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Dive into the research topics where Musarat Ishaq is active.

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Featured researches published by Musarat Ishaq.


Molecular Biology of the Cell | 2014

Atmospheric gas plasma–induced ROS production activates TNF-ASK1 pathway for the induction of melanoma cancer cell apoptosis

Musarat Ishaq; Shailesh Kumar; Hilal Varinli; Zhao Han; Amanda E. Rider; Margaret D. M. Evans; Anthony B. Murphy; K. Ostrikov

Atmospheric gas plasmas (AGPs) up-regulate intracellular ROS levels and induce apoptosis in melanoma cells. Evidence for TNF-signaling dependence of ASK1-mediated apoptosis suggests possible mechanisms for AGP activation and regulation of apoptosis-signaling pathways in tumor cells.


Biochimica et Biophysica Acta | 2014

Atmospheric pressure gas plasma-induced colorectal cancer cell death is mediated by Nox2-ASK1 apoptosis pathways and oxidative stress is mitigated by Srx-Nrf2 anti-oxidant system.

Musarat Ishaq; Margaret D. M. Evans; K. Ostrikov

Atmospheric pressure gas plasma (AGP) generates reactive oxygen species (ROS) that induce apoptosis in cultured cancer cells. The majority of cancer cells develop a ROS-scavenging anti-oxidant system regulated by Nrf2, which confers resistance to ROS-mediated cancer cell death. Generation of ROS is involved in the AGP-induced cancer cell death of several colorectal cancer cells (Caco2, HCT116 and SW480) by activation of ASK1-mediated apoptosis signaling pathway without affecting control cells (human colonic sub-epithelial myofibroblasts; CO18, human fetal lung fibroblast; MRC5 and fetal human colon; FHC). However, the identity of an oxidase participating in AGP-induced cancer cell death is unknown. Here, we report that AGP up-regulates the expression of Nox2 (NADPH oxidase) to produce ROS. RNA interference designed to target Nox2 effectively inhibits the AGP-induced ROS production and cancer cell death. In some cases both colorectal cancer HT29 and control cells showed resistance to AGP treatment. Compared to AGP-sensitive Caco2 cells, HT29 cells show a higher basal level of the anti-oxidant system transcriptional regulator Nrf2 and its target protein sulfiredoxin (Srx) which are involved in cellular redox homeostasis. Silencing of both Nrf2 and Srx sensitized HT29 cells, leads to ROS overproduction and decreased cell viability. This indicates that in HT29 cells, Nrf2/Srx axis is a protective factor against AGP-induced oxidative stress. The inhibition of Nrf2/Srx signaling should be considered as a central target in drug-resistant colorectal cancer treatments.


RSC Advances | 2013

Carbon nanostructures for hard tissue engineering

Zhao Jun Han; Amanda E. Rider; Musarat Ishaq; Shailesh Kumar; Alexey Kondyurin; M.M.M. Bilek; I. Levchenko; K. Ostrikov


Plasma Processes and Polymers | 2015

Atmospheric‐Pressure Plasma‐ and TRAIL‐Induced Apoptosis in TRAIL‐Resistant Colorectal Cancer Cells

Musarat Ishaq; Zhao Jun Han; Shailesh Kumar; Margaret D. M. Evans; K. Ostrikov


Plasma Medicine | 2016

Effect of Atmospheric-Pressure Plasmas on Drug Resistant Melanoma: The Challenges of Translating In vitro Outcomes into Animal Models

Musarat Ishaq; Anthony Rowe; Kateryna Bazaka; Mark Krockenberger; Margaret D. M. Evans; K. Ostrikov


Science & Engineering Faculty | 2014

Selective neuronal differentiation of neural stem cells induced by nanosecond microplasma agitation

Z. Xiong; Shasha Zhao; Xiang Mao; X. Lu; Guangyuan He; Guangxiao Yang; Mingjie Chen; Musarat Ishaq; K. Ostrikov


Science & Engineering Faculty | 2016

Effect of atmospheric-pressure plasmas on drug resistant melanoma: The challenges of translating in vitro outcomes into animal models

Musarat Ishaq; Anthony Rowe; Kateryna Bazaka; Mark Krockenberger; Margaret D. M. Evans; K. Ostrikov


Institute of Health and Biomedical Innovation; Science & Engineering Faculty | 2015

Intracellular effects of atmospheric-pressure plasmas on melanoma cancer cells

Musarat Ishaq; Kateryna Bazaka; K. Ostrikov


Institute of Health and Biomedical Innovation; Science & Engineering Faculty | 2015

Pro-apoptotic NOXA is implicated in atmospheric-pressure plasma-induced melanoma cell death

Musarat Ishaq; Kateryna Bazaka; K. Ostrikov


Science & Engineering Faculty | 2014

Effect of atmospheric gas plasmas on cancer cell signaling

Musarat Ishaq; Margaret D. M. Evans; K. Ostrikov

Collaboration


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K. Ostrikov

Queensland University of Technology

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Margaret D. M. Evans

Commonwealth Scientific and Industrial Research Organisation

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Kateryna Bazaka

Queensland University of Technology

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Amanda E. Rider

Commonwealth Scientific and Industrial Research Organisation

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Anthony Rowe

Commonwealth Scientific and Industrial Research Organisation

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Zhao Jun Han

Commonwealth Scientific and Industrial Research Organisation

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Guangxiao Yang

Huazhong University of Science and Technology

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