...
首页> 外文期刊>Alternatives to laboratory animals: ATLA >An immunologic model for rapid vaccine assessment -- a clinical trial in a test tube.
【24h】

An immunologic model for rapid vaccine assessment -- a clinical trial in a test tube.

机译:快速疫苗评估的免疫模型-试管中的临床试验。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

While the duration and size of human clinical trials may be difficult to reduce, there are several parameters in pre-clinical vaccine development that may be possible to further optimise. By increasing the accuracy of the models used for pre-clinical vaccine testing, it should be possible to increase the probability that any particular vaccine candidate will be successful in human trials. In addition, an improved model will allow the collection of increasingly more-informative data in pre-clinical tests, thus aiding the rational design and formulation of candidates entered into clinical evaluation. An acceleration and increase in sophistication of pre-clinical vaccine development will thus require the advent of more physiologically-accurate models of the human immune system, coupled with substantial advances in the mechanistic understanding of vaccine efficacy, achieved by using this model. We believe the best viable option available is to use human cells and/or tissues in a functional in vitro model of human physiology. Not only will this more accurately model human diseases, it will also eliminate any ethical, moral and scientific issues involved with use of live humans and animals. An in vitro model, termed "MIMIC" (Modular IMmune In vitro Construct), was designed and developed to reflect the human immune system in a well-based format. The MIMIC System is a laboratory-based methodology that replicates the human immune system response. It is highly automated, and can be used to simulate a clinical trial for a diverse population, without putting human subjects at risk. The MIMIC System uses the circulating immune cells of individual donors to recapitulate each individual human immune response by maintaining the autonomy of the donor. Thus, an in vitro test system has been created that is functionally equivalent to the donor's own immune system and is designed to respond in a similar manner to the in vivo response.
机译:虽然人类临床试验的持续时间和规模可能难以减少,但临床前疫苗开发中有几个参数可能会进一步优化。通过提高用于临床前疫苗测试的模型的准确性,应该有可能增加任何特定疫苗候选物在人体试验中成功的可能性。此外,改进的模型将允许在临床前测试中收集越来越多信息的数据,从而有助于合理设计和制定进入临床评估的候选药物。因此,加速和增加临床前疫苗开发的复杂性将要求出现更加生理精确的人类免疫系统模型,以及通过使用该模型实现的对疫苗功效的机械理解的实质性进步。我们认为可用的最佳可行选择是在人类生理功能性体外模型中使用人类细胞和/或组织。这不仅可以更准确地模拟人类疾病,还将消除与使用活人和动物有关的任何道德,道德和科学问题。设计并开发了一个体外模型,称为“ MIMIC”(模块化免疫体外构建体),以良好的形式反映人的免疫系统。 MIMIC系统是一种基于实验室的方法,可复制人类免疫系统的反应。它是高度自动化的,可用于模拟针对不同人群的临床试验,而不会给人类受试者带来风险。 MIMIC系统使用各个供体的循环免疫细胞通过维持供体的自主性来概括每个人的免疫应答。因此,已经创建了一种体外测试系统,该系统在功能上等同于供体自身的免疫系统,并被设计为以类似的方式对体内反应做出反应。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号