光热治疗
肿瘤微环境
细胞外基质
纳米医学
阿霉素
渗透(战争)
癌症研究
热疗
材料科学
生物医学工程
纳米技术
生物物理学
化学
纳米颗粒
肿瘤细胞
医学
化疗
生物
外科
生物化学
内科学
工程类
运筹学
作者
Zheng Li,Yabo Zhu,Zhijie Zhang,Huimin Wang,Chong Wang,Xu Chen,Shiyou Li,Shuya Zhang,Xiangliang Yang,Zifu Li
标识
DOI:10.1002/advs.202306730
摘要
Abstract Aberrant tumor mechanical microenvironment (TMME), featured with overactivated cancer‐associated fibroblasts (CAFs) and excessive extracellular matrix (ECM), severely restricts penetration and accumulation of cancer nanomedicines, while mild‐hyperthermia photothermal therapy (mild‐PTT) has been developed to modulate TMME. However, photothermal agents also encounter the barriers established by TMME, manifesting in limited penetration and heterogeneous distribution across tumor tissues and ending with attenuated efficiency in TMME regulation. Herein, it is leveraged indocyanine green (ICG)‐loaded soft nanogels with outstanding deformability, for efficient tumor penetration and uniform distribution, in combination with mild‐PTT to achieve potent TMME regulation by inhibiting CAFs and degrading ECM. As a result, doxorubicin (DOX)‐loaded stiff nanogels gain greater benefits in tumor penetration and antitumor efficacy than soft counterparts from softness‐mediated mild‐PTT. This study reveals the crucial role of nanomedicine mechanical properties in tumor distribution and provides a novel strategy for overcoming the barriers of solid tumors with soft deformable nanogels.
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