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ADMINISTRATION OF TGF-B RESISTANT LMP2A-SPECIFIC CYTOTOXIC T-LYMPHOCYTES TO P

ADMINISTRATION OF TGF-B RESISTANT LMP2A-SPECIFIC CYTOTOXIC T-LYMPHOCYTES TO P
向 P 施用 TGF-B 抗性 LMP2A 特异性细胞毒性 T 淋巴细胞
批准号:
8356677
负责人:
Catherine M. Bollard
金额:
$1.46万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-12-01 至 2011-11-30

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中文摘要
翻译
这个子项目是利用资源的许多研究子项目之一。 由NIH/NCRR资助的中心拨款提供。对子项目的主要支持 子项目的首席调查员可能是由其他来源提供的, 包括美国国立卫生研究院的其他来源。为子项目列出的总成本可能 表示该子项目使用的中心基础设施的估计数量, 不是由NCRR赠款提供给次级项目或次级项目工作人员的直接资金。 摘要 放化疗的进步也相应地改善了霍奇金病(HD)和非霍奇金淋巴瘤(NHL)患者的预后。然而,对标准治疗方法具有抵抗力的患者的结果极其糟糕。此外,淋巴瘤治愈患者的预期寿命和生活质量都因治疗相关的死亡率和发病率而显著降低。当前治疗方案的这些局限性表明,需要为复发患者提供更有效的治疗方法。在HD和NHL中,高达49%的样本被证明携带EBV-DNA并表达EBV-基因。我们小组已经成功地在EBV阳性霍奇金淋巴瘤患者中产生了EBV特异性CTL。在输注这些CTL后,这些CTL回到肿瘤部位,在循环中持续长达12个月,并产生短暂的临床益处。在该方案中,淋巴母细胞系(LCL)被用作EBV抗原提呈细胞(APC)。LCL激活多克隆CTL群体,这些群体优先针对免疫优势的EBNA3A、3B和3C EBV-蛋白。这些免疫原性蛋白在HD/NHL肿瘤细胞中不表达。相反,HD/NHL肿瘤细胞上的EBV抗原仅限于表达LMP2等潜伏蛋白的子集。针对这些亚优势蛋白,LCL刺激CTL的效果有限。LMP2抗原表位在淋巴瘤活检标本中是保守的,病毒株之间的异质性很小。因此,我们认为LMP2可以被淋巴瘤住院患者的CTL靶向,在一项正在进行的研究中,我们的团队正在成功地从EBV+EV HD和NHL患者的外周血中产生靶向LMP2的CTL。在目前的方案中,LMP2A特异性CTL能够消除一些EBV阳性淋巴瘤和LMP2特异性CTL在肿瘤部位聚集,在外周血中增加,并产生短暂的临床益处。然而,CTL在患有大块头疾病的患者中效果最差。因此,LMP2A特异性CTL在体外可能具有良好的细胞毒性,但当它们受到肿瘤环境分泌的转化生长因子-β(TGFb)的高度免疫抑制活性时,这就排除了有效的肿瘤清除。因此,我们希望使CTL对TGFb具有抵抗力,以克服有效的肿瘤杀伤问题。 在临床前研究中,我们已将截短的显性负性TGFb受体(DNR)克隆到逆转录病毒载体SFG和转导的CTL中。在正常情况下,TGFb对已建立的CTL的增殖和杀伤活性有深远的影响,在体外持续存在TGFb会导致培养物在2-3周内死亡。反之,转导柔红霉素的CTL在有TGFb存在的情况下仍能保持明显正常的细胞内信号,正常生长,继续分泌GM-CSF和γ-干扰素,并保留其杀伤细胞的功能。因此,跨显性负TGFb受体突变体在体外能够保护CTL免受TGFb的抑制。重要的是,为了在临床上使用这种方法的可行性,在没有抗原刺激和生长因子的情况下培养CTL,导致细胞死亡的速度与非转导T细胞一样快。我们还开发并完成了一项在小鼠模型中的体内安全性研究,以确认该方法适合临床使用。 在这项研究中,我们将使用与我们目前的研究相同的方法来产生LMP2A特异性的细胞毒性T细胞,并使用表达显性负TGFb受体II(DNRII)的逆转录病毒载体对它们进行基因修饰,使它们对TGFb的免疫抑制作用产生抵抗。然后,我们将过继地将这些抗TGFb的LMP2-CTL转移给复发的EBV阳性霍奇金淋巴瘤或非霍奇金淋巴瘤患者。
英文摘要
This subproject is one of many research subprojects utilizing the resources provided by a Center grant funded by NIH/NCRR. Primary support for the subproject and the subproject's principal investigator may have been provided by other sources, including other NIH sources. The Total Cost listed for the subproject likely represents the estimated amount of Center infrastructure utilized by the subproject, not direct funding provided by the NCRR grant to the subproject or subproject staff. ABSTRACT Improvements in radiochemotherapy have correspondingly improved the prognosis of patients with Hodgkin's Disease (HD) and non-Hodgkin's lymphoma (NHL). However, patients resistant to the standard therapeutic approaches have an extremely poor outcome. Moreover, life expectancy and quality of life of patients cured of lymphoma are both significantly reduced by treatment related mortality and morbidity. These limitations of current treatment protocols illustrate the need for more effective therpeutic approaches for patients who relapse. In HD and NHL, up to 49% of specimens have been shown to carry EBV-DNA and express EBV-genes. Our group has successfully generated EBV-specific CTL in patients with EBV-positive Hodgkin's lymphoma. After infusion these CTL home to the tumor sites persist in the circulation for up to 12 months, and produce transient clinical benefits. In that protocol, lymphoblastoid cell lines (LCL) were used as EBV-antigen presenting cells (APC). LCL activate polyclonal CTL populations that are preferentially directed against the immunodominant EBNA3A, 3B and 3C EBV-proteins. These immunogenic proteins are not expressed