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首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Human primary bronchial lung cell constructs: the new respiratory models.
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Human primary bronchial lung cell constructs: the new respiratory models.

机译:人原发性支气管肺细胞结构:新的呼吸模型。

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摘要

Scientists routinely work within the three R's principles of 'Reduction, Refinement and Replacement' of animal experiments. Accordingly, viable alternatives are regularly developed, and in the specific case of the human lung, in vitro models for inhalation toxicology that mimic in vivo toxic events that may occur in the human lung, are welcomed. This is especially warranted given the new EU regulations (i.e. REACH) coming into force for the handling of chemicals and the advent of nanotoxicology. Furthermore, recent advances in human tissue-engineering has made it feasible and cost effective to construct human tissue equivalents of the respiratory epithelia, as in-house models derived from primary cells. There is an urgent need for engineered tissue equivalents of the lung given the increase in pharmaceutically valuable drugs, toxicity testing of environmental pollutants and the advent of nanotoxicology. Given the well-known problems with 2-dimensional (2-D) cell cultures as test beds, more realistic 3-D tissue constructs are required, especially for preclinical stages of cell- and tissue-based, high-throughput screening in drug discovery. The generation of high-fidelity engineered tissue constructs is based on the targeted interactions of organ-specific cells and intelligent biomimetic scaffolds which emulate the natural environment of their native extracellular matrix, in which the cells develop, differentiate and function. The proximal region of the human respiratory system is a critical zone to recapitulate for use as in vitro alternatives to in vivo inhalation toxicology. Undifferentiated normal human bronchial epithelia cells can be obtained from surgical procedures or purchased from commercial sources and used to establish 3-D, differentiated, organo-typic cell cultures for pulmonary research.
机译:科学家通常按照动物实验的“还原,精制和替换”三个R原则进行工作。因此,有规律地开发出可行的替代方案,并且在人肺的特定情况下,欢迎模仿在人肺中可能发生的体内毒性事件的吸入毒理学的体外模型。考虑到新的欧盟法规(即REACH)对化学品的处理和纳米毒理学的出现而生效,这一点尤为必要。此外,人类组织工程学的最新进展使构建呼吸道上皮的人类组织等效物成为可行且具有成本效益,这是源自原代细胞的内部模型。鉴于药学上有价值的药物的增加,环境污染物的毒性测试以及纳米毒理学的出现,迫切需要肺的工程组织当量。考虑到二维(2-D)细胞培养作为测试床的众所周知的问题,需要更实际的3-D组织构建体,尤其是在药物发现中基于细胞和组织的高通量筛选的临床前阶段。高保真工程组织构建体的产生是基于器官特异性细胞和智能仿生支架的靶向相互作用,该支架模仿其天然细胞外基质的自然环境,其中细胞在其中生长,分化和发挥功能。人类呼吸系统的近端区域是一个关键区域,可以概括为用作体内吸入毒理学的体外替代品。未分化的正常人支气管上皮细胞可从外科手术中获得或从商业渠道购买,并用于建立3-D,分化的有机型细胞培养物以进行肺部研究。

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