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[4] Li D, Zhang Y T, Yu M, et al. Cancer therapy and fluorescence [18] Deshmukh A S, Chauhan P N, Noolvi M N, et al. Polymeric micelles:
imaging using the active release of doxorubicin from MSPs/Ni-LDH Basic research to clinical practice[J]. International Journal of
folate targeting nanoparticles[J]. Biomaterials, 2013, 34(32): Pharmaceutics, 2017, 532(1): 249-268.
7913-7922. [19] Wu J, Deng A, Wei J, et al. Synthesis and in vitro evaluation of
[5] Dong A J, Li X, Wang W W, et al. Layered double hydroxide pH-sensitive magnetic nano composites as methotrexate delivery
modified by PEGylated hyaluronic acid as a hybrid nanocarrier for system for targeted cancer therapy[J]. Materials Science Engineering
targeted drug delivery[J]. Transactions of Tianjin University, 2016, C, 2017, 71: 132-140.
22(3): 237-246. [20] Ren Jin (任锦), Liang Liang (梁良), Zhou Yu (周瑜), et al. Progress
[6] Zhu Y, Zhu R, Wang M, et al. Cancer therapy: anti-metastatic and in cancer diagnosis and treatment based on layered double hydroxide
anti-angiogenic activities of core-shell SiO 2@LDH loaded with nanomaterials[J]. Chinese Journal of Modern Applied Pharmacy (中
etoposide in non-small cell lung cancer[J]. Advanced Science, 2016, 国现代应用药学), 2018, 35(5): 774-780.
3(11): 1600629. [21] Huo Xiaolei (霍晓磊), Liu Suqing (柳素青), Li Shuping (李淑萍).
[7] Zuo H, Chen W, Cooper H M, et al. A facile way of modifying Controllable synthesis of methotrexatum/layered double hydroxide
layered double hydroxide nanoparticles with targeting ligand- nanohybrids to improve their anticancer efficacy[J]. Chinese Journal
conjugated albumin for enhanced delivery to brain tumour cells[J]. of Inorganic Chemistry (无机化学学报), 2014, 30(6): 1331-1338.
Acs Applied Materials Interfaces, 2017, 9(24): 20444-20453. [22] Huang Bowen (黄博文), Lv Xingbin (吕荥宾), Chen Jianjun (陈建
[8] Howard S C, Mccormick J, Pui C H, et al. Preventing and managing 钧), et al. Synthesis of Mg-Al hydrotalcite compounds and their
toxicities of high-dose methotrexate[J]. Oncologist, 2016, 21(12): application in phosphorus removal from waste water[J]. Journal of
1471-1482. Chemical Engineering of Chinese Universities (高校化学工程学报),
[9] Park J A, Young S H. Influence of genetic polymorphisms in the 2018, 32(3): 683-689.
folate pathway on toxicity after high-dose methotrexate treatment in [23] Ke Guojun (柯国军), Zhang Lin (张琳), Yang Pengfei (阳鹏飞), et
pediatric osteosarcoma[J]. Blood Research, 2016, 51(1): 50-57. al. Controlled synthesis of Mg-Al hydrotalcites with different
[10] Oh J M, Man P, Kim S T, et al. Efficient delivery of anticancer drug morphologies and their adsorption performances for chloride ion[J].
MTX through MTX-LDH nanohybrid system[J]. Journal of Physics Fine Chemicals (精细化工), 2017, 34(10): 1107-1113.
Chemistry of Solids, 2006, 67(5): 1024-1027. [24] Xia Zhiyong (夏志勇), Du Na (杜娜), Liu Jianqiang (刘建强), et al.
[11] Kim J Y, Choi S J, Oh J M , et al. Anticancer drug-inorganic Surface modification of layer double hydroxide particles by poly
nanohybrid and its cellular interaction[J]. Journal of Nanoscience and (ethylene glycol) and folic acid[J]. Chemical Journal of Chinese
Nanotechnology, 2007, 7(11): 3700-3705. Universities (高等学校化学学报), 2013, 34(3): 596-600.
[12] Tian D Y, Liu Z L, Li S P, et al. Facile synthesis of methotrexate [25] Choi S J, Choy J H. Layered double hydroxide nanoparticles as
intercalated layered double hydroxides: Particle control, structure and target-specific delivery carriers: uptake mechanism and toxicity[J].
bioassay explore[J]. Mater Scienceand Engineering C, 2014, 45: Nanomedicine, 2011, 6(5): 803-814.
297-305. [26] Lanone S, Rogerieux F, Geys J, et al. Comparative toxicity of 24
[13] Choi S J, Choi J H. Layered double hydroxide nanoparticles as manufactured nanoparticles in human alveolar epithelial and
target-specific delivery carriers: Uptake mechanism and toxicity[J]. macrophage cell lines[J/OL].Part & Fibre Toxicol, 2009, 6(1): 14.
Nanomedicine, 2011, 6(5): 803-814. [2019-5-24]. http://link.springer.com/article/10.1186/1743-8977-6-14.
[14] Choi S J, Oh J M, Choi J H. Biocompatible ceramic nanocarrier for doi:10.1186/1743-8977-6-14.
drug delivery with high efficiency[J]. Journal-Ceramic Society Japan, [27] Senapati S, Thakur R, Verma S P, et al. Layered double hydroxides as
2009, 1175(1365): 543-549. effective carrier for anticancer drugs and tailoring of release rate
[15] Zeng Meigui (曾美桂), Li Xiaodong (李晓东) Li Shuping (李淑萍). through interlayer anions[J]. Journal of Controlled Release, 2016,
Preparation and bioassay explore of methotrexatum/zinc-aluminum 224: 186-198.
layered double hydroxides[J]. Scientia Sinica Chimica(中国科学: 化 [28] Wang W Y, Liu H, Li S P, et al. Synthesis of methotrexatum
学), 2014, 44(10): 1553-1661. intercalated zinc–aluminum-layered double hydroxides and the
[16] Zhang Xiaoqing (张晓晴), Zeng Meigui (曾美桂), Li Shuping (李淑 corresponding cell studies[J]. Applied Clay Science, 2016, 121/122:
萍). Influence of different solvents on the property of methotrexate/ 103-110.
layered double hydroxides[J]. Acta Chimica Sinica (化学学报), [29] Kong X, Jin L, Wei M, et al. Antioxidant drugs intercalated into
2013, 71: 246-254. layered double hydroxide: Structure and in vitro release[J]. Applied
[17] Tian D Y, Wang Y, Li S P, et al. Synthesis of methotrexatum Clay Science, 2010, 49(3): 324-329.
intercalated layered double hydroxides by different methods: [30] Li F, Jin L, Han J, et al. Synthesis and controlled release properties of
Biodegradation process and bioassay explore[J]. Applied Clay prednisone intercalated Mg-Al layered double hydroxide composite[J].
Science, 2015, 118: 87-98. Industrial Engineering Chemistry Research, 2009, 48(12): 5590-5597.