Laser Research Laboratory, Departments of Physics and Electrical-Electronics Engineering, Koç University, Istanbul 34450, Turkey.
Koç University Surface Science and Technology Center (KUYTAM), Rumelifeneri, Istanbul 34450, Turkey.
J Phys Chem B. 2021 Oct 28;125(42):11650-11659. doi: 10.1021/acs.jpcb.1c06692. Epub 2021 Oct 17.
Nanoparticles have become popular photosensitizers for photothermal therapy (PTT), as they can be targeted to specific cancer tissues and deliver a chemotherapeutic drug, providing a multimodal therapeutic approach. Photothermal conversion efficiency of nanoparticles is critical in the assessment of their therapeutic use in PTT. We describe an accurate calorimetric method for the determination of the photothermal conversion efficiency of nanoparticles in solution. A tightly focused laser beam was used to irradiate a cuvette containing a solution of silver sulfide-glutathione quantum dots (AgS-GSH QDs), and the maximum steady-state temperature rise was measured with an infrared camera. The data were analyzed using two different photothermal conversion efficiencies, the intrinsic and external conversion efficiencies, to relate the induced heating power of the nanoparticles to the absorbed and incident optical powers, respectively. Measurements with a tunable Ti:sapphire laser showed that the intrinsic photothermal conversion efficiency of AgS-GSH QDs exceeded 91% over the 720-810 nm wavelength range. The method was also used to analyze poly(acrylic acid)-coated superparamagnetic iron oxide nanoparticles (PAA/SPIONs), and the intrinsic photothermal conversion efficiency was determined to be 83.4% at 810 nm. This approach is useful for the evaluation of various potential nanoparticles for photothermal therapy applications.
纳米粒子已成为光热治疗(PTT)中常用的光敏剂,因为它们可以靶向特定的癌症组织并输送化疗药物,提供一种多模式治疗方法。纳米粒子的光热转换效率在评估其在 PTT 中的治疗用途方面至关重要。我们描述了一种用于确定溶液中纳米粒子光热转换效率的准确量热法。使用聚焦激光束辐照含有硫化银-谷胱甘肽量子点(AgS-GSH QDs)溶液的比色皿,并使用红外摄像机测量最大稳态温度升高。使用两种不同的光热转换效率(固有和外部转换效率)分析数据,将纳米粒子的感应加热功率分别与吸收和入射光功率相关联。使用可调谐钛宝石激光的测量表明,AgS-GSH QDs 的固有光热转换效率在 720-810nm 波长范围内超过 91%。该方法还用于分析聚丙烯酸-包覆超顺磁性氧化铁纳米粒子(PAA/SPIONs),并确定其在 810nm 时的固有光热转换效率为 83.4%。该方法可用于评估各种潜在的用于光热治疗应用的纳米粒子。