• 文献检索
  • 文档翻译
  • 深度研究
  • 学术资讯
  • Suppr Zotero 插件Zotero 插件
  • 邀请有礼
  • 套餐&价格
  • 历史记录
应用&插件
Suppr Zotero 插件Zotero 插件浏览器插件Mac 客户端Windows 客户端微信小程序
定价
高级版会员购买积分包购买API积分包
服务
文献检索文档翻译深度研究API 文档MCP 服务
关于我们
关于 Suppr公司介绍联系我们用户协议隐私条款
关注我们

Suppr 超能文献

核心技术专利:CN118964589B侵权必究
粤ICP备2023148730 号-1Suppr @ 2026

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验

母体补充钴源、叶酸、保护性蛋氨酸及其对新生荷斯坦犊牛免疫系统分子和功能相关性的影响。

Maternal supplementation with cobalt sources, folic acid, and rumen-protected methionine and its effects on molecular and functional correlates of the immune system in neonatal Holstein calves.

机构信息

Department of Animal Sciences and Division of Nutritional Sciences, University of Illinois, Urbana 61801; NUPEEC (Núcleo de Pesquisa, Ensino e Extensão em Pecuária), Departamento de Clínicas Veterinária, Programa de Pós-Graduação em Biotecnologia, Universidade Federal de Pelotas, 96010-610, Pelotas, RS, Brazil.

Department of Animal Production, College of Food and Agriculture Sciences, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

J Dairy Sci. 2021 Aug;104(8):9340-9354. doi: 10.3168/jds.2020-19674. Epub 2021 May 10.

DOI:10.3168/jds.2020-19674
PMID:33985772
Abstract

Calves born to multiparous Holstein cows fed during the last 30 d of pregnancy 2 different cobalt sources [cobalt glucoheptonate (CoPro) or cobalt pectin (CoPectin)], folic acid (FOA), and rumen-protected methionine (RPM) were used to study neonatal immune responses after ex vivo lipopolysaccharide (LPS) challenge. Groups were (n = 12 calves/group) CoPro, FOA+CoPro, FOA+CoPectin, and FOA+CoPectin+RPM. Calves were weighed at birth and blood collected at birth (before colostrum), 21 d of age, and 42 d of age (at weaning). Growth performance was recorded once a week during the first 6 wk of age. Energy metabolism, inflammation, and antioxidant status were assessed at birth through various plasma biomarkers. Whole blood was challenged with 3 µg/mL of LPS or used for phagocytosis and oxidative burst assays. Target genes evaluated by real-time quantitative PCR in whole blood samples were associated with immune response, antioxidant function, and 1-carbon metabolism. The response in mRNA abundance in LPS challenged versus nonchallenged samples was assessed via Δ = LPS challenged - LPS nonchallenged samples. Phagocytosis capacity and oxidative burst activity were measured in neutrophils and monocytes, with data reported as ratio (percentage) of CD14 to CH138A-positive cells. Data including all time points were subjected to ANOVA using PROC MIXED in SAS 9.4 (SAS Institute Inc.), with Treatment, Sex, Age, and Treatment × Age as fixed effects. A 1-way ANOVA was used to determine differences at birth, with Treatment and Sex as fixed effects. Calf birth body weight and other growth parameters did not differ between groups. At birth, plasma haptoglobin concentration was lower in FOA+CoPro compared with CoPro calves. We detected no effect for other plasma biomarkers or immune function due to maternal treatments at birth. Compared with CoPro, in response to LPS challenge, whole blood from FOA+CoPectin and FOA+CoPectin+RPM calves had greater mRNA abundance of intercellular adhesion molecule 1 (ICAM1). No effect for other genes was detectable. Regardless of maternal treatments, sex-specific responses were observed due to greater plasma concentrations of haptoglobin, paraoxonase, total reactive oxygen metabolites, nitrite, and β-carotene in female versus male calves at birth. In contrast, whole blood from male calves had greater mRNA abundance of IRAK1, CADM1, and ITGAM in response to LPS challenge at birth. The longitudinal analysis of d 0, 21, and 42 data revealed greater bactericidal permeability-increasing protein (BPI) mRNA abundance in whole blood from FOA+CoPectin versus FOA+CoPro calves, coupled with greater abundance in FOA+CoPro compared with CoPro calves. Regardless of maternal treatments, most genes related to cytokines and cytokine receptors (IL1B, IL10, TNF, IRAK1, CXCR1), toll-like receptor pathway (TLR4, NFKB1), adhesion and migration (ICAM1, ITGAM), antimicrobial function (MPO), and antioxidant function (GPX1) were downregulated over time. Phagocytosis capacity and oxidative burst activity in both neutrophils and monocytes did not differ due to maternal treatment. Regardless of maternal treatments, we observed an increase in the percentage of neutrophils capable of phagocytosis and oxidative burst activity over time. Overall, these preliminary assessments suggested that maternal supplementation with FOA and Co combined with RPM had effects on a few plasma biomarkers of inflammation at birth and molecular responses associated with inflammatory mechanisms during the neonatal period.

