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Li-rong Song

Publications and source records attributed to Li-rong Song.

4 recordsLinked to original sources

[Microcystin-LR induces apoptosis in L-02 cell line].

OBJECTIVE: To investigate the toxicological mechanism of microcystin-LR (MCLR) on L-02 cells. METHODS: L-02 cells was treated with MCLR at different concentrations and the subsequent changes such as cell proliferation (MTT assay), morphology, lactate dehydrogenase (LDH) leakage, apoptosis rate and apoptosis-related gene expression were examined. RESULTS: MTT assay showed that MCLR mildly inhibited the cell growth within the initial 24 h of treatment but enhanced the cell viability after that till 60 h in a time- and dose-dependent manner. LDH leakage underwent no marked changes in response to 48-hour MCLR treatment but increased upon prolonged treatment for 60 h, indicating the presence of oxidative damage. After a 48-h treatment with MCLR at 50 microg/ml, obvious apoptosis of L-02 cells occurred as manifested by cell rounding, detachment from the substrate, cell shrinkage and membrane blebbing. The apoptosis rates were rather low (between 22% and 29%) after treatment with MCLR at different concentrations for 36 h, and increased to as much as 80% after a 60-h treatment with 50 microg/ml MCLR. The expressions of p53 and bcl-2 increased in the cells after treatment with high-concentration MCLR, suggesting that MCLR up-regulated the expression levels of the two proteins. CONCLUSION: MCLR can induce apoptosis and up-regulate p53 and bcl-2 expressions in human normal liver cell line L-02.

Apoptosis↗

[Acute toxicity of microcystin-LR in BALB/c mice].

OBJECTIVE: To investigate acute toxicity of microcystin-LR in BALB/c mice. METHODS: BALB/c mice were subjected to intraperitoneal injection of microcystin-LR at the half lethal dose (LD50) and 1/2 LD50, and the organ weight indices and various biochemical indices were determined 30 min and 4 h after the treatment, respectively. RESULTS: Significant increase in liver or kidney weight index occurred in the treated mice, indicating hemorrhagic conditions of the two organs. A slight increase in serum levels of aspartate amino transferase and alanine aminotransferase was observed along with an obvious decrease in serum urea levels, suggesting liver damage. The increase of serum uric acid also indicated the presence of kidney damage. CONCLUSION: The kidney may be another target of microcystins besides the liver.

Animals↗

Reactive oxygen species and antioxidant enzymes activity of Anabaena sp. PCC 7120 (Cyanobacterium) under simulated microgravity.

It was found that reactive oxygen species in Anabaena cells increased under simulated microgravity provided by clinostat. Activities of intracellular antioxidant enzymes, such as superoxide dismutase, catalase were higher than those in the controlled samples during the 7 days' experiment. However, the contents of glutathione [correction of gluathione], an intracellular antioxidant, decreased in comparison with the controlled samples. The results suggested that microgravity provided by clinostat might break the oxidative/antioxidative balance. It indicated a protective mechanism in algal cells, that the total antioxidant system activity increased, which might play an important role for algal cells to adapt the environmental stress of microgravity.

Anabaena↗

[Lipid peroxidation in microalgae cells under simulated microgravity].

Objective. To provide direct evidences for effects of microgravity on structure and function of plasma membrane. Method. Malondialdehyde (MDA) content was examined on the basis of quantitative reaction of both MDA and thiobarbituric acid (TBA), and electrolyte leaking was determined with conductometer model DDS-11A. Result. Experiments showed that under simulated microgravity, lipid peroxidation and the content of MDA increased. Meanwhile, the membrane permeability increased in cells of two microalgae: Anabaena sp PCC7120 and Synechococcus 7942. Conclusion. Our results suggest that there is some commonness between microgravity stress and certain other environmental stresses. And cellular membrane might be the site of perception of gravity in unicells without special gravity sensitive structure, such as alga cells.

Anabaena↗