Page 92 - 《精细化工》2021年第5期
P. 92

·946·                             精细化工   FINE CHEMICALS                                 第 38 卷

                                                               [4]   VEETIL J V, YE K. Tailored carbon nanotubes for tissue engineering
                                                                   applications[J]. Biotechnology Progress, 2009, 25(3): 709-721.
                                                               [5]   KANFIMALLA V B, TRIPATHI V S, JU H. A conductive ormosil
                                                                   encapsulated with ferrocene conjugate and multiwall carbon  nanotubes
                                                                   for biosensing application[J]. Biomaterials, 2006, 27(7): 1167-1174.
                                                               [6]   SHVEDOVA A A,  KISIN E R, PORTER D,  et al. Mechanisms of
                                                                   pulmonary toxicity and medical applications of carbon nanotubes:
                                                                   Two faces of Janus[J]. Pharmacology & Therapeutics, 2009, 121(2):
                                                                   192-204.
                                                               [7]   SMART S K, CASSADY A I, LU G Q, et al. The biocompatibility of
                                                                   carbon nanotubes[J]. Carbon, 2006, 44(6): 1034-1047.
                                                               [8]   ALI BOUCETTA  H, KOSTARELOS K. Pharmacology  of carbon
                                                                   nanotubes: Toxicokinetics, excretion and tissue accumulation[J].
                                                                   Advanced Drug Delivery Reviews, 2013, 65: 2111-2119.
                                                               [9]   CHOPRA N G, LUYKEN R J,  CHERREY K,  et al. Boron  nitride
                                                                   nanotubes[J]. Science, 1995, 269: 966-967.
                                                               [10]  LI X, ZHI C Y,  HANAGATA N,  et al.  Boron nitride nanotubes
                                                                   functionalized with mesoporous silica for intracellular  delivery of
                                                                   chemotherapy drugs[J]. Chemical  Communications, 2013, 49(66):
                                                                   7337-7339.
                                                               [11]  LAHIRI D, ROUZAUD F, RICHARD T, et al. Boron nitride nanotube
                                                                   reinforced polylactide-polycaprolactone copolymer  composite:
                                                                   Mechanical properties and cytocompatibility with osteoblasts and
                                                                   macrophages in vitro[J]. Acta Biomaterialia, 2010, 6: 3524-3533.
                                                               [12]  MENICHETTI L, DE MARCHI D, CALUCCI L, et al. Boron nitride
                                                                   nanotubes  for  boron neutron capture therapy as contrast  agents in
            图 8   不同质量浓度 BNNTs-OH 孵育不同时间对 L02 细
                                                                   magnetic resonance imaging at 3T[J]. Applied Radiation and
                  胞存活率的影响                                          Isotopes, 2011, 69: 1725-1727.
            Fig. 8    Effects of different BNNTs-OH mass concentrations   [13]  HORVÁTH L, MAGREZ A, GOLBERG D, et al. In vitro investigation
                   on the viability of L02 cells after incubation for   of the cellular toxicity of boron  nitride nanotubes[J].  ACS Nano,
                   different time                                  2011, 5: 3800-3810.

                                                               [14]  CHEN X, WU P, ROUSSEAS M, et al. Boron nitride nanotubes are
            3   结论                                                 noncytotoxic and can be functionalized for interaction with proteins
                                                                   and cells[J]. Journal of the American Chemical Society, 2009, 131:
                                                                   890-891.
                 采用盐酸和浓硝酸先后处理,除去了原始 BNNTs
                                                               [15]  KOI N, OKU T, INOUE M,  et al. Structures and purification of
            所含的催化剂杂质,并进行羟基化修饰,获得了尺                                 boron nitride nanotubes synthesized from boron-based powders with
            寸较短的 BNNTs-OH。浓硝酸的利用大大缩短了羟                             iron particles[J]. Journal of Materials Science, 2008, 43: 2955-2961.
                                                               [16]  LI L H, CHEN Y. Superhydrophobic properties of nonaligned boron
            基化时间。羟基化的 BNNTs 在水溶液中具有很好的
                                                                   nitride nanotube films[J]. Langmuir, 2010, 26(7): 5135-5140.
            分散性,平均水合粒径约为 1246.7 nm。荧光光谱表                       [17]  MUTZ M,  EASTWOOD E,  DADMUN M D.  Quantifying  the
            明,BNNTs-OH 具有特殊的荧光特性,在一定的激                             solubility of  boron nitride nanotubes and sheets with static light
            发波长下可以实现细胞内的定位。细胞毒性测试表                                 scattering and refractometry[J]. Journal of Physical Chemistry C,
                                                                   2013, 117(25): 13230-13238.
            明,经过酸化处理,截短和氧化后的 BNNTs-OH 对                        [18]  ZHI C Y, BANDO Y, TERAO T, et al. Chemically activated boron
            人胚胎肝细 胞系 L02 细胞未呈现 细胞毒性。                               nitride nanotubes[J]. Chemical Asian Journal, 2009, 4: 1536-1540.
                                                               [19]  CIOFANI G, GENCHI G G, LIAKOS I, et al. A simple approach to
            BNNTs-OH 是一种具有生物相容性的纳米材料,为
                                                                   covalent functionalization of boron nitride nanotubes[J]. Journal of
            其在生物领域的应用奠定了前期工作基础。                                    Colloid and Interface Science, 2012, 374(1): 308-314.
                                                               [20]  PAN A, CHEN Y J. Large-scale fabrication of boron nitride nanotubes
            参考文献:                                                  with high purity via solid-state reaction method[J]. Nanoscale Research
            [1]   HUANG H, YUAN Q, SHAH J S,  et al.  A new family of   Letters, 2014, 9: 555.
                 folate-decorated and carbon nanotube-mediated drug delivery   [21]  ZHANG H X (张会鲜), HE Q Y (何琪杨). Optimization study on the
                 system: Synthesis and drug delivery response[J]. Advanced Drug   detection of tumor cell proliferation with CCK-8 method [J]. Journal
                 Delivery Reviews, 2011, 63: 1332-1339.            of Pharmaceutical Research (药学研究), 2016, 35(2): 63-66.
            [2]   WELSHER K, LIU Z, DARANCIANG D, et al. Selective probing   [22]  HOU L X,  CHEN Z G,  LIU X  H,  et al. X-ray  photoelectron
                 and imaging of cells with single walled carbon nanotubes as   spectroscopy study of cubic boron nitride single crystals grown under
                 near-infrared fluorescent  molecules[J]. Nano Letters, 2008, 8(2):   high pressure and high temperature[J]. Applied Surface Science,
                 586-590.                                          2012, 258(8): 3800-3804.
            [3]   MENG  L J,  ZHANG X K, LU Q H,  et al. Single walled carbon   [23]  YANG  L J (杨丽娇), WANG J  L (王金良), YANG C T (杨成涛),
                 nanotubes as drug delivery vehicles: Targeting doxorubicin to   et al.  Photoluminescence principle and research progress  of silicon
                 tumors[J]. Biomaterials, 2012, 33(6): 1689-1698.     nanowire[J]. Materials Reports (材料导报), 2012, 26(21): 135-141.
   87   88   89   90   91   92   93   94   95   96   97