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近红外光敏感聚乙烯醇水凝胶光致抗蚀剂用于时空控制细胞诱导的 3D 微环境。

Near-Infrared Light-Sensitive Polyvinyl Alcohol Hydrogel Photoresist for Spatiotemporal Control of Cell-Instructive 3D Microenvironments.

机构信息

Laboratory for Biointerfaces, Empa-Swiss Federal Laboratories for Materials Science and Technology, CH-9014, St. Gallen, Switzerland.

Multi-Scale Robotics Lab, Institute of Robotics and Intelligent Systems, ETH Zürich, CH-8092, Zürich, Switzerland.

出版信息

Adv Mater. 2018 Mar;30(10). doi: 10.1002/adma.201705564. Epub 2018 Jan 15.

Abstract

Advanced hydrogel systems that allow precise control of cells and their 3D microenvironments are needed in tissue engineering, disease modeling, and drug screening. Multiphoton lithography (MPL) allows true 3D microfabrication of complex objects, but its biological application requires a cell-compatible hydrogel resist that is sufficiently photosensitive, cell-degradable, and permissive to support 3D cell growth. Here, an extremely photosensitive cell-responsive hydrogel composed of peptide-crosslinked polyvinyl alcohol (PVA) is designed to expand the biological applications of MPL. PVA hydrogels are formed rapidly by ultraviolet light within 1 min in the presence of cells, providing fully synthetic matrices that are instructive for cell-matrix remodeling, multicellular morphogenesis, and protease-mediated cell invasion. By focusing a multiphoton laser into a cell-laden PVA hydrogel, cell-instructive extracellular cues are site-specifically attached to the PVA matrix. Cell invasion is thus precisely guided in 3D with micrometer-scale spatial resolution. This robust hydrogel enables, for the first time, ultrafast MPL of cell-responsive synthetic matrices at writing speeds up to 50 mm s . This approach should enable facile photochemical construction and manipulation of 3D cellular microenvironments with unprecedented flexibility and precision.

摘要

在组织工程、疾病建模和药物筛选中,需要先进的水凝胶系统来精确控制细胞及其 3D 微环境。多光子光刻(MPL)允许对复杂物体进行真正的 3D 微制造,但它的生物应用需要一种与细胞兼容的水凝胶抗蚀剂,该抗蚀剂具有足够的光敏性、细胞可降解性和允许性,以支持 3D 细胞生长。在这里,设计了一种由肽交联的聚乙烯醇(PVA)组成的超灵敏细胞响应水凝胶,以扩展 MPL 的生物学应用。在存在细胞的情况下,PVA 水凝胶可在 1 分钟内通过紫外线快速形成,提供完全合成的基质,对细胞-基质重塑、多细胞形态发生和蛋白酶介导的细胞入侵具有指导作用。通过将多光子激光聚焦到载细胞的 PVA 水凝胶中,可以将细胞指令性的细胞外线索特异性地附着到 PVA 基质上。因此,细胞入侵可以以微米级的空间分辨率在 3D 中进行精确引导。这种强大的水凝胶使细胞响应性合成基质的超快 MPL 首次成为可能,写入速度高达 50 毫米/秒。这种方法应该能够以空前的灵活性和精度方便地进行 3D 细胞微环境的光化学构建和操作。

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