[1] Huh JW, Kim YH, Park SJ, et al.Large-scale transcriptome sequencing and gene analyses in the crab-eating macaque (macaca fascicularis) for biomedical research[J]. BMC Genomics, 2012, 13(1):163. [2] Ebeling M, Küng E, See A, et al.Genome-based analysis of the nonhuman primate Macaca fascicularis as a model for drug safety assessment[J]. Genome Res, 2011, 21(10):1746-56. [3] 朱华, 李秦, 徐艳峰, 等. 光化学法制作食蟹猴局部脑缺血模型[J]. 中国比较医学杂志, 2008, 18(9):32-35. [4] 李加美, 朱华, 刘颖, 等. IL210 在人骨髓间充质干细胞移植治疗食蟹猴脑缺血中的作用[J]. 中国比较医学杂志,2009, 19(12):1-5. [5] 韦日明, 冯飞玲, 黄志宏, 等. 局部脑缺血食蟹猴动物模型的建立[J]. 广西医科大学学报, 2006, 23(2):456-458. [6] 朱华, 李秦, 冯铭, 等. 食蟹猴脑出血模型的建立及评价[J]. 中国比较医学杂志, 2009, 19(7):29-33. [7] Bons N, Mestre N, Ritchie K, et al.Identification of amyloid beta protein in the brain of the small, short-lived lemurian primate Microcebus murinus[J]. Neurobio of Aging, 1994, 15(2):215-220. [8] Kimura N, Okabayashi S, Ono F.Dynein dysfunction disrupts intracellular vesicle trafficking bidirectionally and perturbs synaptic vesicle docking via endocytic disturbances a potential mechanism underlying age-dependent impairment of cognitive function[J]. Am J Pathol, 2012, 180(2):550-561. [9] Bihaqi SW, Huang H, Wu J, et al.Infant exposure to lead (Pb) and epigenetic modifications in the aging primate brain: implications for Alzheimer's disease[J]. J Alzheimers Dis, 2011, 27(4):819-33. [10] Massacesi L, Joshi N, Lee-Parritz D, et al.Experimental allergic encephalomyelitis in cynomolgus monkeys. Quantitation of T cell responses in peripheral blood[J]. J Clin Invest, 1992, 90(2):399-404. [11] 孙晓梅, 陈瑜, 李春花, 等. 食蟹猴少精弱精动物模型建立的研究[J].实验动物科学与管理, 2006, 23(2):22-25. [12] Guo J, Jia Y, Tao SX, et al.Expression of nitric oxide synthase during germ cell apoptosis in testis ofcynomolgus monkey after testosterone and heat treatment[J]. J Androl, 2009, 30(2):190-199. [13] Li X, Liu Q, Liu S, Zhang X, et al.The spatiotemporal expression changes of 16 epididymis-specific genes induced by testosterone, heat, and combination treatment in cynomolgus monkey[J]. Acta Biochim Biophys Sin (Shanghai),2008, 40(8):721-728. [14] Haruyama E, Ayukawa Y, Kamura K, et al. Morphometric examination for development of reproductive organs in male cynomolgus monkeys[J]. Toxicol Pathol, 2012, May 2[Epub ahead of print]. [15] van Alphen MMA, van de Kant HJG, de Rooij DG. Protection from radiation-induced damage of spermatogenesis in the rhesus monkey (Macaca mulatta)by follicle-stimulating hormone[J].Cancer Res, 1989, 49:533-536. [16] Liang JH, Sankai T, Yoshida T, et al.Immunolocalization of proliferating cell nuclear antigen (PCNA) in cynomolgusmonkey (Macaca fascicularis) testes during postnatal development[J]. J Med Primatol, 2001, 30(2):107-111. [17] 马南花, 黎宗强, 覃坚, 等. 雌性食蟹猴月经周期中血清雌激素、孕激素水平的变化[J]. 实验动物与比较医学, 2008, 28(2):106-109. [18] 佟巍, 丛喆, 蒋红, 等. SIV mac感染食蟹猴、猕猴的外周血血象观察[J]. 