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11.
为了研究猪囊尾蚴乳酸脱氢酶(LDH)的表达,试验选择四川省雅江县呷拉乡猪带绦虫病患者,给其口服槟榔-南瓜子驱虫,收集、制备虫卵悬液(8万个/mL),再给3头20日龄三元杂交乳猪猪灌胃虫卵悬液,每头1 mL,40 d后收集、制备猪囊尾蚴蛋白,进行双向电泳(2-DE)分析,将凝胶蛋白斑点转移至聚偏氟乙烯膜(PVDF膜),用自制的大鼠抗猪带绦虫LDH血清作为一抗、健康大鼠血清作为阴性对照进行蛋白质印迹(Western-blotting)分析。结果表明:双向电泳凝胶共检测到(207±9)个蛋白质斑点,相对分子质量(Mr)为14 400~94 000,等电点(pI)为3.0~10.0;试验组特异性抗原抗体阳性杂交斑点为1个,阴性对照未见阳性杂交斑点;将Western-blotting检测的抗原抗体阳性杂交斑点与原双向电泳凝胶斑点进行比对,找到对应蛋白斑点,经ImageMaster 2D Platinum 5.0软件分析后初步确定该蛋白斑点的pI/Mr为7.03/35 368,与猪带绦虫LDH的pI/Mr理论推导值接近,说明猪囊尾蚴表达LDH。  相似文献   
12.
用交联聚苯乙烯-异氰尿酸树脂催化乳酸与正丁醇的酯化反应,发现虽然该树脂的酸性与羧酸相近,但能有效地催化酯化反应,并由此提出了氢键促进催化的反应机理.  相似文献   
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Background

Neonatal diarrheic calves have a clear negative potassium balance because of intestinal losses and decreased milk intake but in the presence of acidemia, they usually show normokalemic or hyperkalemic plasma concentrations.

Objectives

To assess whether marked hypokalemia occurs in response to the correction of acidemia and dehydration and to identify factors that are associated with this condition.

Animals

Eighty‐three calves with a clinical diagnosis of neonatal diarrhea.

Methods

Prospective cohort study. Calves were treated according to a clinical protocol using an oral electrolyte solution and commercially available packages of 8.4% sodium bicarbonate, 0.9% saline and 40% dextrose infusion solutions.

Results

The proportion of hypokalemic calves after 24 hours of treatment (19.3%) was twice as great as it was on admission to the hospital. Plasma K+ after 24 hours of treatment was not significantly correlated to venous blood pH values at the same time but positively correlated to venous blood pH values on admission (= 0.51, < .001). Base excess on admission (Odds ratio [OR] = 0.81, 95% confidence interval [CI] = 0.70–0.94), duration of diarrhea (OR = 1.37, 95% CI = 1.05–1.80), milk intake during hospitalization (OR = 0.54, 95% CI = 0.37–0.79) and plasma sodium concentrations after 24 hours (OR = 1.12, 95% CI = 1.01–1.25) were identified to be independently associated (< .05) with a hypokalemic state after 24 hours of treatment.

