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1.
采用cocktail探针药物法研究了氟尼辛葡甲铵对猪肝微粒体细胞色素(CY)P450酶系的作用.将12头猪随机分为2组,试验组每日肌肉注射氟尼辛葡甲铵1次,对照组给予等体积的生理盐水,连续给药10 d.通过高效液相色谱法检测探针药物的代谢率,评价各组CYP450酶的活性水平.结果显示,试验组的氨苯砜代谢减慢,消除半衰期t1/2延长;而氯唑沙宗代谢加快,t1/2缩短.说明氟尼辛葡甲铵对猪的CYP3A4具有抑制作用,而对CYP2E1存在诱导效应.  相似文献   

2.
Relating single-nucleotide polymorphisms (SNP) to cows with acceptable productivity could benefit cattle breeders in areas where tall fescue is the predominant forage. This study aimed to (i) identify SNPs in bovine cytochrome P450 3A28 (CYP3A28) and (ii) determine the associations between SNP genotype, forage and cow body condition (BC). Genotype (CC, CG or GG) and forage [Kentucky-31 wild-type endophyte-infected tall fescue (KY+) vs. bermudagrass] effects on milk volume and quality were determined in Herd 1 cows (123 cows); in Herd 2 (99 cows), genotype and BC (low vs. moderate) effects on ovarian follicle size, calving date and calving per cent were determined; and in Herd 3 (114 cows), effects of genotype and fescue cultivar [KY+ vs. non-toxic endophyte-infected tall fescue (HiMag4)] were related to calving per cent, calving date and weaning weights of both cow and her calf. A cytosine (C) to guanine (G) transversion at base 994 (C994G) in CYP3A28 was identified. There was a genotype × forage type interaction (p < 0.05) on milk protein in Herd 1 cows; CC cows grazing bermudagrass had greater milk protein percentage in relation to other cows in the herd. In Herd 2, BC and genotype × BC tended (p < 0.10) to influence follicle size and Julian calving date respectively. Diameter of the largest follicle tended to be larger in moderate BC than in low-BC cows; whereas, CC and CG cows in moderate BC and homozygous (CC and GG) cows in low BC tended to calve 14 days earlier in relation to CG cows in low BC. In Herd 3, there was a genotype × forage type interaction (p < 0.05) on calving per cent, Julian calving date and calf weaning weight. In this study, genetic alterations (G allele at C994G) coupled with nutritional factors (low BC and toxic tall fescue) resulted in overall lower productivity in cows.  相似文献   

3.
对6周龄雄性Wistar大鼠5次灌胃给予20%LD50的乐果,观察给药后大鼠的毒性反应,每日测定实验鼠采食量、饮水量和体重。最后一次给药后第24h,采用丁酰硫代胆碱法测定大鼠红细胞、血清和脑组织中的胆碱酯酶浓度,并采用定量RT-PCR法检测大鼠肝中细胞色素P450基因8个亚型的表达量。结果表明,大鼠用药后不同时间内出现了有机磷药物中毒的典型症状,其采食量、饮水量和体重明显下降,红细胞、血清和脑组织中胆碱酯酶浓度均明显低于对照组,肝细胞色素P450的8个亚型中CYP2B1/2的表达量明显高于对照组。  相似文献   

4.
Wildlife is exposed to a wide range of xenobiotics in the natural environment. In order to appropriately assess xenobiotic-induced toxicity in wildlife, it is necessary to understand metabolic capacities. Carnivores, in general, have low metabolic abilities, making them vulnerable to a variety of chemicals. Raccoons (Procyon lotor) in the wild have been found to have high levels of xenobiotics. However, little is known about the metabolic capacity of the cytochrome P450 (CYP) enzymes in this species. Thus, this study used liver samples to investigate the characteristics of CYP enzymes in wild raccoons. In 22 wild raccoons, CYP concentrations in hepatic microsomes were examined. To better understand the properties of CYP-dependent metabolism, in vitro metabolic activity studies were performed using ethoxyresorufin, pentoxyresorufin and testosterone as substrates. In addition, three raccoons were fed commercial dog food in the laboratory for one week, and the effects on CYP-dependent metabolism were investigated. In comparison to other mammalian species, raccoons had very low concentrations of CYP in their livers. In an in vitro enzymatic analysis, raccoons’ ethoxyresorufin O-deethylase (EROD) and pentoxyresorufin O-depentylase (PROD) metabolic capacities were less than one-fifth and one-tenth of rats’, respectively. These results indicate the possible high risk in raccoons if exposed to high levels of environmental xenobiotics because of their poor CYP activity. In this study, the features of CYP-dependent metabolism in wild raccoons are described for the first time.  相似文献   

