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Profil bibliographique

Eliot Fletcher-Sananikone

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

26Publications signalées
4237Citations signalées
1Affiliations récentes

Les institutions déclarées

Les domaines associés

Telomeres, Telomerase, and SenescencePI3K/AKT/mTOR signaling in cancerGlioma Diagnosis and TreatmentMicroRNA in disease regulationMitochondrial Function and Pathology

Les publications récentes

Accès ouvert 2023 other OpenAlex

Data from PTEN Is a Major Tumor Suppressor in Pancreatic Ductal Adenocarcinoma and Regulates an NF-κB–Cytokine Network

Haoqiang Ying, Kutlu G. Elpek, Anant Vinjamoori, Stephanie M. Zimmerman et autres

Abstract Initiation of pancreatic ductal adenocarcinoma (PDAC) is driven by oncogenic KRAS mutation, and disease progression is associated with frequent loss of tumor suppressors. In this study, human PDAC genome analyses revealed frequent deletion of the PTEN gene as well as loss …

0 citations
Accès ouvert 2023 other OpenAlex

Data from PTEN Is a Major Tumor Suppressor in Pancreatic Ductal Adenocarcinoma and Regulates an NF-κB–Cytokine Network

Haoqiang Ying, Kutlu G. Elpek, Anant Vinjamoori, Stephanie M. Zimmerman et autres

Abstract Initiation of pancreatic ductal adenocarcinoma (PDAC) is driven by oncogenic KRAS mutation, and disease progression is associated with frequent loss of tumor suppressors. In this study, human PDAC genome analyses revealed frequent deletion of the PTEN gene as well as loss …

0 citations
Accès ouvert 2023 supplementary-materials OpenAlex

Supplementary Data from Radiation-Induced DNA Damage Cooperates with Heterozygosity of TP53 and PTEN to Generate High-Grade Gliomas

Pavlina Krasimirova Todorova, Eliot Fletcher-Sananikone, Bipasha Mukherjee, Rahul K. Kollipara et autres

Figure S1: Cre-mediated excision of floxed alleles and induction of double strand breaks in murine brains. Figure S2: DNA damage in primary astrocytes and murine brains induced by different radiation types. Figure S3: Histopathology and cell lineage markers in radiation-induced gliomas (RIG). …

0 citations
Accès ouvert 2023 other OpenAlex

Data from Elimination of Radiation-Induced Senescence in the Brain Tumor Microenvironment Attenuates Glioblastoma Recurrence

Eliot Fletcher-Sananikone, Suman Kanji, Nozomi Tomimatsu, Luis Fernando Macedo Di Cristofaro et autres

Abstract Glioblastomas (GBM) are routinely treated with ionizing radiation (IR) but inevitably recur and develop therapy resistance. During treatment, the tissue surrounding tumors is also irradiated. IR potently induces senescence, and senescent stromal cells can promote the growth of neighboring tumor cells …

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0 citations
Accès ouvert 2023 other OpenAlex

Data from Radiation-Induced DNA Damage Cooperates with Heterozygosity of TP53 and PTEN to Generate High-Grade Gliomas

Pavlina Krasimirova Todorova, Eliot Fletcher-Sananikone, Bipasha Mukherjee, Rahul K. Kollipara et autres

Abstract Glioblastomas are lethal brain tumors that are treated with conventional radiation (X-rays and gamma rays) or particle radiation (protons and carbon ions). Paradoxically, radiation is also a risk factor for GBM development, raising the possibility that radiotherapy of brain tumors could …

0 citations
Accès ouvert 2023 supplementary-materials OpenAlex

Supplementary Data from Radiation-Induced DNA Damage Cooperates with Heterozygosity of TP53 and PTEN to Generate High-Grade Gliomas

Pavlina Krasimirova Todorova, Eliot Fletcher-Sananikone, Bipasha Mukherjee, Rahul K. Kollipara et autres

Figure S1: Cre-mediated excision of floxed alleles and induction of double strand breaks in murine brains. Figure S2: DNA damage in primary astrocytes and murine brains induced by different radiation types. Figure S3: Histopathology and cell lineage markers in radiation-induced gliomas (RIG). …

0 citations
Accès ouvert 2023 other OpenAlex

Data from Elimination of Radiation-Induced Senescence in the Brain Tumor Microenvironment Attenuates Glioblastoma Recurrence

Eliot Fletcher-Sananikone, Suman Kanji, Nozomi Tomimatsu, Luis Fernando Macedo Di Cristofaro et autres

Abstract Glioblastomas (GBM) are routinely treated with ionizing radiation (IR) but inevitably recur and develop therapy resistance. During treatment, the tissue surrounding tumors is also irradiated. IR potently induces senescence, and senescent stromal cells can promote the growth of neighboring tumor cells …

0 citations

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