Non-Invasive Monitoring of CRISPR/Cas-Edited Chimeric Antigen Receptor T (CAR-T) Cells with Reporter Gene-Based Magnetic Resonance Imaging and Positron Emission Tomography
Non-Invasive Monitoring of CRISPR/Cas-Edited Chimeric Antigen Receptor T (CAR-T) Cells with Reporter Gene-Based Magnetic Resonance Imaging and Positron Emission Tomography
批准号:
10470382
负责人:
John Andrew Ronald
金额:
$32.4万
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 2024-07-31
关键词:
AddressAnimal ModelB lymphoid malignancyB-Cell LeukemiaBiodistributionBiological AssayBioluminescenceCAR T cell therapyCD19 AntigensCD19 geneCRISPR imagingCell TherapyCellsCellular immunotherapyClinicalClinical TrialsClustered Regularly Interspaced Short Palindromic RepeatsDNADetectionDevelopmentEffectivenessEngineeringEventFutureGadoliniumGenesGenomicsGoalsHealthcare SystemsHumanHuman EngineeringImageImaging DeviceImaging technologyIn VitroIonizing radiationKnock-inLaboratoriesLifeLiverLocationMagnetic Resonance ImagingMolecularMolecular TargetMonitorMusNatureOATP TransportersOrganic Anion TransportersPatient-Focused OutcomesPatientsPentetic AcidPhasePositron-Emission TomographyPre-Clinical ModelProteinsRelapseReporterReporter GenesReportingResearchResearch PersonnelSLC5A5 geneSafetyScientistSystemT-Cell ReceptorT-LymphocyteTechnologyTimeToxic effectTransgenesTranslationsTreatment EfficacyViralVisualizationWorkbasebioluminescence imagingcancer immunotherapycellular targetingchimeric antigen receptorchimeric antigen receptor T cellsclinical imagingclinically relevantcostdesigndetection sensitivityexperiencegenome editinghuman modelimaging modalityimmune imagingimprovedin vivoin vivo bioluminescence imagingindividual patientlongitudinal positron emission tomographymolecular imagingmouse modelmultimodalitynext generationnon-invasive monitornovelnucleasepolypeptidepre-clinicalprecision medicinepreclinical imagingrepairedside effecttherapeutic effectivenesstherapeutic genome editingtooltreatment responsetumortumorigenicvector
中文摘要
项目总结/文摘
英文摘要
PROJECT SUMMARY/ABSTRACT
Clustered regularly interspaced short palindromic repeats/CRISPR associated nuclease (CRISPR/Cas) genome
editing has enabled scientists to design and build next-generation cell-based therapies. T cell-based
immunotherapies are particularly suitable CRISPR/Cas tools as after editing they can be expanded to sufficient
numbers for use in humans. Recent efforts have shown that precise CRISPR/Cas knock-in at the T cell receptor
a constant (TRAC) locus with a chimeric antigen receptor (CAR) targeted towards the B cell antigen CD19 is
more effective over randomly integrating viral-based engineered CAR-T cells in mouse models of human B cell
leukemia. Therefore, while CRISPR/Cas cellular therapies may improve patient outcomes, like traditional CAR-
T cell therapy, it is not known if every patient will respond equivalently or if some patients will be prone to off-
target, life-threatening side effects. What is needed are translationally-relevant technologies that can monitor the
fate of CRISPR/Cas-edited CAR-T cells in vivo to provide the information needed to understand patient treatment
response/non-response, relapse and/or toxicity. The long-term objective of this application is to develop
molecular imaging reporter gene technologies for non-invasive visualization of TRAC-targeted CAR-T cells in
patients. Specifically, we propose to develop novel translationally-relevant magnetic resonance imaging (MRI)
and positron emission tomography (PET) reporter gene assays to noninvasively track the fate of TRAC-edited
CAR-T cells over time and to validate these technologies in preclinical mouse models. The specific aims of this
new application are: to compare minicircle and non-integrating lentiviral CRISPR/Cas donor vectors for their
ability to efficiently edit T cells at the TRAC loci with a CD19-targeted CAR (Aim 1.1); to develop donor vectors
co-encoding our CAR, a bioluminescence reporter gene, and either the human MRI reporter organic anion
transporter polypeptide 1B3 (OATP1B3) or the PET reporter sodium iodide symporter (NIS), and to validate
TRAC-editing and functional reporter expression in vitro (Aim 1.2); to evaluate the sensitivity of OATP1B3-based
MRI and NIS-based PET for visualizing CAR-T cells in vivo, as well as perform longitudinal PET and MRI of
CAR-T cells in mouse models of B cell malignancies (Aim 2.1); and finally, to develop a dual-reporter
translationally-relevant CRISPR/Cas system and evaluate the ability to noninvasively monitor CAR-T cells in
mice with both PET and MRI (Aim 2.2). The significance of this work will be to provide powerful cell tracking
technologies to allow the fate of CRISPR/Cas-edited CAR-T cells, or other CRISPR/Cas-edited cellular
therapies, to be monitored noninvasively in preclinical models and patients. This information will allow more
precise monitoring of these transformative therapies in individual patients to better assess safety as well as to
relate cell biodistribution to patient outcomes.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1007/s11307-021-01697-8
发表时间:
2022-04
期刊:
Molecular imaging and biology
影响因子:
3.1
作者:
[]
通讯作者:
Non-Invasive Monitoring of CRISPR/Cas-Edited Chimeric Antigen Receptor T (CAR-T) Cells with Reporter Gene-Based Magnetic Resonance Imaging and Positron Emission Tomography
-
批准号:10447329
-
项目类别:
-
资助金额:$32.4万
-
财政年份:2019
-
负责人:John Andrew Ronald
-
依托单位:
Non-Invasive Monitoring of CRISPR/Cas-Edited Chimeric Antigen Receptor T (CAR-T) Cells with Reporter Gene-Based Magnetic Resonance Imaging and Positron Emission Tomography
-
批准号:9810816
-
项目类别:
-
资助金额:$16.07万
-
财政年份:2019
-
负责人:John Andrew Ronald
-
依托单位:
海外基金