5.
Diclofenac was responsible for the decimation of Gyps vulture species on the Indian subcontinent during the 1980s and 1990s. Gyps vultures are extremely sensitive (the lethal dose 50 [LD50] ~ 0.1 mg/kg – 0.2 mg/kg), with toxicity appearing to be linked to metabolic deficiency, demonstrated by the long T1/2 (~12 h – 17 h). This is in striking comparison to the domestic chicken (Gallus gallus domesticus), in which the LD50 is ~10 mg/kg and the T1/2 is ~1 h. The phase 1 cytochrome P450 (CYP) 2C subfamily has been cited as a possible reason for metabolic deficiency. The aim of this study was to determine if CYP2C9 homolog pharmacogenomic differences amongst avian species is driving diclofenac toxicity in Gyps vultures. We exposed each of 10 CYP-inhibited test group chickens to a unique dose of diclofenac (as per the Organisation for Economic Co-operation and Development [OECD] toxicity testing guidelines) and compared the toxicity and pharmacokinetic results to control group birds that received no CYP inhibitor. Although no differences were noted in the LD50 values for each group (11.92 mg/kg in the CYP-inhibited test group and 11.58 mg/kg in the control group), the pharmacokinetic profile of the test group was suggestive of partial inhibition of CYP metabolism. Evaluation of the metabolite peaks produced also suggested partial metabolic inhibition in test group birds, as they produced lower amounts of metabolites for one of the three peaks demonstrated and had higher diclofenac exposure. This pilot study supports the hypothesis that CYP metabolism is varied amongst bird species and may explain the higher resilience to diclofenac in the chicken versus vultures.  相似文献   

6.
Previous studies reported that diabetes alters the activities of hepatic cytochrome P450 (CYP) enzymes, which, in turn, affects the disposition of some drugs. We herein examined and compared the effects of the combination of dapagliflozin with a low insulin dose, a full dose of insulin alone, and dapagliflozin alone for 3 and 8 weeks on CYP activities in a diabetes type 1 rat model. We induced type 1 diabetes in rats using a single intraperitoneal injection of 60 mg/kg streptozotocin (STZ). Daily treatment with the full dose of insulin alone, dapagliflozin alone, or dapagliflozin in combination with a low dose of insulin was then initiated. STZ-induced rats developed marked hyperglycemia and altered CYP2E activities. Dapagliflozin in combination with a low dose of insulin stabilized hyperglycemia and CYP1A, 2D, 2E and 3A activities. However, dapagliflozin alone did not improve blood glucose levels or CYP activities. These results suggest that the effects of dapagliflozin in combination with a low dose of insulin are similar to those of a full dose of insulin, and stabilize CYP activities in type 1 diabetes.  相似文献   

7.
Single‐nucleotide polymorphisms (SNP) in the coding sequence of cytochrome p450 (CYP3A28) have been associated with milk yield and composition, and calving traits in cows. In this study, we aimed to determine whether (i) the CYP3A28 regulatory region was polymorphic and (ii) SNP genotype, forage type, body condition and their interactions affect cow productivity. Primers for CYP3A28 promoter were designed to amplify a 483‐bp segment by PCR. Amplicon sequences revealed seven SNP (T‐318C, T‐113A, C‐189T, T‐78G, A6G, G17A and T21C) in Brahman (38 cows), Brahman x Angus reciprocal crosses (47 cows) and crossbreds (98 cows). Angus cows (n = 41) appeared to be fixed at those SNP locations. Genotype and forage {endophyte‐infected tall fescue [KY+; Lolium arundinaceum (Schreb.) S. J. Darbyshire] vs. bermudagrass [Cynodon dactylon (L.) Pers.]} effects on lifetime (8‐years) calving rate, and calf weaning weights and heights were determined in Herd 1 (126 cows); genotype and BC (low vs. moderate) effects on calving date and calving percent were determined in Herd 2 (98 cows). Four SNP (T‐318C, T‐113A, A06G and T21C) appeared to be related to cattle productivity, CC cows at T‐318C having a lower (p < 0.05) lifetime calving rate than TC or TT cows (65%, 85% and 81% respectively). Cows that grazed KY+ and were TT at T‐318C produced calves that tended (p < 0.07) to weigh less than their contemporaries. Moreover, calves of TT cows were shorter (p < 0.05) at weaning than calves of CC or TC cows. In Herd 2, moderate‐BC cows that were TT or AA at T‐318C, T‐113A, T‐78G, A6G and T21C had greater (p < 0.05) calving rates (74–80%) than heterozygous cows (46–60%), and low‐BC cows that were AA at G17A calved at least 6 days earlier (p < 0.05) than heterozygous cows. Our findings suggest that SNP in the CYP3A28 regulatory region of Brahman‐influenced cows are associated with cattle productivity.  相似文献   

