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低剂量长波紫外线不影响人间充质干细胞的基因表达。

Low-Dose, Long-Wave UV Light Does Not Affect Gene Expression of Human Mesenchymal Stem Cells.

作者信息

Wong Darice Y, Ranganath Thanmayi, Kasko Andrea M

机构信息

Department of Bioengineering, Henry Samueli School of Engineering, University of California Los Angeles, Los Angeles, California, United States of America.

出版信息

PLoS One. 2015 Sep 29;10(9):e0139307. doi: 10.1371/journal.pone.0139307. eCollection 2015.

Abstract

Light is a non-invasive tool that is widely used in a range of biomedical applications. Techniques such as photopolymerization, photodegradation, and photouncaging can be used to alter the chemical and physical properties of biomaterials in the presence of live cells. Long-wave UV light (315 nm-400 nm) is an easily accessible and commonly used energy source for triggering biomaterial changes. Although exposure to low doses of long-wave UV light is generally accepted as biocompatible, most studies employing this wavelength only establish cell viability, ignoring other possible (non-toxic) effects. Since light exposure of wavelengths longer than 315 nm may potentially induce changes in cell behavior, we examined changes in gene expression of human mesenchymal stem cells exposed to light under both 2D and 3D culture conditions, including two different hydrogel fabrication techniques, decoupling UV exposure and radical generation. While exposure to long-wave UV light did not induce significant changes in gene expression regardless of culture conditions, significant changes were observed due to scaffold fabrication chemistry and between cells plated in 2D versus encapsulated in 3D scaffolds. In order to facilitate others in searching for more specific changes between the many conditions, the full data set is available on Gene Expression Omnibus for querying.

摘要

光作为一种非侵入性工具,在一系列生物医学应用中被广泛使用。诸如光聚合、光降解和光解笼等技术可用于在活细胞存在的情况下改变生物材料的化学和物理性质。长波紫外线(315纳米 - 400纳米)是一种易于获取且常用的触发生物材料变化的能源。虽然低剂量长波紫外线照射通常被认为具有生物相容性,但大多数使用该波长的研究仅确定细胞活力,而忽略了其他可能的(无毒)影响。由于波长大于315纳米的光照射可能会潜在地诱导细胞行为变化,我们研究了在二维和三维培养条件下,包括两种不同水凝胶制备技术,解耦紫外线照射和自由基生成的情况下,人骨髓间充质干细胞暴露于光下时基因表达的变化。尽管无论培养条件如何,长波紫外线照射均未诱导基因表达的显著变化,但由于支架制备化学以及二维培养的细胞与三维支架中封装的细胞之间存在显著变化。为了便于其他人在众多条件之间寻找更具体的变化,完整的数据集可在基因表达综合数据库中查询。

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