CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Animal Study

  • Crocin and voluntary exercise promote heart angiogenesis through Akt and ERK1/2 signalling in type 2 diabetic rats📎

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    Abstract Title:

    Crocin and voluntary exercise promote heart angiogenesis through Akt and ERK1/2 signalling in type 2 diabetic rats.

    Abstract Source:

    Bratisl Lek Listy. 2018 ;119(12):757-761. PMID: 30686014

    Abstract Author(s):

    H Dariushnejad, M Mohammadi, V Ghorbanzadeh

    Article Affiliation:

    H Dariushnejad

    Abstract:

    :signalling.

    METHODS:Animals were divided into 4 groups as follows: diabetes (Dia), diabetic-crocin (Dia-Cro), diabetic-voluntary exercise (Dia-Exe), diabetic-crocin-voluntary exercise (Dia-Cro-Exe). Type 2 diabetes was induced by high-fat diet (4 weeks) and injection of streptozotocin (STZ) (i.p., 35 mg/kg). Animals received crocin orally (50 mg/kg), voluntary exercise was performed alone or together with crocin for 8 weeks. Akt and ERK1/2 levels were measured by ELISA and CD31 was detected by immunohistochemistry.

    RESULTS:Akt and ERK1/2 levels in crocin and exercise groups were significantly higher than in diabetic group. Levels of Akt and ERK1/2 proteins and CD31 immunostaining were also significantly higher in crocin-voluntary exercise group in comparison to the other groups.

    CONCLUSION:Our results revealed that treatments with crocin and voluntary exercise had synergistic effect on angiogenesis. Protective effects of these interventions are probably through the activation of Akt and ERK 1/2 signalling pathways in the heart of diabetic rats (Fig. 3, Ref. 40).

  • Cuminaldehyde: Aldose Reductase and alpha-Glucosidase Inhibitor Derived from Cuminum cyminum L. Seeds.

    Abstract Title:

    Cuminaldehyde: Aldose Reductase and alpha-Glucosidase Inhibitor Derived from Cuminum cyminum L. Seeds.

    Abstract Source:

    J Agric Food Chem. 2005 Apr 6;53(7):2446-50. PMID: 15796577

    Abstract Author(s):

    Hoi-Seon Lee

    Abstract:

    The inhibitory activity of Cuminum cyminum seed-isolated component was evaluated against lens aldose reductase and alpha-glucosidase isolated from Sprague-Dawley male rats and compared to that of 11 commercially available components derived from C. cyminum seed oil, as well as quercitrin as an aldose reductase inhibitor and acarbose as an alpha-glucosidase inhibitor. The biologically active constituent of C. cyminum seed oil was characterized as cuminaldehyde by various spectral analyses. The IC(50) value of cuminaldehyde is 0.00085 mg/mL against aldose reductase and 0.5 mg/mL against alpha-glucosidase, respectively. Cuminaldehyde was about 1.8 and 1.6 times less in inhibitory activity than acarbose and quercitin, respectively. Nonetheless, cuminaldehyde may be useful as a lead compound and a new agent for antidiabetic therapeutics.

     
  • Curcumin Mimics the Neurocognitive and Anti-Inflammatory Effects of Caloric Restriction in a Mouse Model of Midlife Obesity📎

    Abstract Title:

    Curcumin Mimics the Neurocognitive and Anti-Inflammatory Effects of Caloric Restriction in a Mouse Model of Midlife Obesity.

    Abstract Source:

    PLoS One. 2015 ;10(10):e0140431. Epub 2015 Oct 16. PMID: 26473740

    Abstract Author(s):

    Marjana Rahman Sarker, Susan Franks, Nathalie Sumien, Nopporn Thangthaeng, Frank Filipetto, Michael Forster

    Article Affiliation:

    Marjana Rahman Sarker

    Abstract:

    Dietary curcumin was studied for its potential to decrease adiposity and reverse obesity- associated cognitive impairment in a mouse model of midlife sedentary obesity. We hypothesized that curcumin intake, by decreasing adiposity, would improve cognitive function in a manner comparable to caloric restriction (CR), a weight loss regimen. 15-month-old male C57BL/6 mice were assigned in groups to receive the following dietary regimens for 12 weeks: (i) a base diet (Ain93M) fed ad libitum (AL), (ii) the base diet restricted to 70% of ad libitum (CR) or (iii) the base diet containing curcumin fed AL (1000 mg/kg diet, CURAL). Blood markers of inflammation, interleukin 6 (IL-6) and C-reactive protein (CRP), as well as an indicator of redox stress (GSH: GSSG ratio), were determined at different time points during the treatments, and visceral and subcutaneous adipose tissue were measured upon completion of the experiment. After 8 weeks of dietary treatment, the mice were tested for spatial cognition (Morris water maze) and cognitive flexibility (discriminated active avoidance). The CR group showed significant weight loss and reduced adiposity, whereas CURAL mice had stable weight throughout the experiment, consumed more food than the AL group, with no reduction of adiposity. However, both CR and CURAL groups took fewer trials than AL to reach criterion during the reversal sessions of the active avoidance task, suggesting an improvement in cognitive flexibility. The AL mice had higher levels of CRP compared to CURAL and CR, and GSH as well as the GSH: GSSG ratio were increased during curcumin intake, suggesting a reducing shift in the redox state. The results suggest that, independent of their effects on adiposity; dietary curcumin and caloric restriction have positive effects on frontal cortical functions that could be linked to anti-inflammatory or antioxidant actions.

