Celastrus paniculatus Willd. mitigates t-BHP induced oxidative and apoptotic damage in C2C12 murine muscle cells
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چکیده
منابع مشابه
Cultivation prospects of endangered species Celastrus paniculatus Willd
Celastrus paniculatus Willd. is an important Ayurvedic medicinal plant gaining popularity in the primary healthcare systems and in herbal drug formulations. Its seed oil is reported to be beneficial in stimulating intellect and sharpening the memory. It has also been reported as nervine tonic, rejuvenant, anti-depressant, anti-oxidant, free radical scavenger, etc. Over-exploitation of the plant...
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The present study aimed to investigate the ability of SS31, a novel mitochondria‑targeted peptide to protect against t‑BHP‑induced mitochondrial dysfunction and apoptosis in 661W cell lines. The 661W cells were treated with various concentrations of SS‑31 and an MTT assay was used to determine cell viability. The expression of nitrotyrosine and 8‑hydroxydeoxyguanosine (8‑OHdG) was detected usin...
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Celastrus paniculatus Willd. (Celastraceae), commonly known as Staff tree in English, is a woody climber grown in tropics and subtropics and also cultivated commercially in India for the high demand of its seed oil. The present study assessed the different solvent extracts of C. paniculatus leaf for the evaluation of their analgesic potential by acetic acid induced writhing assay in Swiss albin...
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Acrylamide (ACR) is a dietary contaminant derived from a wide range of foods through the Maillard-reaction during the cooking process. The present study focused on the hematotoxic effects of ACR and the protective efficacy of Extra Virgin olive oil (EVOO) in alleviating hematotoxicity and oxidative stress in erythrocytes of adult rats. Rats were divided into four groups of six each: group 1, se...
متن کاملOxidative membrane damage and its involvement in gamma radiation-induced apoptotic cell death.
Background: Recent results have provided increasing evidence to support involvement of membrane damage in the mechanism of ionizing radiation induced killing of mammalian cells. These findings have stimulated renewed interest in evaluating the damage to membrane as a primary initiator in radiation-induced cell killing especially in apoptotic death. The present study was aimed to gain deeper ins...
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ژورنال
عنوان ژورنال: Cytotechnology
سال: 2014
ISSN: 0920-9069,1573-0778
DOI: 10.1007/s10616-014-9733-0