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- fatty acyl carnitine 酰基肉碱
- acyl carnitine 酰基肉碱
- An acyl derivative of hydrazine. 酰肼一种由肼衍生而来的酰
- Shenzhen Asiatop Carnitine Technology Co., Ltd. 深圳亚王康丽技术有限公司。
- Carnitine appears to decrease muscle soreness. 肉毒碱,可以减缓肌肉疼痛。
- An example of the acyl group is the acetyl group. 乙酰基是酰基的一个例子。
- Tannase is an acyl hydrolase of tannin. 单宁酶是水解单宁酯键的酶,用途广泛,具有重要的商业价值。
- Methods:EFTA is synthesized from EATA by one step:acyl. 方法:以2-氨基-噻唑基-4-乙酸乙酯(EATA)为原料;经氨基甲酰化反应得到 EFTA.
- Effects of carnitine on adipose metabolism in Chinese soft-shelled turtles. 肉碱对中华鳖脂肪代谢的影响。
- These help a mitochondrial enzyme called carnitine acetyltransferase to do its job. 这两种分子有助于被称作肉碱乙酰转移酶的线粒体酶发挥作用。
- The interaction between 32. 65% protein content and 300mg/kg carnitine content can save 0.79 yuan/kg CSST (7. 92%). 65%25的蛋白质含量与300mg/kg的肉碱添加量可使成本下降0.;79元/千克鳖(7
- The mean recoveries of carnitine in sperm were 86.93% at l ow, middle and high concentration. 高、中、 低3种浓度的平均回收率为86.;93%25。
- These help a mitochondrial enzyme called carnitine acetyl transferase to do its job. 这能有助于一种叫做肉碱乙酰转移酶的线粒体酶的活动。
- Use of ammonia gas: fertilizer and various ammonia containing compound, various amidogen, acyl and other ammonia containing testing agents (explosives) etc. 氨气用途:化肥和各种含氨化合物。各种胺基、酰基、硝酸和各种含氨制试剂(炸药)等。
- Studies show that supplement of carnitine could improve the clinical symptoms of some diseases. 研究表明,补充左卡尼汀能改善某些疾病的临床症状。
- The acyl chloride product was fluorinated by potassium fluoride and esterified by methanol to synthesize dimethyl tetrafluoroterephthalate. 以氟化钾为氟化剂,环丁砜为溶剂置换氟化,再与甲醇酯化得到四氟对苯二甲酸甲酯;
- Objective: To observe the metabolism of carnitine in patients with chronic renal failure(CRF). 目的:观察慢性肾衰患者的肉碱代谢以指导临床治疗。
- Structure 4 is the reaction intermediate for H2C=C(OH)Na to serve as acyl anion equivalent. H_2C=C(OH)Na具有双重反应性;结构4是发生亲核反应的中间体;发生类卡宾反应时经过类似构型2的中间状态.
- Objectives: To assess the effectiveness and safety of carnitine in thetreatment of idopathic asthenozoospermia. 目的:评价肉碱治疗原发性弱精症的疗效和安全性。
- The effects of organic solvents, acyl donors and amounts of lipase on the reaction were studied. 攷察溶剂、酰基供体和加酶量对反应的影响,确定有机相中酶促拆分环氧丙醇的最适反应条件。