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Uncovering the Role of TRPM2 in TNBC

dc.contributor.authorMaliougina, Maria
dc.contributor.copyright-releaseNot Applicableen_US
dc.contributor.degreeMaster of Scienceen_US
dc.contributor.departmentDepartment of Physiology & Biophysicsen_US
dc.contributor.ethics-approvalNot Applicableen_US
dc.contributor.external-examinerTobias Karakashen_US
dc.contributor.manuscriptsNot Applicableen_US
dc.contributor.thesis-readerThomas Pulinilkunnilen_US
dc.contributor.thesis-readerXianping Dongen_US
dc.contributor.thesis-supervisorYassine El Hianien_US
dc.date.accessioned2024-06-18T13:34:07Z
dc.date.available2024-06-18T13:34:07Z
dc.date.defence2024-06-06
dc.date.issued2024-06-13
dc.description.abstractBreast cancer has high mortality in women worldwide and is a complex disease. Specifically, TNBC is an aggressive subtype which lacks a unique therapeutic target. Cancer cells have higher ROS, however the mechanism by which they regulate cancer survival remains unknown. TRPM2 is a sensor of oxidative stress and Ca2+ permeable ion channel, previously associated with cancer development. We hypothesize that elevated oxidative stress activates TRPM2 mediated Ca2+ signaling to supply cancer cell bioenergetics and fuel TNBC progression. Our study found that TRPM2-KD reduced proliferation, migration and mitophagy and increased apoptosis in TNBC cells. We identified p-CAMKII as the signaling molecule which links TRPM2 mediated Ca2+, to downstream JNK and FAK signaling. Altogether, our study proposes a potential mechanism to explain the role of TRPM2 mediated Ca2+ signaling in control of TNBC survival and suggests that it could function as a specific therapeutic target for TNBC in the future.en_US
dc.identifier.urihttp://hdl.handle.net/10222/84285
dc.language.isoenen_US
dc.subjectCancer Signalingen_US
dc.subjectTRPM2en_US
dc.subjectTriple Negative Breast Canceren_US
dc.subjectOxidative Stressen_US
dc.titleUncovering the Role of TRPM2 in TNBCen_US
dc.typeThesisen_US

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