  • Curcumin treatment enhances the effect of exercise on mitochondrial biogenesis in skeletal muscle by increasing cAMP levels.

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    Abstract Title:

    Curcumin treatment enhances the effect of exercise on mitochondrial biogenesis in skeletal muscle by increasing cAMP levels.

    Abstract Source:

    Metabolism. 2015 Oct ;64(10):1334-47. Epub 2015 Jul 21. PMID: 26278015

    Abstract Author(s):

    Ronald D Ray Hamidie, Tatsuya Yamada, Rie Ishizawa, Yoko Saito, Kazumi Masuda

    Article Affiliation:

    Ronald D Ray Hamidie

    Abstract:

    BACKGROUND:In response to physiologic stressors, skeletal muscle has the potential to elicit wide variety of adaptive responses, such as biogenesis of mitochondria and clearance of damaged mitochondria to promote healthy muscle. The polyphenol curcumin, derived from the rhizome Curcuma longa L., is a natural antioxidant that exhibits various pharmacological activities and therapeutic properties. However, the effect of curcumin on the regulation of mitochondrial biogenesis in skeletal muscle remains unknown. The present study aimed to examine the effects of combination of endurance training (eTR) and curcumin treatment on the expression of AMPK, SIRT1, PGC-1α, and OXPHOS subunits, mitochondrial DNA copy number, and CS activity in rat skeletal muscle. Furthermore, the present study also examined the effect of exercise and curcumin treatment on the levels of cAMP and downstream targets of PKA including phosphorylated CREB and LKB-1.

    METHODS:Ten-week-old male Wistar rats were randomly divided into non-eTR and eTR groups. Low doses (50 mg/kg-BW/day) or high doses (100 mg/kg-BW/day) of curcumin dissolved in dimethyl sulfoxide (DMSO) were injected intraperitoneally in all animals for 28 days to investigate the effect of curcumin alone and the combined effect of curcumin with eTR. Western blotting (WB) and immunoprecipitation (IP) were performed to detect the presence of proteins.

    RESULTS:Our results demonstrated that combination of curcumin treatment and eTR increased the expression of COX-IV, OXPHOS subunits, mitochondrial DNA copy number and CS activity in the gastrocnemius (Gas) and soleus (Sol) muscles. In addition, this combination increased AMPK phosphorylation, NAD(+)/NADH ratio, SIRT1 expression, and PGC-1α deacetylation. Furthermore, curcumin treatment as well as exercise also increased levels of cAMP and downstream target of PKA including phosphorylation CREB and LKB-1 which are involved in the regulation of mitochondrial biogenesis.

    CONCLUSION:Taken together, these results suggest that the combination of curcumin treatment and eTR has the potential to accelerate mitochondrial biogenesis in skeletal muscle by increasing cAMP levels.

  • Curcumin, the active principle of turmeric (Curcuma longa), ameliorates diabetic nephropathy in rats.

    Abstract Title:

    Curcumin, the active principle of turmeric (Curcuma longa), ameliorates diabetic nephropathy in rats.

    Abstract Source:

    Clin Exp Pharmacol Physiol. 2006 Oct;33(10):940-5. PMID: 17002671

    Abstract Author(s):

    Sameer Sharma, Shrinivas K Kulkarni, Kanwaljit Chopra

    Abstract:

    Chronic hyperglycaemia in diabetes leads to the overproduction of free radicals and evidence is increasing that these contribute to the development of diabetic nephropathy. Among the spices, turmeric (Curcuma longa) is used as a flavouring and colouring agent in the indian diet every day and is known to possess anti-oxidant properties. The present study was designed to examine the effect of curcumin, a yellow pigment of turmeric, on renal function and oxidative stress in streptozotocin (STZ)-induced diabetic rats. Diabetes was induced by a single intraperitoneal injection of STZ (65 mg/kg) in rats. Four weeks after STZ injection, rats were divided into four groups, namely control rats, diabetic rats and diabetic rats treated with curcumin (15 and 30 mg/kg, p.o.) for 2 weeks. Renal function was assessed by creatinine, blood urea nitrogen, creatinine and urea clearance and urine albumin excretion. Oxidative stress was measured by renal malonaldehyde, reduced glutathione and the anti-oxidant enzymes superoxide dismutase and catalase. Streptozotocin-injected rats showed significant increases in blood glucose, polyuria and a decrease in bodyweight compared with age-matched control rats. After 6 weeks, diabetic rats also exhibited renal dysfunction, as evidenced by reduced creatinine and urea clearance and proteinuria, along with a marked increase in oxidative stress, as determined by lipid peroxidation and activities of key anti-oxidant enzymes. Chronic treatment with curcumin significantly attenuated both renal dysfunction and oxidative stress in diabetic rats. These results provide confirmatory evidence of oxidative stress in diabetic nephropathy and point towards the possible anti-oxidative mechanism being responsible for the nephroprotective action of curcumin.

