Maity Sudipa, Rubić Ivana, Kuleš Josipa, Horvatić Anita, Đuričić Dražen, Samardžija Marko, Ljubić Blanka Beer, Turk Romana, Gračner Damjan, Maćešić Nino, Valpotić Hrvoje, Mrljak Vladimir
Faculty of Veterinary Medicine, University of Zagreb, Heinzelova 55, 10000 Zagreb, Croatia.
Metabolites. 2021 Dec 5;11(12):842. doi: 10.3390/metabo11120842.
Dairy cows can suffer from a negative energy balance (NEB) during their transition from the dry period to early lactation, which can increase the risk of postpartum diseases such as clinical ketosis, mastitis, and fatty liver. Zeolite clinoptilolite (CPL), due to its ion-exchange property, has often been used to treat NEB in animals. However, limited information is available on the dynamics of global metabolomics and proteomic profiles in serum that could provide a better understanding of the associated altered biological pathways in response to CPL. Thus, in the present study, a total 64 serum samples were collected from 8 control and 8 CPL-treated cows at different time points in the prepartum and postpartum stages. Labelled proteomics and untargeted metabolomics resulted in identification of 64 and 21 differentially expressed proteins and metabolites, respectively, which appear to play key roles in restoring energy balance (EB) after CPL supplementation. Joint pathway and interaction analysis revealed cross-talks among valproic acid, leucic acid, glycerol, fibronectin, and kinninogen-1, which could be responsible for restoring NEB. By using a global proteomics and metabolomics strategy, the present study concluded that CPL supplementation could lower NEB in just a few weeks, and explained the possible underlying pathways employed by CPL.
奶牛在从干奶期过渡到泌乳早期时可能会出现能量负平衡(NEB),这会增加产后疾病的风险,如临床酮病、乳腺炎和脂肪肝。斜发沸石(CPL)因其离子交换特性,常被用于治疗动物的能量负平衡。然而,关于血清中整体代谢组学和蛋白质组学图谱的动态变化的信息有限,而这些信息可以更好地理解CPL作用下相关的生物途径改变。因此,在本研究中,在产前和产后阶段的不同时间点,从8头对照奶牛和8头接受CPL治疗的奶牛中总共采集了64份血清样本。标记蛋白质组学和非靶向代谢组学分别鉴定出64种和21种差异表达的蛋白质和代谢物,它们似乎在补充CPL后恢复能量平衡(EB)中起关键作用。联合途径和相互作用分析揭示了丙戊酸、亮氨酸、甘油、纤连蛋白和激肽原-1之间的相互作用,这可能是恢复能量负平衡的原因。通过使用整体蛋白质组学和代谢组学策略,本研究得出结论,补充CPL可以在几周内降低能量负平衡,并解释了CPL可能采用的潜在途径。