在盐应激下,酸盐作为冷保护剂
Susmita Sarkar1, Anku Guha1, Rayantan Sadhukhan1
1Center for Interdisciplinary Sciences, Tata Institute of Fundamental Research, Hyderabad 500046, India.
ACS biomaterials science & engineering
|September 12, 2023
概括
自然存在的氧化物,如甘氨酸和贝他因,通过恢复静电相互作用来保护细胞免受冷伤害. 这些生物相容的冷保护剂为基于细胞的生物医学提供了无毒的替代品.
科学领域:
- 生物物理学的生物物理.
- 材料科学 材料科学 材料科学
- 生物化学 生物化学
背景情况:
- 冷保存对于基于细胞的生物医学至关重要,但受到有毒冷保护剂 (CPA) 的限制.
- 开发无毒,生物相容的冷保护剂对于推进细胞疗法至关重要.
- 作为传统CPAs的潜在替代品,正在探索自然存在的氧化物.
研究的目的:
- 为了研究自然存在的奥斯莫利特的冷保护潜力.
- 了解奥斯莫利特保护人免受寒冷压力和盐效应的机制.
- 评估奥斯莫利特在保存充电生物接口中的适用性.
主要方法:
- 结合分子模拟和对充电纳米结构的实验研究.
- 在寒冷和高盐水条件下研究了原型化物 (甘氨酸和贝他因) 的作用.
- 对充电蛋白界面的验证结果.
主要成果:
- 在冷和盐应力下,甘氨酸和贝他因恢复选的表面间静电相互作用.
- 氧化物活性随着温度的增加而增加,以抵消增强的盐选.
- 保护机制可以从无机纳米结构转移到蛋白质接口.
结论:
- 自然存在的氧化物作为有效的,无毒的冷保护剂起作用.
- 它们的机制涉及恢复被寒冷和盐破坏的静电相互作用.
- 这些发现支持在生物医学和仿生学中的冷保存中使用酸盐.
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