Examining Mitochondria Dysfunction and Oxidative Stress in Senescence
Examining Mitochondria Dysfunction and Oxidative Stress in Senescence
批准号:
10327441
负责人:
Bryan D Ngo
金额:
$8.64万
依托单位国家:
美国
项目类别:
财政年份:
2021
资助国家:
美国
项目状态:
未结题
起止时间:
2021-04-01 至 2025-03-31
关键词:
AddressBehaviorBreastCancer EtiologyCancer ModelCancer cell lineCellsCessation of lifeChemicalsChromosomal InstabilityChromosome SegregationChromosome StructuresChromosomesClinicalDNADevelopmentDiseaseDisseminated Malignant NeoplasmDistantEvolutionExhibitsFoundationsGene DosageGenesGeneticGenetically Engineered MouseGenomeGenomic InstabilityGenomicsHeterogeneityHumanImmuneImmunologyInflammationInflammatoryInflammatory ResponseInvestigationLifeLungMDA MB 231Malignant NeoplasmsMalignant neoplasm of lungMediatingMitosisModelingMutationNatural ImmunityNeoplasm MetastasisOrganOxidative StressPathway interactionsPatientsPhenotypePopulationPositioning AttributePostdoctoral FellowPrimary NeoplasmProcessResearchResearch PersonnelRoleRunningShapesSignal TransductionSiteStimulator of Interferon GenesStromal NeoplasmTestingTherapeuticTrainingWorkadvanced diseasebasecancer cellcancer therapycell typeeffective therapyfitnessgenetic manipulationimprovedinsightmetastatic processmitochondrial dysfunctionmortalitymouse geneticsmouse modelneoplastic cellnew therapeutic targetnovelnovel therapeuticspalliationpost-doctoral trainingpreventpublic health relevanceresponsesenescencesensorsingle-cell RNA sequencingskillsstemtherapeutic targettumortumor growthtumor heterogeneitytumor microenvironmenttumor progressiontumorigenesis
中文摘要
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英文摘要
PROJECT SUMMARY/ABSTRACT
Cancer metastasis is responsible for 90% of cancer-related mortality world-wide.[1] A widely-held hypothesis is
that during cancer progression, heterogeneous subclonal populations emerge that not only drive tumor growth,
but also enable cancer cells to metastasize to distant organs.[2] Current dogma suggests that heterogeneity
stems from the ability of cancer cells to continuously alter their genome in a process known as genomic
instability.[3] However, sequencing efforts have revealed that the genetics of metastases generally reflect that
of the primary tumor.[4-6] This suggests that other mechanisms may drive cancer metastasis, such as
chromosomal instability (CIN).
CIN is a hallmark of cancer that results from ongoing errors in chromosome segregation during mitosis. CIN
generates copy number alterations encompassing entire chromosomes (numerical CIN) and subchromosomal
rearrangements (structural CIN) that promote tumor heterogeneity and accelerate tumor evolution. Thus, CIN is
a powerful mechanism to rapidly shape the phenotypic landscape of tumor cell populations. However, whether
CIN is a causal driver or is a mere bystander in cancer metastasis has been a matter of conjecture for
decades.
Until recently, addressing the role of CIN in metastasis has been an experimental technical challenge.
Capitalizing on my recent ability to genetically manipulate chromosome segregation error rates, I propose to
investigate the cell-autonomous and non-cell autonomous mechanisms of CIN in metastasis. The
proposed doctoral training work (Aim 1) will investigate the fundamental relationship between CIN and the
behavior of metastatic cancers. To date, my work revealed that in addition to fueling karyotypic heterogeneity,
CIN drives metastasis through tumor-cell autonomous activation of that the cGAS-STING cytosolic DNA sensing
pathway (Aim 1).[7] Over the next two years, I will determine whether targeting CIN-driven or CIN-
dependent pathway such as cGAS-STING, can be used as a therapeutic strategy to limit metastatic
spread and prolong patient survival.
For my postdoctoral research (Aim 2), I plan to study how innate and adaptive immune cell populations
within the tumor microenvironment respond to CIN using a novel mouse model of lung cancer. In
summary, my research provides a novel paradigm for how CIN contributes to innate immunity signaling in cancer
metastasis. My post-doctoral research will establish new models of CIN that provide insight into tumor-stromal
interactions, and illuminate potential therapeutic targets. In addition, I have also proposed a comprehensive
training plan that will prepare me for my transition to a post-doctoral research position.
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Examining Mitochondria Dysfunction and Oxidative Stress in Senescence
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批准号:10390416
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项目类别:
-
资助金额:$8.88万
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财政年份:2021
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负责人:Bryan D Ngo
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依托单位:
国内基金
海外基金
greenwashing behavior in China:Basedon an integrated view of reconfiguration of environmental authority and decoupling logic
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批准号:--
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项目类别:外国学者研究基金项目
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资助金额:--
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批准年份:2024
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负责人:YU BYUNGJUN
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依托单位:
Incentive and governance schenism study of corporate green washing behavior in China: Based on an integiated view of econfiguration of environmental authority and decoupling logic
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批准号:--
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项目类别:外国学者研究基金项目
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资助金额:--
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批准年份:2024
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负责人:YU BYUNGJUN
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依托单位: