AbstractIn this review, we tried to elucidate the origin and development of different animal and human cell culture methodologies u'/> Overview of Cell Models: From Organs Cultured in a Petri Dish to Organs-on-Chips
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Overview of Cell Models: From Organs Cultured in a Petri Dish to Organs-on-Chips

机译:细胞模型概述:从培养的培养皿中培养到器官 - 芯片

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AbstractIn this review, we tried to elucidate the origin and development of different animal and human cell culture methodologies used to evaluate the effects of various factors and substances in vitro. Organ cultures and conventional two-dimensional cultures of dissociated cells of various types, such as primary, tumor, induced pluripotent, stem, etc., have their advantages and drawbacks but usually do not represent accurate models for studying biological processes that take place in living organisms. Nowadays, high-throughput cell assays on the basis of various methods of signal detection (optical utilizing colorimetric, luminescent and fluorescent methods of detection, and electrochemical) are widely used at early stages of drug development for selection of the most active compounds and evaluation of their cytotoxic effects. The use of animals as models for drug testing is being criticized because of the lack of correlation between the results obtained in studies on them and on humans, and also because of the high cost and ethical issues. Therefore, much effort is put to create models based on human cells. This is how cultures emerged that utilize a three-dimensional network to simulate the architecture of tissues in vivo, and then so-called organs-on-chips—microfluidic microfabricated devices combining several types of cells—that replicate physical and chemical parameters of the microenvironment of cells in living organisms. In summary, experimental cell models have come a long way from the whole organs cultivated in a growth medium to almost complete reconstruction of organs in vitro based on the cutting-edge engineering approach with the use of different cell types. This currently enables one to replicate complex biological processes and study the influence of different substances and factors on them more successfully.]]>
机译:<![cdata [ <标题>抽象 ara>在本评价中,我们试图阐明使用不同的动物和人类细胞培养方法的起源和发展评估各种因素和物质体外的影响。器官培养物和传统的分离细胞的各种类型的二维培养物,例如初级,肿瘤,诱导的多能,茎等,具有它们的优点和缺点,但通常不代表学习生活中发生的生物过程的准确模型生物。如今,基于各种信号检测方法(光学利用比色,发光和荧光检测方法和电化学)的高通量细胞测定被广泛应用于药物开发的早期阶段,以选择最活跃的化合物和评价它们的细胞毒性效应。由于在对他们和人类的研究中获得的结果之间缺乏相关性,并且还因为缺乏高成本和道德问题,因此使用动物作为药物测试的模型受到批评。因此,努力创建基于人类细胞的模型。这就是利用三维网络来模拟体内组织结构的培养,然后所谓的器官 - 芯片微流体微制造装置组合多种细胞 - 复制微环境的物理和化学参数生物体中的细胞。总之,实验细胞模型从生长培养基中栽培的整个器官到几乎完全重建在体外重建的基于尖端工程方法,使用不同的细胞类型。这目前使人们能够更加成功地复制复杂的生物过程,并研究不同物质和因素对它们的影响。 ]]>

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