Optimizing RNA nanoparticles size and shape for enhancing cancer targeting and treatment
Optimizing RNA nanoparticles size and shape for enhancing cancer targeting and treatment
批准号:
9763480
负责人:
WILLIAM E. CARSON
金额:
$54.32万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-09-26 至 2021-08-31
关键词:
AddressAnimalsAntibodiesAttributes of ChemicalsB-LymphocytesBehaviorBindingBiodistributionBiological SciencesBiotechnologyCatalytic RNACaveolinsCellsChemicalsClathrinClinicClinical TrialsDataDendritic CellsDrug KineticsEndocytosisEndosomesExcretory functionExhibitsGene SilencingGenerationsGoalsGuidelinesHourImmuneImmune responseImmune systemImmunotherapyIn VitroInjectionsInterferonsInvestigational DrugsInvestigational New Drug ApplicationLeadLigandsLiverLiver neoplasmsMalignant NeoplasmsMediatingMembrane MicrodomainsMetabolismMethodsMicroRNAsModificationMolecularMusNanotechnologyNatureNeoplasm MetastasisNucleic AcidsOrganPathway interactionsPhagocytosisPharmaceutical PreparationsPharmacodynamicsPharmacologyPharmacotherapyPinocytosisRNARNA SequencesReportingResearchSafetyShapesSmall Interfering RNAT-LymphocyteTherapeuticThermodynamicsTissuesToxic effectTreatment EfficacyValidationXenograft procedureabsorptionaptamerbasecancer immunotherapycancer therapyclinical translationclinically relevantcytokinefunctional groupimmunoreactionimprovedin vivolarge scale productionlead candidatemacrophagemouse modelnanonanoparticlenanotechnology platformpharmacokinetics and pharmacodynamicspre-clinicalpreclinical safetypreclinical studyscaffoldself assemblyside effectstoichiometrysubcutaneoustraffickingtumoruptake
中文摘要
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英文摘要
PROJECT SUMMARY
RNA nanotechnology has progressed rapidly during the past several years. This nanotechnology includes
the integration of multiple functional modules into one nanoparticle, of which the scaffolds, ligands,
therapeutics, and regulators can be composed mainly or exclusively of RNA. We have constructed RNA
nanoparticles of diverse size, shape, and stoichiometry displaying high chemical and thermodynamic stability
and demonstrated their ability to harbor different functional groups, such as siRNA, miRNA, ribozyme, drug,
and cancer targeting RNA aptamer. All functional modules retain their authentic folding and independent
functionalities for specific cell binding, gene silencing, and cancer targeting in vivo. Upon systemic injection in
tumor bearing mice, RNA nanoparticles bind to xenograft and metastatic tumors specifically and strongly with
little to no accumulation in healthy vital organs and tissues 3-4 hours post-administration. The RNA
nanoparticles are non-toxic and display favorable biodistribution and pharmacokinetic profiles.
Our long-term goal is to promote RNA nanoparticles as a new generation of drug for the treatment of
cancers in the clinic. The short-term goal of this project is to characterize the behavior of RNA nanoparticles in
vitro and in vivo, with an aim to improve the efficiency for specific cell targeting, internalization and intracellular
trafficking, favorable biodistribution without entrapment in liver, endosome escape, and tumor regression.
These studies are based on three central hypotheses: (1) intracellular trafficking pathways and endosome
escape are critical for effective cancer therapy; (2) biodistribution and pharmacological profiles of RNA
nanoparticles are shape and size dependent; and, (3) immune responses elicited by RNA nanoparticles are
highly dependent on RNA sequence, chemical modifications, size, shape, and stoichiometry. To address our
goals, we will (1) systemically dissect the intracellular pathways taken by RNA nanoparticles and enhance
their endosome escape capabilities; (2) inspect the pharmacokinetics (PK); pharmacodynamics (PD); and
biodistribution of RNA nanoparticles with the goal of enhancing cancer targeting with minimal accumulation in
healthy organs; and, (3) evaluate the immune responses of RNA nanoparticles to minimize non-specific side
effects, as well as develop methods to stimulate the immune system by incorporating immuno-stimulatory
modules to RNA nanoparticles for cancer immunotherapy. Upon completion of these pre-clinical studies, we
will have identified several RNA nanoparticles with optimized shape, size, and stoichiometry displaying
favorable safety profiles and high therapeutic efficacy to comply with FDA Investigational New Drug guidelines
for initiating clinical trials.
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财政年份:2008
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批准号:10224104
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Therapy of Melanoma with Bortezomib and Interferon-alpha
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资助金额:$0.45万
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财政年份:2006
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Therapy of Melanoma with Bortezomib and Interferon-alpha
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批准号:7056407
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资助金额:$26.54万
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财政年份:2006
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依托单位:
Therapy of Melanoma with Bortezomib and Interferon-alpha
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Modulation of Tumor CEA Levels for an Anti-CEA Vaccine
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依托单位:
PHASE I TRIAL OF INTERLEUKIN-12 IN COMBINATION WITH PACLITAXEL PLUS HERCEPTIN
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依托单位:
Phase I Trial of IL-12 with Paclitaxel Plus Herceptin
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依托单位:
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依托单位:
A program of immune-based treatments for cancer
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批准号:7385294
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项目类别:
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资助金额:$17.83万
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财政年份:2002
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负责人:WILLIAM E. CARSON
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依托单位:
A program of immune-based treatments for cancer
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项目类别:
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依托单位:
ANTIBODY THERAPY FOR BREAST CANCER: INVESTIGATION OF IMMUNE MODULATION WITH IL-21
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负责人:WILLIAM E. CARSON
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依托单位:
Tumor Immunology
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负责人:WILLIAM E. CARSON
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Tumor Immunology
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海外基金