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In summary, our results indicate that hypohidrosis is a frequent adverse effect in children with topiramate therapy. Younger age and hot weather rather than drug dosage are independent risk factors for topiramate-associated hypohidrosis. The resultes also rule out the possibility that topiramate act on its known mechanisms of action, such as potentiating GABA activity at GABAA receptors and antagonizing the AMPA/KA subtype of glutamate receptor in the secretory cells of sweat glands to inhibit sweat secretion. Our data also suggest that topiramate impairs sudomotor function in mice and leads to a significant reduction in AQP5 expression in sweat glands of anhidrotic mice, thus raising the possibility that dysregulation of AQP5 may contribute to topiramate related hypohidrosis. CA inhibition may not be an important contributor since CA II expression and CA activity was intact in anhidrotic mice treated with topiramate.

综合全部实验结果,本研究提示:夏季和低龄是托吡引起泌汗障碍的主要危险因素,而托吡剂量对泌汗功能的影响较小;托吡可以抑制小鼠汗液的分泌,小鼠的年龄并不影响这种抑制作用,但托吡对小鼠体温无明显影响;托吡并不是通过对GABAA受体及AMPA和KA两种谷氨酸受体亚型的作用而在汗腺分泌细胞抑制泌汗;托吡不影响汗腺形态及Na,K-ATP酶活性;汗腺分泌细胞的AQP5功能失调可能与托吡引起的泌汗障碍密切相关,而碳酸酐酶抑制作用并不是泌汗功能损害的主要原因。

In summary, our results indicate that hypohidrosis is a frequent adverse effect in children with topiramate therapy. Younger age and hot weather rather than drug dosage are independent risk factors for topiramate-associated hypohidrosis. The resultes also rule out the possibility that topiramate act on its known mechanisms of action, such as potentiating GABA activity at GABAA receptors and antagonizing the AMPA/KA subtype of glutamate receptor in the secretory cells of sweat glands to inhibit sweat secretion. Our data also suggest that topiramate impairs sudomotor function in mice and leads to a significant reduction in AQP5 expression in sweat glands of anhidrotic mice, thus raising the possibility that dysregulation of AQP5 may contribute to topiramate related hypohidrosis.

综合全部实验结果,本研究提示:夏季和低龄是托吡引起泌汗障碍的主要危险因素,而托吡剂量对泌汗(来源:A44B8787C论文网www.abclunwen.com)功能的影响较小;托吡可以抑制小鼠汗液的分泌,小鼠的年龄并不影响这种抑制作用,但托吡对小鼠体温无明显影响;托吡并不是通过对GABAA受体及AMPA和KA两种谷氨酸受体亚型的作用而在汗腺分泌细胞抑制泌汗;托吡不影响汗腺形态及Na,K-ATP酶活性;汗腺分泌细胞的AQP5功能失调可能与托吡引起的泌汗障碍密切相关,而碳酸酐酶抑制作用并不是泌汗功能损害的主要原因。

The results showed that temperature rise would inhibit their esterification capacity, ethyl caproate-producing capability of raw zymin of 1# high-temperature monascus improved with the prolong of the esterification time when ethanol concentration was 4 %vol and caproic acid content was 4 mL, and when ethanol concentration and caproic acid content was within proper range, caproic acid content had more effects on the formation of ethyl caproate by raw zymin than ethanol concentration.

结果表明,温度相对升高对其化力的形成有一定的抑制作用;高温型红曲1#化菌株粗酶制剂的化力在乙醇浓度为4 %vol、己酸含量为4 mL时,产生己酸乙的能力随化时间的延长而增强;在适宜的乙醇浓度和己酸含量范围内,己酸含量对化酶粗酶制剂己酸乙生成影响比乙醇含量的影响大。

Water,Hydrogenated Polyisobutene,Cyclohexasiloxane,Glycerin,Alcohol Denat,Cetearyl Alcohol,PEG-20,Petrolatum,C13-14 Isoparaffin,Zea Mays Oil,Tocopheryl Acetate,Hydroxypropyl Tetrahydropyrantriol,Hydrolyzed Soy Protein,CI 14700/Red 4,Phenoxyethanol,Adenosine,PEG-100 Stearate,Ethylparaben,Triethanolamine,Polyacrylamide,Malus Domestica Stem Cell Culture,CI 19140/Yellow 5,Dimethyl Isosorbide,Dimethicone,Dimethiconol,Limonene,Xanthan Gum,Pentaerythrityl Tetra-Di-T-Butyl Hydroxyhydrocinnamate,Linalool,2-Oleamido-1,3-Octadecanediol,Capryloyl Salicylic Acid,Acrylates/C10-30 Alkyl Acrylate Crosspolymer,Passiflora Edulis Seed Oil,Disodium EDTA,Castanea Sativa Seed Extract,Butyrospermum Parkii· Cetyl Alcohol,Butylene Glycol,Octyldodecanol,Cetearyl Glucoside,Methylparaben,Citronellol,Prunus Armeniaca Kernel Oil,Laureth-7,Coumarin,Oryza Sativa Bran Oil,Glyceryl Stearate,Fragrance

