Development of new antibody-based cancer therapies
Development of new antibody-based cancer therapies
批准号:
10262179
负责人:
Mitchell Ho
金额:
$108.2万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
AddressAdenosine DiphosphateAffinityAlbuminsAnimal ModelAntibodiesAntigen TargetingAntigensApoptosisB-LymphocytesBindingBiological AssayCD19 geneCancer BiologyCancer FamilyCell ProliferationCell Surface ProteinsCell surfaceCellsClinicClinical TreatmentClinical TrialsCommunicationCore ProteinDataDetectionDevelopmentDiseaseDoseEnzyme-Linked Immunosorbent AssayEventExotoxinsGPC3 geneGPI Membrane AnchorsGastroenterologyGlypicanGranzymeHalf-LifeHep3BHeparan Sulfate ProteoglycanHepatologyHumanHuman EngineeringHybridomasImmunizationImmunoglobulin FragmentsImmunotoxinsInfusion proceduresInjectionsLaboratoriesLiver neoplasmsLlamaLobeMalignant Epithelial CellMalignant NeoplasmsMalignant neoplasm of liverMediatingMethodsMusNational Cancer InstituteNatureNeuroblastomaOrthopticsPatientsPediatric NeoplasmPeripheral Blood Mononuclear CellPhage DisplayPolymerase Chain ReactionPrimary Malignant Neoplasm of LiverPrimary carcinoma of the liver cellsProtein BiosynthesisPseudomonasPseudomonas aeruginosa toxA proteinPublishingReportingResearchRoleSerumSerum AlbuminSignal TransductionSignal Transduction PathwaySiteSpleenStreptococcusT-LymphocyteT-Lymphocyte EpitopesT-Lymphocyte SubsetsTechnologyTestingTherapeuticTherapeutic antibodiesTimeTumor AntigensTumor BurdenWNT Signaling PathwayXenograft procedurebasebeta catenincancer therapycell growthchimeric antigen receptorchimeric antigen receptor T cellsde-immunizationdigitalexperimental studyextracellulargenome sequencingimmunogenicimmunogenicityintegration siteinterestmesothelinmouse modelnanobodiesneoplastic cellnew therapeutic targetnovelperforinsyndecantumortumor microenvironment
中文摘要
硫酸肝素蛋白聚糖(HSPGs)调节许多细胞表面信号转导事件。它们是发育和疾病(如癌症)过程中信号转导通路的细胞外调节剂。HSPGs是细胞表面蛋白,主要由糖基磷脂酰肌醇(GPI)锚定的glypicans和跨膜syndecans组成。在过去的十多年里,米切尔·何博士在美国国家癌症研究所(NCI)的实验室研究了GPC3和其他glypicans作为一个新的癌症靶点家族。在过去的一年中,我们评估了glypicans (GPC1-6)在癌症中的表达[Li等]。[J]; contemporary medicine; 2012;PMID: 32623934)。我们和其他人已经验证了glypican-3 (GPC3)作为肝细胞癌(HCC)的一种新的治疗靶点,HCC是原发性肝癌最常见的形式。我们利用杂交瘤和噬菌体展示技术制备了几种针对GPC3的抗体(如YP7, HN3)。在2020财年,我们使用人源化的YP7 (hYP7)和HN3抗体创建了嵌合抗原受体(CARs),并在肝癌小鼠模型中显示,单次处理hYP7 CAR - T细胞可诱导肿瘤消退[Li等]。胃肠病学杂志2020;PMID: 32060001)。我们收集了健康供者和HCC患者的外周血单个核细胞,并利用人源化的YP7 (hYP7)和HN3抗体制造CAR - T细胞,这两种抗体分别对GPC3的c -叶和n -叶具有高亲和力。我们还开发了液滴数字聚合酶链反应和基因组测序方法来分析小鼠体内的持久性CAR - T细胞。我们发现,注射CAR (hYP7) T细胞在第3周消除了66%的小鼠的肿瘤,而CAR (HN3) T细胞没有减轻肿瘤负担。给予CAR (hYP7) T细胞的小鼠在再用Hep3B细胞攻击后仍无肿瘤。CAR - T细胞诱导穿孔素和颗粒酶介导的细胞凋亡,并降低HCC细胞中活性β -连环蛋白的水平。通过抗原诱导选择,注射CAR (hYP7) T细胞的小鼠T细胞和多功能CAR - T细胞亚群持续扩增。CAR - T细胞给药后,在肿瘤微环境和脾脏中观察到这些T细胞长达7周。注射前CAR (HN3)和CAR (hYP7) T细胞中的整合位点随机分布,而注射后5周,3.9%的CAR (hYP7) T细胞检测到与NUPL1的整合位点,第7周时,18.1%的CAR (hYP7) T细胞检测到与NUPL1的整合位点。来自荷瘤小鼠的CAR (HN3)或CD19 CAR - T细胞中没有共同的整合位点。总之,在异种移植或正位肝肿瘤小鼠中,CAR (hYP7) T细胞可能通过诱导穿孔素和颗粒酶介导的细胞凋亡或减少肿瘤细胞中的Wnt信号来消除gpc3阳性的HCC细胞。靶向gpc3的CAR - T细胞可能被开发用于治疗HCC患者。在2020财年,我们在小鼠中产生了半衰期更长、抗肿瘤效果更好的基于hn3的免疫毒素,并将我们的发现发表在《肝脏学》杂志上[Fleming等]。中华肝病杂志,2012,32(1):31520528,2020。HN3是一种人类单域抗体,它识别GPC3核心蛋白的一个新的功能位点,并通过阻断Wnt和Yap癌症信号来抑制HCC细胞的增殖[Feng等,PNAS, PMID: 23471984, 2013;高等,自然通讯,pmiid: 25758784, 2015]。使用glypican-3 (GPC3)靶向人纳米体(HN3)免疫毒素治疗肝细胞癌,通过阻断蛋白质合成和下调Wnt信号通路,导致肿瘤有效消退。然而,免疫原性和较短的血清半衰期可能限制免疫毒素向临床转移的能力。为了解决这些问题,我们设计了基于hn3的免疫毒素,以包含各种去免疫假单胞菌外毒素(PE)域。这包括HN3-T20,它经过修饰以去除t细胞表位,并包含PE结构域II截断。我们将它们与我们之前报道的b细胞去免疫免疫免疫毒素(HN3-mPE24)和我们原始的带有野生型PE结构域的hn3 -免疫毒素(HN3-PE38)进行了比较。所有免疫毒素均与人GPC3具有高亲和力,其中HN3-T20的KD值为7.4 nM。在二磷酸腺苷-核糖基化实验中,与野生型免疫毒素相比,HN3-T20保持了73%的酶活性。有趣的是,实时细胞生长抑制实验表明,在10天的实验中,单剂量62.5 ng/mL (1.6 nM)的HN3-T20能够抑制几乎所有细胞的增殖。为了增强HN3-T20的血清保留,我们测试了添加链球菌白蛋白结合域(ABD)和小鼠和人血清白蛋白特异性羊驼单域抗体片段的效果。为了检测小鼠血清中的免疫毒素,我们开发了一种高灵敏度的酶联免疫吸附法,发现HN3-ABD-T20的血清半衰期比HN3-T20高45倍(326分钟对7.3分钟);因此,添加1 mg/kg ABD可导致hn3 -ABD- t20介导的肿瘤消退。总之,我们的数据表明,含abd的去免疫HN3-T20免疫毒素是一种高效的治疗方法,可以在临床试验中用于肝癌的治疗。
英文摘要
Heparan sulfate proteoglycans (HSPGs) regulate numerous cell surface signaling events. They are extracellular modulators of signal transduction pathways during development and diseases such as cancer. HSPGs are cell-surface proteins that mainly consist of glycosylphosphatidylinositol (GPI)-anchored glypicans and transmembrane syndecans. In the last over ten years, Dr Mitchell Ho's laboratory at the National Cancer Institute (NCI) has studied GPC3 and other glypicans as a new family of cancer targets. In the past year, we have evaluated expression of glypicans (GPC1-6) in cancer [Li et al. J Histochem Cytochem 2020; PMID: 32623934]. We and others have validated glypican-3 (GPC3) as a new therapeutic target in hepatocellular carcinoma (HCC), the most common form of primary liver cancers. We produced several antibodies (e.g., YP7, HN3) targeting GPC3 either by hybridoma and phage display technologies. In FY2020, we created chimeric antigen receptors (CARs) using humanized YP7 (hYP7) and HN3 antibodies and showed single treatment of hYP7 CAR T cells induced tumor regression in liver cancer mouse models [Li et al. Gastroenterology, 2020; PMID: 32060001]. We collected peripheral blood mononuclear cells from healthy donors and patients with HCC and used them to create CAR T cells, based on the humanized YP7 (hYP7) and HN3 antibodies, which have high affinities for the C-lobe and N-lobe of GPC3, respectively. We also developed droplet digital polymerase chain reaction and genome sequencing methods to analyze persistent CAR T cells in mice. We found that injections of CAR (hYP7) T cells eliminated tumors in 66% of mice by week 3, whereas CAR (HN3) T cells did not reduce tumor burden. Mice given CAR (hYP7) T cells remained tumor free after re-challenge with additional Hep3B cells. The CAR T cells induced perforin- and granzyme-mediated apoptosis and reduced levels of active beta-catenin in HCC cells. Mice injected with CAR (hYP7) T cells had persistent expansion of T cells and subsets of polyfunctional CAR T cells via antigen-induced selection. These T cells were observed in the tumor microenvironment and spleen for up to 7 weeks after CAR T-cell administration. Integration sites in pre-infusion CAR (HN3) and CAR (hYP7) T cells were randomly distributed, whereas integration into NUPL1 was detected in 3.9% of CAR (hYP7) T cells 5 weeks after injection into tumor-bearing mice and 18.1% of CAR (hYP7) T cells at week 7. There was no common site of integration in CAR (HN3) or CD19 CAR T cells from tumor-bearing mice. In conclusion, in mice with xenograft or orthoptic liver tumors, CAR (hYP7) T cells eliminate GPC3-positive HCC cells, possibly by inducing perforin- and granzyme-mediated apoptosis or reducing Wnt signaling in tumor cells. GPC3-targeted CAR T cells might be developed for treatment of patients with HCC. In FY2020, we generated HN3-based immunotoxin with a longer half-life and better anti-tumor efficacy in mice and published our finding in Hepatology [Fleming et al. Hepatology, PMID: 31520528, 2020]. HN3 is a human single-domain antibody that recognizes a novel functional site in the core protein of GPC3 and inhibits proliferation of HCC cells via blocking Wnt and Yap cancer signaling [Feng et al., PNAS, PMID: 23471984, 2013; Gao et al., Nature Communications, PMID: 25758784, 2015]. Treatment of hepatocellular carcinomas using our glypican-3 (GPC3)-targeting human nanobody (HN3) immunotoxins causes potent tumor regression by blocking protein synthesis and down-regulating the Wnt signaling pathway. However, immunogenicity and a short serum half-life may limit the ability of immunotoxins to transition to the clinic. To address these concerns, we engineered HN3-based immunotoxins to contain various deimmunized Pseudomonas exotoxin (PE) domains. This included HN3-T20, which was modified to remove T-cell epitopes and contains a PE domain II truncation. We compared them to our previously reported B-cell deimmunized immunotoxin (HN3-mPE24) and our original HN3-immunotoxin with a wild-type PE domain (HN3-PE38). All of our immunotoxins displayed high affinity to human GPC3, with HN3-T20 having a KD value of 7.4 nM. HN3-T20 retained 73% enzymatic activity when compared with the wild-type immunotoxin in an adenosine diphosphate-ribosylation assay. Interestingly, a real-time cell growth inhibition assay demonstrated that a single dose of HN3-T20 at 62.5 ng/mL (1.6 nM) was capable of inhibiting nearly all cell proliferation during the 10-day experiment. To enhance HN3-T20's serum retention, we tested the effect of adding a streptococcal albumin-binding domain (ABD) and a llama single-domain antibody fragment specific for mouse and human serum albumin. For the detection of immunotoxin in mouse serum, we developed a highly sensitive enzyme-linked immunosorbent assay and found that HN3-ABD-T20 had a 45-fold higher serum half-life than HN3-T20 (326 minutes vs. 7.3 minutes); consequently, addition of an ABD resulted in HN3-ABD-T20-mediated tumor regression at 1 mg/kg. In conclusion, our data indicate that ABD-containing deimmunized HN3-T20 immunotoxins are high-potency therapeutics ready to be evaluated in clinical trials for the treatment of liver cancer.
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会议论文
Antibody Therapy of Cancer
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批准号:7965804
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项目类别:
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资助金额:$66.12万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Development of neutralizing nanobodies against SARS-CoV-2
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批准号:10926408
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项目类别:
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资助金额:$29.09万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Development of new antibody-based cancer therapies
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批准号:10014481
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项目类别:
