Real-time nanodiamond thermometry probing in vivo thermogenic responses

被引:136
作者
Fujiwara, Masazumi [1 ]
Sun, Simo [2 ]
Dohms, Alexander [3 ]
Nishimura, Yushi [1 ]
Suto, Ken [1 ]
Takezawa, Yuka [2 ]
Oshimi, Keisuke [1 ]
Zhao, Li [4 ,5 ]
Sadzak, Nikola [3 ]
Umehara, Yumi [1 ]
Teki, Yoshio [1 ]
Komatsu, Naoki [6 ]
Benson, Oliver [3 ]
Shikano, Yutaka [7 ,8 ]
Kage-Nakadai, Eriko [2 ]
机构
[1] Osaka City Univ, Dept Chem, Sumiyoshi Ku, Osaka 5588585, Japan
[2] Osaka City Univ, Grad Sch Human Life Sci, Food & Human Hlth Sci, Sumiyoshi Ku, Osaka 5588585, Japan
[3] Humboldt Univ, Inst Phys & Iris Adlershof, Newtonstra 15, D-12489 Berlin, Germany
[4] Soochow Univ, State Key Lab Radiat Med & Protect, Sch Radiol & Interdisciplinary Sci RAD X, Suzhou 215123, Peoples R China
[5] Soochow Univ, State Key Lab Radiat Med & Protect, Collaborat Innovat Ctr Radiat Med Jiangsu Higher, Suzhou 215123, Peoples R China
[6] Kyoto Univ, Grad Sch Human & Environm Studies, Sakyo Ku, Kyoto 6068501, Japan
[7] Keio Univ, Quantum Comp Ctr, 3-14-1 Hiyoshi Kohoku, Yokohama, Kanagawa 2238522, Japan
[8] Chapman Univ, Inst Quantum Studies, 1 Univ Dr, Orange, CA 92866 USA
关键词
NITROGEN-VACANCY CENTERS; FLUORESCENT NANODIAMONDS; CAENORHABDITIS-ELEGANS; COHERENCE;
D O I
10.1126/sciadv.aba9636
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Real-time temperature monitoring inside living organisms provides a direct measure of their biological activities. However, it is challenging to reduce the size of biocompatible thermometers down to submicrometers, despite their potential applications for the thermal imaging of subtissue structures with single-cell resolution. Here, using quantum nanothermometers based on optically accessible electron spins in nanodiamonds, we demonstrate in vivo real-time temperature monitoring inside Caenorhabditis elegans worms. We developed a microscope system that integrates a quick-docking sample chamber, particle tracking, and an error correction filter for temperature monitoring of mobile nanodiamonds inside live adult worms with a precision of +/- 0.22 degrees C. With this system, we determined temperature increases based on the worms' thermogenic responses during the chemical stimuli of mitochondrial uncouplers. Our technique demonstrates the submicrometer localization of temperature information in living animals and direct identification of their pharmacological thermogenesis, which may allow for quantification of their biological activities based on temperature.
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页数:9
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