光热治疗
循环肿瘤细胞
转移
癌症研究
乳腺癌
淋巴
癌细胞
材料科学
医学
癌症
免疫系统
淋巴系统
CD44细胞
阿霉素
吲哚青绿
体内
生物医学工程
病理
化疗
内科学
免疫学
体外
化学
纳米技术
生物
生物技术
生物化学
作者
Hao Ye,Kaiyuan Wang,Menglin Wang,Rongzheng Liu,Hang Song,Na Li,Qi Lu,Wenjuan Zhang,Yuqian Du,Wenqian Yang,Lu Zhong,Yu Wang,Bohong Yu,Hong Wang,Qiming Kan,Haotian Zhang,Yongjun Wang,Zhonggui He,Jin Sun
出处
期刊:Biomaterials
[Elsevier BV]
日期:2019-03-21
卷期号:206: 1-12
被引量:157
标识
DOI:10.1016/j.biomaterials.2019.03.024
摘要
Breast cancer is associated with high mortality due to tumor metastasis. The anti-metastasis efficacy of photochemotherapy is strictly limited by poor targeting capability with respect to circulating tumor cells (CTCs) in blood and lymph. Herein, we decorate the platelet membrane (PM) on a surface of nanoparticles (NPs), referred to as nanoplatelets. A chemotherapeutic drug, doxorubicin (DOX), and an FDA-approved photothermal agent, indocyanine green (ICG), are co-encapsulated into the biomimetic nanoplatelets. Nanoplatelets possess immune surveillance-escaping capability and specifically capture and clear CTCs in both blood and lymphatic circulations via high-affinity interactions between the P-Selectin of PM and CD44 receptors of tumor cells. PM-coated NPs show greater cellular uptake in MDA-MB-231 breast cancer cells and further elicit higher cytotoxicity to tumor cells relative to uncoated NPs. In vivo, we disclose that the multifunctional nanoplatelets not only completely ablate the primary tumor but also inhibit breast cancer metastasis with high efficiency in the three established xenograft or orthotopic breast tumor-bearing mice models. We conclude that such biomimetic nanoplatelets represent a promising strategy of coating a surface of nanoparticles with platelet membrane to actively capture and destroy CTCs in blood and lymph in breast cancer anti-metastasis therapy.
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