[1] ANSARI S A, HUSAIN Q.Potential applications of enzymes immobilized on/in nano materials: a review[J]. Biotechnology Advances, 2012, 30(3):512-523. [2] ARIGA K, ITO H, HILL J P, et al.Molecular recognition: from solution science to nano/materials technology[J]. Chemical Society Reviews, 2012, 43(45):5800-5835. [3] 赵宇亮, 白春礼. 纳米安全性:纳米材料的生物效应[J]. 世界科学技术, 2005, 7(4):104-107. [4] REJMAN J, OBERLE V, ZUHORN I S, et al.Size-dependent internalization of particles via the pathways of clathrin-and caveolae-mediated endocytosis[J]. Biochemical Journal, 2004, 377(1):159-169. [5] GEISER M, ROTHEN-RUTISHAUSER B, KAPP N, et al.Ultrafine particles cross cellular membranes by nonphagocytic mechanisms in lungs and in cultured cells[J]. Environmental Health Perspectives, 2005, 113(11):1555-1560. [6] RENWICK L, BROWN D, CLOUTER A, et al.Increased inflammation and altered macrophage chemotactic responses caused by two ultrafine particle types[J]. Occupational & Environmental Medicine, 2004, 61(5):442-447. [7] JIAO F.Time-dependent translocation and potential impairment on central nervous system by intranasally instilled TiO2nanoparticles[J]. Toxicology, 2008, 254(1):82-90. [8] MA L, ZHAO J, WANG J, et al.The acute liver injury in mice caused by nano-anatase TiO2[J]. Nanoscale Research Letters, 2009, 4(11):1275. [9] GAO G, ZE Y, ZHAO X, et al.Titanium dioxide nanoparticle-induced testicular damage, spermatogenesis suppression, and gene expression alterations in male mice[J]. Journal of Hazardous Materials, 2013, 258(16):133-143. [10] HONG F, ZHAO X, SI W, et al.Decreased spermatogenesis led to alterations of testis-specific gene expression in male mice following nano-TiO2 exposure[J]. Journal of Hazardous Materials, 2015, 300:718-728. [11] GAO G, ZE Y, LI B, et al.Ovarian dysfunction and gene-expressed characteristics of female mice caused by long-term exposure to titanium dioxide nanoparticles[J]. Journal of Hazardous Materials, 2012, 243(4):19-27. [12] 王燕, 康现江, 穆淑梅. 纳米二氧化钛的毒理学研究进展[J]. 中国药理学与毒理学杂志, 2008, 22(1):77-80. [13] NAKAGAWA Y, WAKURI S, SAKAMOTO K, et al.The photogenotoxicity of titanium dioxide particles[J]. Mutation Research, 1997, 394(1-3):125. [14] HIRAKAWA K, MORI M, YOSHIDA M, et al.Photo-irradiated titanium dioxide catalyzes site specific DNA damage via generation of hydrogen peroxide[J]. Free Radical Research Communications, 2004, 38(5):439-447. [15] MURRAY T J, MAFFINI M V, UCCI A A, et al.Induction of mammary gland ductal hyperplasias and carcinoma in situ following fetal bisphenol A exposure[J]. Reproductive Toxicology, 2007, 23(3):383-390. [16] MURRAY T J, UCCI A A, MAFFINI M V, et al.Histological analysis of low dose NMU effects in the rat mammary gland[J]. Bmc Cancer, 2009, 9(1):267. [17] PHIPPS A I, MALONE K E, PORTER P L, et al.Body size and risk of luminal, HER2-overexpressing, and triple-negative breast cancer in postmenopausal women[J]. Journal of the National Cancer Institute, 2008, 17(8):2078. [18] GOLDHIRSCH A, GELBER R D, MOURIDSEN H.Endocrine aspects in adjuvant therapy for early breast cancer[M]. Berlin: Springer Berlin Heidelberg, 1986. [19] MA C, LI L X, ZHANG Y, et al.Protective and sensitive effects of melatonin combined with adriamycin on ER+ (estrogen receptor) breast cancer[J]. European Journal of Gynaecological Oncology, 2015, 36(2):197. |