8.
In cynomolgus macaques (Macaca fascicularis), widely used in drug metabolism studies, CYP2C9, CYP2C76, CYP2D6, CYP3A4, and CYP3A5, important drug‐metabolizing enzymes, are abundantly expressed in liver and metabolize cytochrome P450 substrates. CYP2C9 (c.334A>C), CYP2C76 (c.449TG>A), CYP2D6 (c.891A>G), CYP3A4 (IVS3 + 1G>del), and CYP3A5 (c.625A>T) substantially influence metabolic activity of enzymes, and thus are important variants in drug metabolism studies. In this study, a real‐time PCR method was developed for genotyping these variants. The validity of the methods was verified by genotyping two wild type, two heterozygous, and two homozygous DNAs and was used to genotype 41 cynomolgus macaques (from Cambodia, Indonesia, the Philippines, or Vietnam) for the five variants, along with another important variant CYP2C19 (c.308C>T). The CYP2C9 and CYP2C19 variants were found only in Cambodian and Vietnamese animals, while the CYP2C76 and CYP2D6 variants were found only in Indonesian and Philippine animals. The CYP3A4 and CYP3A5 variants were not found in any of the animals analyzed. Mauritian animals, genotyped using next‐generation sequencing data for comparison, possessed the CYP2C19 and CYP2D6 variants, but not the other variants. These results indicated differences in prevalence of these important variants among animal groups. Therefore, the genotyping tool developed is useful for drug metabolism studies using cynomolgus macaques.  相似文献   

9.
10.
为了探究家蚕对NaF的代谢机制,以家蚕耐氟品种T6和氟化物敏感品种734为材料,从5龄起蚕开始分别添食50、100、200、400 mg/kg NaF溶液处理后的桑叶,检测蚕体中肠微粒体酶液中的黄素蛋白NADPH-细胞色素P450还原酶(CPR)和NADPH-细胞色素C还原酶(CR)的活性变化。氟物化敏感品种734的4个NaF处理组第3天的中肠CPR活性低于对照组,其余时间几乎都高于对照组,400 mg/kg NaF处理组在第4天的CPR活性最高,且各NaF处理组的CPR活性差异显著(P<0.05);耐氟品种T6 NaF处理组和对照组的中肠CPR活性整体上呈先升后降的趋势,几乎都在第2天达到最高值,各组之间的差异不显著(P>0.05)。氟化物敏感品种734的4个NaF处理组的中肠CR活性呈现先升后降的趋势,而对照组呈下降趋势;耐氟品种T6的50、100、400 mg/kg NaF处理组在第1~2天的中肠CR活性呈明显下降趋势,之后的变化相对较小,对照组的CR活性仅在第3~4天略高于NaF处理组,而其余时间NaF处理组的CR活性较高。2个家蚕品种添食不同浓度NaF后的中肠CR活性差异均不显著(P>0.05)。试验结果显示,耐氟品种T6在NaF作用下中肠的CPR和CR活性变化范围(分别为对照组的0.4~2.0倍和0.3~2.9倍)远小于氟化物敏感品种734这2种酶的活性变化范围(分别为对照组的0.6~9.3倍和0.4~4.6倍)。初步推测CPR和CR与家蚕对氟化物代谢具有一定的关联。  相似文献   

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12.
为探究细胞色素P450(Cytochrome P450,CYP450)通路中GSTAL2、GSTA3、HPGDS、HSD11B1a基因表达量在禽类重要免疫器官脾脏和马立克氏病肿瘤细胞系(MSB-1)的继代传递效应。研究利用病毒模拟物聚肌胞苷酸(Poly I∶C)和细菌模拟物脂多糖(LPS)分别刺激F0代蛋鸡和P0代MSB-1细胞,通过实时荧光定量PCR技术检测上述基因在F0与F1代蛋鸡脾脏及P0与P1代MSB-1细胞中的表达变化情况。结果显示:F(0P0)代、F(1P1)代Poly I∶C组脾脏、MSB-1细胞中的GSTAL2相对表达量均显著高于对照组(P<0.05),其表达趋势可在两代间传递,而GSTA3、HPGDS、HSD11B1a在F(0P0)代的相对表达趋势不能显著性传递至F(1P1)代。结果提示,在Poly I∶C刺激下,GSTAL2基因可能充当着机体对外源性物质代谢的重要角色,同时该基因表达趋势的传递现象也将为今后相关研究的开展奠定理论基础。  相似文献   

13.
Two non‐pedigreed male castrated cats had persistent cyanosis over a 3‐year observation period. Clinical cardiopulmonary evaluations did not reveal abnormalities, but the blood remained dark after exposure to air. Erythrocytic methemoglobin concentrations were high (~40% of hemoglobin) and cytochrome b5 reductase (CYB5R) activities in erythrocytes were low (≤15% of control). One cat remained intolerant of exertion, and the other cat developed anemia and died due to an unidentified comorbidity. Whole‐genome sequencing revealed a homozygous c.625G>A missense variant (B4:137967506) and a c.232‐1G>C splice acceptor variant (B4:137970815) in CYB5R3, respectively, which were absent in 193 unaffected additional cats. The p.Gly209Ser missense variant likely disrupts a nicotinamide adenine dinucleotide (NADH)‐binding domain, while the splicing error occurs at the acceptor site for exon 4, which likely affects downstream translation of the protein. The 2 novel CYB5R3 variants were associated with methemoglobinemia using clinical, biochemical, genomics, and in silico protein studies. The variant prevalence is unknown in the cat population.  相似文献   

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