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微重力组织工程

Microgravity tissue engineering.

作者信息

Freed L E, Vunjak-Novakovic G

机构信息

Division of Health Sciences and Technology, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

In Vitro Cell Dev Biol Anim. 1997 May;33(5):381-5. doi: 10.1007/s11626-997-0009-2.

Abstract

Tissue engineering studies were done using isolated cells, three-dimensional polymer scaffolds, and rotating bioreactors operated under conditions of simulated microgravity. In particular, vessel rotation speed was adjusted such that 10 mm diameter x 2 mm thick cell-polymer constructs were cultivated in a state of continuous free-fall. Feasibility was demonstrated for two different cell types: cartilage and heart. Conditions of simulated microgravity promoted the formation of cartilaginous constructs consisting of round cells, collagen and glycosaminoglycan (GAG), and cardiac tissue constructs consisting of elongated cells that contracted spontaneously and synchronously. Potential advantages of using a simulated microgravity environment for tissue engineering were demonstrated by comparing the compositions of cartilaginous constructs grown under four different in vitro culture conditions: simulated microgravity in rotating bioreactors, solid body rotation in rotating bioreactors, turbulent mixing in spinner flasks, and orbital mixing in petri dishes. Constructs grown in simulated microgravity contained the highest fractions of total regenerated tissue (as a percent of construct dry weight) and of GAG, the component required for cartilage to withstand compressive force.

摘要

组织工程研究使用分离的细胞、三维聚合物支架和在模拟微重力条件下运行的旋转生物反应器来进行。具体而言,调整容器转速,使直径10毫米×厚2毫米的细胞 - 聚合物构建体在持续自由落体状态下培养。已证明两种不同细胞类型(软骨细胞和心脏细胞)的可行性。模拟微重力条件促进了由圆形细胞、胶原蛋白和糖胺聚糖(GAG)组成的软骨构建体以及由自发且同步收缩的细长细胞组成的心脏组织构建体的形成。通过比较在四种不同体外培养条件下生长的软骨构建体的组成,证明了使用模拟微重力环境进行组织工程的潜在优势:旋转生物反应器中的模拟微重力、旋转生物反应器中的固体旋转、搅拌瓶中的湍流混合以及培养皿中的轨道混合。在模拟微重力条件下生长的构建体含有再生组织总量(占构建体干重的百分比)和GAG的最高比例,GAG是软骨承受压缩力所需的成分。

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