水,甘油,氢化聚异丁烯,液体石蜡/矿油,丁二醇,环己硅氧烷,鲸蜡醇,甘油硬脂酸,棕榈油,玉米胚芽油,PEG-100硬脂酸,白蜂蜡/蜂蜡,肉豆蔻醇肉豆蔻酸,石蜡,香精,腺苷,苧烯,山梨醇,CI 14700,CI 19140,稻糠油,杏仁油,EDTA二钠,羟丙基四氢吡喃三醇,苯氧乙醇,聚乙二醇-14M,异十六烷,氢氧化钠,辛基十二醇,季戊四醇四(双-t-丁基羟基氢化肉桂酸),山梨坦三硬脂酸,水解大豆蛋白,卡波姆,鸡蛋果籽油,苹果果实提取物,欧洲栗籽提取物,异山梨醇酐二甲醚,聚山梨醇-80,辛酰水杨酸,2-油酰胺基-1,3-十八烷二醇,氯苯甘醚,麦芽糖醇,香豆素,黄原胶,微晶蜡,丙烯酰胺/丙烯酰基二甲基牛磺酸钠共聚物,丙二醇,芳樟醇,香茅醇,玉米油,羟苯丙,羟苯甲

The reaction of polyfluoroalkyl iodides with 4-pentenoic acids initiated by sodium dithionite was realized to give polyfluoroalkyl substituted lactones.

我们研究了多氟烷基碘代烷与4-戊烯酸类化合物等在连二亚硫酸钠引发下的反应,得到了氟烷基取代的内化合物,我们将该反应称为氟烷基化内化反应;并建立了一个利用该反应合成含氟内的新方法,首次利用氟烷基化内化反应进行高立体选择性双环含氟内及手性含氟内等的合成,已合成含氟内新化合物50余种。

Water,propylene glycol,butylene glycol,glyceryl polymethacrylate,peg-7 glyceryl cocoate,biosaccharide gum-1,phenoxyethanol,hydroxyethylcellulose,ppg-26-buteth-26,chondrus crispus,peg-40 hydrogenated castor oil,sodium hydroxide,methylparaben,benzophenone-4,disodium edta,citrus aurantium dulcisoil,sorbic acid,butylparaben,ruscus aculeatus root extract,glycyrrhiza glabraroot extract,aesculus hippocastanumseed extract,pentadecalactone,iris germanica root extract,rentinyl palmitate,tocopheryl acetate,sodium hyaluronate,citrus aurantium amaraoil,sorbitol,propylparaben,ethylparaben,limonene,linalool,yellow 5,red 4,red 33

水,丙二醇,丁二醇,甘油聚甲基丙烯酸,PEG-7 椰子油酸单甘,多醣物质,苯氧乙醇,羟乙基纤维素,PPG-26-丁醇聚醚-26,卡拉胶,PEG-40氢化蓖麻油,氢氧化钠,羟苯甲,二苯酮-4,乙酸乙二胺二钠,甜橙油,山梨酸,羟苯丁,假叶树根萃取,甘草根萃取,欧洲七叶树籽萃取,环十五内,鸢尾花根萃取,维他命A,醋酸盐维他命E ,透明质酸钠,苦橙油,山梨醇,羟苯丙,羟苯乙,柠檬精油,芳樟醇,黄5,红4,红33水:几乎所有护肤品成分第一位都是水。丁二醇:保湿剂及溶剂,质地温和

Water,butylene glycol,glycerin,glyceryl polymethacrylate,triethanolamine,carbomer,ppg-26-bueth-26,chondrus crispus,peg-40 hydrogenated castor oil,phenoxyethanol,imidazolidinyl urea,propylene glycol,benzophenone-4,retinyl palmitate,citrus aurantiudulcisoil,phospholipids,methylparaben,tocopheryl acetate,c12-23 alkyl lactate,disodium EDTA,centella asiatica extract,iris germanica root extract,pentadecalactone,aloe barbadensis leaf juice,mimosa tenuiflora bark extract,sodium hyaluronate,menthol,biosaccharide gum-1,citrus aurantium amara oil,propylparaben,methylchloroisothiazolinone,sodium benzoate,potassium sorbate,citric acid,calcium sorbate,methylisothiazolinone,butylparaben,ethylparaben,yellow 5(CI 19140),limonene,linalool

