Institut Fresnel, CNRS, Aix Marseille Univ, Centrale Marseille, Marseille, 13013, France.
PHASICS S.A., Parc technologique de Saint Aubin, Route de l'Orme des Merisiers, 91190, Saint Aubin, France.
Small. 2018 Aug;14(32):e1801910. doi: 10.1002/smll.201801910. Epub 2018 Jul 11.
Laser heating of individual cells in culture recently led to seminal studies in cell poration, fusion, migration, or nanosurgery, although measuring the local temperature increase in such experiments remains a challenge. Here, the laser-induced dynamical control of the heat-shock response is demonstrated at the single cell level, enabled by the use of light-absorbing gold nanoparticles as nanosources of heat and a temperature mapping technique based on quadriwave lateral shearing interferometry (QLSI) measurements. As it is label-free, this approach does not suffer from artifacts inherent to previously reported fluorescence-based temperature-mapping techniques and enables the use of any standard fluorescent labels to monitor in parallel the cell's response.
激光加热培养中的单个细胞最近在细胞穿孔、融合、迁移或纳米手术等方面的研究中取得了重大进展,尽管在这些实验中测量局部温升仍然是一个挑战。在这里,通过使用光吸收金纳米粒子作为纳米热源和基于四波横向剪切干涉测量(QLSI)的温度映射技术,在单细胞水平上展示了激光诱导的热休克反应的动态控制。由于这种方法是无标记的,因此不会受到以前报道的基于荧光的温度映射技术固有的伪影的影响,并能够使用任何标准荧光标记物来并行监测细胞的反应。