scholarly journals Methionine supplementation during a hydrogen peroxide challenge alters components of insulin signaling and antioxidant proteins in subcutaneous adipose explants from dairy cows

Author(s):  
N. Ma ◽  
Y. Liang ◽  
D.N. Coleman ◽  
Y. Li ◽  
H. Ding ◽  
...  
Animals ◽  
2021 ◽  
Vol 11 (7) ◽  
pp. 2114
Author(s):  
Yusheng Liang ◽  
Nana Ma ◽  
Danielle N. Coleman ◽  
Fang Liu ◽  
Yu Li ◽  
...  

The objective was to perform a proof-of-principle study to evaluate the effects of methionine (Met) and arginine (Arg) supply on protein abundance of amino acid, insulin signaling, and glutathione metabolism-related proteins in subcutaneous adipose tissue (SAT) explants under ceramide (Ce) challenge. SAT from four lactating Holstein cows was incubated with one of the following media: ideal profile of amino acid as the control (IPAA; Lys:Met 2.9:1, Lys:Arg 2:1), increased Met (incMet; Lys:Met 2.5:1), increased Arg (incArg; Lys:Arg 1:1), or incMet plus incArg (Lys:Met 2.5:1 Lys:Arg 1:1) with or without 100 μM exogenous cell-permeable Ce (N-Acetyl-d-sphingosine). Ceramide stimulation downregulated the overall abundance of phosphorylated (p) protein kinase B (AKT), p-mechanistic target of rapamycin (mTOR), and p-eukaryotic elongation factor 2 (eEF2). Without Ce stimulation, increased Met, Arg, or Met + Arg resulted in lower p-mTOR. Compared with control SAT stimulated with Ce, increased Met, Arg, or Met + Arg resulted in greater activation of mTOR (p-mTOR/total mTOR) and AKT (p-AKT/total AKT), with a more pronounced response due to Arg. The greatest protein abundance of glutathione S-transferase Mu 1 (GSTM1) was detected in response to increased Met supply during Ce stimulation. Ceramide stimulation decreased the overall protein abundance of the Na-coupled neutral amino acid transporter SLC38A1 and branched-chain alpha-ketoacid dehydrogenase kinase (BCKDK). However, compared with controls, increased Met or Arg supply attenuated the downregulation of BCKDK induced by Ce. Circulating ceramides might affect amino acid, insulin signaling, and glutathione metabolism in dairy cow adipose tissue. Further in vivo studies are needed to confirm the role of rumen-protected amino acids in regulating bovine adipose function.


Cells ◽  
2021 ◽  
Vol 10 (3) ◽  
pp. 626
Author(s):  
Li Xiao ◽  
Nobuhiko Miwa

Reactive oxygen species (ROS)-induced oxidative stress in adipose tissue is associated with inflammation and the development of obesity-related metabolic disorders. The aim of this study is to investigate the effects of hydrogen nano-bubble water (HW) on ROS generation, adipogenesis, and interleukin-6 (IL-6) secretion in hydrogen peroxide (H2O2) or phorbol 12-myristate 13-acetate (PMA)-stimulated OP9 adipocytes, and three-dimensional (3D) subcutaneous adipose equivalents. Nanoparticle tracking analysis showed that fresh HW contains 1.17 × 108/mL of nano-sized hydrogen bubbles. Even after 8 to 13 months of storage, approximately half of the bubbles still remained in the water. CellROX® staining showed that HW could diminish H2O2- or PMA-induced intracellular ROS generation in human keratinocytes HaCaT and OP9 cells. We discovered that PMA could markedly increase lipid accumulation to 180% and IL-6 secretion 2.7-fold in OP9 adipocytes. Similarly, H2O2 (5 µM) also significantly stimulated lipid accumulation in OP9 cells and the 3D adipose equivalents. HW treatment significantly repressed H2O2- or PMA-induced lipid accumulation and IL-6 secretion in OP9 adipocytes and the 3D adipose equivalents. In conclusion, HW showed a possibility of repressing oxidative stress, inflammatory response, and adipogenesis at cellular/tissue levels. It can be used for preventing the development of metabolic disorders amongst obese people.


2001 ◽  
Vol 276 (52) ◽  
pp. 48662-48669 ◽  
Author(s):  
Kalyankar Mahadev ◽  
Xiangdong Wu ◽  
Assaf Zilbering ◽  
Li Zhu ◽  
J. Todd R. Lawrence ◽  
...  

