Development of Biomaterials from Polar Region, Korea Polar Research Institute, Incheon 21990, Republic of Korea.
CRYOTECH Inc., Busan 46744, Republic of Korea.
J Microbiol Biotechnol. 2024 May 28;34(5):1135-1145. doi: 10.4014/jmb.2402.02037. Epub 2024 Mar 19.
When cells are exposed to freezing temperatures, high concentrations of cryoprotective agents (CPA) prevent ice crystal formation, thus enhancing cell survival. However, high concentrations of CPAs can also cause cell toxicity. Exopolysaccharides (EPSs) from polar marine environments exhibit lower toxicity and display effects similar to traditional CPA. In this study, we sought to address these issues by i) selecting strains that produce EPS with novel cryoprotective activity, and ii) optimizing culture conditions for EPS production. Sixty-six bacteria producing mucous substances were isolated from the Ross Sea (Antarctic Ocean) using solid marine agar plates. Among them, sp. RosPo-2 was ultimately selected based on the rheological properties of the produced EPS (p-CY02). Cryoprotective activity experiments demonstrated that p-CY02 exhibited significantly cryoprotective activity at a concentration of 0.8% (w/v) on mammalian cells (HaCaT). This activity was further improved when combined with various concentrations of dimethyl sulfoxide (DMSO) compared to using DMSO alone. Moreover, the survival rate of HaCaT cells treated with 5% (v/v) DMSO and 0.8% (w/v) p-CY02 was measured at 87.9 ± 2.8% after freezing treatment. This suggests that p-CY02 may be developed as a more effective, less toxic, and novel non-permeating CPA. To enhance the production of EPS with cryoprotective activity, Response Surface Methodology (RSM) was implemented, resulting in a 1.64-fold increase in production of EPS with cryoprotective activity.
当细胞暴露在冷冻温度下时,高浓度的冷冻保护剂(CPA)可以防止冰晶形成,从而提高细胞存活率。然而,高浓度的 CPAs 也可能导致细胞毒性。来自极地海洋环境的胞外多糖(EPS)具有较低的毒性,并表现出与传统 CPA 相似的效果。在这项研究中,我们试图通过以下两种方法来解决这些问题:i)选择产生具有新型冷冻保护活性的 EPS 的菌株,ii)优化 EPS 生产的培养条件。我们使用固体海洋琼脂平板从罗斯海(南极海洋)中分离出了 66 株产生黏液物质的细菌。其中,最终根据产生的 EPS(p-CY02)的流变特性选择了 sp. RosPo-2。冷冻保护活性实验表明,p-CY02 在 0.8%(w/v)的浓度下对哺乳动物细胞(HaCaT)表现出显著的冷冻保护活性。与单独使用 DMSO 相比,当与各种浓度的二甲亚砜(DMSO)结合使用时,其活性进一步提高。此外,经 5%(v/v)DMSO 和 0.8%(w/v)p-CY02 处理的 HaCaT 细胞在冷冻处理后的存活率为 87.9±2.8%。这表明 p-CY02 可能被开发为一种更有效、毒性更小的新型非渗透型 CPA。为了提高具有冷冻保护活性的 EPS 的产量,我们采用响应面法(RSM),使具有冷冻保护活性的 EPS 的产量提高了 1.64 倍。