Nanosystems Biology Cancer Center
纳米系统生物学癌症中心
基本信息
- 批准号:9132733
- 负责人:
- 金额:$ 244.66万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2015
- 资助国家:美国
- 起止时间:2015-09-01 至 2020-07-31
- 项目状态:已结题
- 来源:
- 关键词:AddressAreaBiologicalBiological AssayBiologyBiopsyBlood - brain barrier anatomyCancer BiologyCancer CenterCancer PatientCancer Research ProjectCell CommunicationCellsChemistryClinicClinicalClinical OncologyCloningCollaborationsCombined Modality TherapyCommunitiesComprehensive Cancer CenterDataDevelopmentDiagnosticDisciplineDisease remissionDrug Delivery SystemsDrug TargetingEngineeringEnsureEpitopesEquilibriumExhibitsFacultyFundingGasesGenerationsGeneticGoalsHealthHumanImmuneImmune systemImmunologic MonitoringImmunotherapyIndividualInfusion proceduresInstitutionIntracranial NeoplasmsKineticsLabelLeadLesionLibrariesLigandsMagnetic Resonance ImagingMalignant NeoplasmsMalignant neoplasm of brainMentorsModelingMolecularMusNanotechnologyOncogenesOperative Surgical ProceduresPatientsPharmaceutical PreparationsPhasePhysiciansPoint MutationPopulationProtacProteinsProteolysisRadiationRecording of previous eventsRecordsResearchResearch PersonnelResistanceResolutionResourcesRunningScienceScientific Advances and AccomplishmentsScientistSorting - Cell MovementStructureT-Cell ReceptorT-LymphocyteTechnologyTestingTherapeuticTimeTraining and EducationTranslatingTranslationsTumor AntigensUltrasonographyUniversitiesbasecancer carecancer cellcancer immunotherapycancer therapycellular imagingchemotherapychimeric antigen receptorclinical carecombination cancer therapycombinatorialcontrast imagingdesigneffective therapyexomefightingfrontierimaging modalityimprovedin vitro Assayin vivoin vivo imagingindividual patientinhibitor/antagonistinventionmedical schoolsmelanomamicroorganismmutantnanomedicinenanoparticlenanosystemsnanotherapeuticnanotherapynanovesicleneoplastic cellnew combination therapiesnewsnoveloncologypatient populationphase III trialprofessorprogramsprotein metabolitepublic health relevanceresponsesenior facultysuccesstargeted treatmenttherapy designtooltumortumor microenvironment
项目摘要
DESCRIPTION (provided by applicant): We propose the NanoSystems Biology Cancer Center (NSBCC) as a collaboration between Caltech and the UCLA Geffen School of Medicine, to develop nanotechnologies for addressing challenges in combinatorial cancer therapies. Four scientific Projects are supported by two Core Resources and an Administrative structure designed to promote cross-university interactions at the frontiers of cancer biology, clinical oncology, and the basic and engineering sciences. By leveraging strong support from our respective institutions, the Jonsson Comprehensive Cancer Center, and commercial partners, we integrate world-class physical, biological and engineering sciences at Caltech with cutting edge cancer biology and cancer clinical care at UCLA. The NSBCC faculty include four clinical researchers, 5 assistant professors, and several senior researchers from both campuses, and is led by led by Jim Heath (Caltech) and co-led by Michael Phelps (UCLA). Heath and Phelps have track records of building leading cancer research programs that draw across disciplines, with effective translation into the clinic and marketplace. Our Projects balance discovery with translation. Two Projects involve nanotherapies, and two involve the development of nanotech tools for guiding the selection of combination both cancer immunotherapy and targeted therapy treatments. We focus on brain cancers and melanoma, which allows us to take advantage of momentum from the current funding cycle. However, we seek broadly applicable technologies. This holds especially for the case of immunotherapy, where the challenge is to bring the remarkable recent successes in the field (partly driven by our investigator's melanoma trials) to larger patient populations. In Proj. 1, we propose nanoparticle (NP) vehicles designed to deliver therapies and therapy combinations to fully engage a tumor that lies across an intact blood brain barrier (BBB). This project builds upon initial promising results, and from an NSBCC history of delivering NP therapeutics into Phase I and Phase II (and soon Phase III) trials. Proj. 1 takes guidance (as well as a novel panel of human-derived intracranial tumor models) from Proj. 4, where we propose nanotech and microtech tools to quantitatively assay for >200 proteins and metabolites from single cancer cells separated from a GBM tumor, with the goal of understanding the dynamical responses of those cells to targeted monotherapies. Those responses invariably lead to some form of resistance, and we seek to decode those responses to identify effective therapy combinations. For Project 2 we propose to integrate 3 Caltech inventions. The first are epitope targeted PCC Agents (Heath), which are synthetic ligands that can be developed to target