  • Decaffeinated Green Tea and Voluntary Exercise Induce Gene Changes Related to Beige Adipocyte Formation in High Fat-Fed Obese Mice📎

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    Abstract Title:

    Decaffeinated Green Tea and Voluntary Exercise Induce Gene Changes Related to Beige Adipocyte Formation in High Fat-Fed Obese Mice.

    Abstract Source:

    J Funct Foods. 2015 Apr 1 ;14:210-214. PMID: 25844091

    Abstract Author(s):

    Sudathip Sae-Tan, Connie J Rogers, Joshua D Lambert

    Article Affiliation:

    Sudathip Sae-Tan

    Abstract:

    We have previously reported that decaffeinated green tea extract (GTE) in combination with voluntary exercise (Ex) reduces metabolic syndrome in high fat-fed C57BL/6J mice. Here, we examined for the first time the effect of treatment with 77 mg/g GTE, Ex, or both (GTE + Ex) on genes related to the conversion of white adipose tissue (WAT) to brown fat-like adipose tissue (BLAT) in this model. GTE+Ex induced genes related to lipolysis (hormone sensitive lipase [3.0-fold] and patatin-like phospholipase domain-containing protein 2 [2-fold]), mitochondrialβ-oxidation (NADH dehydrogenase 5 [2.3-fold], cytochrome B [2.0-fold], and cytochrome C oxidase III [1.9-fold increase]), and adipose tissue browning (peroxisome proliferator-activated receptor-γ coactivator-1α [1.8-fold], bone morphogenetic protein 4 [2.6-fold], and phosphatase and tensin homolog [2.6-fold]) in visceral WAT compared to HF-fed mice. These results suggest that GTE+Ex function in part by inducing the conversion of WAT to BLAT and provides novel mechanistic insight into this combination.

  • Delay of diabetic cataract in rats by the antiglycating potential of cumin through modulation of alpha-crystallin chaperone activity.

    Abstract Title:

    Delay of diabetic cataract in rats by the antiglycating potential of cumin through modulation of alpha-crystallin chaperone activity.

    Abstract Source:

    J Nutr Biochem. 2008 Sep 10. PMID: 18789666

    Abstract Author(s):

    Pasupulati Anil Kumar, Paduru Yadagiri Reddy, P N B S Srinivas, Geereddy Bhanuprakash Reddy

    Abstract:

    alpha-Crystallin, a molecular chaperone of the eye lens, plays an important role in maintaining the transparency of the lens by preventing the aggregation/inactivation of several proteins and enzymes in addition to its structural role. alpha-Crystallin is a long-lived protein and is susceptible to several posttranslational modifications during aging, more so in certain clinical conditions such as diabetes. Nonenzymatic glycation of lens proteins and decline in the chaperone-like function of alpha-crystallin have been reported in diabetic conditions. Therefore, inhibitors of nonenzymatic protein glycation appear to be a potential target to preserve the chaperone activity of alpha-crystallin and to combat cataract under hyperglycemic conditions. In this study, we investigated the antiglycating potential of cumin in vitro and its ability to modulate the chaperone-like activity of alpha-crystallin vis-à-vis the progression of diabetic cataract in vivo. Aqueous extract of cumin was tested for its antiglycating ability against fructose-induced glycation of goat lens total soluble protein (TSP), alpha-crystallin from goat lens and a nonlenticular protein bovine serum albumin (BSA). The antiglycating potential of cumin was also investigated by feeding streptozotocin (STZ)-induced diabetic rats with diet containing 0.5% cumin powder. The aqueous extract of cumin prevented in vitro glycation of TSP, alpha-crystallin and BSA. Slit lamp examination revealed that supplementation of cumin delayed progression and maturation of STZ-induced cataract in rats. Cumin was effective in preventing glycation of TSP and alpha-crystallin in diabetic lens. Interestingly, feeding of cumin to diabetic rats not only prevented loss of chaperone activity but also attenuated the structural changes of alpha-crystallin in lens. These results indicated that cumin has antiglycating properties that may be attributed to the modulation of chaperone activity of alpha-crystallin, thus delaying cataract in STZ-induced diabetic rats.

     
  • Development of the ultrastructure of sonic muscles: a kind of neoteny? ?

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    Abstract Title:

    Development of the ultrastructure of sonic muscles: a kind of neoteny?

    Abstract Source:

    BMC Evol Biol. 2014 ;14:24. Epub 2014 Feb 7. PMID: 24507247

    Abstract Author(s):

    Sandie Millot, Eric Parmentier

    Article Affiliation:

    Sandie Millot

    Abstract:

    BACKGROUND:Drumming muscles of some sound-producing fish are 'champions' of contraction speed, their rate setting the fundamental frequency. In the piranha, contraction of these muscles at 150 Hz drives a sound at the same frequency. Drumming muscles of different not closely related species show evolutionary convergences. Interestingly, some characters of sonic muscles can also be found in the trunk muscles of newly hatched larvae that are able to maintain tail beat frequencies up to 100 Hz. The aim of this work was to study the development of sound production and sonic and epaxial muscles simultaneously in the red bellied piranhas (Pygocentrus nattereri) to seek for possible common characteristics.