水,丁二醇,甘油,甘油聚甲基丙烯酸,三乙醇胺,卡波姆,PPG-26-丁醇聚醚-26,鹿角菜胶,PEG-40 氢化蓖麻油,苯氧乙醇,尿素醛,丙二醇,二苯酮-4,维他命A,甜橙油,磷脂质,羟苯甲,醋酸盐维他命E,C12-13 烷醇乳酸,乙二胺四乙基二钠,雷公根萃取,鸢尾花根萃取,环十五内,吉拉索芦荟叶汁,含羞草萃取,透明质酸钠,薄荷脑,多醣物质,苦橙油,羟苯丙,甲基氯异塞唑晽酮,苯甲酸钠,山梨酸钾,柠檬酸,山梨酸钙,甲基异噻唑啉酮,羟苯丁,羟苯乙,柠檬黄,柠檬精油,沈香醇水:几乎所有护肤品成分第一位都是水。丁二醇:保湿剂及溶剂,质地温和

Water,propylene glycol,butylene glycol,glyceryl polymethacrylate,ascorbic acid,peg-7 glyceryl cocoate,biosaccharide gum-1,peg-40 hydrogenated castor oil,ppg-26-buteth-26,phenoxyethanol,hydroxyethylcellulose,xanthan gum,methylparaben,pentadecalactone,citrus aurantium dulcisoil,disodium edta,sorbic acid,tocopheryl acetate,butylparaben,retinyl palmitate,iris germanica root extract,sodium hyaluronate,ethylparaben,propylparaben,citrus aurantium amara oil,limonene,linalool

水,丙二醇,丁二醇,甘油聚甲基丙烯酸,维生素C衍生物,PEG-7 椰子油酸单甘,多醣物质,PEG-40氢化蓖麻油,PPG-26-丁醇聚醚-26,苯氧乙醇,羟乙基纤维素,山羊胶,羟苯甲,环十五内,甜橙油,乙酸乙二胺二钠,山梨酸,醋酸盐维他命E,羟苯丁,维他命A,鸢尾花根萃取,透明质酸钠,羟苯乙,羟苯丙,苦橙油,柠檬精油,芳樟醇

Cellulose acetate butyrate with high or low degree of butyryl substitution was synthesized in heterogeneous system(butyric acid/ acetic acid/ butyric anhydride/ sulfuric acid) using the "free solvent" method. The effect of activation time, esterification time, the molecular weight of cellulose and the content of the organic acid or anhydride on the degree of acetyl and butyryl substitution of cellulose was discussed.

在非均相体系中进行化反应,采用&反应性溶剂&,以硫酸作为催化剂合成出从高丁含量到低丁含量的纤维素醋酸丁酸,研究有机酸以及酸酐的添加量、活化时间、化反应时间以及原料纤维素的分子量对化产物纤维素醋酸丁酸的影响。

The synthesis of sucrose ester containing ethanoyl and oleoyl was performed by transesterification between sucrose octaacetate and ethyi oleate in organic solvents, using lipases Novo435 as the catalyst.

在有机溶剂中,以脂肪酶Novo435为催化剂,蔗糖八乙酸与油酸乙通过转化反应合成了同时含有油酸酰基和乙酸酰基的混合型蔗糖,当蔗糖八乙酸与油酸乙的物质的量之比为1:1时,油酸乙的转化率达95%。

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According to the clear water experiment, aeration performance of the new equipment is good with high total oxygen transfer coefficient and oxygen utilization ratio.

曝气设备的动力效率在叶轮转速为120rpm~150rpm时取得最大值,此时氧利用率和充氧能力也具有较高值。

The environmental stability of that world - including its crushing pressures and icy darkness - means that some of its most famous inhabitants have survived for eons as evolutionary throwbacks, their bodies undergoing little change.

稳定的海底环境─包括能把人压扁的压力和冰冷的黑暗─意谓海底某些最知名的栖居生物已以演化返祖的样态活了万世,形体几无变化。

When I was in school, the rabbi explained everythingin the Bible two different ways.

当我上学的时候,老师解释《圣经》用两种不同的方法。