in HD/NHL tumor cells. Instead, the EBV-antigens on HD/NHL tumor cells are restricted to the expression of a subset of latent proteins such as LMP2. LCL have limited efficacy in stimulating CTL directed against these subdominant proteins. LMP2 epitopes were shown to be conserved among Lymphoma biopsy samples displaying little heterogeneity between viral strains. Hence we thought that LMP2 could be targeted by CTL inpatients with Lymphoma and in an ongoing study, our group is successfully generating CTL targeting LMP2 from the peripheral blood of patients with EBV +ev HD and NHL. In this current protocol, LMP2A -specific CTL were able to elimiante some EBV-positive lymphoma's and the LMP2-specific CTL accumulated at tumor sites, increased in the peripheral blood and produced transient clinical benefits. The CTL were however least effective in patients with bulky disease. It is therefore possible that LMP2A-specific CTL have good cytotoxicity in vitro but that when they are subjected to the highly immunosuppressive activity of Transforming Growth Factor-beta (TGFB) secreted by the tumor environment, this precludes effective tumor elimination. We therefore want to render the CTL resistant to TGFB, to overcome the problem of effective tumor kill. In preclinical studies we have cloned a truncated dominant negative TGFB receptor (DNR) into the retrovirus vector, SFG and transduced CTL. Under normal circumstances TGFB has profound effects on the proliferation, and cytolytic activity of established CTL, and the continued presence of TGFB in vitro leads to the death of cultures within two to three weeks. In contrast, when CTL transduced with DNR are cultured in the presence of TGFB, they retain apparently normal intracellular signaling, grow normally, continued to secrete GM-CSF and yIFN, and retained their cytolytic function. Thus, the transdominant-negative TGFB receptor mutant is capable of protecting CTL from the inhibitory effects of TGFB in vitro. Importantly, for the feasibility of using this approach clinically, culture of CTL in the absence of antigenic stimulation and growth factors, led to cell death as rapidly as in non-transduced T cells. We also developed and completed an in vivo safety study in a murine model to confirm the suitaility of the approach for clinical use. In this study we will generate LMP2A-specific cytotoxic T-cells using the same methodology as on our current study and genetically modify them using a retroviral vector expressing a dominant negative TGFB receptor II (DNRII) to render them resistant to the immunosuppressive effects of TGFB. We will then adoptively transfer these TGFB resistant LMP2-CTL to patients with relapsed EBV-positive Hodgkin's or non-Hodgkins Lymphoma.
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NextGen - CRI
  • 批准号:
    10845777
  • 项目类别:
  • 资助金额:
    $73.84万
  • 财政年份:
    2022
  • 负责人:
    Catherine M. Bollard
  • 依托单位:
Cancer Immunotherapy Winter School (CIWS)
NextGen - CRI
  • 批准号:
    10627010
  • 项目类别:
  • 资助金额:
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  • 财政年份:
    2022
  • 负责人:
    Catherine M. Bollard
  • 依托单位:
Antigen Specific T Cells
  • 批准号:
    10197003
  • 项目类别:
  • 资助金额:
    $20.54万
  • 财政年份:
    2019
  • 负责人:
    Catherine M. Bollard
  • 依托单位:
国内基金
海外基金
Neo-antigens暴露对肾移植术后体液性排斥反应的影响及其机制研究
  • 批准号:
    2022J011295
  • 项目类别:
    省市级项目
  • 资助金额:
    10.0万元
  • 批准年份:
    2022
  • 负责人:
    王亚伟
  • 依托单位:
结核分枝杆菌持续感染期抗原(latency antigens)的重组BCG疫苗研究