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Strategies to Enhance Lymphoid Recovery After Radiation-Induced Injury

Strategies to Enhance Lymphoid Recovery After Radiation-Induced Injury
增强放射损伤后淋巴恢复的策略
批准号:
7841872
负责人:
Marcel R M van den Brink
金额:
$47.0万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-06-25 至 2013-05-31

项目摘要

项目成果

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中文摘要
翻译
描述(由申请方提供):类胶质细胞对辐射损伤的影响特别敏感,辐射损伤的受试者感染和恶性肿瘤的风险增加。我们对白细胞介素7(IL-7)和角质细胞生长因子(KGF)的临床前和临床研究表明,这些药物可以通过影响胸腺基质(KGF)的保护和增殖、增强的胸腺生成(IL-7和KGF)以及外周T细胞凋亡和增殖(IL-7)来增强T细胞恢复。用“现成的”同种异体淋巴前体的连续治疗导致来自胸腺和胸腺外位点的T和NK细胞重建的早期“波”,导致增强的T细胞免疫。基于这些数据,我们提出了在小鼠模型中的放射性损伤的研究,以分析KGF和IL-7的管理,以及过继免疫治疗与离体产生的同种异体淋巴前体的影响。我们推测,IL-7,KGF,或定向淋巴前体细胞的管理,可以改善放射损伤后的淋巴恢复。我们的具体目标是:目的:研究(Aim 1)KGF、(Aim 2)IL-7和(Aim 3)同种异体淋巴前体对辐射诱导的淋巴系统损伤的影响。我们将分析IL-7,KGF和/或淋巴前体对淋巴恢复(特别是T细胞)和功能急性暴露于不同剂量的辐射后的影响。我们将研究辐射损伤的以下方面:(a)辐射剂量(B)部分与全身照射,和(c)受者的年龄。对于所有策略,我们将评估对胸腺和胸腺外(胃肠道)重建和外周T细胞功能的影响。在我们对IL-7和KGF的研究中,我们将分析(d)IL-7和KGF受体的表达水平,(e)KGF或IL-7的剂量水平,(f)给药间隔,(g)治疗持续时间,(h)开始治疗对IL-7或KGF疗效的时间,以及(i)细胞群对KGF或IL-7应答的细胞内信号传导谱。此外,在我们对同种异体淋巴前体细胞的研究中,我们将使用生物发光成像对转移的前体细胞进行体内时空分析。最后,我们将评估淋巴前体与KGF和/或IL-7的组合策略。在本申请中,我们提出了研究,以制定治疗策略的淋巴缺陷后辐射损伤。我们先前已经在同种异体骨髓移植和辐射的临床前和临床模型中表明,角质细胞生长因子、白细胞介素7和用离体产生的淋巴前体细胞的免疫疗法都可以增强淋巴重建(特别是T细胞重建)。我们现在将测试这些策略在治疗辐射损伤患者中的应用。
英文摘要
DESCRIPTION (provided by applicant): Lymphoid cells are particularly sensitive to the effects of radiation injury and subject victims of radiation injury to increased risk of infections and malignancy. Our pre- clinical and clinical studies with Interleukin 7 (IL-7) and Keratinocyte Growth Factor (KGF) suggests that these agents can enhance T cell recovery through effects on: protection and proliferation of thymic stroma (KGF), enhanced thymopoiesis (IL-7 and KGF), and peripheral T cell apoptosis and proliferation (IL-7). Adoptive therapy with "off- the-shelf" allogeneic lymphoid precursors resulted in an early 'wave' of T and NK cell reconstitution from thymic and extrathymic sites, resulting in enhanced T cell immunity. Based upon these data, we propose studies in mouse models of radiation-induced injury to analyze the effects of KGF and IL-7 administration, as well as adoptive immunotherapy with ex vivo generated allogeneic lymphoid precursors. We hypothesize that administration of IL-7, KGF, or committed lymphoid precursor cells can improve lymphoid recovery after radiation injury. Our specific aims are: to study the effects of (Aim 1) KGF, (Aim 2) IL-7, and (Aim 3) allogeneic lymphoid precursors on radiation-induced damage to the lymphoid system. We will analyze the effects of IL-7, KGF and/or lymphoid precursors on lymphoid recovery (especially T cells) and function after acute exposure to varying doses of radiation. We will study the following aspects of radiation injury: (a) dose of radiation (b) partial vs. total body irradiation, and (c) age of recipient. For all strategies we will assess the effects on thymic and extra-thymic (gastrointestinal) reconstitution and peripheral T cell function. In our studies with IL-7 and KGF, we will analyze (d) the expression levels of the IL-7 and KGF receptors, (e) the dose level of KGF or IL-7, (f) dose interval, (g) duration of treatment, (h) timing of the initiation of treatment on the efficacy of IL-7 or KGF, and (i) the intracellular signaling profiles of cell populations in response to KGF or IL-7. In addition, in our studies with allogeneic lymphoid precursors, we will use bioluminescent imaging to perform an in vivo spatial-temporal analysis of the transferred precursor cells. Finally, we will assess combination strategies of lymphoid precursors with KGF and/or IL-7. In this application we propose studies to develop therapeutic strategies for the lymphoid deficiency after radiation injury. We have previously shown in preclinical and clinical models for allogeneic bone marrow transplantation and irradiation that Keratinocyte Growth Factor, Interleukin 7, and Adoptive Therapy with ex vivo generated lymphoid precursor cells can all enhance lymphoid reconstitution (particularly T cell reconstitution). We will now test the application of these strategies as treatment for victims of radiation injury.
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海外基金