    RESULTS:Call, pulse and period durations increased significantly with the fish size, but the call dominant frequencies decreased, and the number of pulses and the call amplitude formed a bell curve. In epaxial muscles, the fibre diameters of younger fish are first positioned in the graphical slope corresponding to sonic muscles, before diverging. The fibre diameter of older fish trunk muscles was bigger, and the area of the myofibrils was larger than in sonic muscles. Moreover, in two of the biggest fish, the sonic muscles were invaded by fat cells and the sonic muscle ultrastructure was similar to the epaxial one. These two fish were also unable to produce any sound, meaning they lost their ability to contract quickly.

    CONCLUSIONS:The volume occupied by myofibrils determines the force of contraction, the volume of sarcoplasmic reticulum sets the contraction frequency, and the volume of mitochondria sets the level of sustained performance. The functional outcomes in muscles are all attributable to shifts in the proportions of those structures. A single delay in the development restricts the quantity of myofibrils, maintains a high proportion of space in the sarcoplasm and develops sarcoplasmic reticulum. High-speed sonic muscles could thus be skeletal muscles with delayed development. This hypothesis has the advantage that it could easily explain why high-speed sonic muscles have evolved so many times in different lineages.

  • Diet and exercise orthogonally alter the gut microbiome and reveal independent associations with anxiety and cognition📎

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    Abstract Title:

    Diet and exercise orthogonally alter the gut microbiome and reveal independent associations with anxiety and cognition.

    Abstract Source:

    Mol Neurodegener. 2014 ;9:36. Epub 2014 Sep 13. PMID: 25217888

    Abstract Author(s):

    Silvia S Kang, Patricio R Jeraldo, Aishe Kurti, Margret E Berg Miller, Marc D Cook, Keith Whitlock, Nigel Goldenfeld, Jeffrey A Woods, Bryan A White, Nicholas Chia, John D Fryer

    Article Affiliation:

    Silvia S Kang

    Abstract:

    BACKGROUND:The ingestion of a high-fat diet (HFD) and the resulting obese state can exert a multitude of stressors on the individual including anxiety and cognitive dysfunction. Though many studies have shown that exercise can alleviate the negative consequences of a HFD using metabolic readouts such as insulin and glucose, a paucity of well-controlled rodent studies have been published on HFD and exercise interactions with regard to behavioral outcomes. This is a critical issue since some individuals assume that HFD-induced behavioral problems such as anxiety and cognitive dysfunction can simply be exercised away. To investigate this, we analyzed mice fed a normal diet (ND), ND with exercise, HFD diet, or HFD with exercise.

    RESULTS:We found that mice on a HFD had robust anxiety phenotypes but this was not rescued by exercise. Conversely, exercise increased cognitive abilities but this was not impacted by the HFD. Given the importance of the gut microbiome in shaping the host state, we used 16S rRNA hypervariable tag sequencing to profile our cohorts and found that HFD massively reshaped the gut microbial community in agreement with numerous published studies. However, exercise alone also caused massive shifts in the gut microbiome at nearly the same magnitude as diet but these changes were surprisingly orthogonal. Additionally, specific bacterial abundances were directly proportional to measures of anxiety or cognition.

    CONCLUSIONS:Thus, behavioral domains and the gut microbiome are both impacted by diet and exercise but in unrelated ways. These data have important implications for obesity research aimed at modifications of the gut microbiome and suggest that specific gut microbes could be used as a biomarker for anxiety or cognition or perhaps even targeted for therapy.

  • Dietary energy restriction reduces high-fat diet-enhanced metastasis of Lewis lung carcinoma in mice📎

    Abstract Title:

    Dietary energy restriction reduces high-fat diet-enhanced metastasis of Lewis lung carcinoma in mice.

    Abstract Source:

    Oncotarget. 2016 Oct 4 ;7(40):65669-65675. PMID: 27582541

    Abstract Author(s):

    Sneha Sundaram, Lin Yan

    Article Affiliation:

    Sneha Sundaram

    Abstract:

    The objective of this study was to determine whether a reduction in energy intake ameliorated the high-fat diet-enhanced spontaneous metastasis of Lewis lung carcinoma in mice. Male C57BL/6 mice were fed the AIN93G diet, a high-fat diet or a high-fat diet with a 5% restriction of the intake. Energy restriction reduced body adiposity and body weight, but maintained growth similar to mice fed the AIN93G diet. The high-fat diet significantly increased the number and size (cross-sectional area and volume) of metastases formed in lungs. Restricted feeding reduced the number of metastases by 23%, metastatic cross-sectional area by 32% and volume by 45% compared to the high-fat diet. The high-fat diet elevated plasma concentrations of proinflammatory cytokines (monocyte chemotactic protein-1, plasminogen activator inhibitor-1, leptin), angiogenic factors (vascular endothelial growth factor, tissue inhibitor of metalloproteinase-1) and insulin. Restricted feeding significantly reduced the high-fat diet-induced elevations in plasma concentrations of proinflammatory cytokines, angiogenic factors and insulin. These results demonstrated that a reduction in diet intake by 5% reduced high-fat diet-enhanced metastasis, which may be associated with the mitigation of adiposity and down-regulation of cancer-promoting proinflammatory cytokines and angiogenic factors.

