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使用磁铁矿纳米颗粒和磁力构建及收获多层角质形成细胞片。

Construction and harvest of multilayered keratinocyte sheets using magnetite nanoparticles and magnetic force.

作者信息

Ito Akira, Hayashida Masao, Honda Hiroyuki, Hata Ken-Ichiro, Kagami Hideaki, Ueda Minoru, Kobayashi Takeshi

机构信息

Department of Biotechnology, School of Engineering, Nagoya University, Nagoya, Japan.

出版信息

Tissue Eng. 2004 May-Jun;10(5-6):873-80. doi: 10.1089/1076327041348446.

Abstract

Novel technologies to establish three-dimensional constructs are desired for tissue engineering. In the present study, magnetic force was used to construct multilayered keratinocyte sheets and harvest the sheets without enzymatic treatment. Our original magnetite cationic liposomes, which have a positive surface charge in order to improve adsorption, were taken up by human keratinocytes at a concentration of 33 pg of magnetite per cell. The magnetically labeled keratinocytes (2x10(6) cells, which corresponds to 5 times the confluent concentration against the culture area of 24-well plates, in order to produce 5-layered keratinocyte sheets) were seeded into a 24-well ultralow-attachment plate, the surface of which was composed of a covalently bound hydrogel layer that is hydrophilic and neutrally charged. A magnet (4000 G) was placed under the well, and the keratinocytes formed a five-layered construct in low-calcium medium (calcium concentration, 0.15 mM) after 24 h of culture. Subsequently, when the five-layered keratinocytes were cultured in high-calcium medium (calcium concentration, 1.0 mM), keratinocytes further stratified, resulting in the formation of 10-layered epidermal sheets. When the magnet was removed, the sheets were detached from the bottom of the plates, and the sheets could be harvested with a magnet. These results suggest that this novel methodology using magnetite nanoparticles and magnetic force, which we have termed "magnetic force-based tissue engineering" (Mag-TE), is a promising approach for tissue engineering.

摘要

组织工程需要新型技术来构建三维结构。在本研究中,利用磁力构建多层角质形成细胞片层,并在无需酶处理的情况下收获这些片层。我们最初的磁铁矿阳离子脂质体,其表面带正电荷以提高吸附性,以每细胞33 pg磁铁矿的浓度被人角质形成细胞摄取。将磁性标记的角质形成细胞(2×10⁶个细胞,为24孔板培养面积汇合浓度的5倍,用于生成5层角质形成细胞片层)接种到24孔超低吸附板中,该板表面由共价结合的亲水性和中性电荷的水凝胶层组成。在孔板下方放置一块磁铁(4000 G),培养24小时后,角质形成细胞在低钙培养基(钙浓度0.15 mM)中形成了五层结构。随后,当五层角质形成细胞在高钙培养基(钙浓度1.0 mM)中培养时,角质形成细胞进一步分层,形成了10层表皮片层。当移除磁铁时,片层从板底部脱离,并且可以用磁铁收获片层。这些结果表明,这种使用磁铁矿纳米颗粒和磁力的新方法,我们称之为“基于磁力的组织工程”(Mag-TE),是一种有前景的组织工程方法。

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