Author(s):  
A. Walsh ◽  
J. D. Sutton ◽  
D. E. Beever

In early lactation dairy cows use stored body fat to provide an additional source of energy to support milk production and these reserves are replaced when energy requirements for milk synthesis are reduced. The extent to which body fat is mobilized depends on the nutritional state of the animal and its genetic potential. These changes are accompanied by substantial alterations in the intermediary metabolism of adipose tissue. The aim of this work was to investigate the timing and magnitude of changes in synthetic and lipolytic pathways in adipose tissue from dairy cows during a lactation cycle and at three levels of energy intake.Fifty four cows were fed grass silagead libitumand a concentrate ration at 3(L), 6(M) or 9(H) kg DM/day (Sutton et al 1992). An initial group of six cows was slaughtered at 2 to 4 dayspost partum(week 0) followed by two cows from each treatment at weeks 2, 5, 8, 11, 14, 19, 24 and 29.


2007 ◽  
Vol 92 (11) ◽  
pp. 4332-4339 ◽  
Author(s):  
Laura L. Gathercole ◽  
Iwona J. Bujalska ◽  
Paul M. Stewart ◽  
Jeremy W. Tomlinson

2021 ◽  
Vol 33 (2) ◽  
pp. 126
Author(s):  
M. Ritz ◽  
A. Gonzalez ◽  
A.-S. Fries ◽  
T. Scheu ◽  
N. Blad-Stahl ◽  
...  

Supplementation of rumen-protected amino acids (RPAA) has proven to be an effective tool to supply limiting AA in dairy diets. Methionine and lysine are the two most limiting AA for lactating dairy cows. Recently, it has been shown that methionine supplementation seems to affect pre-implantation embryos collected from superovulated cows enhancing their developmental competence because there is strong evidence that endogenous lipid reserves serve as an energy substrate (Acosta et al. 2016 Theriogenology 85, 1669–1679). Moreover, higher concentrations of methionine were determined in the follicular fluid of the first dominant follicle postpartum in cows supplemented with rumen-protected methionine and rumen-protected choline from 21 days before calving to 30 days postpartum and it was assumed that higher methionine concentrations in the follicular fluid could affect oocyte quality (Acosta et al. 2017 Theriogenology 96, 1–9). There is no information available so far regarding the effect of a combined methionine and lysine supplementation (each rumen-protected) on oocyte quality. Therefore, the objective of this study was to evaluate the effect of a combined methionine and lysine supplementation during early to mid-lactation on the developmental competence of oocytes collected from lactating dairy cows (days 0 to 100 p.p.). Thirty pregnant multiparous German Holstein dairy cows were grouped 3 weeks before their expected calving date, receiving identical diets. After calving, they were randomly allocated to 2 groups fed a total mixed ration supplemented with (N=14 cows; RPAA) or without (N=16 cows; CON) LysiGEMTM (encapsulated lysine; Kemin Industries) and Metasmart DryTM (isopropyl ester of the hydroxylated analogue of methionine adsorbed onto a silicon dioxide carrier; Adisseo). Starting from 45 days p.p., animals from both groups were submitted to an ovum pickup (OPU) session once a week for at least 8 weeks. Collected cumulus–oocyte complexes (COC) were subjected to a standard invitro production (IVP) protocol (Stinshoff et al. 2014 Reprod. Fertil. Dev. 26, 502–10) including IVM, IVF, and invitro culture (IVC). Cleavage and developmental rates up to the morula/blastocyst stage were recorded on Days 3, 7, and 8. In total, 1211 follicles have been aspirated from RPAA animals compared with 1413 from CON animals, from which 742 and 885 COC were collected, respectively. The calculated recovery rate based on the number of aspirated follicles and collected COC was similar for both groups (61.3±29.4% vs. 62.6±33.5%). Cleavage and developmental rates based on 240 (RPAA group) and 299 (CON group) COC also showed similar results [RPAA: 84.1±5.9% (202/240), 18.3±4.4% (44/240), 18.8±4.7% (45/240); CON: 81.9±8.6% (245/299), 15.4±8.9% (46/299), 16.7±8.4% (50/299)]. In conclusion, supplementation of RPAA (methionine and lysine) had no beneficial effect on the developmental competence of COC obtained from these animals compared with those collected from cows fed the diet without RPAA supplementation.


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