  • Dietary inclusion of mushroom (Flammulina velutipes) stem waste on growth performance and immune responses in growing layer hens.

    Abstract Title:

    Dietary inclusion of mushroom (Flammulina velutipes) stem waste on growth performance and immune responses in growing layer hens.

    Abstract Source:

    J Sci Food Agric. 2019 Jan 30 ;99(2):703-710. Epub 2018 Aug 13. PMID: 29971802

    Abstract Author(s):

    Shad Mahfuz, Hui Song, Yue Miao, Zhongjun Liu

    Article Affiliation:

    Shad Mahfuz

    Abstract:

    BACKGROUND:Medicinal mushrooms contain biologically active substances that can be used as an immune-modulating agent in poultry. The present study aimed to investigate the effects of Flammulina velutipes mushroom waste (FVW) on performance, immune response and serum immunity in growing layer hens.

    RESULTS:No significant differences (P>0.05) were observed with respect to average daily feed intake, body weight gain and feed conversion ratio among the experimental groups during the entire study period (1-70 days). Antibody titers against Newcastle disease and infectious bronchitis were higher (P<0.05) in the FVW fed groups than in the control and antibiotic groups. On day 28, serum immunoglobulin (Ig)A and IgG were higher (P<0.05) in the 6% FVW group than in the control and antibiotic fed groups. On day 70, serum IgA was higher (P<0.05) in FVW fed groups than in the control group; IgG was higher (P<0.05) in the FVW groups than in the control and antibiotic groups. However, IgM was higher (P<0.05) in both the 4% and 6% FVW groups than in the control and antibiotic groups for both experimental periods. Serum cytokine interleukin (IL)-2 and tumor necrosis factor-α concentrations were significantly higher (P<0.05) in both the 4% and 6% FVW grousp than in the control and antibiotic groups; IL-4 was significantly higher (P<0.05) in the FVW groups than in the control group; and IL-6 was significantly higher (P<0.05) in the 6% FVW group than in the control and antibiotic groups.

    CONCLUSION:FVW at the 6% level can be used as a potential phytogenic feed stuff in growing layer hen rations with respect to improving the immune response without affecting normal weight gain.© 2018 Society of Chemical Industry.

  • Dietary inclusion of mushroom (Flammulina velutipes) stem waste on growth performance and immune responses in growing layer hens.

    Abstract Title:

    Dietary inclusion of mushroom (Flammulina velutipes) stem waste on growth performance and immune responses in growing layer hens.

    Abstract Source:

    J Sci Food Agric. 2019 Jan 30 ;99(2):703-710. Epub 2018 Aug 13. PMID: 29971802

    Abstract Author(s):

    Shad Mahfuz, Hui Song, Yue Miao, Zhongjun Liu

    Article Affiliation:

    Shad Mahfuz

    Abstract:

    BACKGROUND:Medicinal mushrooms contain biologically active substances that can be used as an immune-modulating agent in poultry. The present study aimed to investigate the effects of Flammulina velutipes mushroom waste (FVW) on performance, immune response and serum immunity in growing layer hens.

    RESULTS:No significant differences (P>0.05) were observed with respect to average daily feed intake, body weight gain and feed conversion ratio among the experimental groups during the entire study period (1-70 days). Antibody titers against Newcastle disease and infectious bronchitis were higher (P<0.05) in the FVW fed groups than in the control and antibiotic groups. On day 28, serum immunoglobulin (Ig)A and IgG were higher (P<0.05) in the 6% FVW group than in the control and antibiotic fed groups. On day 70, serum IgA was higher (P<0.05) in FVW fed groups than in the control group; IgG was higher (P<0.05) in the FVW groups than in the control and antibiotic groups. However, IgM was higher (P<0.05) in both the 4% and 6% FVW groups than in the control and antibiotic groups for both experimental periods. Serum cytokine interleukin (IL)-2 and tumor necrosis factor-α concentrations were significantly higher (P<0.05) in both the 4% and 6% FVW grousp than in the control and antibiotic groups; IL-4 was significantly higher (P<0.05) in the FVW groups than in the control group; and IL-6 was significantly higher (P<0.05) in the 6% FVW group than in the control and antibiotic groups.

    CONCLUSION:FVW at the 6% level can be used as a potential phytogenic feed stuff in growing layer hen rations with respect to improving the immune response without affecting normal weight gain.© 2018 Society of Chemical Industry.

  • Dietary whey protein downregulates fatty acid synthesis in the liver, but upregulates it in skeletal muscle of exercise-trained rats.

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    Abstract Title:

    Dietary whey protein downregulates fatty acid synthesis in the liver, but upregulates it in skeletal muscle of exercise-trained rats.

    Abstract Source:

    Nutrition. 2005 Oct;21(10):1052-8. PMID: 16157243

    Abstract Author(s):

    Masashi Morifuji, Kensuke Sakai, Chiaki Sanbongi, Katsumi Sugiura

    Article Affiliation:

    Health and Bioscience Laboratories, Meiji Seika Kaisha Ltd., Tokyo, Japan. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    OBJECTIVE: This study compared the effects of casein and whey protein as the source of dietary protein on the activity of lipogenic enzymes and mRNA levels in the liver and skeletal muscle of exercise-trained rats.

