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1.
Milk is considered a perfect natural food for humans and animals. However, aflatoxin B1 (AFB1) contaminating the feeds fed to lactating dairy cows can introduce aflatoxin M1 (AFM1), the main toxic metabolite of aflatoxins into the milk, consequently posing a risk to human health. As a result of AFM1 monitoring in raw milk worldwide, it is evident that high AFM1 concentrations exist in raw milk in many countries. Thus, the incidence of AFM1 in milk from dairy cows should not be underestimated. To further optimize the intervention strategies, it is necessary to better understand the metabolism of AFB1 and its biotransformation into AFM1 and the specific secretion pathways in lactating dairy cows. The metabolism of AFB1 and its biotransformation into AFM1 in lactating dairy cows are drawn in this review. Furthermore, recent data provide evidence that in the mammary tissue of lactating dairy cows, aflatoxins significantly increase the activity of a protein, ATP-binding cassette super-family G member 2 (ABCG2), an efflux transporter known to facilitate the excretion of various xenobiotics and veterinary drugs into milk. Further research should focus on identifying and understanding the factors that affect the expression of ABCG2 in the mammary gland of cows.  相似文献   

2.
The ATP-binding cassette (ABC) transporter breast cancer resistance protein (BCRP)/ABCG2 is a high-capacity efflux transporter with wide substrate specificity located in apical membranes of epithelia, which is involved in drug availability. BCRP is responsible for the active secretion of clinically and toxicologically important substrates to milk. The present study shows BCRP expression in sheep and cow by immunoblotting with MAb (BXP-53). Vanadate-sensitive ATPase activity with specific BCRP substrates and inhibitors was measured in bovine mammary gland homogenates. To assess the role of BCRP in ruminant mammary gland we tested the fluoroquinolone enrofloxacin (ENRO). In polarized cell lines, ENRO was transported by Bcrp1/BCRP with secretory/absorptive ratios of 6.5 and 2 respectively. The efflux was blocked by the BCRP inhibitor Ko143. ENRO pharmacokinetics in plasma and milk was studied in sheep after co-administration of drug (2.5 mg/kg, i.v.) and genistein (0.8 mg/kg, i.m.) or albendazole sulfoxide (2 mg/kg, i.v) as BCRP inhibitors. Concomitant administration of BCRP inhibitors with ENRO had no significant effect on the plasma disposition kinetics of ENRO but decreased ENRO concentrations in milk.  相似文献   

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We examined patterns of lymphocyte localization in female dairy cattle following infusion of 51Cr-labeled autologous lymphocytes prepared from surgically excised mammary or ileal mesenteric lymph nodes. Labeled lymphocytes prepared from mammary lymph nodes were recovered in proportionally high numbers from mammary and prescapular lymph nodes, and in low numbers from intestinal mesenteric nodes. This pattern was observed in both heifers and lactating cows. In contrast, labeled lymphocytes prepared from ileal mesenteric lymph nodes of lactating cows were recovered in proportionally high numbers from intestinal mesenteric nodes, and in low numbers from mammary and prescapular nodes. These findings, when compared with previous results in sheep and swine, support the hypothesis that lymphocytes do not migrate efficiently between the gut and mammary gland of ruminants.  相似文献   

5.
目前泌乳反刍动物尤其是奶牛乳腺营养研究已成为动物营养研究中的热点,乳腺血流量是影响乳腺营养物质吸收、摄取和利用的关键因素之一,因此乳腺血流量的准确测定也具有切实的理论和实践意义.本文以奶山羊乳腺为研究对象,利用transit-time超声血流量计对不同条件下乳腺血流量的检测及其准确性进行了评估.结果发现,结扎阴部外静脉...  相似文献   

6.
Glucose delivery and uptake by the mammary gland is a rate‐limiting step in milk synthesis. Insulin resistance is believed to increase throughout the body following the onset of lactation. To study glucose metabolism in peak‐, late‐, and non‐lactating cows we analyzed the expression of an adipokine, namely, adiponectin, decreased insulin resistance, leptin, and a novel insulin‐responsive glucose transporter (GLUT12) in the adipose tissue and mammary gland by using real‐time polymerase chain reaction. Our results demonstrated that the mRNA level of adiponectin in the adipose tissue was greater in non‐lactating cows than in peak‐lactating cows. In the adipose tissue, there were no significant differences in the abundance of GLUT12 mRNA between the peak‐, late‐, and non‐lactating cows. In contrast, in the mammary gland, the mRNA level of GLUT12 was greater in non‐lactating cows than in peak‐ and late‐lactating cows. In the adipose tissue, the mRNA level of leptin and peroxisome proliferator‐activated receptor gamma 2 (PPARγ2) was greater in non‐lactating cows than in peak‐lactating cows. The results of the present study suggest that in lactating cows adiponectin plays an important role in insulin resistance in the adipose tissue; in the mammary gland, GLUT12 expression is believed to be an important factor for insulin‐dependent glucose metabolism.  相似文献   

