论文标题
MCHERRY BIOLASER基于具有超低阈值的微泡腔
An mCherry biolaser based on microbubble cavity with ultra-low threshold
论文作者
论文摘要
在生物医学领域,生物震剂显示出巨大的潜力。荧光蛋白(FP)是一种具有良好发光效率的生物材料,可以用作生物塑料中的发光增益培养基。由于细胞/组织渗透性较高,比其他荧光蛋白较低,较低的细胞光毒性和相对较少的背景荧光,因此红色荧光蛋白更适合生物应用。 MCHERRY是最广泛使用的高质量红色荧光蛋白,因为其成熟时间短,发光特性稳定。在这项研究中,使用MCHERRY和微泡腔,我们实现了高度稳定的MCHERRY荧光蛋白激光。激光谐振器的质量因子为10^8,这是当前可用的FP激光器中最高的Q因子。此外,该激光的低阈值为286 FJ,可以有效地保护发光材料免受泵光的损坏。据我们所知,这样的阈值是FP激光器中最低的阈值。准备好的激光在宽的pH范围内显示出良好的稳定性,具有良好的光漂白阻力,可以在4度以近一个月的速度储存。同样,由于其激光阈值行为,激光可以用作生物标志物的高敏性分子浓度检测器。
Biolasers show considerable potential in the biomedical field. Fluorescent protein (FP) is a type of biomaterial with good luminescence efficiency that can be used as the luminescent gain medium in biolasers. Due to the higher cell/tissue permeability, lower cell phototoxicity, and relatively less background fluorescence than other fluorescent proteins, the red fluorescent protein is more suitable in biological applications. MCherry is the most extensively used high-quality red fluorescent protein because of its short maturation time and stable luminescence properties. In this study, using mCherry and microbubble cavity, we realize a highly stable mCherry fluorescent protein laser. The laser resonator achieves a quality factor of 10^8, which is the highest Q factor among the currently available FP lasers. Moreover, this laser exhibits low threshold of 286 fJ, which can effectively protect the luminescent material from being damaged by pump light. Such a threshold is the lowest in the FP lasers as per our knowledge. The prepared laser shows excellent stability in a wide pH range with good photobleaching resistance and can be stored at 4 degree for nearly a month. Also, the laser can serve as a high-sensitivity molecular concentration detector with mCherry as biomarker, owing to its lasing threshold behavior.