National-Regional Key Technology Engineering Laboratory for Medical Ultrasound, School of Biomedical Engineering, Health Science Center, Shenzhen University, Shenzhen, 518060, P.R. China.
Research Laboratory for Biomedical Optics and Molecular Imaging, CAS Key Laboratory of Health Informatics, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.
Theranostics. 2020 Aug 20;10(23):10448-10465. doi: 10.7150/thno.44879. eCollection 2020.
Insufficient penetration and accumulation of theranostic payloads in solid tumors greatly challenge the clinical translation of cancer nanomedicines. To address this challenge, we synthesized natural melanin-cored and doxorubicin-loaded perfluoropentane nanodroplets with good biocompatibility and self-assembling ability. We used an opto-acoustic synergistic irradiation (OASI) method that was effective at lower energy levels than ultrasound- or laser-only irradiation to safely vaporize the nanodroplets and to cavitate the generated microbubbles for mechanically enhancing intratumoral delivery. The delivered melanin and doxorubicin inside the tumors mediated secondary chemo-photothermal therapy under laser irradiation to fully kill cancer cells. animal experiments demonstrated direct mechanical disruption of tumor structures (H&E staining), enhanced intratumoral penetration of melanin (photoacoustic imaging), and efficient intratumoral accumulation of doxorubicin (fluorescent imaging). Anti-tumor experiments demonstrated that the nanodroplets combined with OASI treatment and subsequent laser irradiation could efficiently eliminate melanoma tumors. Melanin-cored and doxorubicin-loaded perfluoropentane nanodroplets hold great promise for translational sono-chemo-photothermal cancer therapy.
治疗剂在实体瘤中渗透和积累不足,极大地挑战了癌症纳米医学的临床转化。为了解决这一挑战,我们合成了具有良好生物相容性和自组装能力的天然黑色素核和阿霉素负载的全氟戊烷纳米液滴。我们使用光声协同辐照(OASI)方法,其在比超声或激光单独辐照更低的能量水平下有效,以安全地蒸发纳米液滴并空化生成的微泡,从而机械增强肿瘤内递药。在激光辐照下,肿瘤内递送达的黑色素和阿霉素介导二次化学-光热治疗,以完全杀死癌细胞。动物实验表明,肿瘤结构的直接机械破坏(H&E 染色)、黑色素在肿瘤内的渗透增强(光声成像)和阿霉素在肿瘤内的有效积累(荧光成像)。抗肿瘤实验表明,纳米液滴联合 OASI 处理和随后的激光照射可以有效地消除黑色素瘤肿瘤。载黑色素和阿霉素的全氟戊烷纳米液滴有望用于转化的声化学光热癌症治疗。