[1]JAIN KK.Advances in the field of nanoonclology[J].BMC Med, 2010, 13 (8) :83.
|
[2]VEISEH O, GUNN JW, ZHANG MQ.Design and fabrication of magnetic nanoparticles for targeted drug delivery and imaging[J].Adv Drug Deliv Rev, 2010, 62 (3) :284-304.
|
[3]FIGUEROLA A, CORATO RD, MANNA L, et al.From iron oxide nanoparticles towards advanced iron-based inorganic materials designed for biomedical applications[J].Pharmacol Res, 2010, 62 (2) :126-143.
|
[4]JUN YW, SEO JW, CHEON J.Nanoscaling laws of magnetic nanoparticles and their applicabilities in biomedical sciences[J].Acc Chem Res, 2008, 41 (2) :179-189.
|
[5]STEPHEN H, JUSTYNA G, FERIDE C, et al.Synthesis of chemically functionalized supe rparamagnetic nanoparticles as delivery vectors for chemotherapeutic drugs[J].Bioorg Med Chem, 2008, 16 (6) :2921-2931.
|
[6]JIAO ZY, LI C, MA ZL, et al.Experimental study of the changes of MR imaging of CS-g-PAA/Fe3O4nanoparticles in various sequences in vitro[J].Radiol Pract, 2009, 24 (12) :1299-1303. (in Chinese) 焦志云, 李澄, 马占龙, 等.壳聚糖-g-聚丙烯酸纳米Fe3O4磁共振体外信号的变化[J].放射学实践, 2009, 24 (12) :1299-1303.
|
[7]JIA FG, XU YX.Current situation and research advances in immunoimaging using superparamagnetic iron oxide[J].Radiol Pract, 2008, 23 (1) :101-103. (in Chinese) 贾飞鸽, 许乙凯.超顺磁性氧化铁 (SPIO) 的免疫成像现状及研究进展[J].放射学实践, 2008, 23 (1) :101-103.
|
[8]YI T, YAMASHITA Y, ARAKAWA A, et al.Detection of hepatocellular carcinoma arising in cirrhotic livers:comparison of gadolinium-and ferumoxides-enhanced MR imaging[J].AJR Am J Roentgenol, 1999, 172 (6) :1547-1554.
|
[9]QIAO RR, JIA QJ, ZENG JF, et al.Magneticiron oxide nanoparticles and their applications in magretic resonance imaging[J].Acta Biophysica Sinica, 2011, 27 (4) :272-288. (in Chinese) 乔瑞瑞, 贾巧娟, 曾剑峰, 等.磁性氧化铁纳米颗粒及其磁共振成像应用[J].生物物理学报, 2011, 27 (4) :272-288.
|
[10]ZHANG LQ, WU QF, CHEN XM, et al.Preparation and surface modification of SPIO and its application in MRI contrast agents[J].Materials Review, 2011, 25 (17) :35-40. (in Chinese) 张霖倩, 吴秋芳, 陈雪梅, 等.超顺磁性纳米氧化铁的制备、表面修饰及其在磁共振成像造影剂方面的应用[J].材料导报, 2011, 25 (17) :35-40.
|
[11]LIU YL, HUAN Y, WEI GQ, et al.Experimental study:the preparing of targeted-directed probe (Hab18-SPIO) and testing of Its phisichemical characteristics[J].J Pract Radiol, 2006, 22 (4) :385-388. (in Chinese) 刘燕丽, 宦怡, 魏光全, 等.Hab18-SPIO磁共振造影剂的制备及其实验研究[J].实用放射学杂志, 2006, 22 (4) :385-388.
|
[12]SONG JH, YU DX, FANG JJ, et al.Specific MR imaging of hepatocellular carcinoma using AFP-targeted USPIO molecular probe[J].Chin J Hepatobiliary Surg, 2012, 18 (8) :618-622. (in Chinese) 宋吉慧, 于德新, 方娟娟, 等.甲胎蛋白靶向USPIO分子探针在肝癌特异性磁共振成像中的价值[J].中华肝胆外科杂志, 2012, 18 (8) :618-622.