oncoproteins containing single activating point mutations. We target the oncoproteins AktE17K and KrasG12D. KrasG12D is the most dominant oncoprotein in human cancer, and also considered undruggable. These targeting ligands are combined with proteolysis-targeting chimeric molecules (protacs; Deshaies) that exploit the natural cellular machinery to label a protein for destruction. The PCC Agent-protacs are delivered into cells by adapting NP chemistries that were first developed and clinically translated by Davis. Targeting just the mutant protein can open up the therapeutic window for targeted inhibitors, thus enabling new therapy combinations. In Project 3, we turn to cancer immunotherapy by evolving our powerful suite of immune monitoring tools into platforms for understanding immune cell/tumor cell interactions within the tumor microenvironment. In particular, guided by exome analysis of the tumor, we construct nanotechnology-based libraries for a ~60-plex sorting of tumor neoantigen specific T cell populations that can be applied directly to fresh biopsied tumors. This helps identify those T cells that have clonally expande within the tumor, and permits us to identify the tumor antigen, the T Cell receptor α/β sequence (for cloning), and the functional activity of the T cell. This technology is applied a set of matched patient tumor biopsies from recent immunotherapy trials run by Project 3 PI Ribas, and should provide guidance for treating those patient groups that currently exhibit transient, positive responses to PD-1 blockade, as well as helping to frame treatment ideas for patients that do not exhibit even transient responses. In Project 3, we also propose a novel in vivo imaging nanotechnology for the kinetic tracking of T cell infusions in tumor models. The technology draws from the genetic ability of certain microorganisms to generate gas- filled nanovesicles, and yields an image contrast mechanism that will be adapted to TCR- or chimeric antigen receptor (CAR)-engineered T cells for imaging T cell infiltrates into mouse tumor models, using the high resolution imaging modalities of ultrasound or hyperpolarized 129Xe MRI. This provides us with the ability to test, in vivo, hypotheses generated from the in vitro assays. For all projects, significant preliminary data is provided.
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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James R. Heath其他文献
Correction: Rare predicted loss-of-function variants of type I IFN immunity genes are associated with life-threatening COVID-19
- DOI:
10.1186/s13073-023-01278-0 - 发表时间:
2024-01-06 - 期刊:
- 影响因子:11.200
- 作者:
Daniela Matuozzo;Estelle Talouarn;Astrid Marchal;Peng Zhang;Jeremy Manry;Yoann Seeleuthner;Yu Zhang;Alexandre Bolze;Matthieu Chaldebas;Baptiste Milisavljevic;Adrian Gervais;Paul Bastard;Takaki Asano;Lucy Bizien;Federica Barzaghi;Hassan Abolhassani;Ahmad Abou Tayoun;Alessandro Aiuti;Ilad Alavi Darazam;Luis M. Allende;Rebeca Alonso-Arias;Andrés Augusto Arias;Gokhan Aytekin;Peter Bergman;Simone Bondesan;Yenan T. Bryceson;Ingrid G. Bustos;Oscar Cabrera-Marante;Sheila Carcel;Paola Carrera;Giorgio Casari;Khalil Chaïbi;Roger Colobran;Antonio Condino-Neto;Laura E. Covill;Ottavia M. Delmonte;Loubna El Zein;Carlos Flores;Peter K. Gregersen;Marta Gut;Filomeen Haerynck;Rabih Halwani;Selda Hancerli;Lennart Hammarström;Nevin Hatipoğlu;Adem Karbuz;Sevgi Keles;Christèle Kyheng;Rafael Leon-Lopez;Jose Luis Franco;Davood Mansouri;Javier Martinez-Picado;Ozge Metin Akcan;Isabelle Migeotte;Pierre-Emmanuel Morange;Guillaume Morelle;Andrea Martin-Nalda;Giuseppe Novelli;Antonio Novelli;Tayfun Ozcelik;Figen Palabiyik;Qiang Pan-Hammarström;Rebeca Pérez de Diego;Laura Planas-Serra;Daniel E. Pleguezuelo;Carolina Prando;Aurora Pujol;Luis Felipe Reyes;Jacques G. Rivière;Carlos Rodriguez-Gallego;Julian Rojas;Patrizia Rovere-Querini;Agatha Schlüter;Mohammad Shahrooei;Ali Sobh;Pere Soler-Palacin;Yacine Tandjaoui-Lambiotte;Imran Tipu;Cristina Tresoldi;Jesus Troya;Diederik van de Beek;Mayana Zatz;Pawel Zawadzki;Saleh Zaid Al-Muhsen;Mohammed Faraj Alosaimi;Fahad M. Alsohime;Hagit Baris-Feldman;Manish J. Butte;Stefan N. Constantinescu;Megan A. Cooper;Clifton L. Dalgard;Jacques Fellay;James R. Heath;Yu-Lung Lau;Richard P. Lifton;Tom Maniatis;Trine H. Mogensen;Horst von Bernuth;Alban Lermine;Michel Vidaud;Anne Boland;Jean-François Deleuze;Robert Nussbaum;Amanda Kahn-Kirby;France Mentre;Sarah Tubiana;Guy Gorochov;Florence Tubach;Pierre Hausfater;Isabelle Meyts;Shen-Ying Zhang;Anne Puel;Luigi D. Notarangelo;Stephanie Boisson-Dupuis;Helen C. Su;Bertrand Boisson;Emmanuelle Jouanguy;Jean-Laurent Casanova;Qian Zhang;Laurent Abel;Aurélie Cobat - 通讯作者:
Aurélie Cobat
C60's smallest cousin
C60 的最小“亲戚”
- DOI:
10.1038/31579 - 发表时间:
1998-06-25 - 期刊:
- 影响因子:48.500
- 作者:
James R. Heath - 通讯作者:
James R. Heath
Protein Catalyzed Capture (PCC) Agents for Antigen Targeting.
