Kampaengsri Sastiya, Yong Gong Yi, Aryamueang Sirimongkon, Ouengwanarat Bongkot, Pewklang Thitima, Chansaenpak Kantapat, Jitrapakdee Sarawut, Kue Chin-Siang, Kamkaew Anyanee
School of Chemistry, Institute of Science, Suranaree University of Technology, Nakhon Ratchasima, 30000, Thailand.
School of Graduate Studies, Management and Science University, Seksyen 13, Shah Alam, 40100, Selangor, Malaysia.
Sci Rep. 2025 Jan 6;15(1):884. doi: 10.1038/s41598-024-83249-y.
In this work, we synthesize a quinoline-based heptamethine cyanine, QuCy7, with sulfonate groups to enhance water solubility. This dye demonstrates exceptional near-infrared absorption beyond 750 nm, accompanied by photothermal properties but low photostability. Encapsulating QyCy7 with polyethylene glycol to form nanopolymer, QuCy7@mPEG NPs, addresses the issue of its photoinstability. TEM showed that QuCy7@mPEG NPs possess a spherical morphology, featuring a core-shell structure with a size of around 120 nm in diameter. Upon irradiation with an 808 nm laser for 10 min, a significant increase in temperature up to 24 °C can be achieved with a photothermal conversion (PTC) rate of approximately 35%. QuCy7@mPEG NPs exhibit remarkable photothermal stability as compared to QuCy7. The efficiency of QuCy7@mPEG NPs was demonstrated by the in vitro PTT studies. Finally, the nanoparticles' acute toxicity and effectiveness were assessed using the chick embryo model. The results provide compelling evidence that QuCy7@mPEG NPs are safe without inducing hemolysis, inhibit angiogenesis when exposed to light, and exhibit anti-tumor activity with a 76% reduction in tumor size compared to QuCy7 (40%). Thus suggesting the sulfonate groups can enhance water solubility, and its nanopolymer is biocompatible and possesses superior anti-tumor efficacy.
在这项工作中,我们合成了一种带有磺酸基团的喹啉基七甲川花菁(QuCy7),以提高其水溶性。这种染料在750nm以上表现出优异的近红外吸收,同时具有光热特性,但光稳定性较差。用聚乙二醇包裹QuCy7形成纳米聚合物QuCy7@mPEG NPs,解决了其光不稳定的问题。透射电子显微镜(TEM)显示,QuCy7@mPEG NPs呈球形,具有核壳结构,直径约为120nm。用808nm激光照射10分钟后,温度可显著升高至24°C,光热转换(PTC)率约为35%。与QuCy7相比,QuCy7@mPEG NPs表现出显著的光热稳定性。体外光热疗法(PTT)研究证明了QuCy7@mPEG NPs的有效性。最后,使用鸡胚模型评估了纳米颗粒的急性毒性和有效性。结果提供了令人信服的证据,表明QuCy7@mPEG NPs是安全的,不会引起溶血,在光照下可抑制血管生成,并且与QuCy7(40%)相比,具有抗肿瘤活性,肿瘤大小减少了76%。因此表明磺酸基团可以提高水溶性,并且其纳米聚合物具有生物相容性和优异的抗肿瘤功效。