4.8 Article

Highly Stable Organic Small Molecular Nanoparticles as an Advanced and Biocompatible Phototheranostic Agent of Tumor in Living Mice

期刊

ACS NANO
卷 11, 期 7, 页码 7177-7188

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.7b03062

关键词

NIR-absorbing organic small molecule; probe stability; phototheranostics; photoacoustic imaging photothermal therapy; in vivo toxicity

资金

  1. University Grants Committee of Hong Kong [AoE/P-03/08]
  2. Research Grants Council of Hong Kong [16305015, 16308016, N-HKUST604/14]
  3. Innovation and Technology Commission [ITC-CNERC14SC01, ITCPD117-9]
  4. NSFC [51622305, 31571011]
  5. PCSIRT [IRT13023]
  6. Science & Technology Project of Tianjin of China [15JCYBJC29800]
  7. National Basic Research Program of China [2015CB856503]
  8. Science and Technology Plan of Shenzhen [JCYJ20160229205601482]

向作者/读者索取更多资源

Near-infrared (NIR)-absorbing organic small molecules hold great promise as the phototheranostic agents for clinical translation by virtue of their intrinsic advantages such as well-defined chemical structure, high purity, and good reproducibility. However, most of the currently available ones face the challenges in varying degrees in terms of photothermal instability, and photobleaching/reactive oxygen nitrogen species (RONS) inresistance, which indeed impair their practical applications in precise diagnosis and treatment of diseases. Herein, we developed highly stable and biocompatible organic nano particles (ONPs) for effective phototheranostic application by design and synthesis of an organic small molecule (namely TPA-T-TQ) with intensive absorption in the NIR window. The TPA-T-TQ ONPs with no noticeable in vivo toxicity possess better capacities in photothermal conversion and photoacoustic imaging (PM), as well as show far higher stabilities including thermal/photothermal stabilities, and photobleaching/RONS resistances, when compared with the clinically popularly used indocyanine green. Thanks to the combined merits, the ONPs can serve as an efficient probe for in vivo PM in a high-contrast manner, which also significantly causes the stoppage of tumor growth in living mice through PAI-guided photothermal therapy. This study thus provides an insight into the development of advanced NIR-absorbing small molecules for practical phototheranostic applications.

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