1. Long-term studies for evaluation of carcinogenic potential have not been performed with clevidipine butyrate.
对丁酸氯维地平这种药物的致癌风险的长期研究尚未进行。

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2. Differentiation was induced by sodium butyrate.
用丁酸钠诱导其分化。

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3. There was rapid conversion of butyrate into Acetate.
同时丁酸向乙酸转化。

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4. Study on catalytic synthesis of amyl butyrate with solid acid;
采用硫酸氢钠为催化剂合成了己酸戊酯。

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5. Ceric sulfate is an excellent catalyst for synthesis of amyl butyrate.
硫酸铈是合成丁酸戊酯的良好催化剂。

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6. Butyrate is linked to lower cholesterol levels, and thus healthier hearts.
丁酸盐能降低胆固醇水平,因此能使心脏更加健康。

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7. Isobutyl butyrate was synthesized by using gallium sulphate as the catalyst.
以硫酸镓为催化剂,正丁酸和异丁醇为原料合成了丁酸异丁酯。

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8. Glycidol butyrate is an important chiral material and synthetic intermediate.
缩水甘油丁酸酯是一种重要的手性原料和合成中间体。

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9. Benzyl butyrate was synthesized by using potassium bisulfate as the catalyst.
以硫酸氢钾为催化剂,丁酸和苄醇为原料合成丁酸苄酯。

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10. Methods:HT-29 cells were cultured in the absence or presence of sodium butyrate.
方法:HT-29细胞常规培养在含有和不含有丁酸钠的培养液中。

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11. Objective: Synthesis of (r) -glycidyl butyrate was monitored by gas chromatography.
目的:建立气相色谱法监测(R)缩水甘油丁酸酯的合成。

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12. A drastic drop in coulombic efficiency occurred when the proportion of butyrate exceeded 26%.
当丁酸的量超过26%时,库仑效率急剧降低。

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13. They also reduce blood sugar levels, and create the fatty acid butyrate, which may burn fat faster.
它们也减少血糖水平,并且生成可能更快燃烧脂肪的含脂肪的酸的丁酸盐。

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14. The results show that ceric sulfate is an excellent catalyst for the synthesis of benzyl butyrate.
结果表明硫酸高铈是合成丁酸苄酯的优良催化剂。

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15. Isoamyl butyrate was synthesized by using gallium sulfate supported on silica gel as the catalyst.
以自制的硅胶固载硫酸镓为催化剂,正丁酸和异戊醇为原料合成了丁酸异戊酯。

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16. Objective To study the differentiation of human glioma cells BT-325 induced by sodium butyrate in vitro.
目的研究丁酸钠体外诱导人脑多型性胶质母细胞瘤细胞系BT- 325细胞的分化。

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17. Isoamyl butyrate was synthesized from butyric acid and isoamyl catalyzed by composite solid acid as the catalyst.
用丁酸和异戊醇为原料,复合固体酸为催化剂合成了丁酸异戊酯。

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18. Objective To investigate the effect of sodium butyrate on the appearance and bionomics of colon cancer line HT-29.
目的观察丁酸钠对结肠癌HT-29细胞形态和生物学特性的影响。

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19. Synthetic method of butyl butyrate was investigated using silicotungstic acid catalyst absorbed on activated carbon.
用活性炭固载硅钨酸催化剂催化合成了丁酸丁酯。

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20. The PCR-DGGE profiles showed that the preponderant populations were steady during butyrate-type fermentation period.
根据PCR DGGE指纹图谱显示此时期丁酸型发酵优势菌群在反应器内结构保持稳定。

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21. Benzyl butyrate was synthesized from benzyl alcohol and butyric acid by esterification using ceric sulfate as catalyst.
以硫酸高铈为催化剂,丁酸和苄醇为原料合成丁酸苄酯。

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22. Objective to observe 0.05% halometasone cream and Hydrocortisone Butyrate ointment treatment of neurodermatitis limitations.
目的观察0.05%卤米松乳膏和丁酸氢化可的松软膏治疗局限性神经性皮炎的疗效。

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23. A new method for the synthesis of benzyl n -butyrate with benzyl chloride and sodium n-butyrate by the catalyst of CTMAB is described.
以C TMAB为相转移催化剂, 氯化苄和丁酸钠为原料合成丁酸的新方法。

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24. Objective To compare the morphology and ultrastructure changes of human gastric adenocarcinoma cell line treated by tachyplesin and n-sodium butyrate.
目的以正丁酸钠为平行对照,比较观察鲎素和癌细胞诱导分化物对人胃癌细胞形态与超微结构变化的影响。

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25. Hydrogen production capacity and ecological characteristics of ethanol-type and butyrate-type fermentation were investigated in continuous-flow reactor.
对生物制氢反应器乙醇型发酵和丁酸型发酵的产氢能力及其生态学特性进行了对比分析。

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26. Resorcin biodegradation was studied by acclimated anaerobic sludge with sucrose, glucose, butyrate and ethanol as co-metabolism substrates in ASBR reactor.
分别用蔗糖、葡萄糖、丁酸盐和乙醇作为驯化好的厌氧污泥的共代谢基质,在厌氧序批式反应器(asbr)中对间苯二酚的降解进行研究。

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27. Tough films with good resistance to marring and weathering are possible through combinations of cellulose acetate butyrate with thermoplastic acrylic resins.
具有良好的耐磨损和风化的强硬电影,可能通过与热塑性丙烯酸树脂醋酸丁酸纤维素的组合。

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28. Objective: to investigate effects of sodium butyrate (NaB) on the proliferation of human colon cancer cell line SW620, and to explore its possible mechanisms.
目的:研究短链脂肪酸盐丁酸钠对体外培养的人结肠癌细胞SW620增殖抑制的影响,并探讨其作用机制。

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29. Objective: to investigate effects of sodium butyrate (NaB) on the proliferation of human colon cancer cell line SW620, and to explore its possible mechanisms.
目的:研究短链脂肪酸盐丁酸钠对体外培养的人结肠癌细胞SW620增殖抑制的影响,并探讨其作用机制。

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