Department of Medicine and Center for Alcohol Research, Liver Disease and Nutrition, Salem Medical Center, University of Heidelberg, Heidelberg, Germany.
Adv Med Sci. 2009;54(2):121-35. doi: 10.2478/v10039-009-0042-3.
The increasing demand in studying cellular functions in cultured cells under various levels of oxygen and hydrogen peroxide (H2O2) is only partly fulfilled by conventional approaches such as hypoxia chambers, bolus additions of H2O2 or redox-cycling drugs. This article describes the recently developed enzymatic GOX/CAT system consisting of glucose oxidase (GOX) and catalase (CAT) that allows the independent control and maintenance of both H2O2 and hypoxia in cell culture. In contrast to hypoxia chambers, the GOX/CAT system more rapidly induces hypoxia within minutes at a defined rate. The degree of hypoxia is dependent on the GOX activity and the diffusion distance of oxygen from the medium surface to the adherent cells. In contrast, H2O2 levels are solely controlled by the ratio of GOX and CAT activities. They can be adjusted at non-toxic or toxic dosages over 24 hours. Thus, the GOX/CAT system mimics a non-phosphorylating respiratory chain and allows to adjust H2O2 levels under hypoxic conditions truly simulating H2O2 release e.g. by inflammatory cells or intracellular sources. GOX/CAT can be employed to address many questions ranging from redox signaling to ischemia/reperfusion studies in transplantation medicine. Factors such as HIF1 alpha that respond both to hypoxia and H2O2 are an especially attractive target for the novel methodology. Several applications are discussed in detail to demonstrate the technical requirements and potentials. In addition, simplified protocols are presented for cell or molecular biology labs without dedicated biophysical equipment.
在各种氧和过氧化氢 (H2O2) 水平下研究培养细胞中细胞功能的需求不断增加,传统方法(如低氧室、H2O2 的一次性添加或氧化还原循环药物)只能部分满足这一需求。本文描述了最近开发的酶促 GOX/CAT 系统,该系统由葡萄糖氧化酶 (GOX) 和过氧化氢酶 (CAT) 组成,可独立控制和维持细胞培养中的 H2O2 和缺氧。与低氧室相比,GOX/CAT 系统可在数分钟内以定义的速率更快地诱导缺氧。缺氧的程度取决于 GOX 活性和氧气从中介质表面扩散到贴壁细胞的距离。相比之下,H2O2 水平仅由 GOX 和 CAT 活性的比例控制。它们可以在 24 小时内以非毒性或毒性剂量进行调整。因此,GOX/CAT 系统模拟了非磷酸化呼吸链,并允许在缺氧条件下调整 H2O2 水平,真正模拟例如炎症细胞或细胞内来源释放的 H2O2。GOX/CAT 可用于解决从氧化还原信号到移植医学中再灌注研究等许多问题。对新型方法特别有吸引力的目标是对缺氧和 H2O2 都有反应的因素,如 HIF1 alpha。详细讨论了几个应用,以展示技术要求和潜力。此外,还为没有专用生物物理设备的细胞或分子生物学实验室提供了简化的方案。