摘要

用于研究脂多糖(LPS)体外挑战后新生儿免疫反应的小牛出生于多产荷斯坦奶牛,在妊娠的最后 30 天内饲喂 2 种不同的钴源[钴葡糖酸(CoPro)或钴果胶(CoPectin)]、叶酸(FOA)和瘤胃保护性蛋氨酸(RPM)。将小牛分为(每组 12 头小牛)CoPro、FOA+CoPro、FOA+CoPectin 和 FOA+CoPectin+RPM。小牛出生时称重,出生时(初乳前)、21 日龄和 42 日龄(断奶时)采血。在出生后的前 6 周,每周记录一次生长性能。通过各种血浆生物标志物评估能量代谢、炎症和抗氧化状态。在 LPS 挑战或用于吞噬作用和氧化爆发测定的全血中评估通过实时定量 PCR 评价的靶基因与免疫反应、抗氧化功能和 1 碳代谢有关。通过 LPS 挑战与非挑战样品的 Δ= LPS 挑战- LPS 非挑战样品评估 LPS 挑战样品中 mRNA 丰度的反应。在中性粒细胞和单核细胞中测量吞噬能力和氧化爆发活性,并以 CD14 与 CH138A 阳性细胞的比率(百分比)报告数据。包括所有时间点的数据均使用 SAS 9.4(SAS Institute Inc.)中的 PROC MIXED 进行方差分析,固定效应为处理、性别、年龄和处理×年龄。使用 1 因素方差分析确定出生时的差异,固定效应为处理和性别。小牛出生体重和其他生长参数在各组之间无差异。出生时,FOA+CoPro 组的血浆结合珠蛋白浓度低于 CoPro 组。我们没有发现母体处理对出生时其他血浆生物标志物或免疫功能的影响。与 CoPro 相比,FOA+CoPectin 和 FOA+CoPectin+RPM 组小牛的全血在 LPS 挑战时白细胞间黏附分子 1(ICAM1)的 mRNA 丰度更高。未检测到其他基因的作用。无论母体处理如何,由于出生时雌性小牛的血浆结合珠蛋白、对氧磷酶、总反应性氧代谢物、亚硝酸盐和β-胡萝卜素浓度高于雄性小牛,因此观察到性别特异性反应。相反,在 LPS 挑战时,雄性小牛的全血中 IRAK1、CADM1 和 ITGAM 的 mRNA 丰度更高。0、21 和 42 天数据的纵向分析显示,FOA+CoPectin 组的全血杀菌通透性增加蛋白(BPI)mRNA 丰度高于 FOA+CoPro 组,FOA+CoPro 组的丰度高于 CoPro 组。无论母体处理如何,与细胞因子和细胞因子受体(IL1B、IL10、TNF、IRAK1、CXCR1)、Toll 样受体途径(TLR4、NFKB1)、粘附和迁移(ICAM1、ITGAM)、抗菌功能(MPO)和抗氧化功能(GPX1)相关的大多数基因都随着时间的推移而下调。母体处理对中性粒细胞和单核细胞的吞噬能力和氧化爆发活性没有影响。无论母体处理如何,我们观察到随着时间的推移,能够吞噬和发生氧化爆发的中性粒细胞的百分比增加。总的来说,这些初步评估表明,母体补充 FOA 和 Co 与 RPM 联合使用对出生时炎症的一些血浆生物标志物和新生儿期炎症相关的分子反应有影响。

