首页> 外文期刊>Fluids >Effects of Flow Rate on Mesenchymal Stem Cell Oxygen Consumption Rates in 3D Bone-Tissue-Engineered Constructs Cultured in Perfusion Bioreactor Systems
【24h】

Effects of Flow Rate on Mesenchymal Stem Cell Oxygen Consumption Rates in 3D Bone-Tissue-Engineered Constructs Cultured in Perfusion Bioreactor Systems

机译:流速对灌注生物反应器系统培养3D骨组织工程构建体中间充质干细胞氧消耗率的影响

获取原文
       

摘要

Bone grafts represent a multibillion-dollar industry, with over a million grafts occurring each year. Common graft types are associated with issues such as donor site morbidity in autologous grafts and immunological response in allogenic grafts. Bone-tissue-engineered constructs are a logical approach to combat the issues commonly encountered with these bone grafting techniques. When creating bone-tissue-engineered constructs, monitoring systems are required to determine construct characteristics, such as cellularity and cell type. This study aims to expand on the current predictive metrics for these characteristics, specifically analyzing the effects of media flow rate on oxygen uptake rates (OURs) of mesenchymal stem cells seeded on poly(L-lactic acid) (PLLA) scaffolds cultured in a flow perfusion bioreactor. To do this, oxygen consumption rates were measured for cell/scaffold constructs at varying flow rates ranging from 150 to 750 microliters per minute. Residence time analyses were performed for this bioreactor at these flow rates. Average observed oxygen uptake rates of stem cells in perfusion bioreactors were shown to increase with increased oxygen availability at higher flow rates. The residence time analysis helped identify potential pitfalls in current bioreactor designs, such as the presence of channeling. Furthermore, this analysis shows that oxygen uptake rates have a strong linear correlation with residence times of media in the bioreactor setup, where cells were seen to exhibit a maximum oxygen uptake rate of 3 picomoles O2/hr/cell.
机译:骨移植物代表一款多亿美元的行业,每年出现超过一百万的移植物。常见的接枝类型与诸如体内移植物中的供体部位发病率和同种异体移植物中的免疫应答有关。骨组织工程构建体是打击与这些骨移植技术通常遇到的问题的逻辑方法。当产生骨组织工程构造时,需要监测系统以确定构建特性,例如细胞性和细胞类型。本研究旨在扩展这些特征的当前预测度量,特别是分析介质流速对在流动中培养的聚(L-乳酸)(PLLA)支架上的间充质干细胞对氧气吸收率(我们)的影响灌注生物反应器。为此,在不同流速范围为每分钟150至750微升的不同流速下测量氧气消耗率。在这些流速下对该生物反应器进行停留时间分析。显示平均观察到灌注生物反应器中干细胞的氧气吸收率随着较高流速的氧可用性而增加。停留时间分析有助于识别当前生物反应器设计中的潜在缺陷,例如窜流的存在。此外,该分析表明,氧气吸收率与生物反应器设置中的培养基的停留时间具有强烈的线性相关性,其中观察到细胞表现出3吡米摩尔O2 / hr /细胞的最大氧摄取率。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号