Gayoung JoYoonbin ParkMin Ho ParkHoon Hyun
Near-infrared (NIR) fluorophores have attracted great attention due to their excellent optical and photothermal properties. Among them, a bone-targeted NIR fluorophore (named P800SO3) contains two phosphonate groups, which play important roles in binding with hydroxyapatite (HAP) as the main mineral component of bones. In this study, biocompatible and NIR fluorescent HAP nanoparticles functionalized with P800SO3 and polyethylene glycol (PEG) were readily prepared for tumor-targeted imaging and photothermal therapy (PTT). The PEGylated HAP nanoparticle (HAP800-PEG) demonstrated improved tumor targetability with high tumor-to-background ratios (TBR). Moreover, the HAP800-PEG also showed excellent photothermal properties, and the temperature of tumor tissue reached 52.3 °C under NIR laser irradiation, which could completely ablate the tumor tissue without recurrence. Therefore, this new type of HAP nanoparticle has great potential as a biocompatible and effective phototheranostic material, which enables the use of P800SO3 for targeted photothermal cancer treatment.
L. PalanikumarFehmi Sami YasinTatiana HouhouFrancisco N. BarreraMazin Magzoub
Sungsu LeeJin Seok JungGayoung JoDae Hyeok YangYang Seok KohHoon Hyun
Hui GaoYing BiJun ChenLirong PengKaikai WenPan JiWeifeng RenXiaoqing LiNing ZhangJimin GaoZhifang ChaiYi Hu
Ben ShiQinglong YanJie TangKai XinJichao ZhangYing ZhuGe XuRongchen WangJian ChenWei GaoTianli ZhuJiye ShiChunhai FanChunchang ZhaoHe Tian
L. PalanikumarFehmi Sami YasinItgel MunkhjargalMaylis BoitetLiaqat AliMuhammed Shiraz AliRainer StraubingerFrancisco N. BarreraMazin Magzoub