实验动物科学与管理, 2002, 19(4):17-20. [19] Negri DR, Borghi M, Baroncelli S, et al.Identification of a cytotoxic T-lymphocyte (CTL) epitope recognized byGag-specific CTLs in cynomolgus monkeys infected with simian/human immunodeficiency virus[J]. J Gen Virol, 2006, 87(Pt 11):3385-3392. [20] de Groot NG, Heijmans CM, Koopman G, et al. TRIM5 allelic polymorphism in macaque species/populations of different geographic origins: its impact on SIV vaccine studies[J]. Tissue Antigens, 2011, 78(4):256-262. [21] McAuliffe J, Vogel L, Roberts A, et al. Replication of SARS coronavirus administered into the respiratory tract of African Green, rhesus and cynomolgus monkeys[J]. Virology,2004, 330(1):8-15. [22] Smits SL, van den Brand JM, de Lang A, et al. Distinct severe acute respiratory syndrome coronavirus-induced acute lung injury pathways in two different nonhuman primate species[J]. J Virol, 2011, 85(9):4234-4245. [23] 魏强, 高虹, 蒋虹, 等. SARS恢复猴和灭活疫苗免疫实验猴再次感染SARS-CoV研究[J]. 中国比较医学杂志, 2006,16(11):641-646. [24] Kuiken T, Rimmelzwaan GF, Van Amerongen G, et al.Pathology of human influenza A (H5N1) virus infection in cynomolgus macaques (Macaca fascicularis)[J]. Vet Pathol,2003, 40(3):304-310. [25] 李加美, 陈云新, 朱华, 等. 禽流感病毒感染食蟹猴肺组织内抗原提呈细胞亚型分析[J]. 中国比较医学, 2008, 18(8):1-5. [26] Tolnay AE, Baskin CR, Tumpey TM, et al.Extrapulmonary tissue responses in cynomolgus macaques (Macaca fascicularis) infected with highly pathogenic avian influenza A (H5N1) virus[J]. Arch Virol, 2010, 155(6):905-914. [27] Ichinohe T, Ainai A, Ami Y, et al.Intranasal administration of adjuvant-combined vaccine protects monkeys from challenge with the highly pathogenic influenza A H5N1 virus[J]. J Med Virol, 2010, 82(10):1754-1761. [28] Toyoshima Y, Sekiguchi S, Negishi T, et al.Differentiation of neural cells in the fetal cerebral cortex of cynomolgus monkeys (Macaca fascicularis). Comp Med, 2012, 62(1):53-60. [29] Yue F, Chen B, Wu D, et al.Biological properties of neural progenitor cells isolated from the hippocampus of adult cynomolgus monkeys[J]. Chin Med J (Engl), 2006, 119(2): 110-116. [30] Wang P, Liu XM, Liu XM, et al.Isolation, characterization andgene modification of fetal neural stem/progenitor cells from cynomolgus monkey[J]. Neuroreport, 2008, 19(4): 419-424. [31] Li W, Liu C, Qin J, Zhang L, et al.Efficient genetic modification of cynomolgus monkey embryonic stem cells with lentiviral vectors[J]. Cell Transplant, 2010, 19(9):1181-1193. [32] Ueda S, Yoshikawa M, Ouji Y, et al.Cynomolgus monkey embryonic stem cell lines express green fluorescent protein[J]. J Biosci Bioeng, 2006, 102(1):14-20. [33] Ooto S, Haruta M, Honda Y, et al.Induction of the differentiation of lentoids from primate embryonic stem cells[J].Invest Ophthalmol Vis Sci, 2003, 44(6):2689-2693. [34] Muramatsu S, Okuno T, Suzuki Y, et al.Multitracer assessment of dopamine function after transplantation of embryonic?stem cell-derived neural stem cells in a primate model of Parkinson's disease[J]. Synapse, 2009, 63(7):541-548. [35] Okahara-Narita J, Umeda R, Nakamura S, et al.Induction of pluripotent stem cells from fetal and adult cynomolgus monkey fibroblasts