The Metabolic Regulation of Melanoma Metastasis
The Metabolic Regulation of Melanoma Metastasis
批准号:
10241942
负责人:
SEAN J MORRISON
金额:
$43.88万
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-09-05 至 2024-08-31
关键词:
AddressBiologicalBiological AssayBiological ModelsBuffersCause of DeathCellsCitric Acid CycleClustered Regularly Interspaced Short Palindromic RepeatsComplexDependenceDistantDistant MetastasisEnzymesFolic AcidGenerationsGenesIsotopesLactate TransporterMalignant NeoplasmsMelanoma CellMembrane PotentialsMetabolicMetabolic PathwayMetabolismMitochondriaMitochondrial DNAMusNADPNatural regenerationNeoplasm MetastasisOrganoidsOxidative StressPathway interactionsPatientsPentosephosphate PathwayProcessProliferatingPropertyReactive Oxygen SpeciesRecurrenceRegulationResistanceSideTestingcancer celldensityexperiencemelanomamigrationpatient derived xenograft modelpreventtumortumor metabolismuptake
中文摘要
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英文摘要
ABSTRACT
Most cancer deaths are caused by distant metastasis. Yet the mechanisms that regulate distant metastasis are
poorly understood. Metastasis is a very inefficient process in which few disseminated cancer cells survive, and
even fewer proliferate, but it is not known why. We developed a patient-derived xenograft (PDX) assay in
which melanomas engraft very efficiently and spontaneously metastasize. Using this assay, we discovered
intrinsic differences in metastatic potential among melanomas from different patients. Some stage III
melanomas are “efficient metastasizers” that spontaneously form distant metastases in patients and in NSG
mice while others are “inefficient metastasizers” that do not form distant macrometastases in patients or in
NSG mice under the same experimental conditions. Using this assay, we discovered that melanoma cells
experience a spike in reactive oxygen species (ROS) during metastasis and that distant metastasis is limited
by oxidative stress. Successfully metastasizing cells undergo reversible metabolic changes during metastasis
that increase their capacity to withstand oxidative stress, including increased folate pathway dependence.
However, the mechanisms that confer differences in metastatic potential upon melanomas from different
patients have not yet been identified. We hypothesize that efficiently and inefficiently metastasizing melanomas
have intrinsic metabolic differences that reduce oxidative stress in efficient metastasizers. One impediment to
testing this hypothesis is that melanomas from patients grow poorly at clonal density in known culture
conditions, preventing certain approaches for studying cancer metabolism and the use of CRISPR gene editing
(because single cell-derived clones could not be screened or expanded). We spent years developing a culture
medium in which single melanoma cells from patients form tumor organoids (PDOs). This capability raises the
general question of whether metabolism and oxidative stress resistance are regulated similarly in PDXs and in
PDOs. To address this question, we will compare, side-by-side, the biological properties and metabolic
regulation of efficient and inefficient metastasizers in PDXs and PDOs. We will test if efficiently metastasizing
melanomas have lower ROS levels or markers of oxidative stress, or increased use of the folate or pentose
phosphate pathways, as compared to inefficient metastasizers, and whether this promotes metastasis in PDXs
or migration/invasion in PDOs. We will also test if MCT1, a lactate transporter, promotes metastasis and
whether efficient metastasizers reduce oxidative stress partly through lactate exchange. Finally, we will test if
there are intrinsic differences in mitochondrial function between efficient and inefficient metastasizers that
reduce ROS generation. By comparing the biological properties and metabolic regulation of each melanoma in
PDX and PDO assays, we will assess the strengths and weaknesses of PDX and PDO assays for studying
cancer metabolism and biological differences among patients. These results have the potential to identify new
mechanisms that regulate metastasis, new aspects of cancer metabolism, and strategies to block progression.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Cancer Biology Research Test-Bed Unit 2: Effects of cell-intrinsic and cell-extrinsic variations in lipid metabolism on metastasis patterns
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批准号:10374653
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项目类别:
-
资助金额:$33.77万
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财政年份:2021
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负责人:SEAN J MORRISON
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依托单位:
Cancer Biology Research Test-Bed Unit 2: Effects of cell-intrinsic and cell-extrinsic variations in lipid metabolism on metastasis patterns
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批准号:10491356
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项目类别:
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资助金额:$30.7万
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财政年份:2021
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负责人:SEAN J MORRISON
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依托单位:
Cancer Biology Research Test-Bed Unit 2: Effects of cell-intrinsic and cell-extrinsic variations in lipid metabolism on metastasis patterns
