CHINESE JOURNAL OF PARASITOLOGY AND PARASITIC DISEASES ›› 2020, Vol. 38 ›› Issue (1): 115-119.doi: 10.12140/j.issn.1000-7423.2020.01.017
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JI Ya-nan, LIAN Xiao-li, ZHU Feng-long, YANG Yi-mei*
Received:
2019-04-30
Online:
2020-02-28
Published:
2020-03-19
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E-mail: yimeidali@163.com
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JI Ya-nan, LIAN Xiao-li, ZHU Feng-long, YANG Yi-mei. Current applications of metal nanoparticles in detection and treatment of common infectious diseases[J]. CHINESE JOURNAL OF PARASITOLOGY AND PARASITIC DISEASES, 2020, 38(1): 115-119.
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URL: https://www.jsczz.cn/EN/10.12140/j.issn.1000-7423.2020.01.017
[1] | Li Y, Sun MY, Ma C, et al. Preparation of gold nanoparticles and research of its biocompatibility in vitro and in vivo[J]. Stomatology, 2016, 36(9): 774-777. (in Chinese)(李昀, 孙沫逸, 马超, 等. 纳米金颗粒的制备及其生物相容性研究[J]. 口腔医学, 2016, 36(9): 774-777.) |
[2] | Peng Y, Wu J, Wang J, et al. Study and evaluation of wondfo rapid diagnostic kit based on nano-gold immunochromatography assay for diagnosis of Plasmodium falciparum[J]. Parasitol Res, 2012, 110(4): 1421-1425. |
[3] | Liu X, Li RZ, Li L, et al. Immunoanalysis of E. coli O157 ∶ H7 based on au nanoparticles labelling antibody using SPR biosensor[J]. Chem J Chin Univ, 2013, 34(6): 1333-1338. (in Chinese)(刘霞, 李蓉卓, 李蕾, 等. 纳米金标记抗体增强SPR检测大肠杆菌O157 ∶ H7[J]. 高等学校化学学报, 2013, 34(6): 1333-1338.) |
[4] | Liu J.Construction and application of novel aptamer sensor for papid detection of Mycobacterium tuberculosis[D]. Changsha: Hunan University, 2015. (in Chinese)(刘晶. 新型适配体传感器的构建及应用于结核分枝杆菌的快速检测[D]. 长沙: 湖南大学, 2015.) |
[5] | Xie TB.Detection method research of food-borne pathogenic bacteria using quantun dots-nanogold composite probe[D]. Hefei: Anhui Agricultural University, 2018. (in Chinese)(谢同彬. 量子点—纳米金复合探针检测食源性致病菌的方法研究[D]. 合肥: 安徽农业大学, 2018.) |
[6] | Dai Y. Nano-robe chip technology for detection of trace amounts of hepatitis B virus DNA[J]. China Med Device Inf, 2018, 24(1): 30, 43. (in Chinese)(戴颖. 纳米探针芯片技术用于微量乙肝病毒DNA的检测[J]. 中国医疗器械信息, 2018, 24(1): 30, 43.) |
[7] | Xie L.Diagnosis of tuberculosis with gold nanoparticles biosensor based on the recombinant fusion protein TB10.4-Hsp16.3 of Mycobacteria tuberculosis[D]. Changsha: Hunan Normal University, 2016. (in Chinese)(谢琳. 结核分枝杆菌重组融合蛋白TB10.4-Hspl6.3纳米金生物传感器诊断结核病的研究[D]. 长沙: 湖南师范大学, 2016.) |
[8] | Li JM.Optimized polymerization of gold nanorods and its basic research on detection of schistosomiasis[D]. Dali: Dali University, 2017. (in Chinese)(李家萌. 纳米金棒的优化聚合及应用于血吸虫病检测的基础研究[D]. 大理: 大理大学, 2017.) |
[9] | Cao Y.Screening of diagnostic antigens for gold nanoparticles labeled with Trichinella spiralis and its application in serological diagnosis[D]. Dali: Dali University, 2017. (in Chinese)(曹颖. 纳米金棒标记旋毛虫诊断抗原的筛选及应用于血清学诊断的研究[D]. 大理: 大理大学, 2017.) |
[10] | Kong YF.The basic research on antigen screening and serological diagnosis of Angiostrongylus cantonensis’s functionalized gold nanorods[D]. Dali: Dali University, 2018. (in Chinese)(孔玉方. 广州管圆线虫功能化纳米金棒抗原筛选及血清学诊断的基础研究[D]. 大理: 大理大学, 2018.) |
[11] | Gu DX, Dong N, Zheng ZW, et al. A fatal outbreak of ST11 carbapenem-resistant hypervirulent Klebsiella pneumoniae in a Chinese hospital: a molecular epidemiological study[J]. Lancet Infect Dis, 2018, 18(1): 37-46. |
[12] | Yu MQ.Detection of ferric ions and pathogenic bacteria based on antibiotic functionalized gold nanomaterials and their study of antibacterial effects[D]. Chongqing: Southwest University, 2017. (in Chinese)(余梦群. 抗生素功能化金纳米材料用于铁离子和致病菌检测以及抗菌作用研究[D]. 重庆: 西南大学, 2017.) |
[13] | Zheng KY, Setyawati MI, Leong DT, et al. Antimicrobial gold nanoclusters[J]. ACS Nano, 2017, 11(7): 6904-6910. |
