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1.
Braz. j. med. biol. res ; 49(10): e5310, 2016. graf
Article in English | LILACS | ID: biblio-951650

ABSTRACT

Although it is well known that physical training ameliorates brain oxidative function after injuries by enhancing the levels of neurotrophic factors and oxidative status, there is little evidence addressing the influence of exercise training itself on brain oxidative damage and data is conflicting. This study investigated the effect of well-established swimming training protocol on lipid peroxidation and components of antioxidant system in the rat brain. Male Wistar rats were randomized into trained (5 days/week, 8 weeks, 30 min; n=8) and non-trained (n=7) groups. Forty-eight hours after the last session of exercise, animals were euthanized and the brain was collected for oxidative stress analysis. Swimming training decreased thiobarbituric acid reactive substances (TBARS) levels (P<0.05) and increased the activity of the antioxidant enzyme superoxide dismutase (SOD) (P<0.05) with no effect on brain non-enzymatic total antioxidant capacity, estimated by FRAP (ferric-reducing antioxidant power) assay (P>0.05). Moreover, the swimming training promoted metabolic adaptations, such as increased maximal workload capacity (P<0.05) and maintenance of body weight. In this context, the reduced TBARS content and increased SOD antioxidant activity induced by 8 weeks of swimming training are key factors in promoting brain resistance. In conclusion, swimming training attenuated oxidative damage and increased enzymatic antioxidant but not non-enzymatic status in the rat brain.


Subject(s)
Animals , Male , Physical Conditioning, Animal/physiology , Swimming/physiology , Brain/metabolism , Oxidative Stress/physiology , Exercise Therapy/methods , Antioxidants/metabolism , Reference Values , Spectrophotometry , Superoxide Dismutase/analysis , Time Factors , Body Weight , Lipid Peroxidation/physiology , Random Allocation , Reproducibility of Results , Reactive Oxygen Species/metabolism , Malondialdehyde/analysis , Malondialdehyde/metabolism , Antioxidants/analysis
2.
Braz. j. med. biol. res ; 38(11): 1585-1592, Nov. 2005.
Article in English | LILACS | ID: lil-414712

ABSTRACT

Lactococcus lactis, the model lactic acid bacterium, is a good candidate for heterologous protein production in both foodstuffs and the digestive tract. We attempted to produce Streptomyces tendae antifungal protein 1 (Afp1) in L. lactis with the objective of constructing a strain able to limit fungal growth. Since Afp1 activity requires disulfide bond (DSB) formation and since intracellular redox conditions are reportedly unfavorable for DSB formation in prokaryotes, Afp1 was produced as a secreted form. An inducible expression-secretion system was used to drive Afp1 secretion by L. lactis; Afp1 was fused or not with LEISSTCDA, a synthetic propeptide (LEISS) that has been described to be a secretion enhancer. Production of Afp1 alone was not achieved, but production of LEISS-Afp1 was confirmed by Western blot and immunodetection with anti-Afp1 antibodies. This protein (molecular mass: 9.8 kDa) is the smallest non-bacteriocin heterologous protein ever reported to be secreted in L. lactis via the Sec-dependent pathway. However, no anti-fungal activity was detected, even in concentrated samples of induced supernatant. This could be due to a too low secretion yield of Afp1 in L. lactis, to the absence of DSB formation, or to an improper DSB formation involving the additional cysteine residue included in LEISS propeptide. This raises questions about size limits, conformation problems, and protein secretion yields in L. lactis.


Subject(s)
Lactococcus lactis/metabolism , Bacterial Proteins , Carrier Proteins , Antifungal Agents/isolation & purification , Antifungal Agents/metabolism , Antifungal Agents/pharmacology , Aspergillus fumigatus/drug effects , Blotting, Western , Microbial Sensitivity Tests , Paecilomyces/drug effects , Plasmids/genetics , Bacterial Proteins/genetics , Bacterial Proteins/pharmacology , Carrier Proteins/genetics , Carrier Proteins/pharmacology , Trichophyton/drug effects
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