Bharadwaj Anupam, Kumar Amalesh, Mitra Rumela, Jaganathan Bithiah Grace, Boruah Bosanta R
Department of Physics, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.
Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.
Methods Appl Fluoresc. 2024 May 24;12(3). doi: 10.1088/2050-6120/ad4ae6.
Blinking of fluorophores is essential in the context of single molecule localization-based optical super-resolution microscopy methods. To make the fluorescence molecule undergo blinking specific complex chemical mounting buffer systems, combined with suitable oxygen scavengers, and reducing agents are required. For instance to realise blinking in widely used fluorescence tags, like Alexa Fluor 647 (AF647), they are to be mounted on anti-fading buffer such as Mowiol and reducing agent such as Beta () - ME. However, the quality of the super-resolved images is decided by the total number of blinking events or in other words net duration for which the fluorescence blinking persists. In this paper we investigate how a violet and UV light induced fluorescence recovery mechanism can enhance the duration of fluorescence blinking. Our study uses AF647 dye conjugated with Phalloidin antibody in U87MG cell line mounted on Mowiol and- ME. On the basis of the investigation we optimize the intensity, at the sample plane, of fluorescence excitation laser at 638 nm and fluorescence recovery beam at 405 nm or in the UV giving the maximum possible fluorescence blinking duration. We observe that the longer blinking duration, using the optimized illumination scheme, has brought down the resolution in the super-resolved image, as given by Fourier Ring Correlation method, from 168 nm to 112 nm, while the separation between two nearby resolvable filaments has been brought down to ≤ 60 nm.
在基于单分子定位的光学超分辨率显微镜方法中,荧光团的闪烁至关重要。为使荧光分子发生闪烁,需要特定的复杂化学固定缓冲系统,并结合合适的氧清除剂和还原剂。例如,要在广泛使用的荧光标记物(如Alexa Fluor 647,简称AF647)中实现闪烁,需将它们固定在诸如Mowiol的抗褪色缓冲液和诸如β-巯基乙醇(β-ME)的还原剂中。然而,超分辨图像的质量取决于闪烁事件的总数,或者换句话说,取决于荧光闪烁持续的净持续时间。在本文中,我们研究了紫光和紫外光诱导的荧光恢复机制如何能够延长荧光闪烁的持续时间。我们的研究使用与鬼笔环肽抗体偶联的AF647染料,在固定于Mowiol和β-ME中的U87MG细胞系中进行。基于该研究,我们优化了样品平面上638 nm的荧光激发激光和405 nm或紫外光的荧光恢复光束的强度,以获得最大可能的荧光闪烁持续时间。我们观察到,使用优化的照明方案,较长的闪烁持续时间使超分辨图像的分辨率(由傅里叶环相关法给出)从168 nm降至112 nm,而两条相邻可分辨细丝之间的间距已降至≤60 nm。