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更高粘度的溶液在并流中会为包裹细胞的胶囊诱导出更小的液滴。

Higher viscous solution induces smaller droplets for cell-enclosing capsules in a co-flowing stream.

作者信息

Sakai Shinji, Kawabata Kenji, Ono Tsutomu, Ijima Hiroyuki, Kawakami Koei

机构信息

Department of Chemical Engineering, Faculty of Engineering, Kyushu University, 6-10-1 Hakozaki, Higashi-ku, Fukuoka, 812-8581, Japan.

出版信息

Biotechnol Prog. 2005 May-Jun;21(3):994-7. doi: 10.1021/bp049600i.

Abstract

Mechanical strength of cell-enclosing capsules governs the success of the transplantation of enclosed cells in vivo for cell therapy. Mechanical strength closely correlates with the concentration and molecular weight of the polymers present in the aqueous solution that end up in the capsules, and the viscosity of the aqueous polymer solution also depends on these two factors. Three aqueous solutions differing in viscosity (1.0, 36, and 194 mPa s) were extruded from a needle (300 microm inner diameter) at a velocity of 1.2 cm/s into an ambient co-flowing liquid paraffin laminar stream. Smaller droplets were obtained from a higher viscous solution. At a liquid paraffin velocity of 23.5 cm/s, the diameter of droplets obtained from the highest viscous solution (194 mPa s)) was 44 +/- 4 microm, and it represented 40% and 20% of that from droplets in solutions of 36 and 1.0 mPa s viscosity, respectively. The cells enclosed in these droplets maintained more than 95% viability during the droplet breakup process independent of the viscosity of the aqueous solution (p > 0.50). In addition, retrieved cells from the droplets showed the same proliferation profiles as the cells that were not subjected to the droplet breakup process, on tissue culture dishes (p > 0.13).

摘要

包裹细胞的胶囊的机械强度决定了用于细胞治疗的被包裹细胞在体内移植的成功率。机械强度与最终存在于胶囊中的聚合物在水溶液中的浓度和分子量密切相关,并且聚合物水溶液的粘度也取决于这两个因素。将三种粘度不同(1.0、36和194 mPa·s)的水溶液以1.2 cm/s的速度从内径为300微米的针头挤出,进入周围同向流动的液体石蜡层流中。从较高粘度的溶液中获得的液滴较小。在液体石蜡流速为23.5 cm/s时,从最高粘度溶液(194 mPa·s)中获得的液滴直径为44±4微米,分别是粘度为36和1.0 mPa·s溶液中液滴直径的40%和20%。包裹在这些液滴中的细胞在液滴破碎过程中保持超过95%的活力,与水溶液的粘度无关(p>0.50)。此外,从液滴中回收的细胞在组织培养皿上显示出与未经历液滴破碎过程的细胞相同的增殖情况(p>0.13)。

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