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Decreased lung carcinoma cell density on select polymer nanometer surface features for lung replacement therapies

机译:用于肺替代治疗的选定聚合物纳米表面特征上的肺癌细胞密度降低

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PLGA (poly-lactic-co-glycolic acid) has been widely used as a biomaterial in regenerative medicine due to its biocompatibility and biodegradability. The purpose of the present in vitro research was to prepare PLGA films with various nanometer surface features and determine whether lung cancer epithelial cells respond differently to such topographies. Different size polystyrene beads were used to cast poly(dimethylsiloxane) (PDMS) molds which were used as templates to create nano-featured PLGA films. Atomic force microscopy (AFM) images and root mean square (RMS) roughness values indicated that the intended spherical surface nano-topographies on PLGA were formed. A solution evaporation method was also utilized to modify PLGA surface features by using 8 wt% and 4% chloroform solutions. Most importantly, lung cancer epithelial cells adhered less on the PLGA surfaces with RMS values of 0.62, 2.23 and 5.42 nm after 4 hours of culture compared to any other PLGA surface created here. After 3 days, PLGA surfaces with an RMS value of 0.62 nm had much lower cell density than any other sample. In this manner, PLGA with specific nanometer surface features may inhibit lung cancer cell density, providing an important biomaterial for the treatment of lung cancer with wide range of applications.
机译:PLGA(聚乳酸-乙醇酸共聚物)由于其生物相容性和生物降解性而被广泛用作再生医学中的生物材料。本体外研究的目的是制备具有各种纳米表面特征的PLGA膜,并确定肺癌上皮细胞对这种形貌的反应是否不同。使用不同尺寸的聚苯乙烯珠粒来浇铸聚(二甲基硅氧烷)(PDMS)模具,该模具用作模板以创建纳米级PLGA膜。原子力显微镜(AFM)图像和均方根(RMS)粗糙度值表明,在PLGA上形成了预期的球形表面纳米形貌。还使用溶液蒸发方法通过使用8 wt%和4%的氯仿溶液来修饰PLGA表面特征。最重要的是,与培养的任何其他PLGA表面相比,培养4小时后,肺癌上皮细胞在PLGA表面上的粘附较少,RMS值为0.62、2.23和5.42 nm。 3天后,RMS值为0.62 nm的PLGA表面的细胞密度远低于其他任何样品。以此方式,具有特定纳米表面特征的PLGA可抑制肺癌细胞密度,为广泛用途的肺癌治疗提供了重要的生物材料。

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