    METHODS: Twenty-eight male Sprague-Dawley rats were randomly assigned to one of four groups (n = 7/group). Rats were assigned to sedentary or exercise-trained groups and were fed the casein or whey protein diet. Rats in the exercise groups were trained for 2 wk using a swimming exercise for 120 min/d and 6 d/wk.

    RESULTS: A significant decrease in the activity of the hepatic lipogenic enzymes, glucose-6-phosphate dehydrogenase, malic enzyme, adenosine triphosphate citrate lyase, acetyl-coenzyme A carboxylase, and fatty acid synthase (FASN) was observed in rats fed whey protein compared with animals fed casein. Compared with the casein diet, the whey protein diet also lowered mRNA expression of these enzymes, except for FASN. In contrast to the findings in liver, whey protein, as compared with casein, increased skeletal muscle FASN activity and mRNA. Further, exercise training resulted in increased skeletal muscle glucose-6-phosphate dehydrogenase and FASN activity and adenosine triphosphate citrate lyase, acetyl-coenzyme A carboxylase-1, and FASN mRNA expression.

    CONCLUSIONS: Exercise training or whey protein may play an important role in suppressing hepatic fatty acid synthesis, thereby decreasing accumulation of body fat and stimulating the skeletal muscle to increase energy substrate as fat during prolonged exercise.

  • DNA released from dying host cells mediates aluminum adjuvant activity.

    Abstract Title:

    DNA released from dying host cells mediates aluminum adjuvant activity.

    Abstract Source:

    Nat Med. 2011 Aug ;17(8):996-1002. Epub 2011 Jul 17. PMID: 21765404

    Abstract Author(s):

    Thomas Marichal, Keiichi Ohata, Denis Bedoret, Claire Mesnil, Catherine Sabatel, Kouji Kobiyama, Pierre Lekeux, Cevayir Coban, Shizuo Akira, Ken J Ishii, Fabrice Bureau, Christophe J Desmet

    Article Affiliation:

    Thomas Marichal

    Abstract:

    Aluminum-based adjuvants (aluminum salts or alum) are widely used in human vaccination, although their mechanisms of action are poorly understood. Here we report that, in mice, alum causes cell death and the subsequent release of host cell DNA, which acts as a potent endogenous immunostimulatory signal mediating alum adjuvant activity. Furthermore, we propose that host DNA signaling differentially regulates IgE and IgG1 production after alum-adjuvanted immunization. We suggest that, on the one hand, host DNA induces primary B cell responses, including IgG1 production, through interferon response factor 3 (Irf3)-independent mechanisms. On the other hand, we suggest that host DNA also stimulates 'canonical' T helper type 2 (T(H)2) responses, associated with IgE isotype switching and peripheral effector responses, through Irf3-dependent mechanisms. The finding that host DNA released from dying cells acts as a damage-associated molecular pattern that mediates alum adjuvant activity may increase our understanding of the mechanisms of action of current vaccines and help in the design of new adjuvants.

  • Does acupuncture ameliorate motor impairment after stroke? An assessment using the CatWalk gait system.

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    Abstract Title:

    Does acupuncture ameliorate motor impairment after stroke? An assessment using the CatWalk gait system.

    Abstract Source:

    Neurochem Int. 2016 Nov 2. Epub 2016 Aug 2. PMID: 27816479

    Abstract Author(s):

    Yan Cao, Ning Sun, Jing-Wen Yang, Yang Zheng, Wen Zhu, Zhen-Hua Zhang, Xue-Rui Wang, Guang-Xia Shi, Cun-Zhi Liu

    Article Affiliation:

    Yan Cao

    Abstract:

    The effect of acupuncture on gait deficits after stroke is uncertain. This animal study was designed to determine whether acupuncture improves gait impairment following experimentally induced ischemic stroke. Ischemic stroke was induced by permanent middle cerebral artery occlusion (MCAO) in rats. After 7 days' of acupuncture treatment, assessment of gait changes using the CatWalk automated gait analysis system was performed. Comparison of the CatWalk gait parameters among the groups showed that gait function was impaired after ischemic stroke and acupuncture treatment was effective in improving a variety of gait parameters including intensity, stance and swing time, swing speed and stride length at postoperative day 8. This study demonstrates a beneficial effect of acupuncture on gait impairment in rats following ischemic stroke. Further studies aimed to investigate the effects of acupuncture at different stages during stroke using the CatWalk system are required.

  • Dose ranging and efficacy study of high-dose coenzyme Q10 formulations in Huntington's disease mice.

    Abstract Title:

    Dose ranging and efficacy study of high-dose coenzyme Q10 formulations in Huntington's disease mice.

