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Mechanical Regulation of Genomic Instability in Cancer

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서명/저자사항Mechanical Regulation of Genomic Instability in Cancer.
개인저자Simi, Allison K.
단체저자명Princeton University. Chemical and Biological Engineering.
발행사항[S.l.]: Princeton University., 2018.
발행사항Ann Arbor: ProQuest Dissertations & Theses, 2018.
형태사항127 p.
기본자료 저록Dissertation Abstracts International 79-10B(E).
Dissertation Abstract International
ISBN9780438050563
학위논문주기Thesis (Ph.D.)--Princeton University, 2018.
일반주기 Source: Dissertation Abstracts International, Volume: 79-10(E), Section: B.
Adviser: Celeste M. Nelson.
요약It is expected that 1 in 3 people in the United States will develop cancer in their lifetime, and it remains the second leading cause of death worldwide. The research that drove most current cancer therapies focused primarily on the cancer cells
요약We found that increased stiffness induces multinucleation, regulated in part by signaling downstream of matrix metalloproteinase-3 (MMP 3). MMP3 is commonly upregulated in cancer and known to induce epithelial-mesenchymal transition (EMT), a pro
요약Following these findings, we investigated the specific mechanisms by which stiffness and EMT signaling induce multinucleation. We found that elevated levels of septin-6, a novel target of Snail, results in midbody persistence, abscission failure
요약Taken together, these data suggest that tissue stiffening during tumorigenesis synergizes with oncogenic signaling to promote genomic abnormalities that drive cancer progression, and provide the first evidence that mechanical stiffness of the mi
일반주제명Bioengineering.
Oncology.
언어영어
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