Главная | Обратная связь | Поможем написать вашу работу!
МегаЛекции

CAS PubMed Article Google Scholar




CAS PubMed Article Google Scholar

16. 16.

Wang Y, Yuan R, Chai Y, Yuan Y, Bai L. In situ enzymatic silver enhancement based on functionalized graphene oxide and layer-by-layer assembled gold nanoparticles for ultrasensitive detection of thrombin. Biosens Bioelectron. 2012; 38(1): 50–4.

PubMed Article CAS Google Scholar

17. 17.

Huang J, Zhang L, Liang RP, Qiu JD. “On-off” switchable electrochemical affinity nanobiosensor based on graphene oxide for ultrasensitive glucose sensing. Biosens Bioelectron. 2013; 41: 430–5.

CAS PubMed Article Google Scholar

18. 18.

Gao L, Lian C, Zhou Y, Yan L, Li Q, Zhang C, et al. Graphene oxide-DNA based sensors. Biosens Bioelectron. 2014; 60(1873–4235 (Electronic)): 22–9.

CAS PubMed Article Google Scholar

19. 19.

Chen ML, Liu JW, Hu B, Chen ML, Wang JH. Conjugation of quantum dots with graphene for fluorescence imaging of live cells. Analyst. 2011; 136(20): 4277–83.

CAS PubMed Article Google Scholar

20. 20.

Wang Y, Wang H, Liu D, Song S, Wang X, Zhang H. Graphene oxide covalently grafted upconversion nanoparticles for combined NIR mediated imaging and photothermal/photodynamic cancer therapy. Biomaterials. 2013; 34(1878–5905 (Electronic)): 7715–24.

CAS PubMed Article Google Scholar

21. 21.

Pan Y, Sahoo NG, Li L. The application of graphene oxide in drug delivery. Expert Opin Drug Deliv. 2012; 9(11): 1365–76.

CAS PubMed Article Google Scholar

22. 22.

Huiyun W, Chunyan D, Haiqing D, Aijun S, Wenjuan X, Xiaojun C, et al. Engineered redox-responsive PEG detachment mechanism in PEGylated nano-graphene oxide for intracellular drug delivery. Small. 2012; 8(5): 760–9.

Article CAS Google Scholar

23. 23.

Yang X, Qiu L, Cheng C, Wu Y, Ma ZF, Li D. Ordered gelation of chemically converted graphene for next-generation electroconductive hydrogel films. Angewandte Chem Int Ed Engl. 2011; 50(32): 7325–8.

CAS Article Google Scholar

24. 24.

Schinwald A, Murphy FA, Jones A, Macnee W, Donaldson K. Graphene-based nanoplatelets: a new risk to the respiratory system as a consequence of their unusual aerodynamic properties. ACS Nano. 2012; 6(1): 736–46.

CAS PubMed Article Google Scholar

25. 25.

Chaenyung C, Ryon SS, Xiguang G, Nasim A, Dokmeci MR, Xiaowu Shirley T, et al. Controlling mechanical properties of cell-laden hydrogels by covalent incorporation of graphene oxide. Small. 2014; 10(3): 514–23.

Article CAS Google Scholar

26. 26.

Arvidsson R, Molander S, Sandé n BA. Review of potential environmental and health risks of the nanomaterial graphene. Hum Ecol Risk Assess. 2013; 19(4): 873–87.

CAS Google Scholar

27. 27.

Lee JH, Han JH, Kim JH, Kim B, Bello D, Kim JK, et al. Exposure monitoring of graphene nanoplatelets manufacturing workplaces. Inhal Toxicol. 2016; 28(6): 281–91.

CAS PubMed Article Google Scholar

28. 28.

Maynard RL. Nano-technology and nano-toxicology. Emerg Health Threats J. 2012; 5.

29. 29.

Su WC, Ku BK, Kulkarni P, Cheng YS. Deposition of graphene nanomaterial aerosols in human upper airways. J Occup Environ Hyg. 2015; 13(1): 1–34.

CAS Google Scholar

30. 30.

Li B, Yang J, Huang Q, Zhang Y, Peng C, Zhang Y, et al. Biodistribution and pulmonary toxicity of intratracheally instilled graphene oxide in mice. NPG Asia Mater. 2013; 5: E44.

CAS Article Google Scholar

31. 31.

Yang K, Gong H, Shi X, Wan J, Zhang Y, Liu Z. In vivo biodistribution and toxicology of functionalized nano-graphene oxide in mice after oral and intraperitoneal administration. Biomaterials. 2013; 34(11): 2787–95.

CAS PubMed Article Google Scholar

32. 32.

Wen KP, Chen YC, Chuang CH, Chang HY, Lee CY, Tai NH. Accumulation and toxicity of intravenously-injected functionalized graphene oxide in mice. J Appl Toxicol. 2015; 35(10): 1211–8.

CAS PubMed Article Google Scholar

33. 33.

Kurantowicz N, Strojny B, Sawosz E, Jaworski S, Kutwin M, Grodzik M, et al. Biodistribution of a high dose of diamond, graphite, and graphene oxide nanoparticles after multiple intraperitoneal injections in rats. Nanoscale Res Lett. 2015; 10(1): 398.

PubMed PubMed Central Article CAS Google Scholar

34. 34.

Yue H, Wei W, Yue Z, Wang B, Luo N, Gao Y, et al. The role of the lateral dimension of graphene oxide in the regulation of cellular responses. Biomaterials. 2012; 33(16): 4013–21.

CAS PubMed Article Google Scholar

35. 35.

Nezakati T, Cousins BG, Seifalian AM. Toxicology of chemically modified graphene-based materials for medical application. Arch Toxicol. 2014; 88(11): 1987–2012.

CAS PubMed PubMed Central Article Google Scholar

36. 36.

Chng ELK, Pumera M. Toxicity of graphene related materials and transition metal dichalcogenides. Rsc Advances. 2015; 5(4): 3074–80.

CAS Article Google Scholar

37. 37.

Zheng XT, Ananthanarayanan A, Luo KQ, Chen P. Glowing graphene quantum dots and carbon dots: properties, syntheses, and biological applications. Small. 2015; 11(1613–6829 (Electronic)): 1620–36.

CAS PubMed Article Google Scholar

38. 38.

Caffo M, Merlo L, Marino D, Caruso G. Graphene in neurosurgery: the beginning of a new era. Nanomed. 2015; 10: 615–25.

CAS Article Google Scholar

39. 39.

Wu SY, An SS, Hulme J. Current applications of graphene oxide in nanomedicine. Int J Nanomed. 2015; 10(Spec Iss): 9–24.

CAS Google Scholar

40. 40.

Tonelli FMP, Goulart VAM, Gomes KN, Ladeira MS, Santos AK, Lorencon E, et al. Graphene-based nanomaterials: biological and medical applications and toxicity. Nanomedicine. 2015; 10(15): 2423–50.

CAS PubMed Article Google Scholar

41. 41.

Zhou R, Gao H. Cytotoxicity of graphene: recent advances and future perspective. Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2014; 6(5): 452–74.

Поделиться:





Воспользуйтесь поиском по сайту:



©2015 - 2024 megalektsii.ru Все авторские права принадлежат авторам лекционных материалов. Обратная связь с нами...