    Abstract Source:

    Biochim Biophys Acta. 2006 Jun;1762(6):616-26. Epub 2006 Apr 17. PMID: 16647250

    Abstract Author(s):

    Karen M Smith, Samantha Matson, Wayne R Matson, Kerry Cormier, Steven J Del Signore, Sean W Hagerty, Edward C Stack, Hoon Ryu, Robert J Ferrante

    Abstract:

    There is substantial evidence that a bioenergetic defect may play a role in the pathogenesis of Huntington's Disease (HD). A potential therapy for remediating defective energy metabolism is the mitochondrial cofactor, coenzyme Q10 (CoQ10). We have reported that CoQ10 is neuroprotective in the R6/2 transgenic mouse model of HD. Based upon the encouraging results of the CARE-HD trial and recent evidence that high-dose CoQ10 slows the progressive functional decline in Parkinson's disease, we performed a dose ranging study administering high levels of CoQ10 from two commercial sources in R6/2 mice to determine enhanced efficacy. High dose CoQ10 significantly extended survival in R6/2 mice, the degree of which was dose- and source-dependent. CoQ10 resulted in a marked improvement in motor performance and grip strength, with a reduction in weight loss, brain atrophy, and huntingtin inclusions in treated R6/2 mice. Brain levels of CoQ10 and CoQ9 were significantly lower in R6/2 mice, in comparison to wild type littermate control mice. Oral administration of CoQ10 elevated CoQ10 plasma levels and significantly increased brain levels of CoQ9, CoQ10, and ATP in R6/2 mice, while reducing 8-hydroxy-2-deoxyguanosine concentrations, a marker of oxidative damage. We demonstrate that high-dose administration of CoQ10 exerts a greater therapeutic benefit in a dose dependent manner in R6/2 mice than previously reported and suggest that clinical trials using high dose CoQ10 in HD patients are warranted.

  • Early alterations in blood and brain RANTES and MCP-1 expression and the effect of exercise frequency in the 3xTg-AD mouse model of Alzheimer's disease.

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    Abstract Title:

    Early alterations in blood and brain RANTES and MCP-1 expression and the effect of exercise frequency in the 3xTg-AD mouse model of Alzheimer's disease.

    Abstract Source:

    Neurosci Lett. 2016 Jan 1 ;610:165-70. Epub 2015 Nov 4. PMID: 26547034

    Abstract Author(s):

    Morgan Haskins, Terry E Jones, Qun Lu, Sonja K Bareiss

    Article Affiliation:

    Morgan Haskins

    Abstract:

    Exercise has been shown to protect against cognitive decline and Alzheimer's disease (AD) progression, however the dose of exercise required to protect against AD is unknown. Recent studies show that the pathological processes leading to AD cause characteristic alterations in blood and brain inflammatory proteins that are associated with the progression of AD, suggesting that these markers could be used to diagnosis and monitor disease progression. The purpose of this study was to determine the impact of exercise frequency on AD blood chemokine profiles, and correlate these findings with chemokine brain expression changes in the triple transgenic AD (3xTg-AD) mouse model. Three month old 3xTg-AD mice were subjected to 12 weeks of moderate intensity wheel running at a frequency of either 1×/week or 3×/week. Blood and cortical tissue were analyzed for expression of monocyte chemotactic protein-1 (MCP-1) and regulated and normal T cell expressed and secreted (RANTES). Alterations in blood RANTES and MCP-1 expression were evident at 3 and 6 month old animals compared to WT animals. Three times per week exercise but not 1×/week exercise was effective at reversing serum and brain RANTES and MCP-1 expression to the levels of WT controls, revealing a dose dependent response to exercise. Analysis of these chemokines showed a strong negative correlation between blood and brain expression of RANTES. The results indicate that alterations in serum and brain inflammatory chemokines are evident as early signs of Alzheimer's disease pathology and that higher frequency exercise was necessary to restore blood and brain inflammatory expression levels in this AD mouse model.

  • Early-Life Antibiotic-Driven Dysbiosis Leads to Dysregulated Vaccine Immune Responses in Mice. 📎

    Abstract Title:

    Early-Life Antibiotic-Driven Dysbiosis Leads to Dysregulated Vaccine Immune Responses in Mice.

    Abstract Source:

    Cell Host Microbe. 2018 05 9 ;23(5):653-660.e5. PMID: 29746836

    Abstract Author(s):

    Miriam Anne Lynn, Damon John Tumes, Jocelyn Mei Choo, Anastasia Sribnaia, Stephen James Blake, Lex Ee Xiang Leong, Graeme Paul Young, Helen Siobhan Marshall, Steve Lodewijk Wesselingh, Geraint Berian Rogers, David John Lynn

    Article Affiliation:

    Miriam Anne Lynn

    Abstract:

    Antibody-mediated responses play a critical role in vaccine-mediated immunity. However, for reasons that are poorly understood, these responses are highly variable between individuals. Using a mouse model, we report that antibiotic-driven intestinal dysbiosis, specifically in early life, leads to significantly impaired antibody responses to five different adjuvanted and live vaccines. Restoration of the commensal microbiota following antibiotic exposure rescues these impaired responses. In contrast, antibiotic-treated adult mice do not exhibit impaired antibody responses to vaccination. Interestingly, in contrast to impaired antibody responses, immunized mice exposed to early-life antibiotics display significantly enhanced T cell cytokine recall responses upon ex vivo restimulation with the vaccine antigen. Our results demonstrate that, in mice, antibiotic-driven dysregulation of the gut microbiota in early life can modulate immune responses to vaccines that are routinely administered to infants worldwide.