Conclusions and Clinical Importance

Findings of this study suggest that marked depletion of body potassium stores is evident in diarrheic calves that suffered from marked metabolic acidosis, have a low milk intake and a long history of diarrhea.  相似文献   
15.
为研究海鲈(Lateolabrax japonicus)的游泳续航能力和游泳过程中的物质代谢规律,以深水网箱养殖的3月龄海鲈为研究对象,采用游泳续航时间和生化指标作为评测海鲈游泳能力和代谢规律的方法进行了试验。结果显示,海鲈的游泳续航时长为200 min,其续航能力强于大黄鱼而弱于美国红鱼。在游泳过程中,海鲈血糖浓度升高,但差异性不显著(P>0.05),肌糖原随着时间的增加显著减少(P<0.05),且肌糖原浓度在海鲈疲劳时接近于0。当鱼接近100%疲劳时,其肝糖原浓度也接近于0;当海鲈以不同疲劳程度游泳时,其肌肉乳酸脱氢酶浓度会显著升高(P<0.05)。表明海鲈的续航游泳过程伴随着无氧呼吸和有氧呼吸。  相似文献   
16.
哺乳类动物各种组织和器官的乳酸脱氢酶(LDH)同工酶较稳定,酶带分布非常有规律,同源组织的LDH同工酶酶谱通常相似和稳定。鱼类LDH同工酶复杂得多,有三分之二品种中,其LDH同工酶类似哺乳类动物的酶谱;但在其余三分之一种类中,两个亚基随机结合受到限制,出现了不规则酶谱,有的只有2—3条酶带,有的超过5条酶带。即使具有5条酶带的鱼中,其骨骼肌和心肌LDH在电泳酶谱上迁移快慢正好与哺乳类动物相反。此外鱼类C基因产物并不特定在某一组织或器官中,一些鱼的  相似文献   
17.
A Brett-type respirometer was used to measure the effect of water pH on swimming performance of rainbow trout (Salmo gairdneri). Variations in water pH between 6 and 9 had no measurable effect on maximum aerobic swimming speed. At water pH 4, 5, and 10, however, the critical velocity was only 55, 67, and 61% respectively of that recorded for fish in water of pH 7. Exposure to acid conditions increased coughing and breathing frequency. Acid exposure resulted in a decrease whereas alkaline exposure resulted in an increase in both whole blood and red blood cell pH. Blood gas and acid-base characteristics showed little change during swimming at 2.0 BL/second, but exhaustive swimming resulted in a marked and immediate drop in blood pH in fish in acid, alkaline and neutral water. The blood acid-base status was restored to resting levels after exercise in neutral and alkaline water, but the acidosis was maintained following exercise in acid water. Fatigue occurred earlier and blood lactate levels increased to a higher level in fish swum to exhaustion in acid or alkaline water, compared with fish in neutral water.  相似文献   
18.
Short-term exposure of isolated toadfish hepatocytes to high concentrations (100 nM) of glucagon, glucagon-like peptide (GLP) or epinephrine significantly increases the rate of lactate gluconeogenesis (1.3-fold) and glycogenolysis (5- to 7-fold). Half-maximal responsiveness to GLP is reached at about 2 nM for gluconeogenesis and 6 nM for glycogenolysis, while the value for glycogenolysis activated by catfish glucagon is 28 nM. Cells do not to respond to 5 nM epinephrine. Norepinephrine, urotensin II and leucine-enkephalin, each applied at 100 nM, increase the rate of glycogenolysis by 1.3 to 1.5-fold. All other hormones tested (vasotocin, isotocin, VIP, methionine-enkephalin, ovine prolactin, -endorphin, APY, salmon insulin) failed to affect metabolic flux through glycogenolysis or gluconeogenesis. None of the hormones altered the rate of urea synthesis or the rate of lactate oxidation by hepatocytes. Although toadfish hepatocytes are responsive to hormonal stimuli, they do not appear to be a useful model to study evolutionary trends in short-term hormonal regulation of urea synthesis. However, the obvious differences in mechanisms of control of urea synthesis in this species compared with ureogenic amphibians and mammals open an intriguing avenue for research.  相似文献   
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20.
谷氨酰胺的抗疲劳生化机制研究   总被引:14,自引:0,他引:14  
用两批各 48只小鼠分 4组 (n =12 )每天分别灌喂生理盐水和 3 4mmol·kg-1的谷氨酰胺、谷氨酸和天冬酰胺 ,连续 10d。结果显示 ,三者都可提高小鼠血清、肝和骨骼肌中的肌酸磷酸激酶活性 ,降低乳酸脱氢酶活性 ,并显著增加肝、骨骼肌糖原积累。其中有相同碳架结构的谷氨酰胺、谷氨酸能极显著提高小鼠的游泳耐力 ,但与谷氨酰胺有相等酰胺氮的天冬酰胺作用不强。结果提示 ,谷氨酰胺提高机体抗疲劳作用与其碳架结构有关  相似文献   
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