用于抗原靶向的蛋白质催化捕获 (PCC) 试剂。
- DOI:
- 发表时间:
2022 - 期刊:
- 影响因子:0
- 作者:
M. Idso;B. Lai;Heather D Agnew;James R. Heath - 通讯作者:
James R. Heath
Planar Patch-Clamp Electrodes for Single Cell and Neural Network Studies
- DOI:
10.1016/j.bpj.2009.12.3287 - 发表时间:
2010-01-01 - 期刊:
- 影响因子:
- 作者:
John M. Nagarah;Daniel A. Wagenaar;James R. Heath - 通讯作者:
James R. Heath
Stereochemical engineering of a peptide macrocycle allosteric inhibitor of phospho-Akt2 controls cell penetration by fine-tuning macrocycle-cell membrane interactions
磷酸 Akt2 肽大环变构抑制剂的立体化学工程通过微调大环 - 细胞膜相互作用来控制细胞渗透
- DOI:
10.26434/chemrxiv-2021-kldh7 - 发表时间:
2021 - 期刊:
- 影响因子:5.9
- 作者:
Arundhati Nag;A. Mafi;Samir R Das;Mary Beth Yu;Belen Alvarez;W. Goddard;James R. Heath - 通讯作者:
James R. Heath
James R. Heath的其他文献
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{{ truncateString('James R. Heath', 18)}}的其他基金
Spatiotemporal Tumor Analytics for Guiding Sequential Targeted-Inhibitor: Immunotherapy Combinations (ST-Analytics)
用于指导序贯靶向抑制剂的时空肿瘤分析:免疫治疗组合(ST-Analytics)
- 批准号:
10708901 - 财政年份:2022
- 资助金额:
$ 244.66万 - 项目类别:
PROJECT 1: TIME-Based Spatiotemporal Cancer Immunograms Predictive for Immunotherapy-Targeted Therapy Sequential Combinations
项目 1:基于时间的时空癌症免疫图预测免疫治疗靶向治疗顺序组合
- 批准号:
10907268 - 财政年份:2022
- 资助金额:
$ 244.66万 - 项目类别:
Spatiotemporal Tumor Analytics for Guiding Sequential Targeted-Inhibitor: Immunotherapy Combinations (ST-Analytics)
用于指导序贯靶向抑制剂的时空肿瘤分析:免疫治疗组合(ST-Analytics)
- 批准号:
10526101 - 财政年份:2022
- 资助金额:
$ 244.66万 - 项目类别:
PROJECT 1: TIME-Based Spatiotemporal Cancer Immunograms Predictive for Immunotherapy-Targeted Therapy Sequential Combinations
项目 1:基于时间的时空癌症免疫图预测免疫治疗靶向治疗顺序组合
- 批准号:
10526103 - 财政年份:2022
- 资助金额:
$ 244.66万 - 项目类别:
PROJECT 1: TIME-Based Spatiotemporal Cancer Immunograms Predictive for Immunotherapy-Targeted Therapy Sequential Combinations
项目 1:基于时间的时空癌症免疫图预测免疫治疗靶向治疗顺序组合
- 批准号:
10708924 - 财政年份:2022
- 资助金额:
$ 244.66万 - 项目类别:
Data-driven Patient-Specific Agent Based Models of Metastatic Melanoma for Immunotherapy Response Prediction
用于免疫治疗反应预测的数据驱动的基于患者特异性药物的转移性黑色素瘤模型
- 批准号:
10831325 - 财政年份:2022
- 资助金额:
$ 244.66万 - 项目类别:
Nano and biomolecular engineered technologies for neoantigen-specific T cell capture and characterization
用于新抗原特异性 T 细胞捕获和表征的纳米和生物分子工程技术
- 批准号:
10297588 - 财政年份:2021
- 资助金额:
$ 244.66万 - 项目类别:
Nano and biomolecular engineered technologies for neoantigen-specific T cell capture and characterization
用于新抗原特异性 T 细胞捕获和表征的纳米和生物分子工程技术
- 批准号:
10489832 - 财政年份:2021
- 资助金额:
$ 244.66万 - 项目类别:
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