  • Effect of Acacia Polyphenol Supplementation on Exercise-Induced Oxidative Stress in Mice Liver and Skeletal Muscle. 📎

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    Abstract Title:

    Effect of Acacia Polyphenol Supplementation on Exercise-Induced Oxidative Stress in Mice Liver and Skeletal Muscle.

    Abstract Source:

    Antioxidants (Basel). 2019 Dec 28 ;9(1). Epub 2019 Dec 28. PMID: 31905679

    Abstract Author(s):

    Koichi Yada, Llion Arwyn Roberts, Natsumi Oginome, Katsuhiko Suzuki

    Article Affiliation:

    Koichi Yada

    Abstract:

    The purpose of this study was to investigate the effects of acacia polyphenol (AP) supplementation on exercise-induced oxidative stress in mouse liver and skeletal muscle. Plasma aspartate aminotransferase (AST), liver and skeletal muscle levels of thiobarbituric acid reactive substance (TBARS), and levels of skeletal muscle protein carbonyls increased immediately after exhaustive exercise. Exhaustive exercise also decreased liver glutathione (GSH). These results suggest that the exhaustive exercise used in this study induced tissue damage and oxidative stress. Contrary to our expectations, AP supplementation increased plasma AST and alanine aminotransferase activities, liver levels of TBARS, and protein carbonyls. Furthermore, AP supplementation decreased glutathione and glutathione peroxidase activity in the liver. On the other hand, AP supplementation decreased TBARS levels in skeletal muscle. These results suggest that oral high-dose AP administration decreased oxidative stress in skeletal muscle but induced oxidative stress in the liver and increased hepatotoxicity.

  • Effect of acupuncture on neurological function, cerebral infarction volume, thrombolysis time window and cerebral cell apoptosis signaling pathway in cerebral infarction rats

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    Abstract Title:

    [Effect of acupuncture on neurological function, cerebral infarction volume, thrombolysis time window and cerebral cell apoptosis signaling pathway in cerebral infarction rats].

    Abstract Source:

    Zhen Ci Yan Jiu. 2020 Mar 25 ;45(3):209-14. PMID: 32202712

    Abstract Author(s):

    Ya Hui Gu, Xin Chang Zhang, Wen Tao Xu, Ao Zhang, Zhi Hui Zhang, Si Yuan Jiang, Si Qi Chang, Guang Xia Ni

    Article Affiliation:

    Ya Hui Gu

    Abstract:

    OBJECTIVE:To observe the effect of acupuncture (Acupunct) on cerebral infarction volume and expression of poly ADP ribose polymerase 1 (PARP1), apoptosis-inducing factor (AIF) and endonuclease G (Endo-G) in the cerebral cortex tissue at different time-points after cerebral ischemia (CI) in acute cerebral infarction rats, so as to explore its underlying mechanisms in prolonging time window of thrombolysis.

    METHODS:Forty-eight SD rats were randomly divided into sham operation, model, intravenous thrombolysis (IVT)-4.5 h, IVT-6 h, IVT-9 h, Acupunct+IVT-4.5 h, Acupunct +IVT-6 h, Acupunct+IVT-9 h groups (=6 in each group). The CI model was established by using modified autologous thromboembolism via the right common carotid artery. Two hours after modeling, rats of the Acupunct groups received Acupunct stimulation of"Shuigou"(GV26) and bilateral"Neiguan"(PC6) for 30 min. Thrombolysis was conducted by injection of recombinant human tissue-type plasminogen activator (rt-PA, 10 mg/kg) via caudal vein. The neurological deficit was assessed with reference to Bederson's methods. 2,3,5-triphenyltetrazolium chloride (TTC) staining was used to assess the cerebral infarction volume, and the expression of cerebral PARP1, AIF and Endo-G proteins detected by Western blot.

    RESULTS:Compared with the sham operation group, the neurological score and percentage of cerebral infarction volume, expression levels of PARP1, AIF and Endo-G proteins were significantly increased in the model group (<0.01,<0.05). After the intervention, modeling-induced increase of the aforementioned indexes was reversed in the IVT-4.5 h, Acupunct+IVT-4.5 h and Acupunct+IVT-6 h groups (<0.05), except PARP1 expression of the Acupunct+IVT 6 h group (>0.05). The levels of neurological score, percentage of cerebral infarction volume, and AIF expression were significantly lower in both the Acupunct+IVT 4.5 h and Acupunct+IVT-6 h groups than in the simple IVT-4.5 h and simple IVT-6 h groups, respectively (<0.05), and the expression levels of PARP1 and Endo-G proteins were obviously lower in the Acupunct+IVT-4.5 h group than in the IVT-4.5 h group (<0.05). Endo-G proteins were obviously lower in the Acupunct+IVT-9 h group than in the IVT-9 h group (<0.05).

    CONCLUSION:Acupuncture may improve neurological function, reduce cerebral infarction volume and prolong the time window of thrombolysis in CI rats, which may be associated with its effect in suppressing AIF/PARP1/ Endo-G signaling.

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