Xia Qi, Chen Zikang, Zhou Yuping, Liu Ruiyuan
Biomaterials Research Center, School of Biomedical Engineering, Southern Medical University, Guangzhou 510515, P.R. China.
School of pharmaceutical Sciences, Southern Medical University, Guangzhou 510515, P.R. China.
Nanotheranostics. 2019 Apr 2;3(2):156-165. doi: 10.7150/ntno.33536. eCollection 2019.
Photodynamic therapy (PDT), which utilizes reactive oxygen species to ablate tumor, has attracted much attention in recent years. Photosensitizers with near-infrared (NIR) fluorescence as well as efficient ROS generation ability have been used for precise diagnosis and simultaneous treatment of cancer. However, photosensitizers frequently suffer from low ROS generation ability and NIR fluorescence quenching in aqueous media due to the aggregation. : We prepare an effective AIE active NIR emissive photosensitizer containing rhodanine as electron acceptor and triphenylvinylthiophene as electron donor is prepared, and encapsulate the corresponding photosensitizer into Pluronic F127 to fabricate NIR organic fluorescent nanoparticles. We then evaluate the NIR fluorescence bioimaging and photodynamic therapy ability of TPVTR dots and . : The yielded organic fluorescent nanoparticles exhibit effective ROS generation ability, bright NIR emission, high photostability, and good biocompatibility. Both and experiments confirm that NIR organic fluorescent nanoparticles demonstrate good performances in long-term tracing and photodynamic ablation of tumor. : In summary, the synthesized organic fluorescent nanoparticles, TPVTR dots, showed great potentials in long-term cell tracing and photodynamic therapy of tumor. Our study highlights the efficient strategy for developing promising near-infrared organic fluorescent nanoparticles in advancing the field of bioimaging and further image-guide clinical applications.
光动力疗法(PDT)利用活性氧来消融肿瘤,近年来备受关注。具有近红外(NIR)荧光以及高效活性氧生成能力的光敏剂已被用于癌症的精确诊断和同步治疗。然而,由于聚集,光敏剂在水性介质中经常存在活性氧生成能力低和近红外荧光猝灭的问题。我们制备了一种有效的具有聚集诱导发光(AIE)活性的近红外发光光敏剂,该光敏剂以罗丹宁作为电子受体,三苯基乙烯基噻吩作为电子供体,并将相应的光敏剂封装到普朗尼克F127中以制备近红外有机荧光纳米颗粒。然后我们评估了TPVTR点的近红外荧光生物成像和光动力治疗能力。所产生的有机荧光纳米颗粒表现出有效的活性氧生成能力、明亮的近红外发射、高光稳定性和良好的生物相容性。体内和体外实验均证实,近红外有机荧光纳米颗粒在肿瘤的长期追踪和光动力消融方面表现出良好的性能。总之,合成的有机荧光纳米颗粒TPVTR点在肿瘤的长期细胞追踪和光动力治疗方面显示出巨大潜力。我们的研究突出了开发有前景的近红外有机荧光纳米颗粒的有效策略,以推动生物成像领域及进一步的图像引导临床应用。