[14] | Wu SM.Silica coated gold and silver nanocapsules in combination with anti infective therapy[G]//Antibacterial Industry Branch of National Health Industry Enterprise Management Association. 2018 (3rd) Antibacterial Science and Technology Forum Abstracts, Beijing, 2018. Beijing: Antibacterial Industry Branch of National Health Industry Enterprise Management Association, 2018: 1. (in Chinese)(吴双梅. 二氧化硅包覆金银纳米笼作用于联合抗感染治疗[G]//全国卫生产业企业管理协会抗菌产业分会. 2018(第3届)抗菌科学与技术论坛论文摘要集, 北京, 2018. 北京: 全国卫生产业企业管理协会抗菌产业分会, 2018: 1.) |
[15] | Bowman MC, Ballard TE, Ackerson CJ, et al. Inhibition of HIV fusion with multivalent gold nanoparticles[J]. J Am Chem Soc, 2008, 130(22): 6896-6897. |
[16] | Di Gianvincenzo P, Chiodo F, Marradi M, et al. Gold manno-glyconanoparticles for intervening in HIV gp120 carbohydrate-mediated processes[J]. Meth Enzymol, 2012, 509: 21-40. |
[17] | Dkhil MA, Bauomy AA, Diab MS, et al. Impact of gold nanoparticles on brain of mice infected with Schistosoma mansoni[J]. Parasitol Res, 2015, 114(10): 3711-3719. |
[18] | Dkhil MA, Bauomy AA, Diab MS, et al. Antioxidant and hepatoprotective role of gold nanoparticles against murine hepatic schistosomiasis[J]. Int J Nanomedicine, 2015, 10: 7467-7475. |
[19] | Kim JS, Kuk E, Yu KN, et al. Antimicrobial effects of silver nanoparticles[J]. Nanomedicine, 2007, 3(1): 95-101. |
[20] | Chen MH.Antibacterial mechanism of silver nanoparticles on multidrug-resistant Acinetobacter baumannii[D]. Tianjin: Tianjin Medical University, 2016. (in Chinese)(陈明慧. 纳米银对多重耐药鲍曼不动杆菌的抗菌机制研究[D]. 天津: 天津医科大学, 2016.) |
[21] | Chen XQ, Jiang JX, Ren ZH, et al. Antibacterial activity of silver nanoparticles against multiple drug resistant strains[J]. Acta Microbiol Sin, 2017, 57(4): 539-549. (in Chinese)(陈学情, 蒋家璇, 任志鸿, 等. 纳米银的抗菌特性及对多重耐药菌株的抗菌作用[J]. 微生物学报, 2017, 57(4): 539-549.) |
[22] | Parvataneni R.Biogenic synthesis and characterization of silver nanoparticles using aqueous leaf extract of Scoparia dulcis L. and assessment of their antimicrobial property[J]. Drug Chem Toxicol, 2019: 1-15. |
[23] | Nanda A, Saravanan M.Biosynthesis of silver nanoparticles from Staphylococcus aureus and its antimicrobial activity against MRSA and MRSE[J]. Nanomed-Nanotechnol Biol Med, 2009, 5(4): 452-456. |
[24] | Ardestani MS, Fordoei AS, Abdoli A, et al. Nanosilver based anionic linear globular dendrimer with a special significant antiretroviral activity[J]. J Mater Sci Mater Med, 2015, 26(5): 179. |
[25] | Singh SK, Goswami K, Sharma RD, et al. Novel microfilaricidal activity of nanosilver[J]. Int J Nanomedicine, 2012, 7: 1023-1030. |
[26] | Moustafa MA, Mossalem HS, Sarhan RM, et al. The potential effects of silver and gold nanoparticles as molluscicides and cercaricides on Schistosoma mansoni[J]. Parasitol Res, 2018, 117(12): 3867-3880. |
[27] | Ruan LG, Yin Y.Combating drug-resistant bacteria by combining metal nanoparticles with antibiotics[J]. Chin J Antibiot, 2018, 43(8): 971-978. (in Chinese)(阮林高, 殷瑜. 金属纳米粒子与抗生素联用抗耐药菌[J]. 中国抗生素杂志, 2018, 43(8): 971-978.) |
[28] | Zheng YK, Liu WW, Chen Y, et al. Conjugating gold nanoclusters and antimicrobial peptides: from aggregation-induced emission to antibacterial synergy[J]. J Colloid Interface Sci, 2019, 546: 1-10. |
[29] | Deng J.Nano materials for killing resistant bacteria and promoting wound healing[G]//Antibacterial Industry Branch of National Health Industry Enterprise Management Association. 2018 (3rd) Antibacterial Science and Technology Forum Abstracts, Beijing, 2018. Beijing: Antibacterial Industry Branch of National Health Industry Enterprise Management Association, 2018: 1. (in Chinese)(邓君. 纳米材料用于耐药细菌的杀灭和促进伤口愈合的研究[G]//全国卫生产业企业管理协会抗菌产业分会. 2018(第3届)抗菌科学与技术论坛论文摘要集, 北京, 2018. 北京: 全国卫生产业企业管理协会抗菌产业分会, 2018: 1.) |
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