Effective cell sheet preparation using thermoresponsive polymer brushes with various graft densities and chain lengths†

IF 5.7 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS Biomaterials Science Pub Date : 2025-02-14 DOI:10.1039/D4BM01705F
Kenichi Nagase, Minami Watanabe, Akihiko Kikuchi and Teruo Okano
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Abstract

Various cell sheets have been used as effective and useful cellular tissues in tissue engineering and regenerative therapy. Poly(N-isopropylacrylamide) (PNIPAAm)-modified surfaces have been investigated for effective cell sheet preparation. In this study, the effective PNIPAAm graft density and chain length of PNIPAAm brushes for various cell types were investigated. The PNIPAAm brush-grafted glass was prepared via silanization and subsequent atom transfer radical polymerization (ATRP). The density of the PNIPAAm brushes was modulated by changing the ATRP initiator and co-adsorber composition, while the PNIPAAm brush length was modulated by changing the monomer concentration in the ATRP. The hydrophilicity of the PNIPAAm brushes increased with increasing PNIPAAm brush length because long PNIPAAm brushes tended to hydrate. Fibronectin adsorption increased with decreasing PNIPAAm brush concentration because the exposed hydrophobic co-adsorber in the dilute PNIPAAm brush enhanced the adsorption of fibronectin. The cell-sheet fabrication ability was investigated using six types of PNIPAAm brushes. An endothelial cell sheet was fabricated using a dense, short PNIPAAm brush. NIH/3T3 sheets can be fabricated using three types of PNIPAAm brushes: dense-long PNIPAAm brushes, moderately dense-short PNIPAAm brushes, and dilute-long PNIPAAm brushes. MDCK cell sheets could not be prepared using the PNIPAAm brushes. A549 cell sheets were prepared using a dense-short PNIPAAm brush and moderately dense-short PNIPAAm brushes. These results indicate that the optimal PNIPAAm brush conditions for cell sheet preparation vary depending on cell type. Thus, modulation of PNIPAAm brush density and length is an effective approach for preparing target cell sheets.

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利用不同接枝密度和链长的热敏聚合物刷制备有效的细胞片。
在组织工程和再生治疗中,各种细胞片已被用作有效和有用的细胞组织。研究了聚n -异丙基丙烯酰胺(PNIPAAm)修饰表面,以制备有效的细胞片。本研究考察了不同细胞类型的PNIPAAm刷的有效接枝密度和链长。通过硅烷化和原子转移自由基聚合(ATRP)法制备了PNIPAAm刷接玻璃。通过改变ATRP引发剂和共吸附剂的组成来调节PNIPAAm刷的密度,通过改变ATRP中单体的浓度来调节PNIPAAm刷的长度。随着PNIPAAm毛刷长度的增加,PNIPAAm毛刷的亲水性增加,因为长PNIPAAm毛刷容易水化。随着PNIPAAm毛刷浓度的降低,纤维连接蛋白的吸附量增加,这是由于暴露在稀PNIPAAm毛刷中的疏水共吸附剂增强了对纤维连接蛋白的吸附。研究了六种PNIPAAm刷的细胞片制备能力。内皮细胞片是用密集的,短的PNIPAAm刷制成的。NIH/3T3片材可使用三种类型的PNIPAAm刷:密长PNIPAAm刷,中等密短PNIPAAm刷和稀长PNIPAAm刷。不能使用PNIPAAm刷制备MDCK细胞片。A549细胞片采用短密PNIPAAm刷和中等短密PNIPAAm刷制备。这些结果表明,制备细胞片的最佳PNIPAAm刷条件因细胞类型而异。因此,调制PNIPAAm刷密度和长度是制备靶细胞片的有效方法。
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来源期刊
Biomaterials Science
Biomaterials Science MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.50%
发文量
556
期刊介绍: Biomaterials Science is an international high impact journal exploring the science of biomaterials and their translation towards clinical use. Its scope encompasses new concepts in biomaterials design, studies into the interaction of biomaterials with the body, and the use of materials to answer fundamental biological questions.
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