|
[13]CABRAL H, MATSUMOTOY, MIZUNO K, et al.Accumulation of sub-100 nm polymeric micelles in poorly permeable tumours depends on size[J].Nat Nanotechnol, 2011, 6 (12) :815.
|
[14]ITO A.Medical application of functionalized magnetic nanoparticles[J].J Biosci Bioeng, 2005, 100 (1) :1-11.
|
[15]PENG J, LIU X, WANG RB, et al.Target distribution of magnetic nano-liposome loaded with 5-Fluorouracil (MNLF) in rat with liver cancer[J].Chin J Modern Med, 2007, 17 (24) :2952-2956. (in Chinese) 彭健, 刘鑫, 王荣兵, 等.5-氟尿嘧啶磁性纳米脂质体在大鼠肝癌模型体内的靶向分布[J].中国现代医学杂志, 2007, 17 (24) :2952-2956.
|
[16]LUKYANOV AN, ELBAYOUMI TA, CHAKILAM AR, et al.Tumor-targeted liposomes:doxorubicin-loaded long-circulating liposomes modified with anti-cancer antibody[J].J Control Release, 2004, 100 (1) :135-144.
|
[17]XU Z, GU W, HUANG J, et al.In vitro and in vivo evaluation of actively targetable nanoparticles for paclitaxel delivery[J].Int J Pharm, 2005, 288 (2) :361-368.
|
[18]SHEN Z, WEI W, TANAKA H, et al.A galactosamine-mediated durg delivery carrier for targeted liver cancer therapy[J].Pharmacol Res, 2011, 64 (4) :410-419.
|
[19]WANG L, SU W, LIU Z, et al.CD44 antibody targeted liposomes for molecular imaging and therapy of hepatocellular carcinoma[J].Biomaterials, 2012, 33 (20) :5107-5114.
|
[20]CHEN XM, DING GP, GAO QH, et al.A human anti-c-met fab fragment conjugated with doxorubicin as targeted chemotherapy for hepatocellular carcinoma[J].PLoS One, 2013, 8 (5) :e63093.
|
[21]YANG XQ, GRAILER JJ, ROWLAND LJ, et al.Multifunctional SPIO/DOX-loaded wormlike polymer vesicles for cancer therapy and MR imaging[J].Biomaterials, 2010, 31 (34) :9065-9073.
|
[22]ZHU YF, FANG Y, KASKEL S.Folate-conjugated Fe3O4·SiO2hollow mesoporous spheres for targeted anticancer drug delivery[J].J Phys Chem C, 2010, 114 (39) :16382-16388.
|
[23]WANG ZL, GUO L, XIE DH.Preparation of folate receptor-targeted contrast agent and its use in magnetic resonance imaging research on nude mice bearing human hepatoma[C].A collection of papers resented at the 18thChinese congress of radiology sponsored by Chinese Medical association, 2011. (in Chinese) 王中领, 郭亮, 谢道海.叶酸靶向对比剂的制备及及其对荷人肝癌裸鼠的MR成像研究[C].中华医学会第十八次全国放射学学术会议论文汇编, 2011. (in Chinese)
|
[24]LING Y, WEI K, LUO Y, et al.Dual docetaxel/superparamagnetic iron oxide loaded nanoparticles for both targeting magnetic resonance imaging and cancer therapy[J].Biomaterials, 2011, 32 (29) :7139-7150.
|
[25]LIM EK, KIM B, CHOI Y, et al.Aptamer-conjugated magnetic nanoparticles enable efficient targeted detection of integrinαvβ3 via magnetic resonance imaging[J].J Biomed Mater Res A, 2013.[Epub ahead of print]
|
[26]HUANG H, LI Y, LI C, et al.A novel anti-VEGF targeting and MRI-visible smart drug delivery system for specific diagnosis and therapy of liver cancer[J].Macromol Biosci, 2013.[Epub ahead of print]
|
[27] FIGUEROLA A, CORATO RD, MANNA L, et al.From iron oxide nanoparticles towards advanced iron-based inorganic materials designed for biomedical applications[J].Pharmacol Res, 2010, 62 (2) :126-143.
|