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Breast cancer resistance protein (BCRP, ABCG2) is a member of ABC (ATP‐binding cassette) transporter superfamily that occurs in a variety of tissues including liver and small intestine of animals. As BCRP is involved in drug absorption, distribution, and elimination, modulation of its expression may affect the clinical efficacy of drugs. However, little is known about the effects of coccidiosis or colibacillosis infection on the levels of BCRP expression in chickens. Here, we studied the effect of infection with Escherichia coli (E. coli) or Eimeriida mixture (E. necatrix and E. tenella) on the expression levels of ABCG2 mRNA and BCRP in the different segments of small intestine and liver in chickens. Expression of ABCG2 mRNA or BCRP was detected in the entire small intestine and liver of healthy chickens, and the expression levels in liver and ileum were significantly higher than duodenum and jejunum. Infection with E. coli or Eimeriida mixture resulted in significant decrease in ABCG2 mRNA and BCRP expression in liver, ileum, and jejunum, but not in duodenum, in comparison with noninfection control. The results indicate that coccidiosis or colibacillosis infection inhibits BCRP expression in chickens, which may consequently influence drug distribution and therapeutic efficacy.  相似文献   

9.
为了检测和调查新疆库尔勒市某奶牛场泌乳奶牛乳房炎的发病率,对该奶牛场养殖的32头泌乳期奶牛用凝乳法进行了隐性乳房炎检测。结果表明,隐性乳房炎奶牛阳性率为40.63%,且乳房炎阳性率随奶牛使用年限的增加而增加;用挤奶机器挤奶的奶牛乳房炎阳性率高于手工挤奶,后乳区的乳房炎阳性率高于前乳区。  相似文献   

10.
为寻找奶牛乳腺上皮细胞亚细胞结构中与泌乳相关的重要蛋白质、从蛋白质水平揭示乳蛋白合成的调控机制,应用双向凝胶电泳技术分离体外培养的蛋氨酸处理组与正常组奶牛乳腺上皮细胞蛋白质,利用Image Maser 2D软件对图谱进行对比分析,基质辅助激光解析电离飞行时间质谱(MALDI-TOF-MS)和数据库检索鉴定,并采用实时荧光定量PCR技术在mRNA水平上验证2-DE结果。质谱鉴定出8个表达上调的差异蛋白质,大多数差异蛋白质的功能涉及细胞骨架构成、能量代谢等过程。这些差异点的发现为研究奶牛泌乳机理提供了有益的线索。  相似文献   

11.
The effects of mammary gland bacterial infection and stage of lactation on leukocyte infiltration into the mammary gland were compared among cows, goats and sheep. Animals were at two stages of lactation: mid or late. In mid-lactation animals, bacterial-free glands and coagulase negative Staphylococcus (CNS)-infected glands were compared. In late lactation only uninfected glands were studied. Of mid-lactation bacteria-free animals, goats had the highest number of leukocytes and % polymorphonuclears (PMNs), whereas sheep had the lowest and leukocytes number in cows were intermediate between sheep and goats. Based on %PMN, two cell clusters were found in sheep, which overlapped with the parallel cell clusters of cows and goats, but with a slightly higher number of leukocytes in each cell cluster. At late lactation, goats had higher values for %PMN and leukocyte numbers in comparison to cows, which had a similar cellular profile to sheep. The cellular immune response to CNS infection was similar for the three animal species, although the number of cells was different, while the basal cell level at mid-lactation and especially at the end of lactation was species specific.  相似文献   

12.
为探讨脾源性酪氨酸激酶(spleen tyrosine kinase,SYK)的表达与奶牛乳腺发育和泌乳功能之间的关系,试验采用Western blotting和激光共聚焦显微技术对泌乳期高乳品质、低乳品质及干乳期的中国荷斯坦奶牛乳腺组织中SYK的表达含量和表达部位的变化进行研究。结果表明,干乳期奶牛乳腺组织中SYK的表达显著高于泌乳期奶牛乳腺组织(P<0.05),泌乳期高乳品质、低乳品质奶牛乳腺组织中SYK的表达差异不显著(P>0.05);在干乳期SYK主要在乳腺导管上皮细胞的胞质中表达,而在泌乳期SYK在腺泡上皮细胞中表达。结果提示SYK是乳腺上皮细胞增殖与分化的调节因子,主要参与干乳期乳腺组织的重建过程。  相似文献   

