Department of Physics, Indian Institute of Technology Madras, Chennai, 600036, India.
Department of Applied Mechanics, Indian Institute of Technology Madras, Chennai, 600036, India.
Soft Matter. 2020 Aug 19;16(32):7606-7612. doi: 10.1039/d0sm00566e.
Normal thermal fluctuations of the cell membrane have been studied extensively using high resolution microscopy and focused light, particularly at the peripheral regions of a cell. We use a single probe particle attached non-specifically to the cell-membrane to determine that the power spectral density is proportional to (frequency)-5/3 in the range of 5 Hz to 1 kHz. We also use a new technique to simultaneously ascertain the slope fluctuations of the membrane by relying upon the determination of pitch motion of the birefringent probe particle trapped in linearly polarized optical tweezers. In the process, we also develop the technique to identify pitch rotation to a high resolution using optical tweezers. We find that the power spectrum of slope fluctuations is proportional to (frequency)-1, which we also explain theoretically. We find that we can extract parameters like bending rigidity directly from the coefficient of the power spectrum particularly at high frequencies, instead of being convoluted with other parameters, thereby improving the accuracy of estimation. We anticipate this technique for determination of the pitch angle in spherical particles to high resolution as a starting point for many interesting studies using the optical tweezers.
细胞膜的正常热涨落已经被广泛研究,使用高分辨率显微镜和聚焦光,特别是在细胞的外围区域。我们使用一个非特异性地附着在细胞膜上的单个探针粒子来确定在 5 Hz 到 1 kHz 的范围内,功率谱密度与(频率)-5/3 成正比。我们还使用一种新技术,通过依赖于在线性偏振光镊中捕获的双折射探针粒子的偏航运动的确定,同时确定膜的斜率涨落。在这个过程中,我们还开发了使用光镊以高分辨率识别偏航旋转的技术。我们发现斜率涨落的功率谱与(频率)-1 成正比,我们也从理论上进行了解释。我们发现,我们可以直接从功率谱的系数中提取出弯曲刚度等参数,特别是在高频时,而不是与其他参数混在一起,从而提高了估计的准确性。我们预计,这项技术可以将球形粒子的偏航角确定到高分辨率,作为使用光镊进行许多有趣研究的起点。