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sesbania/גלוטתיון

הקישור נשמר בלוח
מאמריםניסויים קלינייםפטנטים
14 תוצאות

Characterization of the Sesbania rostrata phytochelatin synthase gene: alternative splicing and function of four isoforms.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Phytochelatins (PCs) play an important role in detoxification of heavy metals in plants. PCs are synthesized from glutathione by phytochelatin synthase (PCS), a dipeptidyltransferase. Sesbania rostrata is a tropical legume plant that can tolerate high concentrations of Cd and Zn. In this study, the

Sesbania grandiflora diminishes oxidative stress and ameliorates antioxidant capacity in liver and kidney of rats exposed to cigarette smoke.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Cigarette smoke is a major risk factor for many chronic diseases. However, it may be possible to relieve the smoke-induced damage by increasing the defensive system. In this study, we planned to evaluate the protective mechanism of Sesbania grandiflora (S. grandiflora) leaves against cigarette

Cardioprotective effects of Sesbania grandiflora in cigarette smoke-exposed rats.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Cigarette smoke is a major risk factor of coronary heart disease, myocardial infarction, and cardiac death. It has been reported to contain large amounts of oxidants. This study was undertaken to evaluate the cardioprotective effects of Sesbania grandiflora (S. grandiflora) against cigarette

Attenuation of erythrocyte membrane oxidative stress by Sesbania grandiflora in streptozotocin-induced diabetic rats.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
The aim of the present study was to investigate the protective effects of Sesbania grandiflora flower (SGF) extract on erythrocyte membrane in Streptozotocin (STZ)-induced diabetic rats. Adult male albino rats of Wistar strain, weighing 190-220 g, were made diabetic by an intraperitonial

Oxidative stress in the brain of cigarette smoke-induced noxiousness: neuroprotective role of Sesbania grandiflora.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Cigarette smoking is concerned as a major risk factor in the development of various neurological disorders. Oxidative stress is suggested as a possible contributing factor in the pathogenesis of cigarette smoking-induced toxicity. Therefore, the present study was intended to evaluate the

Protective effects of Sesbania grandiflora on kidney during alcohol and polyunsaturated fatty acid-induced oxidative stress.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
BACKGROUND Kidney is an organ highly vulnerable to damage caused by reactive oxygen species (ROS), due to abundance of polyunsaturated fatty acids in the composition of renal lipids. Oxidative stress plays an important role in the development of alcohol-induced tissue injury. This leads to membrane

Antioxidant, photosynthesis and growth characteristics of plants grown in high sulphur coalmine overburden.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
North East region of India suffers from high sulphur coal mine overburden (OB) and plants those survive under such condition have adopted to such harsh environment. Here, we have investigated the effect of coal mine OB substrate on biochemical, physiological and growth of two shrubs Cassia (Cassia

Evaluation of Sesbania grandiflora for antiurolithiatic and antioxidant properties.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
In the indigenous system of medicine in India, the plant Sesbania grandiflora is claimed to be useful for various ailments, and one such use is for the treatment of renal calculi. The major purpose of this study is to investigate the potential of S. grandiflora in the treatment of renal calculi. The
Pot experiments were conducted to evaluate the damaging effects of salinity on Sesbania sesban plants in the presence and absence of arbuscular mycorrhizal fungi (AMF). The selected morphological, physiological and biochemical parameters of S. sesban were measured. Salinity reduced growth and

Antioxidative responses to mercury in the cell cultures of Sesbania drummondii.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
The effect of mercury (Hg) on the growth and the response of antioxidative systems have been investigated in Sesbania cell cultures to determine the tolerance limits and the mechanisms of metal (Hg) tolerance in plant cells. Cell cultures of Sesbania were developed in different concentrations (0-50

Bioaccumulation and physiological effects of mercury in Sesbania drummondii.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
The accumulation of mercury and its effect on growth, photosynthesis and antioxidative responses were studied in Sesbania drummondii seedlings. Mercury concentration in shoots as well as in the roots increased with increasing Hg concentrations in the growth solution. The accumulation of Hg was more

Cadmium accumulation and antioxidative responses in the Sesbania drummondii callus.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
The effect of cadmium (Cd) on growth, accumulation, and antioxidative response was studied in Sesbania drummondii callus, cultivated on different concentrations of Cd (0-250 microM) for four weeks. Callus growth was comparable to that of the control for concentrations up to 50 microM Cd; however,

Interactive effects of lead, copper, nickel and zinc on growth, metal uptake and antioxidative metabolism of Sesbania drummondii.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Sesbania drummondii seedlings were grown in a medium to which lead (Pb), copper (Cu), nickel (Ni) and zinc (Zn) were added singly and in combinations in order to assess the effects of metal interactions on seedling growth, metal accumulation and anti-oxidative system. S. drummondii growth was

Antioxidant defense in a lead accumulating plant, Sesbania drummondii.

רק משתמשים רשומים יכולים לתרגם מאמרים
התחבר הרשם
Seedlings of Sesbania drummondii were grown in 500 mg l-1 Pb(NO3)2 in presence and absence of chelators: EDTA, DTPA and HEDTA for 4 weeks. Plants were assayed for activities of the antioxidant enzymes: ascorbate peroxidase (APX), guaiacol peroxidase (GPX), catalase (CAT), superoxide dismutase (SOD)
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