2017
DOI: 10.1016/s1875-5364(18)30017-7
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Bacopa monnieri extracts prevent hydrogen peroxide-induced oxidative damage in a cellular model of neuroblastoma IMR32 cells

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Cited by 14 publications
(10 citation statements)
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“…H 2 O 2 is the precursor of deleterious oxygen species which causes serious brain injury by producing ROS. Bhatia et al, [17] addressed the problem and performed an experiment, and examine the neuroprotective role of Bacopa monnieri extract (BME) against H 2 O 2 persuade oxidative stress using a cellular mode neuroblastoma IMR32 cell lines. Protective nature of methanolic ethanolic and water extract examined through MTT assay.…”
Section: Anti-oxidant Activitymentioning
confidence: 99%
“…H 2 O 2 is the precursor of deleterious oxygen species which causes serious brain injury by producing ROS. Bhatia et al, [17] addressed the problem and performed an experiment, and examine the neuroprotective role of Bacopa monnieri extract (BME) against H 2 O 2 persuade oxidative stress using a cellular mode neuroblastoma IMR32 cell lines. Protective nature of methanolic ethanolic and water extract examined through MTT assay.…”
Section: Anti-oxidant Activitymentioning
confidence: 99%
“…H 2 O 2 in medium mediates oxidative injury and inammation in vitro, thus simulating the tissue microenvironment aer nerve injury. [32][33][34] Our results showed that NSCs on the PLGA/GO nanobres had a better survival rate than PLGA alone, suggesting that GO was effective in preventing NSCs on the surface of the graphene-polymer hybrid scaffolds from reactive oxygen species (ROS)-mediated cell death. Previous research has demonstrated that GO protects mesenchymal stem cells (MSCs) and provides microenvironments suitable for long-term MSC survival in vivo and in vitro.…”
Section: Nsc Survival Ratementioning
confidence: 85%
“…Liver cells contains large amount of iron, which could transform H 2 O 2 reaction into hydroxyl radical (‐OH). Hydroxyl radical would attack DNA, protein and other macromolecules, further leads to DNA strand breakage, base exchange, chromosome variation, protein misfolding, and so on, and also attack the cell membrane (Bhatia, Dhuna, Dhuna, Kaur, & Singh, 2017; Nagao et al., 2018).…”
Section: Resultsmentioning
confidence: 99%