"Triple-Punch" Strategy for Triple Negative Breast Cancer Therapy with Minimized Drug Dosage and Improved Antitumor Efficacy

被引:126
作者
Su, Shishuai [1 ]
Tian, Yanhua [1 ]
Li, Yiye [1 ]
Ding, Yanping [1 ]
Ji, Tianjiao [1 ]
Wu, Meiyu [1 ]
Wu, Yan [1 ]
Nie, Guangjun [1 ]
机构
[1] Natl Ctr Nanosci & Technol China, CAS Key Lab Biomed Effects Nanomat & Nanosafety, Beijing 100190, Peoples R China
关键词
thermoresponsive; triple negative breast cancer; combination antitumor therapy; INDOCYANINE GREEN; CO-DELIVERY; DOXORUBICIN; NANOPARTICLES; INHIBITION; PACLITAXEL; SURVIVIN; MICELLES; RELEASE; CELLS;
D O I
10.1021/nn505729m
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Effective therapeutics against triple negative breast cancer (TNBC), which has no standard-of-care therapy, needs to be developed urgently. Here we demonstrated a strategy of integrating indocyanine green (ICG), paclitaxel (PTX), and survivin siRNA into one thermosensitive poly(2-(2-methoxyethoxy)ethyl methacrylate-co-oligo(ethylene glycol) methacrylate)-co-2-(dimethylamino)ethyl methacrylate-b-poly(d,l-lactide-co-glycolide) (P (MEO2MA-co-OEGMA-co-DMAEMA)-b-PLGA) nanoparticle (NP-IPS) for triple-punch strategy against TNBC. The NP-IPS significantly enhanced the stability of ICG. Controlled release of the PTX in tumor regions was triggered by the hyperthermia produced by laser irradiated ICG. The NP-IPS exhibited remarkable antitumor efficacy (almost complete ablation of the tumor xenografts) due to the combinational effects of chemotherapy, photothermal therapy, and gene therapy with low drug dose (ICG, 0.32 mu mol/kg; PTX, 0.54 mu mol/kg; siRNA, 1.5 mg/kg) and minimal side effects. Taken together, our current study demonstrates a nanoplatform for triple-therapy, which reveals a promising strategy for TNBC treatment.
引用
收藏
页码:1367 / 1378
页数:12
相关论文
共 34 条
  • [1] [Anonymous], 2011, Angewandte Chemie
  • [2] Nanomaterials: Applications in Cancer Imaging and Therapy
    Barreto, Jose A.
    O'Malley, William
    Kubeil, Manja
    Graham, Bim
    Stephan, Holger
    Spiccia, Leone
    [J]. ADVANCED MATERIALS, 2011, 23 (12) : H18 - H40
  • [3] Synergistic Targeting of Cell Membrane, Cytoplasm, and Nucleus of Cancer Cells Using Rod-Shaped Nanoparticles
    Barua, Sutapa
    Mitragotri, Samir
    [J]. ACS NANO, 2013, 7 (11) : 9558 - 9570
  • [4] Triple-negative breast cancer: disease entity or title of convenience?
    Carey, Lisa
    Winer, Eric
    Viale, Giuseppe
    Cameron, David
    Gianni, Luca
    [J]. NATURE REVIEWS CLINICAL ONCOLOGY, 2010, 7 (12) : 683 - 692
  • [5] Hyaluronic acid-chitosan nanoparticles for co-delivery of M1R-34a and doxorubicin in therapy against triple negative breast cancer
    Deng, Xiongwei
    Cao, Minjun
    Zhang, Jiakun
    Hu, Kelei
    Yin, Zhaoxia
    Zhou, Zhixiang
    Xiao, Xiangqian
    Yang, Yishu
    Sheng, Wang
    Wu, Yan
    Zeng, Yi
    [J]. BIOMATERIALS, 2014, 35 (14) : 4333 - 4344
  • [6] Layer-by-Layer Nanoparticles for Systemic Codelivery of an Anticancer Drug and siRNA for Potential Triple-Negative Breast Cancer Treatment
    Deng, Zhou J.
    Morton, Stephen W.
    Ben-Akiva, Elana
    Dreaden, Erik C.
    Shopsowitz, Kevin E.
    Hammond, Paula T.
    [J]. ACS NANO, 2013, 7 (11) : 9571 - 9584
  • [7] The effect of poly(ethylene glycol) molecular architecture on cellular interaction and uptake of DNA complexes
    Deshpande, MC
    Davies, MC
    Garnett, MC
    Williams, PM
    Armitage, D
    Bailey, L
    Vamvakaki, M
    Armes, SP
    Stolnik, S
    [J]. JOURNAL OF CONTROLLED RELEASE, 2004, 97 (01) : 143 - 156
  • [8] Cremophor EL: the drawbacks and advantages of vehicle selection for drug formulation
    Gelderblom, H
    Verweij, J
    Nooter, K
    Sparreboom, A
    [J]. EUROPEAN JOURNAL OF CANCER, 2001, 37 (13) : 1590 - 1598
  • [9] Amphiphilic and biodegradable methoxy polyethylene glycol-block-(polycaprolactone-graft-poly(2-(dimethylamino)ethyl methacrylate)) as an effective gene carrier
    Guo, Shutao
    Huang, Yuanyu
    Wei, Tuo
    Zhang, Wendi
    Wang, Weiwei
    Lin, Daoshu
    Zhang, Xu
    Kumar, Anil
    Du, Quan
    Xing, Jinfeng
    Deng, Liandong
    Liang, Zicai
    Wang, Paul C.
    Dong, Anjie
    Liang, Xing-Jie
    [J]. BIOMATERIALS, 2011, 32 (03) : 879 - 889
  • [10] MSN Anti-Cancer Nanomedicines: Chemotherapy Enhancement, Overcoming of Drug Resistance, and Metastasis Inhibition
    He, Qianjun
    Shi, Jianlin
    [J]. ADVANCED MATERIALS, 2014, 26 (03) : 391 - 411