13.
To investigate the relationship between the expression of SYK and dairy cow mammary gland development and lactation, the expression of SYK in lactating dairy cow mammary gland with high or low quality milk and dry period Holstein dairy cow mammary gland was detected by Western blotting and laser confocal microscope.The results showed that SYK expression in dry period mammary gland was significant higher than that in lactating mammary gland (P<0.05).There was no SYK differential expression detected between lactating mammary gland with high quality milk and low quality milk (P>0.05).SYK was mainly located in the cytoplasm of ductal epithelial cells in dry period mammary gland.In lactating mammary gland, SYK was existed in acinar epithelial cells.All these results revealed that SYK was a regulator in mammary epithelial cell proliferation and differentiation.It participated in mammary gland reconstitution in dry period.  相似文献   

14.
Glucose delivery and uptake by the mammary gland are a rate-limiting step in milk synthesis. It is thought that insulin-independent glucose uptake decreases in tissues, except for the mammary gland, and insulin resistance in the whole body increases following the onset of lactation. To study glucose metabolism in peak-, late-, and nonlactating cows, the expression of erythrocyte-type glucose transporter (GLUT1) and the insulin-responsive glucose transporter (GLUT4) in the mammary gland, adipose tissue, and muscle were assessed by Western blotting and real-time PCR. Our results demonstrated that the mammary gland of lactating cows expressed a large amount of GLUT1, whereas the mammary gland of nonlactating cows did not (P < 0.05). On the other hand, adipose tissue of late and nonlactating cows expressed a large amount of GLUT1, whereas the adipose tissue of peak-lactating cows did not (P < 0.05). There were no significant differences in the abundance of GLUT4 mRNA in adipose tissue and muscle, whereas GLUT4 mRNA was not detected in the mammary gland. The plasma insulin concentration was greater (P < 0.05) in nonlactating cows than in peak- and late-lactating cows. The results of the present study indicate that in lactation, GLUT1 expression in the mammary gland and adipose tissue is a major factor for insulin-independent glucose metabolism, and the expression of GLUT4 in muscle and adipose tissue is not an important factor in insulin resistance in lactation; however, the plasma insulin concentration may play a role in insulin-dependent glucose metabolism. Factors other than GLUT4 may be involved in insulin resistance.  相似文献   

15.
本研究旨在克隆西农萨能奶山羊SERPINA1基因的CDS区,采用生物软件和在线预测工具进行生物信息学分析,通过实时荧光定量PCR技术检测SERPINA1基因在西农萨能奶山羊各组织间mRNA的表达水平。根据GenBank中山羊SERPINA1基因CDS区序列(登录号:XM_018066209.1),利用Primer Premier 5.0软件设计特异性引物,RT-PCR扩增目的基因,构建原核表达载体测序后对序列进行生物信息学分析;采集西农萨能奶山羊心脏、肝脏、脾脏、肺脏、乳腺、肾脏、肌肉、瘤胃和小肠组织,提取组织RNA,反转录为cDNA模板,设计特异性定量引物,进行实时荧光定量PCR,检测SERPINA1基因在不同组织中的表达差异。结果显示,西农萨能奶山羊SERPINA1基因CDS区全长1 326 bp,编码441个氨基酸;同源性比对分析显示,西农萨能奶山羊与山羊、绵羊、牛和小鼠SERPINA1基因核苷酸序列同源性分别为100%、98.6%、95.7%和71.6%,与山羊亲缘关系最近,其次是绵羊。SERPINA1蛋白分子质量为48.71 ku,等电点为5.71,为跨膜亲水蛋白;SERPINA1氨基酸序列分别有62个磷酸化位点,3个跨膜区结构。组织表达分析显示,SERPINA1基因在西农萨能奶山羊肝脏组织中显著高表达(P<0.05),其次是乳腺组织,在肺脏组织中表达量最低。研究结果为进一步探究SERPINA1基因在奶山羊乳蛋白合成代谢中的作用提供理论依据。  相似文献   

