Improving the Efficacy of Allogeneic Cell Therapies of Cancer
Improving the Efficacy of Allogeneic Cell Therapies of Cancer
批准号:
10065285
负责人:
Feiyan Mo
金额:
$4.7万
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-08-01 至 2022-07-31
关键词:
AddressAdoptive Cell TransfersAdoptive TransferAffectAllogenicAntibodiesAutologousBlood CirculationCAR T cell therapyCD19 geneCancer PatientCell TherapyCellsClinicalClinical ResearchComplexDevelopmentEngineeringEvaluationGeneticGoalsHematologic NeoplasmsHematologyImmuneImmune EvasionImmunosuppressionImpairmentIndividualInflammationKnowledgeLiquid substanceLymphocyteMalignant NeoplasmsMediatingMediator of activation proteinModificationMolecularMyeloid-derived suppressor cellsNatural Killer CellsNeoplasm MetastasisNeuroblastomaOX40PatientsPeptidesPerformancePhasePre-Clinical ModelPrimary NeoplasmResearchResearch Project GrantsResistanceRestRiskSiteSolidSolid NeoplasmStudy modelsSurfaceT cell therapyT-LymphocyteTNFSF5 geneTherapeuticTreatment EfficacyTreatment outcomearmcancer therapycellular targetingchemokinechimeric antigen receptorchimeric antigen receptor T cellsclinical translationcostcytokineexhaustimprovedinflammatory milieuinhibitor/antagonistmacrophagemouse modelnext generationpost-doctoral trainingpreclinical studypreventreceptorresponsetumortumor growthtumor microenvironmenttumor-immune system interactions
中文摘要
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英文摘要
PROJECT SUMMARY
While chimeric antigen receptor (CAR) T-cells can be very effective in advanced hematological malignancies,
autologous products often have variable potency and require complex and expensive manufacturing, limiting
their scalability and accessibility. The long-term goal of this proposal is to develop a well-characterized, ‘off-
the-shelf’ (OTS) therapeutic T-cell platform using banked T-cells pre-manufactured from healthy donors, thus
offering immediate availability and high potency at a reduced cost. One major limitation of this approach is
potential immune rejection of infused OTS T-cells by host T- and NK-cells, which would impair persistence and
clinical benefit of the T-cell therapy. Therefore, my graduate dissertation project (Aim 1) focuses on engineering
OTS therapeutic T-cells to resist host immune rejection. I have developed the ‘first-in-class’ chimeric
alloimmune defense receptor (ADR) which enables allogeneic OTS CAR T-cells to defend themselves by
selectively eliminating activated host alloreactive lymphocytes while sparing other resting non-alloreactive cells.
T-cells co-expressing a 4-1BB-directed ADR and a CAR evade immune rejection and produce long-term anti-
tumor activity in mouse models of OTS CAR T-cell therapy for both liquid and solid tumors. We are now
optimizing the 4-1BB-specific ADR for clinical translation and will initiate a Phase I clinical study in our center. I
am also exploring other potential ADR targets, including OX40 and CD40L, to maximize the anti-rejection activity.
In addition to alloimmune rejection, activity of OTS T-cells in solid tumors can be inhibited by the
immunosuppressive tumor microenvironment (TME). Mounting evidence suggests that the inflammatory milieu
created by therapeutic T-cells may elicit reactive changes both locally (in the TME) and systemically (in
circulation) that further inhibit anti-tumor activity of therapeutic T-cells and possibly promote tumor growth and
metastasis. Examples include a surge of immunosuppressive M2-like macrophages in neuroblastoma patients
receiving GD2 CAR T-cells and poor responses to CD19 CAR T-cell therapy in patients with high circulating
myeloid-derived suppressor cells. In addition, preclinical studies indicate that treatment-induced inflammation
enhances pre-metastatic niche (PMN) formation and increases the risk of metastasis. Therefore, during my post-
doctoral training (Aim 2), I will first elucidate the reactive changes (both in TME and in circulation) caused by
therapeutic T-cells and identify cellular/molecular mediators of enhanced immunosuppression at the primary
tumor site. I will also investigate how T-cell therapies may affect PMN formation in solid tumors. I will then further
modify therapeutic T-cells to counteract these unwanted responses by arming them with secreted factors
(antibodies, peptide inhibitors) to block the responsible cytokines / chemokines, or by enabling them to selectively
eliminate inhibitory cellular subsets in the TME.
Successful completion of both Aims will ultimately improve the efficacy of OTS T-cell therapies of cancer.
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Improving the Efficacy of Allogeneic Cell Therapies of Cancer
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批准号:10620375
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项目类别:
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资助金额:$7.55万
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财政年份:2022
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负责人:Feiyan Mo
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依托单位:
Improving the Efficacy of Allogeneic Cell Therapies of Cancer
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批准号:10686219
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项目类别:
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资助金额:$7.78万
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财政年份:2022
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负责人:Feiyan Mo
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依托单位:
Improving the Efficacy of Allogeneic Cell Therapies of Cancer
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批准号:10226318
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项目类别:
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资助金额:$4.6万
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财政年份:2020
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负责人:Feiyan Mo
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依托单位: