Department of Medicine Ultrasonics, Nanfang Hospital, Southern Medical University, Guangzhou 510515, China.
Biomater Sci. 2020 Apr 21;8(8):2202-2211. doi: 10.1039/c9bm01794a. Epub 2020 Feb 26.
The efficiency of drug delivery and bioavailability to tumor cells are crucial for effective cancer chemotherapy. Herein, a doxorubicin (DOX) encapsulated lysolipid-based thermosensitive liposome decorated with cRGD peptide (RTSL) is conjugated on the surface of an IR780-loaded microbubble (IMB) to synthesize RTSL-IMBs. Sequentially taking advantage of acoustic-assisted early extravasation and thermo-triggered interstitium ultrafast drug release, RTSL-IMBs combine with ultrasound (US) and laser irradiation can advance drug delivery and bioavailability. In vitro experiments demonstrate that RTSL-IMBs associated with a two-step protocol (subsequently US irradiation for 1 min and laser irradiation for 5 min) can dramatically enhance the cellular uptake and bioavailability of DOX. In vivo fluorescence imaging studies reveal that the combination of RTSL-IMBs and US shows a 2.8-fold intratumoral drug accumulation increase at 0.5 h post-injection, while it will take 48 h to reach the same level of intratumoral drug accumulation for the RTSL-IMB group alone. Interestingly, the following localized application of a laser can further increase drug accumulation and slow tumor clearance. Histological analysis demonstrates that the combinational RTSL-IMBs, US and laser significantly improve the drug penetration distance and delivery efficiency in the tumor core. In this study, the acoustic/thermo-responsive hybrid system shows potential for advancing DOX chemotherapy in breast cancer cell MCF-7 xenograft nude mice.
药物传递效率和生物利用度对肿瘤细胞至关重要,这对有效的癌症化疗至关重要。在此,我们将阿霉素(DOX)封装在溶脂基热敏脂质体中,并在 cRGD 肽(RTSL)修饰后,将其连接到载有 IR780 的微泡(IMB)表面,以合成 RTSL-IMB。顺次利用声动力辅助早期渗出和热触发间质超快药物释放,RTSL-IMB 结合超声(US)和激光照射可以促进药物传递和生物利用度。体外实验表明,RTSL-IMB 与两步方案(随后 US 照射 1 分钟和激光照射 5 分钟)结合使用,可显著增强 DOX 的细胞摄取和生物利用度。体内荧光成像研究表明,RTSL-IMB 与 US 的联合使用可使肿瘤内药物积累在注射后 0.5 h 增加 2.8 倍,而单独使用 RTSL-IMB 组则需要 48 h 才能达到相同的肿瘤内药物积累水平。有趣的是,随后局部应用激光可以进一步增加药物积累并减缓肿瘤清除。组织学分析表明,联合使用 RTSL-IMB、US 和激光可显著提高肿瘤核心的药物渗透距离和传递效率。在这项研究中,声/热响应混合系统显示出在 MCF-7 异种移植裸鼠乳腺癌细胞中增强 DOX 化疗的潜力。