Department of Ultrasound in Medicine Shanghai Jiao Tong University Affiliated Sixth People's Hospital Shanghai 200233 P. R. China.
Shanghai Institute of Ultrasound in Medicine Shanghai Jiao Tong University Affiliated Sixth People's Hospital Shanghai 200233 P. R. China.
Adv Sci (Weinh). 2021 May 14;8(13):2004670. doi: 10.1002/advs.202004670. eCollection 2021 Jul.
The low delivery efficiency of nanoparticles to solid tumors greatly reduces the therapeutic efficacy and safety which is closely related to low permeability and poor distribution at tumor sites. In this work, an "intrinsic plus extrinsic superiority" administration strategy is proposed to dramatically enhance the mean delivery efficiency of nanoparticles in prostate cancer to 6.84% of injected dose, compared to 1.42% as the maximum in prostate cancer in the previously reported study. Specifically, the intrinsic superiority refers to the virus-mimic surface topology of the nanoparticles for enhanced nano-bio interactions. Meanwhile, the extrinsic stimuli of microbubble-assisted low-frequency ultrasound is to enhance permeability of biological barriers and improve intratumor distribution. The enhanced intratumor enrichment can be verified by photoacoustic resonance imaging, fluorescence imaging, and magnetic resonance imaging in this multifunctional nanoplatform, which also facilitates excellent anticancer effect of photothermal treatment, photodynamic treatment, and sonodynamic treatment via combined laser and ultrasound irradiation. This study confirms the significant advance in nanoparticle accumulation in multiple tumor models, which provides an innovative delivery paradigm to improve intratumor accumulation of nanotherapeutics.
纳米颗粒向实体瘤的递药效率低,极大地降低了治疗效果和安全性,这与肿瘤部位的低通透性和分布不良密切相关。在本工作中,提出了一种“内在加外在优势”的给药策略,可将前列腺癌中纳米颗粒的平均递药效率显著提高至 6.84%,比之前报道的研究中前列腺癌的最大递药效率 1.42%提高了 4 倍多。具体而言,内在优势是指纳米颗粒具有模拟病毒的表面拓扑结构,可增强纳米-生物相互作用。同时,利用微泡辅助低频超声的外在刺激来增强生物屏障的通透性,提高肿瘤内的分布。在这个多功能纳米平台中,可以通过光声共振成像、荧光成像和磁共振成像来验证增强的肿瘤内蓄积,这也有利于通过联合激光和超声辐照实现光热治疗、光动力治疗和声动力治疗的优异抗癌效果。本研究证实了在多种肿瘤模型中纳米颗粒蓄积的显著提高,为改善纳米药物在肿瘤内的蓄积提供了一种创新的递药范式。