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1.
Chinese Journal of Integrated Traditional and Western Medicine in Intensive and Critical Care ; (6): 393-397, 2019.
Artigo em Chinês | WPRIM | ID: wpr-754584

RESUMO

Objective To observe the effects of Soyasaponins on inflammatory factors, antioxidant activity and exercise ability in rats with severe heat stroke. Methods Eighty male Sprague-Dawley (SD) rats were randomly divided into normal control group, heat shock model group, saline control group and Soyasaponin group, The rats that died during the experiment or with a low rectal temperature (< 41℃) were excluded, and finally 54 rats were included, 18 rats remaining in each group. The rats in the heat shock model group were placed in the simulated hot climate animal cabin at 30 ℃, and the temperature within 30 minutes was raised to 39 ℃ in the cabin with 65% humidity; in the mean time, the rat models of heat shock were replicated under the following situations: let the rats exercise on a treadmill with running speed set at 15 m/min, slope degree 0°, once running for 8 minutes, interval 2 minutes and the heat shock time was 90 minutes, the rats in the normal control group were fed in an environment with temperature ranging from 23-25 ℃ and relative humidity ranging from 50%-70%. After the establishment of models, the saline control group and Soyasaponin group were given daily saline and Soyasaponin (10 mg/kg) respectively by gavage for 3 consecutive months, while the heat shock model group was not given any treatment. The femoral artery blood was collected 24 hours after the rats left the cabin. The serum levels of interleukins (IL-6, IL-1β), tumor necrosis factor-α (TNF-α), interferon-γ (IFN-γ), malonaldehyde (MDA), superoxide dismutase (SOD), glutathione peroxidase (GSH-Px) were measured by enzyme-linked immunosorbent (ELISA) and the contents of serum hemoglobin (Hb), serum urea (BUN), lactate dehydrogenase (LDH) and blood lactic acid (Lac) were measured by automatie biochemical analyzer. Results The levels of IL-6, IL-1β, TNF-α, IFN-γ, MDA, Hb, BUN, LDH, Lac in heat shock model group were significantly higher than those of the normal control group [IL-6 (ng/L): 86.17±4.82 vs. 12.60±3.49, IL-1β (ng/L): 83.00±5.98 vs. 15.70±3.64, TNF-α (ng/L): 72.22±6.93 vs. 13.75±2.69, IFN-γ (ng/L): 36.22±3.02 vs. 7.35±1.60, MDA (nmol/mg): 19.78±4.56 vs. 6.40±1.35, Hb (g/L): 136.22±1.93 vs. 126.75±5.84, BUN (mmol/L):21.06±3.44 vs. 5.65±1.35, LDH (μmoL·s-1·L-1): 9.65±0.83 vs. 2.12±0.17, Lac (mmol/L): 552.56±78.33 vs. 1.32±0.18, all P < 0.05], SOD and GSH-Px were significantly lower than those in normal control group [SOD (kU/L):97.89±10.57 vs. 126.65±11.35, GSH-Px (kU/L): 19.22±2.58 vs. 43.45±4.02]; however, the levels of IL-6, IL-1β, TNF-α, IFN-γ, MDA, BUN, LDH and Lac in Soyasaponin group were significantly lower than those in heat shock model group [IL-6 (ng/L): 45.28±3.54 vs. 86.17±4.82, IL-1β (ng/L): 41.61±2.93 vs. 83.00±5.98, TNF-α (ng/L):37.22±2.46 vs. 72.22±6.93, IFN-γ (ng/L): 19.22±2.60 vs. 36.22±3.02, MDA (nmol/mg): 11.28±1.74 vs. 19.78±4.56, BUN (mmol/L): 11.78±2.13 vs. 21.06±3.44, LDH (μmoL·s-1·L-1): 3.70±0.26 vs. 9.65±0.83, Lac (mmol/L): 274.56±59.08 vs. 552.56±78.33, all P < 0.01], SOD, GSH-Px and Hb were significantly higher than those of heat shock model group [SOD (kU/L): 116.11±11.28 vs. 97.89±10.57, GSH-Px (kU/L): 31.17±2.90 vs. 19.22±2.58, Hb (g/L): 141.33±3.79 vs. 136.22±1.93, all P < 0.01]; there were no significant statistical differences in above indexes between heat shock model group and saline control group (all P > 0.05). Conclusion After heat shock and exercise management, the production and release of inflammatory factors are increased, and the level of lipid peroxidation was elevated in rats. The Soyasaponin can improve the ability to withstand heat shock and strong exercise by reducing the production and release of inflammatory factors and lipid peroxidation in the rats with severe heatstroke.

2.
Journal of International Pharmaceutical Research ; (6): 79-84, 2013.
Artigo em Chinês | WPRIM | ID: wpr-845883

RESUMO

Soyasaponins are the major bioactive ingredients in plants of Leguminosae, which have been used as food addictives, cosmetics and healthy products for a long time and have shown hypolipidemic and anti-aging effects. Recently, pharmacological studies found that soyasaponins have many other effects including anti-inflammation, anti-coagulation, anti-mutagenesis, anti-tumor and renin inhibition. Among these effects, anti-tumor function of soyasaponins is one of the hot research spots. Studies demonstrated that decreasing sialic acid, inhibiting activity of protein kinase, interfering cell cycle, disrupting cell membranes and inducing apoptosis are all the possible underlying mechanisms. In this review, the recent advances in the study on chemical structure, pharmacological activities and anti-tumor mechanism of soyasaponins are reviewed, and the future developmental prospects of soyasaponins are also discussed.

3.
Chinese Journal of Information on Traditional Chinese Medicine ; (12)2006.
Artigo em Chinês | WPRIM | ID: wpr-576220

RESUMO

Objective To study the pharmacological activity of soybean stem soyasaponin. Methods Normobaric hyporia and exhaustive swimming in mice and osteoporosis rats model were used to observe the pharmacological effects of soybean stem soyasaponin. Results Soybean stem soyasaponin 150 mg/kg significantly prolonged the survival time in hyporia and the swimming time of mice and 100 mg/kg in rats improved the syomptom of osteoporosis models. Conclusion Soybean stem soyasaponin has obvious effect on anti-exhaustion and increasing tolerance of oxygen deficit in mice and significant therapy effect on osteoporosis rats.

4.
Chinese Journal of Immunology ; (12)1985.
Artigo em Chinês | WPRIM | ID: wpr-535195

RESUMO

In the present study it was observed that the reactivity of splenocytes to Con A,LPS and IL-2 was enhanced in the mice which were given Total Soyasaponin(Ts)Via mouth?We also found that the level of IL—2 in splenocytes and the activity of NK and LAK cells were obviously higher than that in the control group.

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