Suppr超能文献

用于生物工程化人角膜等效物的细胞的冷冻保护剂渗透性参数及冷冻保存应用

Cryoprotectant permeability parameters for cells used in a bioengineered human corneal equivalent and applications for cryopreservation.

作者信息

Ebertz S L, McGann L E

机构信息

Department of Laboratory Medicine and Pathology, University of Alberta, Alta., Canada.

出版信息

Cryobiology. 2004 Oct;49(2):169-80. doi: 10.1016/j.cryobiol.2004.06.005.

Abstract

A human corneal equivalent is being developed with applications in pharmaceutical testing and biomedical research, but the distribution of this engineered tissue, depends on successful cryopreservation. Cryopreservation of tissues depends on the presence of cryoprotectants, their addition and removal, and exposure to conditions during freezing and thawing, all of which depend on cellular membrane permeabilities to water and cryoprotectant. This study defines the permeability properties that define the rate of water and cryoprotectant movement across the plasma membrane of isolated human corneal endothelial, keratocyte, and epithelial cells. Cells were transferred from isotonic conditions (300 mosm/kg) to 0.5, 1, or 2 M dimethyl sulfoxide and propylene glycol solutions at constant temperature, and cell volumes monitored using an electronic particle counter. Histograms describing cell volume changes over time after cryoprotectant exposure allowed calculation of hydraulic conductivity (Lp), cryoprotectant permeability (Ps), and the reflection coefficient (sigma). Experimental values for Lp and Ps at 4, 13, 22, and 37 degrees C were used to determine the Arrhenius activation energy (Ea). Defining the permeability parameters and temperature dependencies allows simulation of responses of human corneal cells to addition and removal of cryoprotectants and to freezing conditions, allowing amount of supercooling, intracellular electrolyte concentration, and intracellular cryoprotectant concentration to be calculated. Simulations also show that the constituent cells in the bioengineered cornea respond differently to addition and removal of cryoprotectants and to freezing. This study has defined the requirements during cryopreservation for the corneal cells; future work will define the matrix requirements which will allow the development of a cryopreservation protocol.

摘要

一种用于药物测试和生物医学研究的人角膜等效物正在研发中,但其工程组织的分布取决于成功的冷冻保存。组织的冷冻保存取决于冷冻保护剂的存在、添加和去除,以及冷冻和解冻过程中的暴露条件,所有这些都取决于细胞膜对水和冷冻保护剂的渗透性。本研究确定了定义水和冷冻保护剂跨分离的人角膜内皮细胞、角膜基质细胞和上皮细胞质膜移动速率的渗透特性。将细胞从等渗条件(300 mosm/kg)转移至恒温的0.5、1或2 M二甲亚砜和丙二醇溶液中,并使用电子粒子计数器监测细胞体积。描述冷冻保护剂暴露后细胞体积随时间变化的直方图可用于计算水力传导率(Lp)、冷冻保护剂渗透率(Ps)和反射系数(sigma)。4、13、22和37摄氏度下Lp和Ps的实验值用于确定阿累尼乌斯活化能(Ea)。确定渗透参数和温度依赖性可模拟人角膜细胞对冷冻保护剂添加和去除以及冷冻条件的反应,从而计算过冷量、细胞内电解质浓度和细胞内冷冻保护剂浓度。模拟还表明,生物工程角膜中的组成细胞对冷冻保护剂的添加和去除以及冷冻的反应不同。本研究确定了角膜细胞冷冻保存期间的要求;未来的工作将确定基质要求,从而制定冷冻保存方案。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验