相似文献

1
Maternal supplementation with cobalt sources, folic acid, and rumen-protected methionine and its effects on molecular and functional correlates of the immune system in neonatal Holstein calves.母体补充钴源、叶酸、保护性蛋氨酸及其对新生荷斯坦犊牛免疫系统分子和功能相关性的影响。
J Dairy Sci. 2021 Aug;104(8):9340-9354. doi: 10.3168/jds.2020-19674. Epub 2021 May 10.
2
Maternal body condition influences neonatal calf whole-blood innate immune molecular responses to ex vivo lipopolysaccharide challenge.母体身体状况影响新生牛犊全血对外源脂多糖刺激的固有免疫分子反应。
J Dairy Sci. 2021 Feb;104(2):2266-2279. doi: 10.3168/jds.2020-18948. Epub 2020 Nov 25.
3
Influence of Cobalt Source, Folic Acid, and Rumen-Protected Methionine on Performance, Metabolism, and Liver Tissue One-Carbon Metabolism Biomarkers in Peripartal Holstein Cows.钴源、叶酸和瘤胃保护蛋氨酸对围产期荷斯坦奶牛生产性能、代谢及肝脏组织一碳代谢生物标志物的影响
Animals (Basel). 2023 Jun 25;13(13):2107. doi: 10.3390/ani13132107.
4
Short communication: Supply of methionine during late pregnancy enhances whole-blood innate immune response of Holstein calves partly through changes in mRNA abundance in polymorphonuclear leukocytes.短篇交流:在妊娠后期供应蛋氨酸可部分通过改变多形核白细胞中 mRNA 丰度增强荷斯坦小牛的全血固有免疫反应。
J Dairy Sci. 2019 Nov;102(11):10599-10605. doi: 10.3168/jds.2018-15676. Epub 2019 Aug 22.
5
Maternal supply of methionine during late pregnancy is associated with changes in immune function and abundance of microRNA and mRNA in Holstein calf polymorphonuclear leukocytes.妊娠晚期母体提供的蛋氨酸与荷斯坦犊牛多形核白细胞免疫功能的变化及 microRNA 和 mRNA 的丰度有关。
J Dairy Sci. 2018 Sep;101(9):8146-8158. doi: 10.3168/jds.2018-14428. Epub 2018 Jun 13.
6
Maternal supplementation with rumen-protected methionine increases prepartal plasma methionine concentration and alters hepatic mRNA abundance of 1-carbon, methionine, and transsulfuration pathways in neonatal Holstein calves.给母牛补充瘤胃保护蛋氨酸可提高产前血浆蛋氨酸浓度,并改变新生荷斯坦犊牛肝脏中一碳、蛋氨酸和转硫途径的mRNA丰度。
J Dairy Sci. 2017 Apr;100(4):3209-3219. doi: 10.3168/jds.2016-11656. Epub 2017 Feb 1.
7
Increased supply of methionine during a heat-stress challenge in lactating holstein cows alters mammary tissue mTOR signaling and its response to lipopolysaccharide.在泌乳荷斯坦奶牛的热应激挑战期间增加蛋氨酸的供应会改变乳腺组织 mTOR 信号及其对脂多糖的反应。
J Anim Sci. 2022 Aug 1;100(8). doi: 10.1093/jas/skac175.
8
Rumen-protected methionine during heat stress alters mTOR, insulin signaling, and 1-carbon metabolism protein abundance in liver, and whole-blood transsulfuration pathway genes in Holstein cows.热应激期保护性蛋氨酸会改变荷斯坦奶牛肝脏中 mTOR、胰岛素信号和 1 碳代谢蛋白的丰度,以及全血转硫途径基因。
J Dairy Sci. 2022 Sep;105(9):7787-7804. doi: 10.3168/jds.2021-21379. Epub 2022 Jul 22.
9
Maternal rumen-protected methionine supplementation and its effect on blood and liver biomarkers of energy metabolism, inflammation, and oxidative stress in neonatal Holstein calves.母体补充瘤胃保护蛋氨酸及其对新生荷斯坦犊牛能量代谢、炎症和氧化应激的血液及肝脏生物标志物的影响。
J Dairy Sci. 2016 Aug;99(8):6753-6763. doi: 10.3168/jds.2016-11018. Epub 2016 May 18.
10
Hepatic 1-carbon metabolism enzyme activity, intermediate metabolites, and growth in neonatal Holstein dairy calves are altered by maternal supply of methionine during late pregnancy.母体在妊娠后期提供蛋氨酸会改变新生荷斯坦奶牛犊牛肝脏 1 碳代谢酶活性、中间代谢物和生长。
J Dairy Sci. 2019 Nov;102(11):10291-10303. doi: 10.3168/jds.2019-16562. Epub 2019 Aug 30.