16.
OBJECTIVE: To determine the elimination kinetics of ceftiofur hydrochloride in milk after intramammary administration in lactating dairy cows. DESIGN: Prospective study. ANIMALS: 5 lactating dairy cows. PROCEDURE: After collection of baseline milk samples, 300 mg (6 mL) of ceftiofur was infused into the left front and right rear mammary gland quarters of each cow. Approximately 12 hours later, an additional 300 mg of ceftiofur was administered into the same mammary gland quarters after milking. Milk samples were collected from each mammary gland quarter every 12 hours for 10 days. Concentrations of ceftiofur and its metabolites in each milk sample were determined to assess the rate of ceftiofur elimination. RESULTS: Although there were considerable variations among mammary gland quarters and individual cows, ceftiofur concentrations in milk from all treated mammary gland quarters were less than the tolerance (0.1 microg/mL) set by the FDA by 168 hours (7 days) after the last intramammary administration of ceftiofur. No drug concentrations were detected in milk samples beyond this period. Ceftiofur was not detected in any milk samples from nontreated mammary gland quarters throughout the study. CONCLUSIONS AND CLINICAL RELEVANCE: Ceftiofur administered by the intramammary route as an extra-label treatment for mastitis in dairy cows reaches concentrations in milk greater than the tolerance set by the FDA. Results indicated that milk from treated mammary gland quarters should be discarded for a minimum of 7 days after intramammary administration of ceftiofur. Elimination of ceftiofur may be correlated with milk production, and cows producing smaller volumes of milk may have prolonged withdrawal times.  相似文献   

17.
为了研究4F2hc在奶牛乳腺中的表达模式及调控方式,进一步明确氨基酸在奶牛乳腺上皮细胞中的跨膜转运过程,本研究采用Western blotting和实时荧光定量PCR技术检测了4F2hc在泌乳期和干奶期奶牛乳腺组织中的表达变化;在体外培养的泌乳期奶牛乳腺上皮细胞中添加亮氨酸,采用Western blotting和实时荧光定量PCR技术检测其对奶牛乳腺上皮细胞中4F2hc表达的影响;采用雷帕霉素抑制剂抑制mTOR信号通路,使用Western blotting方法检测mTOR信号抑制后奶牛乳腺上皮细胞中4F2hc表达以及乳蛋白合成的变化。结果显示,在泌乳期的奶牛乳腺组织中4F2hc的mRNA和蛋白表达水平均显著或极显著高于干奶期(P<0.05,P<0.01);在体外培养的奶牛乳腺上皮细胞中添加亮氨酸可以极显著提高乳腺上皮细胞中4F2hc的mRNA和蛋白质表达水平(P<0.01);亮氨酸刺激可以激活细胞内的mTOR信号通路(P<0.05),而雷帕霉素处理则可以显著抑制mTOR信号分子的磷酸化并极显著抑制亮氨酸诱导的4F2hc的表达(P<0.05,P<0.01),进而极显著抑制β-Casein的合成(P<0.01)。以上研究结果表明,4F2hc基因的表达与奶牛乳腺的泌乳活性之间呈正相关,亮氨酸可以通过激活mTOR信号通路来调节4F2hc基因的表达,进而影响乳蛋白的合成。  相似文献   

18.
葡萄糖是脑细胞等中枢神经系统和胚胎的主要供能物质,也是泌乳奶牛合成乳糖的前体物质,并且与乳脂、乳蛋白合成密切相关,对泌乳奶牛具有重要的营养生理功能。为了提高奶牛泌乳性能以及生理健康,有必要深入研究奶牛葡萄糖的营养与生理功能。本文从葡萄糖的生成、乳腺中葡萄糖代谢与调节、葡萄糖代谢对奶牛生产影响等几个方面对泌乳奶牛葡萄糖的代谢与利用进行综述,为进一步揭示奶牛葡萄糖的代谢机制、提高奶牛对葡萄糖利用、促进奶牛生产提供参考依据。  相似文献   

19.
Infection and inflammation of the udder (mastitis) is a common condition affecting all domestic mammals, but it appears to be less prevalent in mares than in dairy cows and dairy goats. The seemingly reduced incidence of mastitis in mares can be partially explained by the smaller size and relatively concealed location of the mare’s udder, coupled with a smaller storage capacity than cows and goats. Mastitis can affect lactating, peripartum, dry mares, mares at dry-off or prepubertal foals. Common clinical signs include swollen mammary tissue, abnormal mammary gland secretion, fever and anorexia; less common signs are hindlimb lameness and a swollen mammary vein. On rare occasions, mastitis pathogens can severely affect the nursing foal and mares may develop fibrotic tissue and consequent agalactia in the side(s) or quarter(s) affected. Based on the clinical presentation, mastitis can be classified as acute or chronic, and clinical or subclinical. Diagnosis is based on the clinical signs aided with aerobic culture and cytological evaluation of the gland secretion. In addition, these ancillary tests can also be used to assess prognosis and duration of treatment. Mares suffering from mastitis may present neutrophilia and hyperfibrinogenaemia. Treatment for mastitis includes antimicrobial therapy (systemic and/or locally), nonsteroidal anti-inflammatory drugs, frequent milking and cold hosing with/without hot-packing applied on the gland. While the frequent monitoring of mares after weaning and reducing food intake should be part of common practices at weaning, cleaning of the udder, control of insect populations and frequent milking of mares with a foal unable to nurse can also aid in preventing mastitis.  相似文献   

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