Temperature-feedback upconversion nanocomposite for accurate photothermal therapy at facile temperature
Температурно-обратная апконверсионная нанокомпозитная система для точной фототермической терапии при умеренной температуре
2016-02-04
SCID: 54.1/aabtf54y
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photothermal ablationphotothermal therapyreal-time microscopic temperature monitoringspatially selective cancer treatmenttemperature-feedback upconversion nanoparticles
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Abstract (AI)
Photothermal therapy (PTT) at present, following the temperature definition for conventional thermal therapy, usually keeps the temperature of lesions at 42-45 °C or even higher. Such high temperature kills cancer cells but also increases the damage of normal tissues near lesions through heat conduction and thus brings about more side effects and inhibits therapeutic accuracy. Here we use temperature-feedback upconversion nanoparticle combined with photothermal material for real-time monitoring of microscopic temperature in PTT. We observe that microscopic temperature of photothermal material upon illumination is high enough to kill cancer cells when the temperature of lesions is still low enough to prevent damage to normal tissue. On the basis of the above phenomenon, we further realize high spatial resolution photothermal ablation of labelled tumour with minimal damage to normal tissues in vivo. Our work points to a method for investigating photothermal properties at nanoscale, and for the development of new generation of PTT strategy.
Key Findings
1
Photothermal material temperatures can reach cancer-cell-killing levels while lesion temperatures remain low enough to reduce damage to adjacent normal tissue.
2
The approach enables high-spatial-resolution ablation of labeled tumors in vivo with minimal damage to surrounding normal tissues.
3
The findings support nanoscale investigation of photothermal properties and development of more accurate photothermal therapy strategies.
4
The study integrates temperature-feedback upconversion nanoparticles with photothermal materials for real-time monitoring of microscopic temperature during photothermal therapy.
Research Object
temperature-feedback upconversion nanoparticle–photothermal material nanocomposite for photothermal therapy of labelled tumors
Research Subject
microscopic temperature feedback, nanoscale photothermal ablation, and selective tumor-cell killing with minimal thermal damage to surrounding normal tissue
Publication Details
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2016-02-04
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