using four human transcription factors[J]. Primates, 2012, 53(2):205-213. [36] Ren Z H, Wang J Y, Zou C L, et al.Comparative characterization of mesenchymal stem cells from different age groups of cynomolgus monkey[J]. Sci China Life Sci, 2010, doi: 10.1007/s11427-010-0083-7 [37] Jiang X, Xu R, Yang Z, et al.Experimental study on trace marking and oncogenicity of neural stem cells derived from bone marrow[J]. Cell Mol Neurobiol, 2008, 28(5):689-711. [38] 刘嘉琳, 李加美, 朱华, 等. 人骨髓间充质干细胞移植对食蟹猴脑出血模型损伤的修复作用[J]. 中国比较医学杂志,2009, 19(10):1-5. [39] Litwak KN, Cefalu WT, Wagner JD.Chronic hyperglycemia increases arterial low-density lipoprotein metabolism and atherosclerosis in cynomolgus monkeys[J]. Metabolism,1998, 47(8):947-954. [40] Koulmanda M,Qipo A, Chebrolu S, et al.The efect of low versus high dose of streptozotocin in cynomolgus monkeys(Macaca fascilularis)[J]. Am J Transplant, 2003, 3(3):267-272. [41] Wu D, Zou C, Yue F, et al.The effect of long-term streptozotocin-induced diabetes mellitus(STZ-DM) on cynomolgus (Macaca fascicularis)monkeys[J]. J Med Primatol, 2009, 38(1):15-22. [42] Wagner JE, Kavanagh K, Ward GM, et al.Old world nonhuman primate models of type 2 diabetes mellitus[J]. ILAR J,2006, 47(3):259-271. [43] 靳丽莎, 郝香芬, 彭白露, 等. 六个肥胖相关基因在食蟹猴2型糖尿病不同发病时期的差异表达[J]. 动物学研究,2011, 32(1):50-55. [44] Bagdade JD, Wagner JD, Rudel LL, et al.Accelerated cholesteryl ester transfer and altered lipoprotein composition in diabetic cynomolgus monkeys[J]. J Lipid Res, 1995, 36(4):759-766. [45] Wieczorek G, Bigand M, Menninger K, et al.Acute and chronic vascular rejection in nonhuman primate kidney transplantation.[J]. Am J Transplant, 2006, 6(6):1285-1296. [46] Aoyagi T, Yamashita K, Suzuki T, et al.A human anti-CD40 monoclonal antibody, 4D11, for kidney transplantation in cynomolgus?monkeys: induction and maintenance therapy[J]. Am J Transplant, 2009, 9(8):1732-1741. [47] Bigaud M, Wieczorek G, Beerli C, et al.Sotrastaurin (AEB071) alone and in combination with cyclosporine A prolongs survival times of non-human primate recipients of life-supporting kidney allografts[J]. Transplantation, 2012,93(2):156-164. [48] Jacobson LH, Commerford SR, Gerber SP, et al.Characterization of a novel, brain-penetrating CB1 receptor inverse agonist: metabolic profile in diet-induced obese models and aspects of central activity[J]. Naunyn Schmiedebergs Arch Pharmacol, 2011, 384(6):565-581. [49] Warncke M, Calzascia T, Coulot M, et al.Different adaptations of IgG effector function in human and nonhuman primates and implications for therapeutic antibody treatment[J]. J Immunol, 2012, 188(9):4405-4411. [50] Uno Y, Osada N.CpG site degeneration triggered by the loss of functional constraint created a highly polymorphic macaque drug-metabolizing gene, CYP1A2[J]. BMC Evol Biol, 2011,11:283. [51] Uehara S, Murayama N, Nakanishi Y, et al.Immunochemical detection of cytochrome P450 enzymes in liver microsomes of 27 cynomolgus monkeys[J]. J Pharmacol Exp Ther, 2011,339(2):654-661. |