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Metabolic Engineering of Cancer for Immunotargeting

Metabolic Engineering of Cancer for Immunotargeting
用于免疫靶向的癌症代谢工程
批准号:
7563217
负责人:
Zhongwu Guo
金额:
$21.57万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-04-01 至 2012-12-31
关键词:
AbbreviationsAcetylgalactosamineActive ImmunizationAnimalsAntibodiesAntigen TargetingAntigen-Presenting CellsAntigensAreaBindingBiological AssayBovine Serum AlbuminBreast MelanomaBromidesCD4 Positive T LymphocytesCancer Immunology ScienceCancer PatientCancer Vaccine Related DevelopmentCancer VaccinesCarbohydratesCarrier ProteinsCell surfaceCellsClinical TrialsColon CarcinomaComplexConjugate VaccinesCoupledCouplingCytotoxic T-LymphocytesD-mannosamineDataDendritic CellsDevelopmentDicyclohexylcarbodiimideEngineeringEnzyme-Linked Immunosorbent AssayEnzymesFibronectinsFlow CytometryFluoresceinFluorescein-5-isothiocyanateFluoresceinsFluorescenceFundingFutureGlucoseGlycoconjugatesGoalsHandHealthHelper-Inducer T-LymphocyteHumanImmuneImmune ToleranceImmune responseImmune systemImmunityImmunizationImmunologic AdjuvantsImmunotherapeutic agentImmunotherapyIn VitroInterferonsInterleukinsInvestigationIsothiocyanatesKeyhole Limpet HemocyaninLabelLactate DehydrogenaseLinkLipopolysaccharidesMalignant NeoplasmsMetabolicMetastatic MelanomaMethodsMolecularMonoclonal AntibodiesMonosaccharidesMusN-butanoylmannosamineN-propanoylmannosamineNatural Killer CellsNeoglycoproteinsNeoplasm MetastasisNeuraminic AcidsNormal CellOpticsPatientsPhosphate BufferPolysaccharidesPolysialic AcidProblem SolvingPropertyProteinsReactionResearchResearch DesignResearch Project GrantsResearch Project SummariesSalineSchemeSeriesSerumSerum AlbuminSialic AcidsSolidSolutionsSpecificitySynthetic VaccinesT-Cell ReceptorT-LymphocyteT-Lymphocyte EpitopesTNF geneTestingTetrazoliumTherapeuticToxic effectTreatment EfficacyTumor AntigensTumor Necrosis Factor-alphaTumor Necrosis FactorsTumor-Associated Carbohydrate AntigensUrsidae FamilyVaccinatedVaccinesanaloganticancer activitybasecancer cellcancer immunotherapycancer therapycovalent bondcytotoxiccytotoxicitydensitydesigndiphenylfetalimmunogenicimmunogenicityimprovedin vivokillingsmalignant breast neoplasmmelanomamonophosphoryl lipid Aneoplastic cellnovelnovel strategiesnovel therapeuticsnovel vaccinesp-nitrophenyl phosphatepreventpublic health relevancesugartumortumor eradicationtumor growth

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中文摘要
翻译
描述(由申请人提供):癌症是世界上最臭名昭著的健康问题之一。该项目旨在通过免疫治疗寻找有效的癌症治疗方法,即用抗癌抗体或治疗性癌症疫苗治疗患者,可以激发抗癌免疫,这被认为是癌症的理想治疗方法,因为它可能具有高效性和低毒性。在这方面,肿瘤相关碳水化合物抗原(TACAs)是肿瘤表达的异常聚糖,是重要的分子基序和靶点。然而,大多数taca的主要问题之一是它们的免疫耐受性,即它们的免疫原性很差或无免疫原性,这一问题往往难以通过简单地将taca与载体蛋白偶联来克服。另一方面,耐受的taca往往是肿瘤细胞上相对丰富和重要的抗原,使其成为癌症疫苗开发的非常有吸引力的靶点。本项目旨在建立克服TACAs免疫耐受问题的策略,并利用该策略设计和开发新的基于TACAs的癌症免疫疗法。所提出的策略的基本概念是,用一种从非自然的TACA类似物中提取的疫苗对癌症患者进行免疫,然后用一种非自然的糖治疗患者,这种糖可以对肿瘤细胞进行糖工程,使其表达非自然的TACA类似物来代替天然的TACA。预刺激的免疫系统随后会识别并破坏糖工程肿瘤。预计由非天然的TACA类似物制成的疫苗可以很容易地激发抗肿瘤免疫。该项目的前期研究已经证明了该策略的两个先决条件,即非天然的TACA类似物具有高度的免疫原性,可以诱导强烈的T细胞依赖性免疫反应,并且可以有效地对肿瘤细胞进行糖工程以表达非天然的TACA类似物。本提案将继续测试各种糖缀合物作为新的免疫治疗策略的疫苗,验证其他相关问题,并在体外和体内评估治疗黑色素瘤,乳腺癌和结肠癌的新免疫疗法。本课题的具体目的是:1)合成和研究与单磷酰脂质A和肽性T细胞表位连接的非天然TACA类似物的新型结合疫苗;2)建立一种定量分析非天然TACA类似物在糖工程细胞上表达的方法,并在体外评价各种抗体靶向和杀伤糖工程肿瘤细胞的有效性和选择性;3)研究和评价基于抗体和疫苗治疗的新型免疫疗法治疗癌症和预防肿瘤转移的体内疗效。期望通过提出的研究,有希望的癌症免疫疗法可以用于临床试验,并最终发展成为黑色素瘤、乳腺癌或结肠癌的有效疗法。此外,免疫耐受问题的解决也可能对癌症免疫学和其他相关领域产生重大影响。公共卫生相关性:本研究项目旨在建立一种新的癌症免疫治疗策略,即使用抗癌抗体或治疗性癌症疫苗治疗肿瘤,这被认为是癌症的“理想疗法”。为此目的,将制备由癌细胞表达的特殊碳水化合物抗原的非天然类似物,并将其偶联到载体分子上,以制造高度免疫原性的疫苗,可用于引发特异性免疫反应或制备针对非天然抗原的特异性抗体。然后,接种疫苗的动物将接受一种非天然糖的治疗,这种糖可以诱导癌细胞上非天然抗原的表达。随后,被激发的免疫系统或特异性抗体将识别并消除标记的肿瘤。本提案的具体目的是确定动物(或患者)免疫的有效疫苗和肿瘤细胞标记的适当条件,并验证新的免疫疗法治疗癌症的有效性。
英文摘要
DESCRIPTION (provided by applicant): Cancer is one of the most notorious health problems worldwide. This project aims to find effective cures for cancer by immunotherapy, namely to treat patients with anticancer antibodies or with therapeutic cancer vaccines that can provoke anticancer immunities, which is considered the ideal therapy for cancer due to its potentially high efficacy and low toxicity. In this regard, tumor-associated carbohydrate antigens (TACAs), the abnormal glycans expressed by tumors, are important molecular motifs and targets. However, one of the major issues for the majority of TACAs is their immune tolerance, i.e., they are poorly