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用于组织工程半月板植入物体外压缩循环的生物反应器的开发。

Development of a bioreactor for in-vitro compression cycling of tissue engineered meniscal implants.

作者信息

Loverde Joseph R, Piroli Maria, Klarmann George J, Gaston Joel, Kenneth Wickiser J, Barnhill Jason, Gilchrist Kristin H, Ho Vincent B

机构信息

4D Bio Center for Biotechnology, Uniformed Services University of Health Sciences, 9410 Key West Ave., Rockville, MD 20850, United States.

The Geneva Foundation, 917 Pacific Ave., Tacoma, WA 98402, United States.

出版信息

HardwareX. 2023 Jun 1;14:e00433. doi: 10.1016/j.ohx.2023.e00433. eCollection 2023 Jun.

Abstract

Injuries to the meniscus are common and can impair physical activities. Bioprinted meniscal tissue offers an attractive alternative to donor tissue for meniscal repair but achieving the strength of native tissue is a challenge. Here we report the development of a tissue engineering bioreactor designed to apply repetitive force which may lead to an increase in the compressive modulus and durability of bioprinted meniscal tissues. The modular bioreactor system is composed of a sterilizable tissue culture vessel together with a dock that applies and measures mechanical force. The culture vessel allows for simultaneous compression cycling of two anatomically sized menisci. Using a hybrid linear actuator with a stepper motor, the dock can apply up to 300 N of force at speeds up to 20 mm/s, corresponding to the upper limits of anatomical force and motion in the knee. An interchangeable 22 N load cell was mated between the culture vessel and the dock to log changes in force. Both the culture vessel and dock are maintained in a standard cell culture incubator to provide heat and CO, while the dock is powered and controlled externally using a step motor drive and customized software.

摘要

半月板损伤很常见,会影响身体活动。生物打印的半月板组织为半月板修复的供体组织提供了一种有吸引力的替代方案,但要达到天然组织的强度是一项挑战。在此,我们报告了一种组织工程生物反应器的开发,该反应器旨在施加重复力,这可能会导致生物打印半月板组织的压缩模量和耐久性增加。模块化生物反应器系统由一个可消毒的组织培养容器和一个施加并测量机械力的基座组成。培养容器允许对两个解剖尺寸的半月板同时进行压缩循环。使用带有步进电机的混合线性致动器,基座可以以高达20毫米/秒的速度施加高达300牛的力,这与膝关节解剖力和运动的上限相对应。一个可互换的22牛称重传感器安装在培养容器和基座之间,以记录力的变化。培养容器和基座都保存在标准细胞培养箱中以提供热量和二氧化碳,而基座则通过步进电机驱动器和定制软件在外部供电和控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb1d/10329160/a69a0746dc01/ga1.jpg

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