Intracellular thermometry techniques play an important role in elucidating the relationship between the intracellular temperature and stem cell functions. However, there have been few reports on thermometry techniques that can detect the intracellular temperature of cells during several days of incubation. In this study, we developed a novel quantum thermometric sensing and analysis system (QTAS) using fluorescent nanodiamonds (FNDs). FNDs could label adipose tissue-derived stem cells (ASCs) at high efficiency with 24 h of incubation, and no cytotoxicity was observed in ASCs labeled with less than 500 μg mL−1 of FNDs. The peak of FNDs was confirmed at approximately 2.87 GHz with the characteristic fluorescence spectra of NV centers that cou...
Laser-induced thermal effects in optically trapped microspheres and single cells are investigated by...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
Temperature dependence of the fluorescence spectrum of ZnCdS nanoparticles introduced into 200-500 μ...
It has become clear that temperature plays a major role in many life phenomena. However, little is k...
The ability to precisely monitor the intracellular temperature directly contributes to the essential...
Abstract: Temperature is a widely known phenomenon, which plays an extremely important role in biolo...
Fluorescent nanodiamonds containing nitrogen-vacancy centers have attracted attention as nanoprobes ...
Sensitive probing of temperature variations on nanometre scales is an outstanding challenge in many ...
Direct observation of temperature distributions inside single living cells is a challenging yet fund...
Temperature is a key environmental variable that affects almost all natural and engineered systems f...
Recent studies using intracellular thermometers have shown that the temperature inside cultured sing...
Temperature is one of the most relevant parameters for the regulation of intracellular processes. Me...
The motivation behind this research project was to add the capability of magnetic field and temperat...
Luminescence thermometry usually suffer from cellular complexity of the biochemical environment (suc...
Acquiring the temperature of a single living cell is not a trivial task. In this paper, we devise a ...
Laser-induced thermal effects in optically trapped microspheres and single cells are investigated by...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
Temperature dependence of the fluorescence spectrum of ZnCdS nanoparticles introduced into 200-500 μ...
It has become clear that temperature plays a major role in many life phenomena. However, little is k...
The ability to precisely monitor the intracellular temperature directly contributes to the essential...
Abstract: Temperature is a widely known phenomenon, which plays an extremely important role in biolo...
Fluorescent nanodiamonds containing nitrogen-vacancy centers have attracted attention as nanoprobes ...
Sensitive probing of temperature variations on nanometre scales is an outstanding challenge in many ...
Direct observation of temperature distributions inside single living cells is a challenging yet fund...
Temperature is a key environmental variable that affects almost all natural and engineered systems f...
Recent studies using intracellular thermometers have shown that the temperature inside cultured sing...
Temperature is one of the most relevant parameters for the regulation of intracellular processes. Me...
The motivation behind this research project was to add the capability of magnetic field and temperat...
Luminescence thermometry usually suffer from cellular complexity of the biochemical environment (suc...
Acquiring the temperature of a single living cell is not a trivial task. In this paper, we devise a ...
Laser-induced thermal effects in optically trapped microspheres and single cells are investigated by...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
Temperature dependence of the fluorescence spectrum of ZnCdS nanoparticles introduced into 200-500 μ...