Key Laboratory of Smart Drug Delivery, Ministry of Education, School of Pharmacy, Fudan University , Lane 826, Zhangheng Road, Shanghai 201203, P.R. China.
Med-X Research Institute and School of Biomedical Engineering, Shanghai Jiao Tong University , 1954 Huashan Road, Shanghai 200030, P.R. China.
ACS Nano. 2017 Feb 28;11(2):1397-1411. doi: 10.1021/acsnano.6b06477. Epub 2017 Jan 26.
The dissemination, seeding, and colonization of circulating tumor cells (CTCs) serve as the root of distant metastasis. As a key step in the early stage of metastasis formation, colonization of CTCs in the (pre-)metastatic niche appears to be a valuable target. Evidence showed that inflammatory neutrophils possess both a CTC- and niche-targeting property by the intrinsic cell adhesion molecules on neutrophils. Inspired by this mechanism, we developed a nanosize neutrophil-mimicking drug delivery system (NM-NP) by coating neutrophils membranes on the surface of poly(latic-co-glycolic acid) nanoparticles (NPs). The membrane-associated protein cocktails on neutrophils membrane were mostly translocated to the surface of NM-NP via a nondisruptive approach, and the biobinding activity of neutrophils was highly preserved. Compared with uncoated NP, NM-NP exhibited enhanced cellular association in 4T1 cell models under shear flow in vitro, much higher CTC-capture efficiency in vivo, and improved homing to the premetastatic niche. Following loading with carfilzomib, a second generation of proteasome inhibitor, the NM-NP-based nanoformulation (NM-NP-CFZ) selectively depleted CTCs in the blood, prevented early metastasis and potentially inhibited the progress of already-formed metastasis. Our NP design can neutralize CTCs in the circulation and inhibit the formation of a metastatic niche.
循环肿瘤细胞 (CTC) 的传播、播种和定植是远处转移的根源。作为转移形成早期的关键步骤,CTC 在(前)转移灶微环境中的定植似乎是一个有价值的靶点。有证据表明,炎症中性粒细胞通过其固有细胞黏附分子同时具有 CTC 靶向和微环境靶向特性。受此机制启发,我们通过将中性粒细胞膜包覆在聚乳酸-羟基乙酸共聚物纳米颗粒 (NPs) 表面上,开发了一种纳米大小的中性粒细胞模拟药物传递系统 (NM-NP)。通过非破坏的方法,大多数中性粒细胞膜上的膜相关蛋白被转移到 NM-NP 的表面,并且保持了中性粒细胞的高生物结合活性。与未包覆的 NP 相比,NM-NP 在体外剪切流 4T1 细胞模型中表现出增强的细胞关联,在体内具有更高的 CTC 捕获效率,并改善了向预转移灶的归巢。负载第二代蛋白酶体抑制剂卡非佐米后,基于 NM-NP 的纳米制剂(NM-NP-CFZ)选择性地耗尽血液中的 CTC,防止早期转移并可能抑制已形成的转移的进展。我们的 NP 设计可以中和循环中的 CTC,并抑制转移灶微环境的形成。