 30%) was observed in callus treated with 100?mg/L yeast extract and 50?mg/L salicylic acid respectively. Therefore, studying the effect of the elicitation of ginger cultured tissues in phenolic accumulation would be of immense importance for pharmacological, cosmetic and agronomic industries.  相似文献   

18.
Twelve patients with inactive ulcer disease were administered placebo and ranitidine via bolus and continuous intravenous infusions, at doses ranging from 50 every 8 h, to 12.5 mg/h for 24 h. Gastric acid was collected for 20 min each h for 24 h, and ranitidine serum concentrations were measured ± every 2 h, during each of the six study periods. Cosinor analysis of gastric acid secretion during placebo treatment revealed a significant circadian rhythm in all subjects. Mesor acid output ranged from 1.7 to 11.6 mmol/h (mean 5.6 ± 2.8 mmol/h) and the amplitude ranged from 0.7 to 6.5 mmol/h (mean 2.8 ±1.6 mmol/h). Peak acid output (acrophase) occurred at 10 p.m. ± 3 h. A pharmacodynamic model, relating ranitidine serum concentration to hourly acid secretion, was derived, which incorporated the circadian change in basal acid output. Data for this fractional response model included basal acid secretion–as determined by time of day, measured acid secretion, and associated serum ranitidine concentration. The 50% inhibitory concentration (IC50) for ranitidine ranged from 10-75 ng/ml, with a mean of 44 ng/ml. The variation in IC50 and in basal acid secretion combined to produce a wide variation in the pharmacodynamic response to ranitidine. The model-predicted serum concentrations, required to maintain acid secretion at 0.1 mmol/h, ranged from 250 to 1550 ng/ml, at the time of peak evening acid secretion. Despite a constant degree of acid inhibition by ranitidine during the day, higher serum concentrations are required during times of peak acid output to maintain adequate suppression of hydrogen ion secretion.  相似文献   

19.
A novel series of pyrazolo[1,5-a]pyrimidines were synthesized and proved by their spectral and elemental analysis, some elected of the newly synthesized compounds were examined for their cytotoxic activity employing MTT assay on two cancer cell lines (Breast and Hela cancers). Compounds 5, 7e and 7i showed the higher cytotoxicity against two cancer cell lines with (IC50 = 13.91 ± 1.4 and 22.37 ± 1.8 μM/L), (IC50 = 6.56 ± 0.5 and 8.72 ± 0.9 μM/L) and (IC50 = 4.17 ± 0.2 and 5.57 ± 0.4 μM/L) for two cancer cell lines breast and hela respectively, using doxorubicin as a reference drug. The most potent cytotoxic active compounds 5, 7e and 7i presented inhibitory activity against KDM (histone lysine demethylases) with IC50 = 4.05, 1.91 and 2.31 μM, respectively. The most potent KDM inhibitor 7e (IC50 = 1.91 μM) showed to cause cell cycle arrest at G2/M phase by 4 folds than control and induce total apoptotic effect by 10 folds more than control. In silico studies performed on the more potent cytotoxic active compounds 5, 7e and 7i included lipinisk's rule of five. Moreover, molecular docking study was utilized to explore the binding mode of the most active compounds to the target enzyme (PDB-ID: 5IVE). Also, some bioinformatics studies were carried out for compounds 7e and 7i using Swiss ADME (Swiss Institute of bioinformatics 2018).  相似文献   

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