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使用加热器-温度计混合金刚石纳米传感器对细胞内热导率进行原位测量。

In situ measurements of intracellular thermal conductivity using heater-thermometer hybrid diamond nanosensors.

作者信息

Sotoma Shingo, Zhong Chongxia, Kah James Chen Yong, Yamashita Hayato, Plakhotnik Taras, Harada Yoshie, Suzuki Madoka

机构信息

Institute for Protein Research, Osaka University, Osaka, Japan.

Japan Society for the Promotion of Science, Tokyo, Japan.

出版信息

Sci Adv. 2021 Jan 15;7(3). doi: 10.1126/sciadv.abd7888. Print 2021 Jan.

Abstract

Understanding heat dissipation processes at nanoscale during cellular thermogenesis is essential to clarify the relationships between the heat and biological processes in cells and organisms. A key parameter determining the heat flux inside a cell is the local thermal conductivity, a factor poorly investigated both experimentally and theoretically. Here, using a nanoheater/nanothermometer hybrid made of a polydopamine encapsulating a fluorescent nanodiamond, we measured the intracellular thermal conductivities of HeLa and MCF-7 cells with a spatial resolution of about 200 nm. The mean values determined in these two cell lines are both 0.11 ± 0.04 W m K, which is significantly smaller than that of water. Bayesian analysis of the data suggests there is a variation of the thermal conductivity within a cell. These results make the biological impact of transient temperature spikes in a cell much more feasible, and suggest that cells may use heat flux for short-distance thermal signaling.

摘要

了解细胞产热过程中纳米尺度的热耗散过程对于阐明细胞和生物体中热量与生物过程之间的关系至关重要。决定细胞内热通量的一个关键参数是局部热导率,这一因素在实验和理论上都鲜有研究。在这里,我们使用由包裹荧光纳米金刚石的聚多巴胺制成的纳米加热器/纳米温度计,以约200 nm的空间分辨率测量了HeLa细胞和MCF-7细胞的细胞内热导率。在这两种细胞系中测定的平均值均为0.11±0.04 W m K,明显低于水的热导率。对数据的贝叶斯分析表明,细胞内热导率存在变化。这些结果使细胞中瞬态温度峰值的生物学影响更具可行性,并表明细胞可能利用热通量进行短距离热信号传递。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf0c/7810374/eb74388fa287/abd7888-F1.jpg

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