or nonimmunogenic, a problem that is frequently difficult to overcome by simply coupling TACAs to a carrier protein. On the other hand, the tolerated TACAs are often the relatively rich and important antigens on tumor cells, rendering them very attractive targets for cancer vaccine development. This project aims to establish a strategy to overcome the problem of immune tolerance to TACAs and use the strategy to design and develop new TACA-based immunotherapies for cancer. The basic concept of the proposed strategy is to immunize cancer patients with a vaccine derived from an unnatural analog of a TACA and then treat the patients with an unnatural sugar that can glycoengineer tumor cells to express the unnatural TACA analog in place of the natural TACA. The pre-stimulated immune system will subsequently recognize and destroy the glycoengineered tumors. It is anticipated that vaccines made of unnatural TACA analogs can easily provoke antitumor immunities. Previous studies of this project have proved the two prerequisites for the strategy, namely that unnatural TACA analogs are highly immunogenic to induce strong T cell dependent immune responses and that tumor cells can be effectively glycoengineered to express unnatural TACA analogs. This proposal will continue to test various glycoconjugates as vaccines for the new immunotherapeutic strategy, verify other related issues, and evaluate in vitro and in vivo the new immunotherapy for treating melanoma, breast and colon cancer. The specific aims of this proposal are: 1) to synthesize and study new conjugate vaccines with the unnatural TACA analogs linked to monophosphoryl lipid A and a peptidic T cell epitope; 2) to develop a method to quantitatively analyze the expression of unnatural TACA analogs on cells as a result of glycoengineering, and to evaluate in vitro the efficacy and the selectivity of various antibodies to target and kill glycoengineered tumor cells; and 3) to study and evaluate in vivo the efficacy of the new immunotherapy to cure cancer and prevent tumor metastasis based on antibody and vaccine treatments. It is expected that through the proposed studies promising cancer immunotherapies can be identified for clinical trials and, ultimately, be developed into useful therapies for melanoma and breast or colon cancer. Moreover, a solution to the immune tolerance problem may have a significant impact on cancer immunology and other related areas as well. PUBLIC HEALTH RELEVANCE: This research project aims to establish a new strategy for cancer immunotherapy, i.e., to treat tumors using anticancer antibodies or therapeutic cancer vaccines, which is considered the "ideal cure" for cancer. For this purpose, unnatural analogs of the special carbohydrate antigens expressed by cancer cells will be prepared and coupled to carrier molecules to create highly immunogenic vaccines that can be used to provoke specific immune responses or prepare specific antibodies against the unnatural antigens. The vaccinated animals will be then treated with an unnatural sugar which can induce the expression of the unnatural antigens on cancer cells. Subsequently, the provoked immune system or the specific antibodies will recognize and eliminate the labeled tumors. The specific aims of this proposal are to identify the effective vaccines for immunization of animals (or patients) and the appropriate conditions for labeling of tumor cells and to verify the efficacies of the new immunotherapies to cure cancer.
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Brain glycosphingolipids and Alzheimer's disease
  • 批准号:
    10738379
  • 项目类别:
  • 资助金额:
    $77.77万
  • 财政年份:
    2023
  • 负责人:
    Zhongwu Guo
  • 依托单位:
Development of New Vaccine Adjuvants
  • 批准号:
    10636922
  • 项目类别:
  • 资助金额:
    $18.15万
  • 财政年份:
    2022
  • 负责人:
    Zhongwu Guo
  • 依托单位:
Development of New Vaccine Adjuvants
  • 批准号:
    10480226
  • 项目类别:
  • 资助金额:
    $22.05万
  • 财政年份:
    2022
  • 负责人:
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  • 依托单位:
Synthetic and Biological Studies of GPI Conjugates and GPI Anchorage to Cell Membranes
  • 批准号:
    9902533
  • 项目类别:
  • 资助金额:
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  • 财政年份:
    2019
  • 负责人:
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  • 依托单位:
海外基金