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批准号:10684866
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项目类别:
-
资助金额:$29.22万
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财政年份:2021
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负责人:SEAN J MORRISON
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依托单位:
The Metabolic Regulation of Hematopoietic Stem Cell Function
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批准号:10560625
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项目类别:
-
资助金额:$36.45万
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财政年份:2019
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负责人:SEAN J MORRISON
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依托单位:
The Metabolic Regulation of Hematopoietic Stem Cell Function
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批准号:10343751
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项目类别:
-
资助金额:$36.45万
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财政年份:2019
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负责人:SEAN J MORRISON
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依托单位:
The Metabolic Regulation of Melanoma Metastasis
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批准号:10469624
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项目类别:
-
资助金额:$84.06万
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财政年份:2019
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负责人:SEAN J MORRISON
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依托单位:
The Metabolic Regulation of Melanoma Metastasis
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批准号:10676817
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项目类别:
-
资助金额:$85.77万
-
财政年份:2019
-
负责人:SEAN J MORRISON
-
依托单位:
The Metabolic Regulation of Hematopoietic Stem Cell Function
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批准号:9914262
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项目类别:
-
资助金额:$36.45万
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财政年份:2019
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负责人:SEAN J MORRISON
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依托单位:
The regulation of protein synthesis in stem cells
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批准号:8997792
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项目类别:
-
资助金额:$6.77万
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财政年份:2015
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负责人:SEAN J MORRISON
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依托单位:
The Regulation of Stem Cell Aging
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批准号:8660175
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项目类别:
-
资助金额:$32.6万
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财政年份:2014
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负责人:SEAN J MORRISON
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依托单位:
The Regulation of Stem Cell Aging
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批准号:9295902
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项目类别:
-
资助金额:$32.6万
-
财政年份:2014
-
负责人:SEAN J MORRISON
-
依托单位:
The regulation of protein synthesis in stem cells
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批准号:8613339
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项目类别:
-
资助金额:$27.67万
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财政年份:2014
-
负责人:SEAN J MORRISON
-
依托单位:
The Regulation of Stem Cell Aging
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批准号:9107773
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项目类别:
-
资助金额:$32.6万
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财政年份:2014
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负责人:SEAN J MORRISON
-
依托单位:
The Regulation of Stem Cell Aging
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批准号:8887279
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项目类别:
-
资助金额:$31.62万
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财政年份:2014
-
负责人:SEAN J MORRISON
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依托单位:
Genetic analysis of stem cell maintenance in vivo
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批准号:7755286
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项目类别:
-
资助金额:$37.26万
-
财政年份:2009
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负责人:SEAN J MORRISON
-
依托单位:
Human embryonic stem cell-derived neural crest stem cells and Hirschsprung disea
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批准号:7925824
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项目类别:
-
资助金额:$37.75万
-
财政年份:2009
-
负责人:SEAN J MORRISON
-
依托单位:
Genetic analysis of stem cell maintenance in vivo
-
批准号:7921521
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项目类别:
-
资助金额:$37.26万
-
财政年份:2009
-
负责人:SEAN J MORRISON
-
依托单位:
Genetic analysis of stem cell maintenance in vivo
-
批准号:8123355
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项目类别:
-
资助金额:$37.26万
-
财政年份:2009
-
负责人:SEAN J MORRISON
-
依托单位:
Human embryonic stem cell-derived neural crest stem cells and Hirschsprung disea
-
批准号:7631574
-
项目类别:
-
资助金额:$36.65万
-
财政年份:2009
-
负责人:SEAN J MORRISON
-
依托单位:
Genetic analysis of stem cell maintenance in vivo
-
批准号:8309054
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项目类别:
-
资助金额:$38.9万
-
财政年份:2009
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负责人:SEAN J MORRISON
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依托单位:
海外基金