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使用定向抗体修饰的琼脂糖膜涂覆聚苯乙烯芯片特异性捕获、回收和培养癌细胞。

Specific capture, recovery and culture of cancer cells using oriented antibody-modified polystyrene chips coated with agarose film.

机构信息

Hazards Monitoring Bionano Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), 125 Gwahak-ro, Yuseong-gu, Daejeon, Republic of Korea; Department of Biosystems and Bioengineering, KRIBB School of Biotechnology, Korea University of Science and Technology(UST), 217 Gajeong-ro, Yuseong-gu, Daejeon, Republic of Korea.

Department of Nanomanufacturing Technology, Korea Institute of Machinery and Materials, 156, Gajeongbuk-ro, Yuseong-gu, Daejeon, Republic of Korea.

出版信息

Colloids Surf B Biointerfaces. 2018 Feb 1;162:306-315. doi: 10.1016/j.colsurfb.2017.11.071. Epub 2017 Dec 22.

Abstract

Agarose gel can be used for three dimensional (3D) cell culture because it prevents cell attachment. The dried agarose film coated on a culture plate also protected cell attachment and allowed 3D growth of cancer cells. We developed an efficient method for agarose film coating on an oxygen-plasma treated micropost polystyrene chip prepared by an injection molding process. The agarose film was modified to maleimide or Ni-NTA groups for covalent or cleavable attachment of photoactivatable Fc-specific antibody binding proteins (PFcBPs) via their N-terminal cysteine residues or 6xHis tag, respectively. The antibodies photocrosslinked onto the PFcBP-modified chips specifically captured the target cells without nonspecific binding, and the captured cells grew 3D modes on the chips. The captured cells on the cleavable antibody-modified chips were easily recovered by treatment of commercial trypsin-EDTA solution. Under fluidic conditions using an antibody-modified micropost chip, the cells were mainly captured on the micropost walls of the chip rather than on the bottom of it. The presented method will also be applicable for immobilization of oriented antibodies on various microfluidic chips with different structures.

摘要

琼脂糖凝胶可用于三维(3D)细胞培养,因为它可以防止细胞附着。涂覆在培养板上的干燥琼脂糖膜还可以保护细胞附着,并允许癌细胞进行 3D 生长。我们开发了一种在通过注塑工艺制备的经氧气等离子体处理的微柱聚苯乙烯芯片上涂覆琼脂糖膜的有效方法。通过其 N 端半胱氨酸残基或 6xHis 标签,将琼脂糖膜分别修饰为马来酰亚胺或 Ni-NTA 基团,用于通过共价或可裂解附着将光活化的 Fc 特异性抗体结合蛋白(PFcBPs)固定。光交联到 PFcBP 修饰芯片上的抗体特异性捕获靶细胞而没有非特异性结合,并且捕获的细胞在芯片上以 3D 模式生长。通过用商业胰蛋白酶-EDTA 溶液处理,可轻松回收可裂解抗体修饰的芯片上捕获的细胞。在使用抗体修饰的微柱芯片的流体条件下,细胞主要被捕获在芯片的微柱壁上,而不是在底部。所提出的方法也将适用于在具有不同结构的各种微流控芯片上固定定向抗体。

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