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The Evolution of Polystyrene as a Cell Culture Material

机译:聚苯乙烯作为细胞培养材料的演变

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摘要

Polystyrene (PS) has brought in vitro cell culture from its humble beginnings to the modern era, propelling dozens of research fields along the way. This review discusses the development of the material, fabrication, and treatment approaches to create the culture material. However, native PS surfaces poorly facilitate cell adhesion and growth in vitro. To overcome this, liquid surface deposition, energetic plasma activation, and emerging functionalization methods transform the surface chemistry. This review seeks to highlight the many potential applications of the first widely accepted polymer growth surface. Although the majority of in vitro research occurs on two-dimensional surfaces, the importance of three-dimensional (3D) culture models cannot be overlooked. The methods to transition PS to specialized 3D culture surfaces are also reviewed. Specifically, casting, electrospinning, 3D printing, and microcarrier approaches to shift PS to a 3D culture surface are highlighted. The breadth of applications of the material makes it impossible to highlight every use, but the aim remains to demonstrate the versatility and potential as both a general and custom cell culture surface. The review concludes with emerging scaffolding approaches and, based on the findings, presents our insights on the future steps for PS as a tissue culture platform.
机译:聚苯乙烯(PS)已将体外细胞培养从一个不起眼的时代带入了现代时代,推动了数十个研究领域的发展。这篇评论讨论了开发文化材料的材料,制造和处理方法的发展。但是,天然PS表面在体外难以促进细胞粘附和生长。为了克服这个问题,液体表面沉积,高能等离子体活化和新兴的功能化方法改变了表面化学。这篇综述旨在强调第一个被广泛接受的聚合物生长表面的许多潜在应用。尽管大多数体外研究都发生在二维表面上,但不能忽略三维(3D)培养模型的重要性。还回顾了将PS过渡到专用3D培养表面的方法。具体来说,重点介绍了将PS移至3D培养表面的浇铸,静电纺丝,3D打印和微载体方法。该材料的广泛应用范围使得不可能突出每种用途,但目的仍然是证明其作为通用和定制细胞培养表面的多功能性和潜力。审查总结了新兴的脚手架方法,并基于这些发现,提出了我们对PS作为组织培养平台的未来步骤的见解。

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