引用本文的文献

1
Bovine neutrophils kill the sexually-transmitted parasite Tritrichomonas foetus using trogocytosis.牛的中性粒细胞通过胞噬作用杀死性传播寄生虫滴虫。
Vet Res Commun. 2024 Apr;48(2):865-875. doi: 10.1007/s11259-023-10260-5. Epub 2023 Nov 16.
2
Impact of a Saccharomyces cerevisiae fermentation product during an intestinal barrier challenge in lactating Holstein cows on ileal microbiota and markers of tissue structure and immunity.在哺乳期荷斯坦奶牛的肠道屏障挑战期间使用酿酒酵母发酵产物对回肠微生物群及组织结构和免疫标志物的影响。
J Anim Sci. 2023 Jan 3;101. doi: 10.1093/jas/skad309.
3
Alterations in ileal transcriptomics during an intestinal barrier challenge in lactating Holstein cows fed a Saccharomyces cerevisiae fermentation product identify potential regulatory processes.
在饲喂酿酒酵母发酵产物的泌乳荷斯坦奶牛的肠道屏障挑战期间,回肠转录组学的改变确定了潜在的调节过程。
J Anim Sci. 2023 Jan 3;101. doi: 10.1093/jas/skad277.
4
Rumen fermentation, methane concentration, and blood metabolites of cattle receiving dietetical phytobiotic and cobalt (II) chloride.接受日粮植物源益生菌和氯化钴(II)的牛的瘤胃发酵、甲烷浓度及血液代谢产物
Vet World. 2022 Nov;15(11):2551-2557. doi: 10.14202/vetworld.2022.2551-2557. Epub 2022 Nov 11.
5
Prepartum maternal supplementation of improves colostrum quality and buffalo calves' performance.产前母体补充 可提高初乳质量和水牛犊牛的性能。 你提供的原文中“supplementation of ”后面缺少具体内容,请补充完整以便更准确翻译。
Front Vet Sci. 2022 Oct 4;9:935634. doi: 10.3389/fvets.2022.935634. eCollection 2022.
6
Integrative network analysis revealed the molecular function of folic acid on immunological enhancement in a sheep model.整合网络分析揭示了叶酸在绵羊模型中免疫增强作用的分子功能。
Front Immunol. 2022 Aug 12;13:913854. doi: 10.3389/fimmu.2022.913854. eCollection 2022.