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资助金额:$134.01万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Antibody Therapy of Cancer
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批准号:7733310
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项目类别:
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资助金额:$5.55万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Antibody Engineering Program
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批准号:10926650
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项目类别:
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资助金额:$50.25万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Development of antibody-based cancer therapies
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批准号:8937887
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项目类别:
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资助金额:$110.09万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Antibody Engineering Program
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批准号:10262782
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项目类别:
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资助金额:$58.26万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Antibody Therapy of Cancer
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批准号:8349225
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项目类别:
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资助金额:$74.7万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Development of new antibody-based cancer therapies
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批准号:9343740
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项目类别:
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资助金额:$119.28万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Development of antibody engineering-based cancer therapies
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批准号:10926091
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项目类别:
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资助金额:$185.14万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Antibody Therapy of Cancer
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批准号:8552882
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项目类别:
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资助金额:$73.55万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Development of new antibody-based cancer therapies
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批准号:10702433
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项目类别:
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资助金额:$162.98万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Development of neutralizing nanobodies against SARS-CoV-2
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批准号:10702762
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项目类别:
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资助金额:$4.53万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Antibody Therapy of Cancer
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批准号:8763265
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项目类别:
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资助金额:$90.8万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Development of new antibody-based cancer therapies
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批准号:9556401
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项目类别:
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资助金额:$131.18万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Antibody Engineering Program
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批准号:10703075
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项目类别:
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资助金额:$58.85万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Development of neutralizing nanobodies against SARS-CoV-2
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批准号:10487072
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项目类别:
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资助金额:$2.2万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Antibody Engineering Program
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批准号:10487266
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项目类别:
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资助金额:$63.84万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Antibody Therapy of Cancer
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批准号:8157524
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项目类别:
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资助金额:$46.5万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
Development of neutralizing nanobodies against SARS-CoV-2
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批准号:10262559
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项目类别:
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资助金额:$41.62万
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财政年份:--
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负责人:Mitchell Ho
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依托单位:
海外基金