Mechanism of action and therapeutic utility of immunostimulatory CpG oligonucleo
Mechanism of action and therapeutic utility of immunostimulatory CpG oligonucleo
批准号:
7592999
负责人:
Dennis Klinman
金额:
$76.02万
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:
AdjuvantAffinityAllergicAnthrax VaccinesAntigen-Presenting CellsBacterial DNABiological ModelsCell physiologyCellsClinical DataClinical TrialsCommunicable DiseasesConditionDNADevelopmentDiseaseDrug FormulationsGene ActivationGene ExpressionGene Expression ProfilingGenesGenetic MarkersImmuneImmune responseImmunityIn VitroIndividualInfectionInflammationInflammatoryInterleukin-6LaboratoriesLicensingLigandsMalignant NeoplasmsMediatingMemory B-LymphocyteMicroarray AnalysisNumbersOutcomePhasePhysiologicalPlayPoly I-CPopulationPredispositionProcessProductionRegulator GenesRegulatory PathwayRoleSafetySpeedSurgical OncologyTLR9 geneTherapeuticTranscriptional ActivationTraumaTreatment EfficacyUp-RegulationVaccine AdjuvantWound Healingbasecancer therapydaydesignexpectationfallsimprovedin vivomouse modelnovelpre-clinicalpre-clinical researchpreclinical studyresearch studyresponsesmall moleculetherapeutic target
中文摘要
细菌DNA中未甲基化的CpG基序与toll样受体9相互作用,引发促炎免疫反应。CpG DNA还可以改善抗原提呈细胞的功能,从而促进适应性免疫的发展。在过去的几年里,我的实验室确定了CpG ODN可以降低宿主对感染和过敏性炎症的易感性,作为疫苗佐剂是有效的,并且在癌症的治疗中发挥作用。我们最近证明了它们还可以加速伤口修复。这些临床前研究表明,CpG ODN既可用于治疗已建立的疾病,也可用于加速创伤或(肿瘤)手术后的伤口愈合。部分基于这些临床前数据,一些探索CpG ODN安全性和有效性的I - III期临床试验已经启动。我的实验室正在进行的临床前研究旨在确定CpG ODN递送的最佳治疗窗口,并检查它们引发的保护性免疫反应是否可以通过与其他免疫调节剂(如额外的TLR配体和小分子激动性免疫增强剂)联合来加速和/或放大。我的实验室用来检测CpG ODN佐剂活性的模型系统之一涉及到炭疽疫苗。最近在相关小鼠模型中的结果表明,将CpG ODN添加到目前许可的炭疽疫苗(AVA)中,可以延长体内保护性抗体滴度维持的时间超过四倍,并产生更高的亲和力记忆B细胞群,即使在抗体产生减弱后也能提供抗攻击的保护。另外的结果表明,CpG ODN的佐剂活性可能通过使用新的配方或与其他免疫激活剂联合使用进一步提高。例如,当CpG ODN与poly I:C结合使用时,可以观察到协同相互作用。优化CpG ODN的治疗效用需要详细了解它们激活的细胞(直接和间接),它们的作用持续时间,以及介导这些反应的调节途径。为了澄清这些问题,我们正在使用微阵列技术来识别CpG ODN引发的免疫刺激的核心基因和网络。这些实验是在体外高度纯化的细胞亚群和体内进行的,以监测生理条件下的基因表达。结果表明,在服用ODN后15分钟内可检测到基因表达的显著变化,并持续至少9天。研究发现,TNFalpha、il -1 β、IFNgamma和IL-6在cpg介导的基因激活的初始上调中起关键作用(涉及至少700个基因的表达)。单个基因被激活的程度受到另外一组共调控基因的影响。ODN给药3天后,上调基因数量下降了约85%。这种作用部分是由一组下调蛋白(包括MYC、FOS和SOCS)介导的,它们积极抑制cpg诱导的基因表达。通过将体内特定基因的表达变化与CpG ODN的治疗效果联系起来,我们希望这些研究能够确定预测临床有益结果的遗传标记。
英文摘要
The unmethylated CpG motifs present in bacterial DNA interact with toll-like receptor 9 to trigger a pro-inflammatory immune response. CpG DNA also improves antigen presenting cell function, thereby facilitating the development of adaptive immunity. Over the past several years, my laboratory established that CpG ODN could reduce host susceptibility to infection and allergic inflammation, were effective as vaccine adjuvants, and had a role in the treatment of cancer. We recently demonstrated that they could also accelerate wound repair. These pre-clinical studies suggest that CpG ODN may be used to both treat established diseases and speed wound healing after trauma or (oncologic) surgery. Based in part on this pre-clinical data, a number of phase I through III clinical trials exploring the safety and efficacy of CpG ODN have been initiated. Ongoing pre-clinical research in my lab is designed to identify the optimal therapeutic window for CpG ODN delivery, and examine whether the protective immune responses they elicit can be accelerated and/or magnified by combining them with other immunomodulatory agents (such as additional TLR ligands and small molecule agonistic immune potentiators). One of the model systems used by my lab to examine the adjuvant activity of CpG ODN involves the anthrax vaccine. Recent results in a relevant mouse model indicate that adding CpG ODN to the currently licensed anthrax vaccine (AVA) prolongs the duration over which protective Ab titers are maintained in vivo by more than four-fold, and generates a higher affinity memory B cell population capable of providing protecting against challenge even after Ab production wanes. Additional results suggest that the adjuvant activity of CpG ODN may be further improved through the use of novel formulations or by combining them with additional immune activators. For example, synergistic interactions were observed when CpG ODN were used in combination with poly I:C. Efforts to optimize the therapeutic utility of CpG ODN require a detailed understanding of the cells they activate (both directly and indirectly), their duration of action, and the regulatory pathways involved in mediating these responses. To clarify these issues, we are using microarray technology to identify the genes and networks central to the immune stimulation elicited by CpG ODN. Such experiments are conducted in vitro on highly purified cell subpopulations and in vivo to monitor gene expression under physiologic conditions. Results indicate that significant changes in gene expression are detectable within 15 minutes of ODN administration and persist for at least 9 days. TNFalpha, IL-1beta, IFNgamma and IL-6 were identified as playing key roles in the initial up-regulation of CpG-mediated gene activation (which involves the expression of at least 700 genes). The degree to which individual genes were activated was influenced by an additional set of co-regulatory genes. Three days post ODN administration, the number of up-regulated genes had fallen by >85%. This effect was mediated in part by a group of down-regulators (including MYC, FOS, and SOCS) that actively suppressed CpG-induced gene expression. By correlating changes in the expression of specific genes with the therapeutic efficacy of CpG ODN in vivo, we hope these studies will identify genetic markers predictive of clinically beneficial outcomes.
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依托单位:
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